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  • Articles  (598)
  • Springer  (569)
  • De Gruyter  (29)
  • 1950-1954  (598)
  • 1945-1949
  • 1952  (598)
  • Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition  (544)
  • Architecture, Civil Engineering, Surveying  (54)
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  • Articles  (598)
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  • 1950-1954  (598)
  • 1945-1949
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  • 1
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    Springer
    European journal of plant pathology 58 (1952), S. 87-88 
    ISSN: 1573-8469
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
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  • 2
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    European journal of plant pathology 58 (1952), S. 89-96 
    ISSN: 1573-8469
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
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  • 3
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    European journal of plant pathology 58 (1952), S. 103-108 
    ISSN: 1573-8469
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Notes: Summary When large numbers of rye seedlings were grown in boxes of soil and inoculated with stem eelworms by means of a flat needle, to test their susceptibility to eelworm attack, the method proved unsatisfactory. Better results were achieved by a method described in the foregoing article in which rye seedlings were grown on thick filter paper pads; the grains being inserted into slits cut in the pad by means of a chisel (fig. 1). Each pad is covered with some sheets of thin filter paper on the side where the seedlings appear and the whole is dipped in Knopp's plant culture solution made up in 0.05 per cent. Aretan as a protection against the growth of bacteria and fungi. It is then put into an aluminium holder and placed vertically in a box with other pads which are watered daily or every second day. A trace of ferric chloride (FeCl3) is added to the water in order to prevent chlorosis of the seedlings which otherwise become evident about two weeks after planting. By numbering the pads and the slits in each, data can be obtained concerning each individual plant without risk of confusion (fig. 5). Infested rye, oats and mangolds served as a source of supply of stem eelworms; rye plants collected in the field in May and June contained large numbers of the infective, fourth stage larvae. Since a suspension of eelworms in water was found to clog the needle, suspensions of infective larvae in a solution of carboxymethylcellulose were made and this was inoculated into seedlings by means of a syringe using a No. 18 hypodermic needle (fig. 3,4). Seedlings are inoculated when they are about 2 cm long; smaller ones are damaged too much and this obscures symptoms or causes resistant plants to appear as though attacked. Low temperatures (10–15°C) prove favourable for the manifestation of symptoms.
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  • 4
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    European journal of plant pathology 58 (1952), S. 251-252 
    ISSN: 1573-8469
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
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  • 5
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    European journal of plant pathology 58 (1952), S. 260-266 
    ISSN: 1573-8469
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Notes: Abstract This article discusses the characteristics on which a natural system of classification of thePyrenomycetes must be based and then considers the familyVenturiaceae, giving a key to the genera. The nomenclature and the synonymy of the genera and their type-species are briefly discussed.
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  • 6
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    European journal of plant pathology 58 (1952), S. 255-259 
    ISSN: 1573-8469
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Notes: Summary To study further the effect of heat treatments on „stunt” disease (1), small pieces of roots bearing shoots, taken from stunt diseased raspberry plants, were treated in different ways with high temperatures in January 1952. They were afterwards planted in sand in the greenhouse, and were transplanted to the field when the plants had developed sufficiently. As typical symptoms of the disease are slow to appear, observations were made during the whole summer, and for the last time on 3 October 1952. In the first series the diseased shoots were kept in petri dishes, covered inside with moist filter paper, in an incubator at 46°C for periods of 1, 1 1/4, 1 1/2, 1 3/4, 2, 2 1/4, 2 1/2, 2 3/4, 3 and 3 1/4 hours. The results are summarized in Table 1. It is evident that heat treatment for about 2 3/4 hours or less stimulated the growth of the shoots as compared with the control shoots. A longer treatment proved to be harmful. Shoots treated 1 3/4 hours or longer produced in most cases plants which were still healthy on 3 October 1952. Irregularities in the results are perhaps attributable to poor circulation of air in the dishes, with the result that the expected temperature was not reached or was reached for too short a time only. In the second series the diseased shoots were immersed in water at 45°C for periods of 1, 1 1/4, 1 1/2, 1 3/4, 2, 2 1/4, 2 1/2, 2 3/4 and 3 hours (Table 2). Growth of these shoots was less than the growth of those in the first series treated for 2 3/4 hours or less, but all plants which survived still appeared healthy on 3 October 1952. Shoots which had been immersed for periods of 5 to 60 minutes in water at 50°C showed similar results (Table 3). All surviving shoots produced plants that were still free from symptoms on 3 October 1952. From our experience that heat treatment of raspberry shoots leads to a curing of the disease (1), it may be concluded that the symptomless plants developed from shoots treated in these experiments are really healthy.
