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种内性状变异与适应性:来自两种土壤水分处理的共同园试验的见解

Intraspecific trait variation and adaptability of : Insight from a common garden experiment with two soil moisture treatments.

作者信息

Liu Yulin, Fan Baijie, Gong Ziqing, He Luoyang, Chen Lei, Ren Anzhi, Zhao Nianxi, Gao Yubao

机构信息

Department of Plant Biology and Ecology, College of Life Science Nankai University Tianjin China.

出版信息

Ecol Evol. 2023 Aug 31;13(9). doi: 10.1002/ece3.10457. eCollection 2023 Sep.

Abstract

Understanding patterns of intraspecific trait variation can help us understand plant adaptability to environmental changes. To explore the underlying adaptation mechanisms of zonal plant species, we selected seven populations of , a dominant species in the Inner Mongolia Steppe of China, and evaluated the effects of phenotypic plasticity and genetic differentiation, the effects of climate variables on population trait differentiation, and traits coordinated patterns under each soil moisture treatment. We selected seeds from seven populations of in the Inner Mongolia Steppe, China, and carried out a soil moisture (2) × population origin (7) common garden experiment at Tianjin City, China, and measured ten plant traits of . General linear analyses were used to analyze how soil moisture and population origin affected each trait variation, Mantel tests were used to analyze population trait differentiation-geographic distance (or climatic difference) relationships, regression analyses were used to evaluate trait-climatic variable relationships, and plant trait networks (PTNs) were used to evaluate traits coordinated patterns. Both soil moisture and population origin showed significant effects on most of traits. Aboveground biomass, root-shoot ratio, leaf width, specific leaf area, and leaf nitrogen (N) content were significantly correlated with climate variables under the control condition. Specific leaf area and leaf N content were significantly correlated with climate variables under the drought condition. By PTNs, the hub trait(s) was plant height under the control condition and were aboveground biomass, root length, and specific leaf area under the drought condition. This study indicates that both phenotypic plasticity and genetic differentiation can significantly affect the adaptability of . In addition, soil moisture treatments show significant effects on trait-climate relationships and traits coordinated patterns. These findings provide new insights into the adaptive mechanisms of zonal species in the semiarid grassland region.

摘要

了解种内性状变异模式有助于我们理解植物对环境变化的适应性。为了探究地带性植物物种潜在的适应机制,我们选择了中国内蒙古草原的优势物种[物种名称缺失]的七个种群,并评估了表型可塑性和遗传分化的影响、气候变量对种群性状分化的影响,以及在每种土壤水分处理下性状的协同模式。我们从中国内蒙古草原的[物种名称缺失]的七个种群中选取种子,在中国天津市进行了土壤水分(2种)×种群来源(7个)的共同园试验,并测量了[物种名称缺失]的十个植物性状。采用一般线性分析来分析土壤水分和种群来源如何影响每个性状变异,使用Mantel检验来分析种群性状分化与地理距离(或气候差异)的关系,使用回归分析来评估性状与气候变量的关系,并使用植物性状网络(PTN)来评估性状的协同模式。土壤水分和种群来源对大多数性状均有显著影响。在对照条件下,地上生物量、根冠比、叶宽、比叶面积和叶片氮(N)含量与气候变量显著相关。在干旱条件下,比叶面积和叶片氮含量与气候变量显著相关。通过PTN分析,对照条件下的中心性状是株高,干旱条件下的中心性状是地上生物量、根长和比叶面积。本研究表明,表型可塑性和遗传分化均可显著影响[物种名称缺失]的适应性。此外,土壤水分处理对性状与气候的关系以及性状协同模式有显著影响。这些发现为半干旱草原地区地带性物种的适应机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fca4/10468992/523c119bbc76/ECE3-13--g003.jpg

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