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由于在异质生境中对资源的竞争更为激烈,下层植物竞争者会将更多生物量分配到地下部分。

Inferior plant competitor allocates more biomass to belowground as a result of greater competition for resources in heterogeneous habitats.

作者信息

Zhou Jian, Ma Ziwen, Jia Yuehui, Liu Jie, Yang Yuping, Li Wei, Cui Lijuan

机构信息

College of Bioscience and Resource Environment, Beijing University of Agriculture, Beijing, China.

Key laboratory of Urban Agriculture (North China), Beijing University of Agriculture, Beijing, China.

出版信息

Front Plant Sci. 2023 Sep 19;14:1184618. doi: 10.3389/fpls.2023.1184618. eCollection 2023.

Abstract

Nutrient heterogeneity in soil widely exists in nature and can have significant impacts on plant growth, biomass allocation, and competitive interactions. However, limited research has been done to investigate the interspecific competitive intensity between two clonal species in a heterogeneous habitat. Therefore, this greenhouse experiment was conducted with two clonal species, and , exposed to heterogeneous and homogeneous patches of soil nutrients at five different planting ratios (0:4, 1:3, 2:2, 3:1 and 4:0), to assess the effects of both soil heterogeneity and interspecific competition on plant growth. It was found that soil nutrient heterogeneity significantly enhanced ' interspecific competitive capacity and biomass by promoting a 20% increase in belowground allocation. Interestingly, the planting ratio did not affect the magnitude of this net outcome. In contrast, the superior competitor did not exhibit significant change of growth indicators to the heterogeneous soil patches. These findings imply that the uncertainties associated with human-induced redistribution of plant species may lead to a shift in dominance from other species to those like , which have strong nutrient foraging abilities in response to heterogeneity in emergent wetland plant communities.

摘要

土壤中的养分异质性在自然界广泛存在,并且会对植物生长、生物量分配以及竞争相互作用产生重大影响。然而,针对异质生境中两个克隆物种间种间竞争强度的研究却很有限。因此,本温室实验选用了两个克隆物种,[物种名称1]和[物种名称2],以五种不同种植比例(0:4、1:3、2:2、3:1和4:0)暴露于土壤养分的异质和同质斑块中,以评估土壤异质性和种间竞争对植物生长的影响。研究发现,土壤养分异质性通过促进地下分配增加20%,显著增强了[物种名称1]的种间竞争能力和生物量。有趣的是,种植比例并未影响这一净结果的幅度。相比之下,优势竞争者[物种名称2]对异质土壤斑块的生长指标未表现出显著变化。这些发现表明,与人为导致的植物物种重新分布相关的不确定性,可能会导致优势地位从其他物种转移到像[物种名称1]这样的物种,它们在新兴湿地植物群落中对异质性具有很强的养分觅食能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8be3/10546300/2ab409243a1c/fpls-14-1184618-g001.jpg

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