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  • 1
    ISSN: 0931-1890
    Keywords: Key words Environmental gradient ; Leaf fibre content ; Leaf morphology ; Leaf nutrient content ; Mediterranean climate
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Notes: Abstract  Leaf features were examined in three Quercus species (Q. coccifera, Q. ilex and Q. faginea) along a steep rainfall gradient in NE Spain. The analyzed leaf traits were area, thickness, density, specific mass, leaf concentration of nitrogen, phosphorous, lignin, cellulose and hemicellulose, both on a dry weight basis (Nw, Pw, Lw, Cw, Hw) and on an area basis (Na, Pa, La, Ca, Ha). These traits were regressed against annual precipitation and correlated with each other, revealing different response patterns in the three species. Q. faginea, a deciduous tree, did not show any significant correlation with rainfall. In Q. coccifera, an evergreen shrub, Nw, Na, Lw, La and Ca increased with higher annual rainfall, while Hw decreased. In Q. ilex, an evergreen tree, leaf area, Pw and Lw increased with precipitation, whereas specific leaf mass, thickness and Ha showed the reverse response. Correlations between the leaf features revealed that specific mass variation in Q. faginea and Q. coccifera could be explained by changes in leaf density, while in Q. ilex specific leaf mass was correlated with thickness. Specific leaf mass in the three species appeared positively correlated with all the chemical components on a leaf area basis except with lignin in Q. ilex and with P in Q. ilex and Q. faginea. In these two tree species Pw showed a negative correlation with specific leaf mass. It is suggested that each species has a different mechanism to cope with water shortage which is to a great extent related to its structure as a whole, and to its habit.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1573-5052
    Keywords: Allonetries ; Apparent volume ; Biomass growth ; Regression equations
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract One of the difficult problems arising in many ecological models of development of plant communities and populations is how to estimate the aerial biomass in a non destructive way. This paper presents a nondestructive estimation of the aboveground biomass of plants of several species of Mediterranean shrubs. The method used combines the length-based measurements of a number of plants of each of several taxon with measured biomasses of those same plants fitting allometric nonlinear regression equations to yield parameterized models of plant biomass as a function of plant apparent volume. Two methods of estimating the apparent volume are developed and compared with a well known one in literature.
    Type of Medium: Electronic Resource
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