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受重金属污染和干旱胁迫的影响,乡土植物物种和入侵外来物种在功能上往往会出现差异。

Indigenous plant species and invasive alien species tend to diverge functionally under heavy metal pollution and drought stress.

机构信息

Institute of Environment and Ecology & School of the Environment and Safety Engineering, Jiangsu University, Zhenjiang, 212013, China.

Institute of Environment and Ecology & School of the Environment and Safety Engineering, Jiangsu University, Zhenjiang, 212013, China; State Key Laboratory of Pollution Control and Resource Reuse, Tongji University, Shanghai, 200092, China.

出版信息

Ecotoxicol Environ Saf. 2020 Dec 1;205:111160. doi: 10.1016/j.ecoenv.2020.111160. Epub 2020 Aug 24.

Abstract

The functional similarity between indigenous plant species (IPS) and invasive alien species (IAS) governs the invasion process of successful IAS because IPS and coexisting IAS suffer alike or even same ecological selection pressures. The aggravated condition created by heavy metal pollution (HMP) and drought stress may generate a noticeable impact on the invasive competitiveness and invasion process of IAS possibly via the variations in the functional similarity between IPS and IAS. Consequently, it is necessary to illumine the functional similarity between IPS and IAS under HMP and drought stress to clarify the mechanisms underlying the successful invasion of IAS. This study aims to estimate the functional similarity between IPS Amaranthus tricolor L. and IAS A. retroflexus L. under the condition with the alone and combined effects of HMP with different kinds (e.g., Cu and Pb) and drought stress [simulated by polyethylene glycol-6000 (PEG) solution]. HMP notably declines A. tricolor growth but has no remarkable effect on A. retroflexus growth. A. retroflexus displays a strong competitive intensity than A. tricolor under HMP. Further, HMP makes a greater stress intensity on A. tricolor growth than A. retroflexus growth. Therefore, HMP can accelerate A. retroflexus invasion. A. retroflexus displays a poor competitive intensity under drought stress. Thus, drought stress can hinder A. retroflexus invasion. However, drought stress causes a greater stress intensity on A. tricolor growth than A. retroflexus growth. Thus, the continued drought stress may converse the adverse effects of drought stress on A. retroflexus invasion potentially. The two Amaranthus species tend to diverge functionally under the combined HMP and drought stress. Further, A. retroflexus shows a strong competitive intensity than A. tricolor under the combined HMP and drought stress. Moreover, the combined HMP and drought stress induces a greater stress intensity on A. tricolor growth than A. retroflexus growth. Thus, the combined HMP and drought stress can facilitate A. retroflexus invasion. Meanwhile, the competitiveness for sunlight acquisition and leaf photosynthetic capacity may play a key role in the successful invasion of A. retroflexus under the combined HMP and drought stress.

摘要

乡土植物物种(IPS)和入侵外来物种(IAS)之间的功能相似性控制着成功的 IAS 的入侵过程,因为 IPS 和共存的 IAS 受到相似甚至相同的生态选择压力。重金属污染(HMP)和干旱胁迫加剧的情况可能会通过 IPS 和 IAS 之间功能相似性的变化,对 IAS 的入侵竞争力和入侵过程产生显著影响。因此,有必要在 HMP 和干旱胁迫下阐明 IPS 和 IAS 之间的功能相似性,以阐明 IAS 成功入侵的机制。本研究旨在估计 HMP 与不同种类(如 Cu 和 Pb)和干旱胁迫[用聚乙二醇-6000(PEG)溶液模拟]单独和联合作用下乡土植物 Amaranthus tricolor L. 和入侵植物 A. retroflexus L. 之间的功能相似性。HMP 显著降低了 A. tricolor 的生长,但对 A. retroflexus 的生长没有显著影响。在 HMP 下,A. retroflexus 比 A. tricolor 表现出更强的竞争强度。此外,HMP 对 A. tricolor 生长的胁迫强度大于 A. retroflexus 生长的胁迫强度。因此,HMP 可以加速 A. retroflexus 的入侵。A. retroflexus 在干旱胁迫下表现出较差的竞争强度。因此,干旱胁迫可以阻碍 A. retroflexus 的入侵。然而,干旱胁迫对 A. tricolor 生长的胁迫强度大于 A. retroflexus 生长的胁迫强度。因此,持续的干旱胁迫可能会改变干旱胁迫对 A. retroflexus 入侵的不利影响。在 HMP 和干旱胁迫的共同作用下,两种苋属植物的功能趋于分化。此外,在 HMP 和干旱胁迫的共同作用下,A. retroflexus 比 A. tricolor 表现出更强的竞争强度。此外,HMP 和干旱胁迫对 A. tricolor 生长的胁迫强度大于 A. retroflexus 生长的胁迫强度。因此,HMP 和干旱胁迫可以促进 A. retroflexus 的入侵。同时,对阳光获取和叶片光合作用能力的竞争可能在 HMP 和干旱胁迫下 A. retroflexus 成功入侵中发挥关键作用。

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