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  • 7
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    European journal of plant pathology 58 (1952), S. 28-28 
    ISSN: 1573-8469
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
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  • 8
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    European journal of plant pathology 58 (1952), S. 60-60 
    ISSN: 1573-8469
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
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  • 9
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    European journal of plant pathology 58 (1952), S. 1-4 
    ISSN: 1573-8469
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Notes: Summary The curl-disease or witches' broom of Crotalaria was first described in Indonesia bySchwarz in 1927. In 1931 and 1938 what was apparently the same disease was recorded in the U.S.A. byCook and byJohnson & Lefebvre. The last two investigators proved that the disease was due to a virus. In the present investigation, successful transmissions of the virus have been obtained by a modified grafting method and by using the dodderCuscuta australis R. Br. The disease is characterized by stunting of the plants, by mottling, malformations and atrophy of the leaves, and by excessive branching, giving a witches' broom appearance. Diseased plants do not form seeds, though onCrotalaria striata andC. usaramoensis inflorescences are found. In these plants several types of malformation lead to sterility and in some instances to the production of seedless „pseudo-pods”. In Bogor (Java), witches' broom has been recorded onCrotalaria usaramoensis, C. striata, C. juncea andC. anagyroides, so far without causing significant economic losses. Cross inoculations by grafting have shown that the witches' broom disease of the four mentioned Crotalaria-species is probably caused by the same virus or virus complex. Control of the disease has not been found necessary. Nevertheless it is advisable, especially in seed plantations, to remove and destroy diseased plants periodically in order to prevent further spread.
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  • 10
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    European journal of plant pathology 58 (1952), S. 88-88 
    ISSN: 1573-8469
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
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  • 11
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    European journal of plant pathology 58 (1952), S. 88-88 
    ISSN: 1573-8469
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
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  • 12
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    European journal of plant pathology 58 (1952), S. 96-103 
    ISSN: 1573-8469
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Notes: Summary In 1951, experiments were carried out on the control ofEriophyes gracilis, the mite that causes yellow leaf spots on raspberry andEriophyes avellanae, the hazel-nut gall mite. The control methods developed were based on differences in the biology of the two species. Biology of E. gracilis. It was found that the mites hibernate in the narrow space between the leaf petiole and the axillary bud, and also between the outer bud scales. About the second half of April, they become activated by the rise in temperature and in the beginning of May move to the leaves and other parts of the raspberry bush. After some weeks the young leaves of the new shoots also become infested. Reproduction of the mites is fairly rapid. By the end of August numbers of from 100 to 200 mites per leaf are common. Early in September a mass migration starts and continues until late in the autumn (for more detailed information see (Van Dinther, 1951). Biology of E. avellanae. All mites hibernate inside the deformed swollen buds, the so-called “big buds”, where they are well protected. About the second week in May, the first mites appear on the outside of the buds and in the middle of May migration starts. They swarm in all directions and can be found on all parts of the hazel, e.g. on the young leaves and the new bud shoots. Mites are soon found near the bases of the small, current season buds (about1/25 inch long). By about May 23 numbers of mites, varying from 1–7, have already penetrated the new buds. By the beginning of August many mite-infested buds may be distinguished, but there is no correlation between the numbers of mites inside a bud and the size of the bud. At this time maximum numbers of 60–70 mites per bud can be counted. By the middle of September the “big buds” are plainly visible and some hundreds of mites are present in them. Reproduction continues until late autumn, when a thousand or more mites can be found in some buds. After hibernation, reproduction starts again at the beginning of April and mites, probably of a new generation, start migrating in the middle of May.
