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Stronger latitudinal phylogenetic patterns in woody angiosperm assemblages with higher dispersal abilities in China

生物扩散 系统发育树 生物 生态学 中国 木本植物 地理 种子散布 生物地理学 考古 人口 生物化学 人口学 社会学 基因
作者
Lu Jin,Jiajia Liu,Qiaoming Li,Luxiang Lin,Xiaona Shao,Tian‐Wen Xiao,Buhang Li,Xiangcheng Mi,Haibao Ren,Yan Zhu,Xiujuan Qiao,Juyu Lian,Xu‐Gao Wang,Hu Du,Guangze Jin,Jens‐Christian Svenning,Gang Hao,Xue‐Jun Ge
出处
期刊:Journal of Biogeography [Wiley]
卷期号:51 (2): 269-279 被引量:9
标识
DOI:10.1111/jbi.14746
摘要

Abstract Aim The equator‐to‐poles decline in the number of species, namely the latitudinal diversity gradient (LDG), is the most conspicuous pattern in biology, yet the underlying mechanisms of this pattern remain controversial. Species dispersal could have strong effects on large‐scale species distributions but has rarely been considered in understanding the LDG. Here we sought to examine how dispersal ability may influence the latitudinal phylogenetic patterns of woody angiosperm assemblages. Location China. Taxon Woody angiosperms. Methods Based on a highly supported mega‐phylogeny constructed from plastid genomes, we assessed the patterns of phylogenetic relatedness and dissimilarity of 1184 trees with three different seed dispersal modes (i.e. zoochory, anemochory and autochory) in 12 permanent forest dynamic plots covering tropical, subtropical and temperate zones in China. Results We found that, compared with zoochorous and anemochorous species, the less vagile autochorous trees exhibited a much weaker latitudinal pattern in phylogenetic relatedness and higher phylogenetic dissimilarity among plots. The phylogenetic dissimilarity pattern of autochorous trees was explained more by geographic distance than environmental factors, consistent with a dominant role for dispersal limitation. Main Conclusions Our study, for the first time, demonstrates that seed dispersal mode strongly influences the latitudinal phylogenetic patterns of woody angiosperm assemblages in China and highlights the importance of interaction between dispersal limitation and environmental filtering in determining the large‐scale distribution of forest biodiversity.
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