中国亚热带森林冠层结构异质性驱动α和β物种遗传多样性相关性

IF 6.3 1区 生物学 Q1 PLANT SCIENCES
Plant Diversity Pub Date : 2024-08-20 eCollection Date: 2025-01-01 DOI:10.1016/j.pld.2024.08.003
Zhiliang Yao, Xia Pan, Xin Yang, Xiaona Shao, Bin Wang, Yun Deng, Zhiming Zhang, Qiaoming Li, Luxiang Lin
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引用次数: 0

摘要

物种-遗传多样性相关性(SGDCs)的模式和驱动因素已经在不同的分类群和生态系统中得到了广泛的研究,极大地加深了我们对生物多样性如何维持的理解。然而,很少有研究调查了冠层结构异质性在形成sgdc中的作用,而冠层结构异质性是森林的一个决定性特征。本文研究了中国亚热带森林中α-和β-物种遗传多样性相关性(即α-和β- sgdc)的影响因素。为此,我们利用中性分子标记对哀牢山国家级自然保护区优势树种木栎(Lithocarpus xylocarpus)几乎所有成虫的遗传变异进行了分析。利用航空激光扫描技术对20个1-ha的亚热带森林样地进行了冠层结构非均质性定量分析。物种α-多样性与遗传α-多样性呈负相关。冠层结构异质性与物种α-多样性呈正相关,与遗传α-多样性呈负相关。这些对比作用促成了负α-SGDC的形成。此外,冠层结构异质性通过减小目标物种的种群大小,增加了物种α-多样性,降低了遗传α-多样性。物种β多样性与遗传β多样性呈显著正相关。样地间冠层结构异质性差异对β-SGDC的影响呈非线性平行效应,而地理距离对β-SGDC的影响相对较弱。研究表明,林冠结构异质性同时影响样地群落物种多样性和种群遗传多样性,以及样地间物种和遗传周转,从而驱动α-和β- sgdc。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Canopy structural heterogeneity drives α and β species-genetic diversity correlations in a Chinese subtropical forest.

Patterns and drivers of species-genetic diversity correlations (SGDCs) have been broadly examined across taxa and ecosystems and greatly deepen our understanding of how biodiversity is maintained. However, few studies have examined the role of canopy structural heterogeneity, which is a defining feature of forests, in shaping SGDCs. Here, we determine what factors contribute to α- and β-species-genetic diversity correlations (i.e., α- and β-SGDCs) in a Chinese subtropical forest. For this purpose, we used neutral molecular markers to assess genetic variation in almost all adult individuals of the dominant tree species, Lithocarpus xylocarpus, across plots in the Ailaoshan National Natural Reserve. We also quantified microhabitat variation by quantifying canopy structure heterogeneity with airborne laser scanning on 20 1-ha subtropical forest plots. We found that species α-diversity was negatively correlated with genetic α-diversity. Canopy structural heterogeneity was positively correlated with species α-diversity but negatively correlated with genetic α-diversity. These contrasting effects contributed to the formation of a negative α-SGDC. Further, we found that canopy structural heterogeneity increases species α-diversity and decreases genetic α-diversity by reducing the population size of target species. Species β-diversity, in contrast, was positively correlated with genetic β-diversity. Differences in canopy structural heterogeneity between plots had non-linear parallel effects on the two levels of β-diversity, while geographic distance had a relatively weak effect on β-SGDC. Our study indicates that canopy structural heterogeneity simultaneously affects plot-level community species diversity and population genetic diversity, and species and genetic turnover across plots, thus driving α- and β-SGDCs.

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来源期刊
Plant Diversity
Plant Diversity Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
8.30
自引率
6.20%
发文量
1863
审稿时长
35 days
期刊介绍: Plant Diversity (formerly Plant Diversity and Resources) is an international plant science journal that publishes substantial original research and review papers that advance our understanding of the past and current distribution of plants, contribute to the development of more phylogenetically accurate taxonomic classifications, present new findings on or insights into evolutionary processes and mechanisms that are of interest to the community of plant systematic and evolutionary biologists. While the focus of the journal is on biodiversity, ecology and evolution of East Asian flora, it is not limited to these topics. Applied evolutionary issues, such as climate change and conservation biology, are welcome, especially if they address conceptual problems. Theoretical papers are equally welcome. Preference is given to concise, clearly written papers focusing on precisely framed questions or hypotheses. Papers that are purely descriptive have a low chance of acceptance. Fields covered by the journal include: plant systematics and taxonomy- evolutionary developmental biology- reproductive biology- phylo- and biogeography- evolutionary ecology- population biology- conservation biology- palaeobotany- molecular evolution- comparative and evolutionary genomics- physiology- biochemistry
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