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本土植物多样性产生微生物遗留物,这些遗留物根据干旱历史,要么促进要么抑制非本土植物的生长。

Native Plant Diversity Generates Microbial Legacies That Either Promote or Suppress Non-Natives, Depending on Drought History.

机构信息

CAS Key Laboratory of Aquatic Botany and Watershed Ecology, Wuhan Botanical Garden, Chinese Academy of Sciences, Wuhan, China.

Key Laboratory of Lake and Watershed Science for Water Security, Chinese Academy of Sciences, Wuhan, China.

出版信息

Ecol Lett. 2024 Sep;27(9):e14504. doi: 10.1111/ele.14504.

Abstract

Diverse native plant communities resist non-native plants more than species-poor communities, in part through resource competition. The role of soil biota in diversity-invasibility relationships is poorly understood, although non-native plants interact with soil biota during invasions. We tested the responses of non-native plants to soil biota generated by different native plant diversities. We applied well-watered and drought treatments in both conditioning and response phases to explore the effects of 'historical' and 'contemporary' environmental stresses. When generated in well-watered soils, the microbial legacies from higher native diversity inhibited non-native growth in well-watered conditions. In contrast, when generated in drought-treated soils, the microbial legacies from higher native diversity facilitated non-native growth in well-watered conditions. Contemporary drought eliminated microbial legacy effects on non-native growth. We provide a new understanding of mechanisms behind diversity-invasibility relationships and demonstrate that temporal variation in environmental stress shapes relationships among native plant diversity, soil biota and non-native plants.

摘要

多样化的本地植物群落比物种贫乏的群落更能抵抗外来植物,部分原因是通过资源竞争。尽管外来植物在入侵过程中与土壤生物群相互作用,但土壤生物群在多样性可入侵性关系中的作用仍知之甚少。我们测试了不同本地植物多样性产生的土壤生物群对外来植物的响应。我们在调节和响应阶段都进行了充分浇水和干旱处理,以探索“历史”和“当代”环境压力的影响。当在充分浇水的土壤中产生时,来自更高本地多样性的微生物遗留物抑制了外来植物在充分浇水条件下的生长。相比之下,当在干旱处理的土壤中产生时,来自更高本地多样性的微生物遗留物促进了外来植物在充分浇水条件下的生长。当代干旱消除了微生物遗留物对非本地植物生长的影响。我们提供了对多样性可入侵性关系背后机制的新认识,并证明了环境压力的时间变化塑造了本地植物多样性、土壤生物群和非本地植物之间的关系。

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