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  • 13
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    European journal of plant pathology 58 (1952), S. 191-196 
    ISSN: 1573-8469
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Description / Table of Contents: Summary The presence of the larvae ofAdoxophyes orana Hübn. in inflorescences of lilacs was stated. This insect is to be found in such a small number that the direct damage caused by it can be neglected. As, however, the presence of the larvae caused difficulties in connection with the export to the U.S.A., control is desirable. Such a control can be performed by fumigating the flowers before shipping off with 20 cm3 methylbromide per m3 during 2 hours at 70°F. (21,1°C). This quantity is more than 3 times as large as the quantity needed for killing the larvae or nymphs and half of the quantity, which the lilacs can still endure without damage to either quality or tenability. Other insecticides as parathion aerosol, bladadum smoke, DDT (atomized and as a smoke) were endured well, HCH smoke caused damage. However, neither DDT nor parathion gave a reliable control of the larvae, even when large quantities were used.
    Notes: Samenvatting In bloeiwijzen van seringen werd de aanwezigheid van rupsen vanAdoxophyes (Capua)orana Hübn. geconstateerd. Deze komt voor in zo geringe aantallen, dat de directe schade door dit insect veroorzaakt verwaarloosd kan worden! Daar door de aanwezigheid van deze rupsen moeilijkheden ontstonden bij de export naar de Verenigde Staten is bestrijding gewenst. Deze kan uitgevoerd worden door de seringenbloemen vóór verzending te begassen met een dosis van 20 cm3/m3 methylbromide gedurende 2 uur bij 70° F (21,1°C). Deze dosis is meer dan 3 x zo groot als een dosis nodig om rupsen of poppen te doden en de helft van een dosis, die de seringen nog zonder schade voor kwaliteit of houdbaarheid verdragen. Van andere beproefde middelen werden parathion aerosol, Bladafum rook, D.D.T. (als nevel en als rook) goed, H.C.H.-rook slecht verdragen. Zowel voor D.D.T. als parathion werd echter zelfs bij gebruik van hoge dosis geen betrouwbaar resultaat tegen de rupsen bereikt.
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  • 14
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    European journal of plant pathology 58 (1952), S. 199-199 
    ISSN: 1573-8469
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
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  • 15
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    European journal of plant pathology 58 (1952), S. 224-225 
    ISSN: 1573-8469
    Source: Springer Online Journal Archives 1860-2000
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  • 16
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    European journal of plant pathology 58 (1952), S. 209-214 
    ISSN: 1573-8469
    Source: Springer Online Journal Archives 1860-2000
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  • 17
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    European journal of plant pathology 58 (1952), S. 121-189 
    ISSN: 1573-8469
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
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  • 18
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    European journal of plant pathology 58 (1952), S. 109-120 
    ISSN: 1573-8469
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Description / Table of Contents: Summary An annual survey of silver-leaf disease was made in each of the years 1944 to 1950 inclusive, in a number of plum-orchards in the Betuwe. Records were made each year of the numbers of trees of the variety Victoria in which the disease had progressed, remained unchanged or diminished, as well as of the numbers of newly diseased trees for each of these years. The course of the disease was compared in trees left untreated and in others treated with solid oxyquinolinesulphate by the bore-hole method; the treated trees showed significantly more recovery as compared with untreated trees. The incidence of the disease varied greatly in the different years. In 1945 and 1947 the silver-leaf effect was generally very mild and the highest rate of recovery occurred. In these two years the weather in the spring was characterised by a very much quicker change from winter to summertemperatures, as compared with the other years of the investigation. Similar climatic conditions prevail in continental areas, and in these silver-leaf disease is of little or no importance. In summer the trees acquire a temporary resistance to the disease. Possibly the temporary resistance is caused by the presence of substances inhibitory to the growth of the fungus; it is certainly not due to the formation of gumbarriers blocking the way for further spread of the parasite, as some investigators have suggested. The inhibitory substances may perhaps be formed in the leaves as products of carbondioxide assimilation. This would account for the fact that the sooner the leaves unfold in spring, the sooner the resistance develops. Strong illumination and simultaneous high temperatures accelerate the assimilation, which may again explain the greatly increased resistance noted in warm sunny weather in summer. It may be that the resistance lasts until the stored products of the assimilation in the wood are carried back again to the buds at the end of the winter; the trees would then again enter into a susceptible period. It is possible that the length of this period could determine the incidence of silver-leaf disease in the current year. From the foregoing it would appear that pruning methods allowing entrance of light to all parts of the tree should aid in controlling the disease.
