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Allocation Plasticity And Plant-metal Partitioning: Meta-analytical Perspectives In Phytoremediation

机译:分配可塑性与植物金属分配:植物修复的Meta分析视角

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In this meta-analysis of plant growth and metal uptake parameters, we selected 19 studies of heavy metal (HM) phytoremediation to evaluate trends of allocation plasticity and plant-metal partitioning in roots relative to shoots. We calculated indexes of biomass allocation and metal distribution for numerous metals and plant species among four families of interest for phytoremediation purposes (e.g. Brassicaceae, Fabaceae, Poaceae, and Solanaceae). We determined that plants shift their biomass and distribute metals more to roots than shoots possibly to circumvent the challenges of increasing soil-HM conditions. Although this shift is viewed as a stress-avoidance strategy complementing intrinsic stress-tolerance, our findings indicate that plants express different levels of allocation plasticity and metal partitioning depending on their overall growth strategy and status as 'fast-grower' or 'slow-grower' species. Accordingly, we propose a conceptual model of allocation plasticity and plant-metal partitioning comparing 'fast-grower' and 'slow-grower' strategies and outlining applications for remediation practices.
机译:在这项植物生长和金属吸收参数的荟萃分析中,我们选择了19种重金属(HM)植物修复研究,以评估相对于枝条的根部分配可塑性和植物金属分配的趋势。我们计算了四个目的植物(例如十字花科,豆科,禾本科和茄科)中重要金属家族中众多金属和植物物种的生物量分配和金属分布指数。我们确定,植物可能会转移其生物量并将金属分配到根部而不是枝条,从而避免了土壤-HM条件不断增加的挑战。尽管这种转变被视为补充内在胁迫耐受性的避免胁迫策略,但我们的发现表明,植物根据其总体生长策略和“快速生长”或“缓慢生长”状态表现出不同水平的分配可塑性和金属分配种。因此,我们提出了分配可塑性和植物金属分配的概念模型,比较了“快速种植”和“缓慢种植”策略,并概述了补救措施的应用。

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