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Drought and Heat Differentially Affect XTH Expression and XET Activity and Action in 3-Day-Old Seedlings of Durum Wheat Cultivars with Different Stress Susceptibility

机译:干旱和热差异胁迫对不同胁迫敏感性硬粒小麦品种3日龄幼苗XTH表达和XET活性及作用的影响

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摘要

Heat and drought stress have emerged as major constraints for durum wheat production. In the Mediterranean area, their negative effect on crop productivity is expected to be exacerbated by the occurring climate change. Xyloglucan endotransglucosylase/hydrolases (XTHs) are chief enzymes in cell wall remodeling, whose relevance in cell expansion and morphogenesis suggests a central role in stress responses. In this work the potential role of XTHs in abiotic stress tolerance was investigated in durum wheat. The separate effects of dehydration and heat exposure on XTH expression and its endotransglucosylase (XET) in vitro activity and in vivo action have been monitored, up to 24 h, in the apical and sub-apical root regions and shoots excised from 3-day-old seedlings of durum wheat cultivars differing in stress susceptibility/tolerance. Dehydration and heat stress differentially influence the XTH expression profiles and the activity and action of XET in the wheat seedlings, depending on the degree of susceptibility/tolerance of the cultivars, the organ, the topological region of the root and, within the root, on the gradient of cell differentiation. The root apical region was the zone mainly affected by both treatments in all assayed cultivars, while no change in XET activity was observed at shoot level, irrespective of susceptibility/tolerance, confirming the pivotal role of the root in stress perception, signaling, and response. Conflicting effects were observed depending on stress type: dehydration evoked an overall increase, at least in the apical region of the root, of XET activity and action, while a significant inhibition was caused by heat treatment in most cultivars. The data suggest that differential changes in XET action in defined portions of the root of young durum wheat seedlings may have a role as a response to drought and heat stress, thus contributing to seedling survival and crop establishment. A thorough understanding of the mechanisms underlying these variations could represent the theoretical basis for implementing breeding strategies to develop new highly productive hybrids adapted to future climate scenarios.
机译:高温和干旱胁迫已成为硬质小麦生产的主要限制因素。在地中海地区,预期的气候变化将加剧其对农作物生产力的负面影响。木葡聚糖内转葡糖基酶/水解酶(XTH)是细胞壁重塑的主要酶,其在细胞扩增和形态发生中的相关性在应激反应中起着核心作用。在这项工作中,在硬粒小麦中研究了XTH在非生物胁迫耐受性中的潜在作用。脱水和热暴露对XTH表达及其内转葡糖基化酶(XET)体外活性和体内作用的单独影响已在长达24 h的根尖和根尖区域以及从3天后切下的嫩芽中进行了监测硬质小麦品种的老苗在胁迫敏感性/耐受性方面不同。脱水和热胁迫对小麦幼苗中XTH表达谱以及XET活性和作用的影响不同,具体取决于栽培品种,根部器官,根部的拓扑区域以及根部内部的敏感性/耐受性程度。细胞分化的梯度。在所有测定的品种中,根尖区域是两种处理均主要影响的区域,而在芽水平上未观察到XET活性的变化,而与药敏性/耐受性无关,这证实了根在胁迫感知,信号传递和反应中的关键作用。 。根据胁迫类型观察到相互矛盾的作用:脱水引起XET活性和作用至少在根的顶端区域总体增加,而热处理对大多数品种产生了显着的抑制作用。数据表明,硬粒小麦幼苗幼苗根部特定部位XET作用的差异性变化可能是对干旱和高温胁迫的响应,从而有助于幼苗存活和作物生长。对这些变化的潜在机制的透彻理解可能代表了实施育种策略以开发适应未来气候情景的新型高产杂种的理论基础。

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