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  • 1
    ISSN: 1615-6110
    Keywords: Angiosperms ; Boraginaceae ; Symphytum.—Pyrrolizidine alkaloids ; chemotaxonomy
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract By means of thin layer chromatography in conjunction with mass spectrometry the pyrrolizidine alkaloid patterns derived fromSymphytum asperum, several cytotypes ofS. officinale agg. and the artificial hybrids of the former taxa, were compared. The obtained patterns were not essentially affected by variation in cytotype, harvesting times and -location of plants. Lycopsamine, acetyl-lycopsamine and symphytine or their isomers were generally found in theS. officinale cytotypes, echimidine and symphytine inS. asperum. The interspecific hybrids contained all alkaloids mentioned. The definite lack of echimidine in the 2 n=40 cytotype proves that it is conspecific withS. officinale and does not belong to a hybrid-swarmS. asperum × S. officinale with 2 n=48.
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  • 2
    ISSN: 1615-6110
    Keywords: Angiosperms ; Boraginaceae ; Symphytum ; Phytosterols ; triterpenoids ; chemotaxonomy
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract From a comparison of phytosterol and triterpenoid patterns of severalSymphytum officinale cytotypes,S. asperum and their interspecific hybrids,S. ×uplandicum, which were obtained from thin layer chromatography and gaschromatography (also in combination with mass spectrometry), the hybrid character of the latter taxon is clearly shown. The specific value of the triterpenoid isobauerenol as a chemotaxonomical marker within this group is discussed in some detail.
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  • 3
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    In:  Mededelingen van het Botanisch Museum en Herbarium van de Rijksuniversiteit te Utrecht (2352-5754) vol.347 (1970) nr.1 p.271
    Publication Date: 2015-05-08
    Description: The three species Galium silvaticum L., Galium aristatum L. and Galium schultesii Vest show differences in morphology, cytology and geographical distribution. These differences are described and discussed. Crossing experiments between the three species were without results. No hybrid could be obtained. Galium silvaticum, Galium aristatum and Galium schultesii must be considered as separate species.
    Repository Name: National Museum of Natural History, Netherlands
    Type: Article / Letter to the editor
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  • 4
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    In:  Mededelingen van het Botanisch Museum en Herbarium van de Rijksuniversiteit te Utrecht (2352-5754) vol.268 (1966) nr.1 p.541
    Publication Date: 2015-05-08
    Description: The chromosome number of 157 species of Angiospermae occurring in the Netherlands is dealt with.
    Repository Name: National Museum of Natural History, Netherlands
    Type: Article / Letter to the editor
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  • 5
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    In:  Mededelingen van het Botanisch Museum en Herbarium van de Rijksuniversiteit te Utrecht (2352-5754) vol.316 (1969) nr.1 p.74
    Publication Date: 2015-05-08
    Description: The chromosome numbers of 31 species of Angiospermae collected in S. Brazil were determined. Of these species 5 were studied before, the other numbers are new, 11 are first counts for genera and one even for a family. Some notes on the cytology and morphology are added.
    Repository Name: National Museum of Natural History, Netherlands
    Type: Article / Letter to the editor
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  • 6
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    In:  Mededelingen van het Botanisch Museum en Herbarium van de Rijksuniversiteit te Utrecht (2352-5754) vol.190 (1962) nr.1 p.279
    Publication Date: 2015-05-08
    Description: Cytological studies on the Rubiaceae with special references to the genus Galium have been done by HOMEYER (1936) and FAGERLIND (1937). EHRENDORFER (1949, 1954, 1955, 1956) described the phylogeny of the section Leptogalium. More detailed cytological and cytotaxonomical investigations appeared by HANCOCK (1942) (Galium palustre L., Galium debile Desv. and Galium uliginosum L.), CLAPHAM (1949) ( Galium palustre L.), EHRENDORFER (1949, 1953) (Galium pumilum Murr.) 1955 (Galium rubrum L. and Galium pusillum L.) and of Galium boreale L. by Löve and Löve (1954) and more recently by RAHN (1961). FAGERLIND (1937) and, previous to him, HOMEYER (1936) determined the chromosome numbers of many Galium species. Later investigations by EHRENDORFER (1949, 1955, 1956, 1961), LÖVE and LÖVE (1954, 1956), PIOTROWICZ (1958), POUQUES (1949), RAHN (1960, 1961) and REESE (1957) confirmed and supplemented this list of chromosome numbers. Many investigators have paid attention to the genus Galium. However, their studies have concerned only with some critical species or groups. Many taxonomical problems remain concerning the genus. SCHUMANN (1891) in ENGLER and PRANTL „Die Natürlichen Pflanzenfamilien” divided the genus in 14 sections which are very distinct morphologically. However, within these sections it is often very difficult to define exactly the morphological differences between the species.
