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首页> 外文期刊>Journal of Plant Research >Taxonomic identity, phylogeny, climate and soil fertility as drivers of leaf traits across Chinese grassland biomes
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Taxonomic identity, phylogeny, climate and soil fertility as drivers of leaf traits across Chinese grassland biomes

机译:分类学特征,系统发育,气候和土壤肥力是中国草地生物群落叶片性状的驱动因素

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摘要

Although broad-scale inter-specific patterns of leaf traits are influenced by climate, soil, and taxonomic identity, integrated assessments of these drivers remain rare. Here, we quantify these drivers in a field study of 171 plant species in 174 sites across Chinese grasslands, including the Tibetan Plateau, Inner Mongolia, and Xinjiang. General linear models were used to partition leaf trait variation. Of the total variation in leaf traits, on average 27% is due to taxonomic or phylogenetic differences among species within sites (pure species effect), 29% to variation among sites within species (pure site effect), 38% to joint effects of taxonomic and environmental factors (shared effect), and 6.2% to within-site and within-species variation. Examining the pure site effect, climate explained 7.8%, soil explained 7.4%, and climate and soil variables together accounted for 11%, leaving 18% of the inter-site variation due to factors other than climate or soil. The results do not support the hypothesis that soil fertility is the “missing link” to explain leaf trait variation unexplained by climatic factors. Climate- and soil-induced leaf adaptations occur mostly among species, and leaf traits vary little within species in Chinese grassland plants, despite strongly varying climate and soil conditions.
机译:尽管叶片性状的大范围种间模式受气候,土壤和生物分类身份的影响,但对这些驱动因素的综合评估仍然很少。在这里,我们通过对包括青藏高原,内蒙古和新疆在内的中国草原上174个地点的171种植物的田野研究进行了量化。一般线性模型用于划分叶片性状变异。在叶片性状的总变异中,平均有27%是由于位点内物种之间的分类学或系统发育差异(纯种效应),有29%是由于位点间物种间的变异(纯位点效应),38%是由于分类学上的联合效应和环境因素(共同影响),以及6.2%的内部和物种内部差异。考察纯场地效应,气候解释为7.8%,土壤解释为7.4%,气候和土壤变量合起来占11%,由于气候或土壤以外的因素,造成了18%的场地间变化。结果不支持以下假设:土壤肥力是解释由气候因素无法解释的叶片性状变化的“缺失环节”。气候和土壤引起的叶片适应主要发生在物种之间,尽管气候和土壤条件变化很大,但中国草原植物的叶片性状在物种内部变化不大。

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