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通过对整个根系的根和根毛进行综合表型分析,突显了小麦幼苗对钾缺乏反应的可塑性。

Plasticity of wheat seedling responses to K deficiency highlighted by integrated phenotyping of roots and root hairs over the whole root system.

作者信息

Madani Ikram, Peltier Jean-Benoît, Boeglin Martin, Sentenac Hervé, Véry Anne-Aliénor

机构信息

Institut des Sciences des Plantes de Montpellier, UMR 5004 CNRS- 386 INRAE- Université Montpellier- Institut Agro, Campus SupAgro-INRAE Bat 7, Place Viala, Montpellier, 34060 Cedex 2, France.

出版信息

Stress Biol. 2023 Apr 6;3(1):5. doi: 10.1007/s44154-023-00083-4.

Abstract

The availability in the soil of potassium (K), a poorly mobile macronutrient required in large quantities for plant growth, is generally suboptimal for crop production in the absence of fertilization, making improvement of the ability of crops to adapt to K deficiency stress a major issue. Increasing the uptake capacity of the root system is among the main strategies to achieve this goal. Here, we report an integrative approach to examine the effect of K deficiency on the development of young plant entire root system, including root hairs which are known to provide a significant contribution to the uptake of poorly mobile nutrients such as K, in two genetically distant wheat varieties. A rhizobox-type methodology was developed to obtain highly-resolved images of root and root hairs, allowing to describe global root and root hair traits over the whole root system via image analysis procedures. The two wheat varieties responded differently to the K shortage: Escandia, a wheat ancestor, reduced shoot biomass in condition of K shortage and substantially increased the surface area of its root system, specifically by increasing the total root hair area. Oued Zenati, a landrace, conversely appeared unresponsive to the K shortage but was shown to constitutively express, independently of the external K availability, favorable traits to cope with reduced K availability, among which a high total root hair area. Thus, valuable information on root system adaptation to K deficiency was provided by global analyses including root hairs, which should also be relevant for other nutrient stresses.

摘要

钾(K)是植物生长大量需求的一种移动性较差的大量营养素,在土壤中的有效性通常较低,在不施肥的情况下,这对作物生产来说普遍不理想,因此提高作物适应低钾胁迫的能力成为一个主要问题。增加根系的吸收能力是实现这一目标的主要策略之一。在此,我们报告一种综合方法,用于研究低钾对两个遗传距离较远的小麦品种幼苗整个根系发育的影响,其中包括根毛,已知根毛对吸收移动性较差的养分(如钾)有重要作用。我们开发了一种根箱类型的方法来获取根系和根毛的高分辨率图像,通过图像分析程序能够描述整个根系的整体根系和根毛特征。这两个小麦品种对钾短缺的反应不同:小麦祖先品种埃斯坎迪亚在低钾条件下地上部生物量减少,但其根系表面积大幅增加,特别是通过增加根毛总面积实现的。相反,地方品种瓦迪泽纳蒂对钾短缺似乎没有反应,但结果表明,无论外部钾有效性如何,它都能组成型表达有利于应对钾有效性降低的性状,其中包括较高的根毛总面积。因此,包括根毛在内的整体分析提供了关于根系适应低钾的有价值信息,这对于其他养分胁迫也可能具有相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/306d/10441938/efbb8111b544/44154_2023_83_Fig1_HTML.jpg

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