    Notes: Samenvatting Op grond van jaarlijkse inventarisatie van de loodglansziekte in een aantal pruimenboomgaarden in de Betuwe is voor elk van de jaren 1944 tot en met 1950 berekend bij welke percentages van de aangetaste bomen van het ras Victoria de toestand was achteruitgegaan, gelijk gebleven of vooruitgegaan, vergeleken bij het voorafgaande jaar en bij welk percentage van de voorheen nog gezonde bomen in elk dezer jaren voor het eerst loodglansziekte werd geconstateerd. De gevonden getallen zijn vergeleken met de waarnemingen over het ziekteverloop bij aangetaste bomen, waarop bestrijdingsproeven volgens de boorgatmethode waren toegepast; het blijkt dat bij bomen waaraan volgens deze methode vast oxychinolinesulfaat was toegediend, belangrijk meer vooruitgang in de toestand is te constateren dan bij onbehandelde bomen. Het verloop van de ziekte bij onbehandelde bomen liep in de verschillende jaren sterk uiteen; in de jaren 1945 en 1947 trad de loodglansziekte belangrijk minder hevig op dan in andere jaren; in deze jaren werd dan ook de meeste vooruitgang gevonden. In deze beide jaren waren de weersomstandigheden in het voorjaar gekenmerkt door zeer snelle overgang van winter- en zomertemperaturen, in tegenstelling met alle overige jaren waarover dit onderzoek loopt. Het is aan te nemen dat onder dergelijke omstandighedenStereum purpureum zeer weinig parasitaire werkzaamheid kan uitoefenen, daar hij bij temperaturen omstreeks het vriespunt geen groei meer vertoont en bij hoge temperaturen de bomen een tijdelijke resistentie verkrijgen. Het is waarschijnlijk, dat deze tijdelijke resistentie wordt veroorzaakt door de aanwezigheid van stoffen, die de groei van de schimmel tegengaan en niet door gombarrières, die de schimmel de weg zouden versperren. Deze stoffen moeten in de bladeren zijn gevormd bij de koolzuurassimilatie; hoe vroeger in het jaar de bladeren zich ontplooien, hoe eerder de resistentie kan optreden. Sterke belichting en hoge temperatuur samen versnellen de koolzuurassimilatie; dientengevolge wordt de resistentie door warm, zonnig weer sterk verhoogd. Maatregelen ter bestrijding van de loodglansziekte zullen moeten zijn gericht op bevordering van de koolzuurassimilatie.
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  • 19
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    European journal of plant pathology 58 (1952), S. 200-201 
    ISSN: 1573-8469
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
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    European journal of plant pathology 58 (1952), S. 202-206 
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  • 21
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    Plant foods for human nutrition 1 (1952), S. 1-2 
    ISSN: 1573-9104
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
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    Plant foods for human nutrition 1 (1952), S. 2-3 
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    Plant foods for human nutrition 1 (1952), S. 3-4 
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    Plant foods for human nutrition 1 (1952), S. 43-59 
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    Plant foods for human nutrition 1 (1952), S. 5-16 
    ISSN: 1573-9104
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Notes: Résumé Sous ‘veld’ on entend en Afrique du Sud les plaines sèches couvertes d'une végétation herbacée et de petits arbustes, qui servent de pâturage aux moutons et aux bovins, qu'on laisse paître pendant toute l'année, à l'exception des environs des villes, comme p.e. le Cape Town. Mais contrairement à l'Europe ce ne sont pas les légumineuses et les graminées, mais des représentants d'autres familles, qui forment la masse principale de la nourriture et l'auteur donne une énumération des principales de celles. Les petits arbustes eux aussi servent de nourriture. L'auteur engroupe les plantes principales selon leur teneur en cendres et en protéine. Celles du premier groupe sont le mieux mangées par les bêtes, celles des groupes V et VI le sont beaucoup moins. Les moutons en Afrique du Sud doivent se nourrir sous conditions sous lesquelles les moutons en Europe succomberaient.
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    Plant foods for human nutrition 1 (1952), S. 60-74 
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    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Notes: Résumé L'auteur donne une description desCaesalpinia, les gousses desquelles contiennent des matières tannantes:Caesalpinia coriaria, autrement connu sous le nom de ‘Divi-Divi’,Caesalpinia brevifolia ou ‘Algarrobilla’Caesalpinia spinosa ou ‘Tara’, autresCaesalpinia de l'Amérique du Sud,Caesalpinia digyna Rottl. ou ‘Tari’ ou ‘Teri’. Mentionnés sont le teneur en tannins, utilisation, commerce, culture, rendement etc.
