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克隆整合可以促进水花生在镉污染环境中的生长和扩散。

Clonal integration can promote the growth and spread of Alternanthera philoxeroides in cadmium-contaminated environments.

机构信息

Institute of the Environment and Ecology, College of the Environment and Safety Engineering, Jiangsu University, Zhenjiang, 212013, PR China.

Institute of the Environment and Ecology, College of the Environment and Safety Engineering, Jiangsu University, Zhenjiang, 212013, PR China; Jiangsu Collaborative Innovation Center of Technology and Material of Water Treatment, Suzhou University of Science and Technology, Suzhou, 215009, PR China.

出版信息

Plant Physiol Biochem. 2023 Sep;202:107966. doi: 10.1016/j.plaphy.2023.107966. Epub 2023 Aug 12.

Abstract

Clonal plants are able to support the growth of their ramets in stressful environments via clonal integration between the ramets. However, it remains unclear whether the developmental status of stressed ramets affects the role of clonal integration. Here, we explored the effects of clonal integration at both the ramet level and the whole clonal fragment level when the apical ramets (younger) and basal ramets (older) were subjected to different concentrations of cadmium contamination. We grew pairs of ramets of Alternanthera philoxeroides, which were connected or disconnected by stolon between them. The apical and basal ramets were either uncontaminated or individually subjected to Cd contamination at concentrations of 5 mg kg and 50 mg kg, respectively. Our results showed that clonal integration significantly promoted the growth of apical ramets subjected to Cd contamination. More importantly, under high Cd treatment, clonal integration also had a significant positive effect on the fitness of the whole clonal fragments. However, clonal integration did not affect plant growth when basal ramets were subjected to Cd contamination. Our study reveals the influence of the developmental status of stressed ramets on the role of clonal integration in heterogeneous heavy metal stress environments, suggesting that clonal integration may facilitate the spread of A. philoxeroides in Cd-contaminated habitats.

摘要

克隆植物能够通过克隆整合来支持其营养体在胁迫环境下的生长。然而,目前尚不清楚受胁迫的营养体的发育状态是否会影响克隆整合的作用。在这里,我们研究了当顶芽(较年轻)和基芽(较老)处于不同浓度镉污染时,在营养体水平和整个克隆片段水平上克隆整合的作用。我们生长了Alternanthera philoxeroides 的成对营养体,它们通过匍匐茎连接在一起。顶芽和基芽要么未受污染,要么分别受到 5mg/kg 和 50mg/kg Cd 污染。结果表明,克隆整合显著促进了受 Cd 污染的顶芽的生长。更重要的是,在高 Cd 处理下,克隆整合对整个克隆片段的适应性也有显著的正向影响。然而,当基芽受到 Cd 污染时,克隆整合对植物生长没有影响。本研究揭示了受胁迫营养体的发育状态对克隆整合在异质重金属胁迫环境中作用的影响,表明克隆整合可能有助于 A. philoxeroides 在 Cd 污染生境中的传播。

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