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Molecular Profiles of Contrasting Shade Response Strategies in Wild Plants: Differential Control of Immunity and Shoot Elongation

机译:野生植物不同树荫响应策略的分子概况:免疫力和枝条伸长的差异控制。

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摘要

Plants growing at high densities elongate their shoots to reach for light, a response known as the shade avoidance syndrome (). Phytochrome-mediated detection of far-red light reflection from neighboring plants activates growth-promoting molecular pathways leading to . However, it is unknown how plants that complete their life cycle in the forest understory and are shade tolerant prevent when exposed to shade. Here, we show how two wild Geranium species from different native light environments regulate contrasting responses to light quality cues. A comparative RNA sequencing approach unveiled the molecular underpinnings of their contrasting growth responses to far-red light enrichment. It also identified differential phytochrome control of plant immunity genes and confirmed that far-red enrichment indeed contrastingly affects resistance against Botrytis cinerea between the two species. Furthermore, we identify a number of candidate regulators of differential shade avoidance. Three of these, the receptor-like kinases FERONIA and THESEUS1 and the non-DNA binding protein KIDARI, are functionally validated in Arabidopsis thaliana through gene knockout and/or overexpression studies. We propose that these components may be associated with either showing or not showing shade avoidance responses.
机译:以高密度生长的植物将其枝伸长以达到光照,这种反应称为避光综合症()。植物色素介导的对邻近植物反射的远红光的检测会激活促进生长的分子途径,从而导致。然而,尚不清楚在暴露于阴凉处的植物如何在森林地下林中完成其生命周期并具有耐荫性。在这里,我们展示了来自不同自然光照环境的两种野生天竺葵物种如何调节对光照质量线索的对比响应。一种比较性的RNA测序方法揭示了其对远红光富集的对比生长反应的分子基础。它还鉴定了植物免疫基因对植物色素的差异控制,并证实远红富集确实相反地影响了两种物种对灰葡萄孢的抗性。此外,我们确定了避免阴影差异的许多候选调节器。通过基因敲除和/或过表达研究,在拟南芥中对其中三个受体样激酶FERONIA和THESEUS1以及非DNA结合蛋白KIDARI进行了功能验证。我们建议这些组件可能与显示或不显示阴影避免响应相关联。

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