    Repository Name: National Museum of Natural History, Netherlands
    Type: Article / Letter to the editor
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  • 7
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    In:  Mededelingen van het Botanisch Museum en Herbarium van de Rijksuniversiteit te Utrecht (2352-5754) vol.414 (1974) nr.1 p.408
    Publication Date: 2015-05-08
    Description: Cytological investigations within Galium palustre L. showed the occurrence of three cytotypes, a diploid with 2n=24 chromosomes, a tetraploid with 2n=48 and an octoploid with 2n=96. Comparative morphological investigations, together with transplantation and crossing experiments confirmed the complexity of the species. The cytotypes are here considered to be subspecies of Galium palustre L.
    Repository Name: National Museum of Natural History, Netherlands
    Type: Article / Letter to the editor
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  • 8
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    In:  Mededelingen van het Botanisch Museum en Herbarium van de Rijksuniversiteit te Utrecht (2352-5754) vol.393 (1973) nr.1 p.359
    Publication Date: 2015-05-08
    Description: Cytologioal investigations within Galium boreale L. showed the occurrence of tetraploids (2n=44) as well as hexaploids (2n=66) in Europe. Comparative morphological studies failed to demonstrate any differences in characters between the two cytotypes. Crosses between the tetraploid and hexaploid were unsuccessful, due to the occurrence of a strong and effective barrier between the two levels of ploidy. From a taxonomical point of view the two cytotypes are considered as to belong to the same taxon.
    Repository Name: National Museum of Natural History, Netherlands
    Type: Article / Letter to the editor
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  • 9
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    In:  Mededelingen van het Botanisch Museum en Herbarium van de Rijksuniversiteit te Utrecht (2352-5754) vol.392 (1973) nr.1 p.303
    Publication Date: 2015-05-08
    Description: The chromosome numbers of 67 species of Dutch Angiosperms were determined. Notes on 11 species are added.
    Repository Name: National Museum of Natural History, Netherlands
    Type: Article / Letter to the editor
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  • 10
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    In:  Mededelingen van het Botanisch Museum en Herbarium van de Rijksuniversiteit te Utrecht (2352-5754) vol.195 (1963) nr.1 p.172
    Publication Date: 2015-05-08
    Description: 1. The Orchids in the Netherlands have been subjected to a cytological investigation. 2. The division of the genera Orchis (L.) Klinge into two new genera: Orchis (L.) Vermln. and Dactylorchis (Kl.) Vermln. (Vermeulen, 1947), could be confirmed. 3. In Listera ovata (L.) R. Br. the diploid chromosome number is 34. Deviating numbers 2n = 35 and 2n = 36 were counted. Because aberations in chromosome number do not cause morphological differences these aberations seem to be unimportant. 4. Out of the material investigated it might be concluded that for the moment it does not seem to be correct to consider Dactylorchis fuchsii (Druce) Vermln, as a separate species besides Dactylorchis maculata (L.) Vermln. It seems more likely that D. fuchsii and D. maculata represent two types within a complex-species.
    Repository Name: National Museum of Natural History, Netherlands
    Type: Article / Letter to the editor
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