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降水可预测性影响代内和代际可塑性,并对……的根系性状产生差异选择。

Precipitation predictability affects intra- and trans-generational plasticity and causes differential selection on root traits of .

作者信息

March-Salas Martí, Scheepens J F, van Kleunen Mark, Fitze Patrick S

机构信息

Plant Evolutionary Ecology, Faculty of Biological Sciences, Goethe University Frankfurt, Frankfurt am Main, Germany.

Department of Biodiversity and Evolutionary Biology, Museo Nacional de Ciencias Naturales (MNCN-CSIC), Madrid, Spain.

出版信息

Front Plant Sci. 2022 Nov 14;13:998169. doi: 10.3389/fpls.2022.998169. eCollection 2022.

Abstract

Climate forecasts show that in many regions the temporal distribution of precipitation events will become less predictable. Root traits may play key roles in dealing with changes in precipitation predictability, but their functional plastic responses, including transgenerational processes, are scarcely known. We investigated root trait plasticity of with respect to higher lower intra-seasonal and inter-seasonal precipitation predictability (, the degree of temporal autocorrelation among precipitation events) during a four-year outdoor multi-generation experiment. We first tested how the simulated predictability regimes affected intra-generational plasticity of root traits and allocation strategies of the ancestors, and investigated the selective forces acting on them. Second, we exposed three descendant generations to the same predictability regime experienced by their mothers or to a different one. We then investigated whether high inter-generational predictability causes root trait differentiation, whether transgenerational root plasticity existed and whether it was affected by the different predictability treatments. We found that the number of secondary roots, root biomass and root allocation strategies of ancestors were affected by changes in precipitation predictability, in line with intra-generational plasticity. Lower predictability induced a root response, possibly reflecting a fast-acquisitive strategy that increases water absorbance from shallow soil layers. Ancestors' root traits were generally under selection, and the predictability treatments did neither affect the strength nor the direction of selection. Transgenerational effects were detected in root biomass and root weight ratio (RWR). In presence of lower predictability, descendants significantly reduced RWR compared to ancestors, leading to an increase in performance. This points to a change in root allocation in order to maintain or increase the descendants' fitness. Moreover, transgenerational plasticity existed in maximum rooting depth and root biomass, and the less predictable treatment promoted the lowest coefficient of variation among descendants' treatments in five out of six root traits. This shows that the level of maternal predictability determines the variation in the descendants' responses, and suggests that lower phenotypic plasticity evolves in less predictable environments. Overall, our findings show that roots are functional plastic traits that rapidly respond to differences in precipitation predictability, and that the plasticity and adaptation of root traits may crucially determine how climate change will affect plants.

摘要

气候预测表明,在许多地区,降水事件的时间分布将变得更难预测。根系性状可能在应对降水可预测性变化方面发挥关键作用,但其功能可塑性反应,包括跨代过程,却鲜为人知。在一项为期四年的户外多代实验中,我们研究了在季节内和季节间降水可预测性较高或较低(即降水事件之间的时间自相关程度)情况下的根系性状可塑性。我们首先测试了模拟的可预测性模式如何影响祖先根系性状的代内可塑性和分配策略,并研究了作用于它们的选择力。其次,我们让三个后代世代经历与其母亲相同或不同的可预测性模式。然后,我们研究了高代际可预测性是否会导致根系性状分化、跨代根系可塑性是否存在以及它是否受到不同可预测性处理的影响。我们发现,祖先的次生根数量、根生物量和根分配策略受到降水可预测性变化的影响,这与代内可塑性一致。较低的可预测性引发了根系反应,这可能反映了一种快速获取型策略,即增加从浅层土壤层吸收水分的能力。祖先的根系性状通常处于选择之下,可预测性处理既不影响选择强度也不影响选择方向。在根生物量和根重比(RWR)中检测到了跨代效应。在可预测性较低的情况下,后代与祖先相比显著降低了根重比,从而提高了性能。这表明根系分配发生了变化,以维持或提高后代的适应性。此外,在最大生根深度和根生物量方面存在跨代可塑性,并且在六个根系性状中的五个性状上,可预测性较低的处理促进了后代处理间最低的变异系数。这表明母体可预测性水平决定了后代反应的差异,并表明在可预测性较低的环境中会进化出较低的表型可塑性。总体而言,我们的研究结果表明,根系是具有功能可塑性的性状,能够快速响应降水可预测性的差异,并且根系性状的可塑性和适应性可能至关重要地决定气候变化将如何影响植物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66ee/9703072/1345b5e13ddf/fpls-13-998169-g001.jpg

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