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    Plant foods for human nutrition 1 (1952), S. 75-106 
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    Plant foods for human nutrition 1 (1952), S. 17-42 
    ISSN: 1573-9104
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Notes: Resumé Les cultures du lin en Uruguay couvraient avant la dernière grande guerre une surface de 150000 hectares, actuellement la surface est de 240000 hectares ou 1.23% du pays. Elless ont donc bien augmenté. Le lin est cultivé surtout dans le sud et dans les régions situées à l'ouest du fleuve de l'Uruguay. C'est une plante très importante dans l'agriculture du pays, cultivées surtout comme plante oléifère, tandis que son importance comme plante à fibres est moins grande. Vu l'énorme quantité de paille qui reste inutilisée après la récolte du lin oléagineux chaque année, la question s'est posée de l'utiliser pour les besoins de la production de fibres. Mais ces efforts n'étaient pas satisfaisants et on commença d'introduire des variétés européennes du lin à fibres, qui d'autre part étaient très susceptibles à différentes parasites, surtout aux races physiologiques deMelampsora lini existant déjà dans le pays. Un autre problème était la sélection des races du lin qu'on pourrait cultiver sur le même terrain pendant plusieures années, sans fatiguer le sol. L'auteur, dont l'article fait état en principe des idées énoncées déjà dans une publication en langue espagnole en 1943, donne un aperçu sur les différents travaux concernant l'amélioration du lin. Elles furent commencées en Argentine parKlein et continuées par d'autres auteurs comme p.e.Kugler, au Rio Grande do Sul par différents sélectionneurs et en Uruguay par l'auteur lui même. Différentes variétes donnant des fibres et de l'huile, comme p.e. le E2 E3 sel. résistant au ‘pasmo’ (Septoria) furent créés, résistantes aussi en ce qui concerne les champignons parasitiques. Pendant et après la dernière guerre de grandes huileries furent construites en Argentine et en Uruguay et ces pays n'exporteront plus, comme cétait le cas jusqu'à présent, seulement des graines du lin, mais aussi des tourteaux et de l'huile du lin. Quant'aux fibres de lin, les besoins des fabriques de textiles du pays ne sont point encore couvertes par l'agriculture de ces pays.
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    Plant foods for human nutrition 1 (1952), S. 122-122 
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    Plant foods for human nutrition 1 (1952), S. 107-112 
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    Notes: Summary 1. Any new species arising during the course of evolutionary change must possess individual members with genetic constitutions ‘harmonious’ enough to ensure survival and maintenance in competition with other species growing in the same habitat. It is not necessary that successful species should display ‘100% efficiency’. 2. Instead of searching, therefore, for some teleological value for isolated features of plant growth, it is suggested that it might be more profitable to focus attention on problems concerning the physiology of the individual plant, and to attempt to appreciate the relation of particular features of development to the other processes occurring simultaneously. 3. For example, a better understanding of the processes involved in polyterpene accumulation in laticiferous plants may require a clearer insight into triterpene metabolism in general.
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    Plant foods for human nutrition 1 (1952), S. 119-121 
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    Notes: Summary There are two species of styrax in Greece, belonging to different families, theStyrax officinalis and theLiquidambar orientalis, the distribution of which is shown on the map. The styrax which is found in trade in Europe and obtained only from theStyrax officinalis is a resin used in pharmacy, in cosmetics, perfumery etc.
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    Plant foods for human nutrition 1 (1952), S. 113-118 
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    Description / Table of Contents: Résumé L'auteur recommande l'extraction des fibres contenues dans les troncs des bananes comestibles. Comme des essais l'ont démontré on pourrait en extraire des fibres qui en qualité ne cédent pas à la vraie fibre connue sous le nom d'abacà. Mais on ne doit utiliser, comme c'est le cas aussi avec le Musa textilis, que les gaines des feuilles jeunes (intérieures). On recommande aussi des méthodes d'amélioration des fibres des différentes espèces deMusa.
