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首页> 外文期刊>The Plant Cell >Two Rumex species from contrasting hydrological niches regulate flooding tolerance through distinct mechanisms.
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Two Rumex species from contrasting hydrological niches regulate flooding tolerance through distinct mechanisms.

机译:来自不同水文生态位的两种Rumex物种通过不同的机制调节洪水耐受性。

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Global climate change has increased flooding events, which affect both natural vegetation dynamics and crop productivity. The flooded environment is lethal for most plant species because it restricts gas exchange and induces an energy and carbon crisis. Flooding survival strategies have been studied in Oryza sativa, a cultivated monocot. However, our understanding of plant adaptation to natural flood-prone environments remains scant, even though wild plants represent a valuable resource of tolerance mechanisms that could be used to generate stress-tolerant crops. Here we identify mechanisms that mediate the distinct flooding survival strategies of two related wild dicot species: Rumex palustris and Rumex acetosa. Whole transcriptome sequencing and metabolite profiling reveal flooding-induced metabolic reprogramming specific to R. acetosa. By contrast, R. palustris uses the early flooding signal ethylene to increase survival by regulating shade avoidance and photomorphogenesis genes to outgrow submergence and by priming submerged plants for future low oxygen stress. These results provide molecular resolution of flooding survival strategies of two species occupying distinct hydrological niches. Learning how these contrasting flood adaptive strategies evolved in nature will be instrumental for the development of stress-tolerant crop varieties that deliver enhanced yields in a changing climate.
机译:全球气候变化加剧了洪灾事件,影响了自然植被动态和作物生产力。洪水泛滥的环境对大多数植物物种来说是致命的,因为它限制了气体交换并引发了能源和碳危机。在栽培的单子叶植物稻中研究了洪水生存策略。然而,尽管野生植物代表了可用于产生耐逆性作物的耐性机制的宝贵资源,但我们对植物适应自然易生洪水环境的了解仍然很少。在这里,我们确定了介导两种相关的野生双子叶植物物种朗姆斯palustris和朗姆斯acetosa的不同洪水生存策略的机制。全转录组测序和代谢产物分析揭示了水淹诱导的对乙酰丙酮酸菌特异的代谢重编程。相反,R。palustris使用早期的淹没信号乙烯通过调节避光和光形态发生基因来避免淹没并通过对淹没的植物进行灌浆以降低未来的低氧胁迫来提高存活率。这些结果提供了占据不同水文生态位的两个物种的洪水生存策略的分子分辨率。了解这些相反的洪水适应策略在自然界如何演变,将有助于开发耐胁迫的作物品种,这些品种在气候变化的情况下可提高产量。

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