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Roots Withstanding their Environment: Exploiting Root System Architecture Responses to Abiotic Stress to Improve Crop Tolerance

机译:承受环境的根系:利用根系体系结构对非生物胁迫的响应来提高作物的耐性

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摘要

To face future challenges in crop production dictated by global climate changes, breeders and plant researchers collaborate to develop productive crops that are able to withstand a wide range of biotic and abiotic stresses. However, crop selection is often focused on shoot performance alone, as observation of root properties is more complex and asks for artificial and extensive phenotyping platforms. In addition, most root research focuses on development, while a direct link to the functionality of plasticity in root development for tolerance is often lacking. In this paper we review the currently known root system architecture (RSA) responses in Arabidopsis and a number of crop species to a range of abiotic stresses, including nutrient limitation, drought, salinity, flooding, and extreme temperatures. For each of these stresses, the key molecular and cellular mechanisms underlying the RSA response are highlighted. To explore the relevance for crop selection, we especially review and discuss studies linking root architectural responses to stress tolerance. This will provide a first step toward understanding the relevance of adaptive root development for a plant’s response to its environment. We suggest that functional evidence on the role of root plasticity will support breeders in their efforts to include root properties in their current selection pipeline for abiotic stress tolerance, aimed to improve the robustness of crops.
机译:为了应对全球气候变化给作物生产带来的未来挑战,育种者和植物研究人员合作开发了能够抵抗各种生物和非生物胁迫的生产性作物。然而,农作物的选择通常只专注于芽的表现,因为对根特性的观察更为复杂,并需要人工和广泛的表型平台。此外,大多数根系研究都集中在发育上,而在根系发育中通常缺乏与可塑性的功能的直接联系以实现耐受性。在本文中,我们回顾了拟南芥和许多农作物物种对一系列非生物胁迫(包括养分限制,干旱,盐度,洪水和极端温度)的当前已知的根系体系结构(RSA)响应。对于这些压力中的每一个,都强调了RSA响应的关键分子和细胞机制。为了探索与农作物选择的相关性,我们特别审查和讨论了将根部结构响应与胁迫耐受性联系起来的研究。这将为了解适应性根系发育与植物对环境的反应的相关性迈出第一步。我们建议有关根系可塑性作用的功能性证据将支持育种者努力将根系特性纳入其当前的非生物胁迫耐受性选择管道中,旨在提高农作物的健壮性。

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