    Notes: Zusammenfassung Die Herstellung von Fasern aus den Schäften der Essbananen wird dringling angeraten. Nach ausgiebigen Versuchen sind daraus Fasern zu gewinnen, die der echten Abacá an Güte nicht nachstehen. Es dürfen aber dort wie auch beiMusa textilis üblich nur die jüngeren (inneren) Blattscheiden verwertet werden. Veredlungsmethoden für alleMusa-Fasern sind zu empfehlen.
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    Plant foods for human nutrition 1 (1952), S. 123-128 
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    European journal of forest research 71 (1952), S. 337-349 
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    European journal of forest research 71 (1952), S. 359-368 
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    European journal of forest research 71 (1952), S. 65-79 
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    European journal of forest research 71 (1952), S. 384-384 
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    European journal of forest research 71 (1952), S. 88-97 
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    European journal of forest research 71 (1952), S. 97-108 
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    European journal of forest research 71 (1952), S. 126-128 
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    European journal of forest research 71 (1952), S. 141-151 
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    European journal of forest research 71 (1952), S. 151-169 
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    European journal of forest research 71 (1952), S. 193-214 
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    European journal of forest research 71 (1952), S. 215-225 
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    European journal of forest research 71 (1952), S. 225-243 
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    European journal of forest research 71 (1952), S. 256-256 
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    European journal of forest research 71 (1952), S. 257-272 
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    European journal of forest research 71 (1952), S. 169-181 
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    European journal of forest research 71 (1952), S. 181-192 
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    European journal of forest research 71 (1952), S. 243-254 
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    European journal of forest research 71 (1952), S. 254-256 
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    European journal of forest research 71 (1952), S. 313-320 
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    European journal of forest research 71 (1952), S. 289-313 
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    Journal of pest science 25 (1952), S. 5-7 
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    Journal of pest science 25 (1952), S. 13-16 
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    Journal of pest science 25 (1952), S. 1-5 
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    Notes: Zusammenfassung 1. Auf dem häufigsten Laubbaum Mitteleuropas, der Rotbuche(Fagus silvatica), lebt die BuchenblattlausPhyllaphis fagi (L.), welche eine bienenwirtschaftliche sehr wichtige Honigtauerzeugerin ist. Die Art ist bisher in der Imkerliteratur kaum berücksichtigt worden. 2.Phyllaphis fagi erzeugt im Jahr mehrere Generationen. Diese bestehen, mit Ausnahme der letzten Herbstgeneration, aus lebendgebärenden Weibchen, die zur Fortpflanzung keine Begattung benötigen. In der zweiten und dritten Generation treten auch ungeflügelte Weibchen auf. Die letzte Generation wird von geflügelten Männchen und ungeflügelten, begattungsbedürftigen Weibchen gebildet. Letztere legen überwinternde Eier ab. Die Buche wird von allen Generationen als Nährpflanze beibehalten. 3. Natürliche Feinde der Buchenblattlaus sind Schwebfliegen, Schlupfwespen, Marienkäfer und Florfliegen. Die Larven der Schwebfliegen räumen stellenweise sehr stark unter ihren Beutetieren auf. 4. Die Buchenblatt-Tracht liegt zeitlich in der Periode der stärksten Vermehrung und Honigtauproduktion der Buchenlaus im letzten Mai- und ersten Junidrittel. Da der Honigtau an den Blattunterseiten sehr rasch erstarrt, kann er von den Bienen in der Regel nur in den frühen Morgenstunden aufgenommen werden. Eine Ausnahme machen eingerollte Blätter, in denen der Honigtau lange flüssig bleibt, und die deshalb den ganzen Tag über beflogen werden können. Der Buchenblatthonig wird meist als Mischhonig. in Laubwaldgebieten häufig als Buchenblatt-Himbeer-Mischhonig-geerntet.
