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种间竞争如何改变草类植物对除草剂处理的反应?一种层次化的浓度-反应方法。

How does interspecific competition modify the response of grass plants against herbicide treatment? A hierarchical concentration-response approach.

机构信息

Université de Lorraine, CNRS, LIEC, F-57000 Metz, France.

Université de Lyon, Université Lyon 1, CNRS, VetAgro Sup, UMR 5558, Laboratoire de Biométrie et Biologie Evolutive, 69622 Villeurbanne, France.

出版信息

Sci Total Environ. 2021 Jul 15;778:146108. doi: 10.1016/j.scitotenv.2021.146108. Epub 2021 Mar 5.

Abstract

Ecological interactions are rarely taken into account in environmental risk assessment. The objective of this work was to assess how interspecific competition affects the way plant species react to herbicides and more specifically how it modifies the concentration-response curves that can be built using ecotoxicological bioassays. To do this, we relied on the results of ecotoxicological bioassays on six herbaceous species exposed to isoproturon under two conditions: in presence and in absence of a competitor. At the end of the experiments, eleven endpoints were measured. We modelled these data using a hierarchical modelling framework designed to assess the effects of competition on each of the four parameters of the concentration response curves (e.g. the level of response at the control or the concentration at the inflection point of the curve) simultaneously for the six species. The modelled effects could be of three types, 1) competition had no effect on the parameter, 2) competition had the same effect on the parameter for all species and 3) competition had a different effect on the parameter for each species. Our main hypothesis was that different species would react differently to competition. Results showed that about a half of the estimated parameters showed a modification under competition pressure among which only a fourth showed a species-specific effect, the three other fourth showing the same effect between the different species. Our initial hypothesis was thus not supported as species tended to react in the same way to competition. The competition effect on plants was mainly negative, thus showing that they were more affected by isoproturon under competition pressure. This study therefore establishes how competition modifies plant responses to chemical stress and how this interaction varies from one species to the other.

摘要

生态相互作用在环境风险评估中很少被考虑。本工作的目的是评估种间竞争如何影响植物物种对除草剂的反应,更具体地说,评估它如何改变可以使用生态毒理学生物测定法建立的浓度-反应曲线。为此,我们依赖于六种草本物种在两种条件下暴露于异丙隆的生态毒理学生物测定的结果:存在和不存在竞争者的情况下。在实验结束时,测量了十一个终点。我们使用层次建模框架对这些数据进行建模,该框架旨在同时评估竞争对浓度反应曲线的四个参数(例如对照水平的响应或曲线拐点处的浓度)的影响对于六种物种中的每一种。模型化的影响可以有三种类型,1)竞争对参数没有影响,2)竞争对所有物种的参数有相同的影响,3)竞争对每个物种的参数有不同的影响。我们的主要假设是不同的物种会对竞争做出不同的反应。结果表明,约有一半的估计参数在竞争压力下发生了变化,其中只有四分之一显示出物种特异性效应,另外四分之三在不同物种之间显示出相同的效应。因此,我们最初的假设没有得到支持,因为物种倾向于对竞争做出相同的反应。竞争对植物的影响主要是负面的,这表明它们在竞争压力下更容易受到异丙隆的影响。因此,本研究确定了竞争如何改变植物对化学胁迫的反应,以及这种相互作用如何因物种而异。

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