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    Journal of pest science 25 (1952), S. 7-10 
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    Notes: Zusammenfassung Bei Bekämpfungsversuchen gegenDoralis fabae Scop. im Freiland wirkte E 605 forte in Konzentrationen von 0,015–0,045% bei Temperaturen zwischen 24–26° C nach 1 Tage 100%ig, bei Temperaturen zwischen 9 und 10° verlief der Abtötungsprozeß langsamer und erreichte erst nach 3 Tagen 95%. Als Grund hierfür wird neben der langsameren Wirkung des Mittels die herabgesetzte Aktivität der Läuse verantwortlich gemacht. In Laboratoriumsversuchen konnte anRhopalosiphoninus (Myzodes) latysiphon Davids undMacrosiphon solanifolii Ashm. nachgewiesen werden, daß E 605 forte auch bei tiefen Temperaturen voll wirksam ist, wenn alle Tiere unmittelbar getroffen werden. Die Versuchsobjekte sprachen in Konzentrationen von 0,01–0,005% innerhalb 24 Stunden fast 100%ig auf das Mittel an, auch wenn die Temperaturen bis auf 4° C abfielen. Als Grenzkonzentration für E 605 forte bei den genannten Läusen konnte 0,0015% festgelegt werden.
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    Journal of pest science 25 (1952), S. 148-149 
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    Journal of pest science 25 (1952), S. 145-148 
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    Journal of pest science 25 (1952), S. 149-151 
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    Journal of pest science 25 (1952), S. 151-151 
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    Journal of pest science 25 (1952), S. 152-152 
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    Journal of pest science 25 (1952), S. 153-160 
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    Journal of pest science 25 (1952), S. 161-166 
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    Journal of pest science 25 (1952), S. 171-172 
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    Journal of pest science 25 (1952), S. 172-176 
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    Journal of pest science 25 (1952), S. 177-182 
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    Journal of pest science 25 (1952), S. 172-172 
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    Journal of pest science 25 (1952), S. 166-170 
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    Notes: Zusammenfassung Vergleichende Infektionsversuche mit Sporenaufschwemmungen vonBeauveria densa auf engerlingsverseuchten Sand- und Gartenerdeparzellen führte zu folgenden Ergebnissen: Auf der humusreichen Parzelle wurde auch im zweiten und dritten Jahr nach der Infektion ein nahezu gleich hoher Prozentsatz von Engerlingen von der Pilzseuche befallen wie im sehr feuchten Infektionsjahr. Im Sandboden blieb dagegen die Zahl der verpilzten Tiere in den Folgejahren gering. Daraus kann mit einiger Sicherheit gefolgert werden, daß die Massenentfaltung des Maikäfers im anthropogenen Biotop nicht zuletzt auf den Ausfall seines pilzlichen ParasitenBeauveria densa zurückzuführen ist, der in den trockenen, sandigen Lagen der meisten Maikäfergebiete nur schlecht zu gedeihen vermag. Im Ursprungsbiotop des Maikäfers, im Naturwald findet er hingegen optimale Existenzbedingungen. Er kann daher dort die Vermehrung dieses Insektes in Schranken halten helfen. Der sicherste Weg zur erfolgreichen biologischen Maikäferbekämpfung mit Hilfe vonBeauveriia densa ist in der Verbesserung der armen, sandigen Böden durch geregelte Humifizierung zu sehen. Auf diese Weise werden gleichzeitig die Voraussetzungen zur Wiederansiedlung des Pilzes im Boden geschaffen, womit eine Dauerregelung im Sinne der Wiederherstellung des zerstörten biologischen Gleichgewichts erreicht wäre. Das Versagen künstlicher Pilzinfektionen engerlingsverseuchter Böden als auch das dort verhältnismäßig seltene Vorkommen ausgedehnter Mykosen kann daher nicht — wie manche wollen (Thiem 1950) — auf mangelnde Anfälligkeit infolge günstiger Ernährungsbedingungen zurückgeführt werden, sondern liegt in erster Linie in der dem Pilz abträglichen Bodentrockenheit des anthropogenen Maikäferbiotops begründet. Darauf hat bereitsEscherich wiederholt aufmerksam gemacht.
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    Journal of pest science 25 (1952), S. 183-186 
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    Journal of pest science 25 (1952), S. 189-192 
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    Notes: Zusammenfassung Die Vernichtung der Larven von Kohlschotenrüßler und Kohlschotenmücke in den Schoten ist durch Behandlung der Rapspflanzen mit Ester- und Gamma-Hexa-Mitteln grundsätzlich möglich. Ester, insbesondere E 605, sind schon mit niedrigeren Konzentrationen wirksam als Gamma-Hexa-Mittel. Stäubemittel sind wegen der zur Larvenabtötung notwendigen sehr hohen Dosierung für die Praxis weniger zu empfehlen. Für die Larvenbekämpfung im Feldbestand ist das E 605 forte-Spritzmittel und zwar in 1,5%iger Konzentration gut geeignet.
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    Journal of pest science 25 (1952), S. 41-43 
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    Notes: Zusammenfassung Aus den mikroskopischen Untersuchungen der Exkremente im Freiland gefangener Tiere, vor allem aber aus biologischen Versuchen, geht hervor, daßLimax (Heynemannia) maximus L. chlorophyllhaltige Pflanzen wohl nur in der Not verzehrt und sich in der Hauptsache von Wurzeln, Knollen und Früchten (in freier Wildbahn von Pilzen, Früchten und Blüten) ernährt.
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    Journal of pest science 25 (1952), S. 36-41 
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    Source: Springer Online Journal Archives 1860-2000
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    Notes: Zusammenfassung Das 1948 bis 1950 in der Nähe von Bonn zu verzeichnende Massenauftreten vonTanymecus palliatus F. auf Zuckerrübe und Apfel sowie zahlreiche Vorkommensnachweise der Literatur gaben den Anlaß zu einem 1949 durchgeführten Nährpflanzenversuch, dessen Ergebnis in Listen wiedergegeben wurde. Die in Versuch genommenen Pflanzen wurden nicht unterschiedslos angenommen, eine stattliche Anzahl landwirtschaftlicher Nutzpflanzen, Vertreter des Kern- und Steinobstes, der Waldbäume und Sträucher, sowie der Unkrauter wurden gern und sehr gern gefressen, eine ebenso große Zahl wenig akzeptiert, ein geringer Prozentsatz gemieden. Es konnten neue Wirtspflanzen ermittelt, bereits erwähnte bestätigt undT. palliatus als weitgehend polyphag erwiesen werden. Für die Praxis können folgende Annahmen getroffen werden: Die sehr und ziemlich gern gefressenen Pflanzen des Acker-, Gemüse-, Obst- und Waldbaues dürften im frühen Stadium ihrer Monokulturen bei Massenauftreten des Käfers gefährdet sein, die wenig gefressenen gelegentlich bei Futtermangel aufgesucht werden, die gemiedenen möglicherweise für den Käfer schädlich sein. Eine Zahl gern gefressener Unkräuter wird auch in der Natur die Käfer auf sich konzentrieren. Bei nicht zusagender Nahrung vermag der Käfer bis zu 14 Tagen mit einem Minimum von Futter auszukommen.
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    Journal of pest science 25 (1952), S. 45-46 
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    Journal of pest science 25 (1952), S. 47-48 
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    Journal of pest science 25 (1952), S. 46-47 
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    Journal of pest science 25 (1952), S. 49-52 
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    Journal of pest science 25 (1952), S. 56-57 
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    Journal of pest science 25 (1952), S. 57-59 
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    Journal of pest science 25 (1952), S. 53-56 
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    Notes: Zusammenfassung 1. Nebel- und Sprühgeräte eignen sich für generelle Bekämpfungsmaßnahmen gegen die Kirschfruchtfliege. 2. Der DDT-Nebelwirkstoff ist trotz einmaliger Anwendung für die Dauer der Bekämpfungszeit ausreichend wirksam. 3. Eine Vernebelung von DDT wirkte sich in Mischbeständen auf die Bekämpfung des Apfelwicklers anscheinend günstig aus. 4. Bei keinem im Behandlungsgebiet verbliebenen oder auch versuchsweise eingesetzten Bienenvolk traten Schäden ein. 5. Die wirkungsvolle Bekämpfung der Kirschfruchtfliege hatte eine natürliche Reife der Spätkirschen zur Folge, wodurch Angebot und Preis in einem für den Obstbauer günstigen Verhältnis blieb. 6. Je nach dem Tragalter des Baumes entsprachen die Bekämpfungskosten dem Wert von 2–5 Pfund Kirschen!
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    Journal of pest science 25 (1952), S. 60-64 
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    Journal of pest science 25 (1952), S. 59-60 
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    Journal of pest science 25 (1952), S. 65-68 
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    Journal of pest science 25 (1952), S. 68-72 
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    Journal of pest science 25 (1952), S. 73-75 
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    Journal of pest science 25 (1952), S. 76-80 
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    Journal of pest science 25 (1952), S. 75-76 
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