The drought-induced plasticity of mineral nutrients contributes to drought tolerance discrimination in durum wheat

IF 6.1 2区 生物学 Q1 PLANT SCIENCES
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Abstract

Drought is a major challenge for the cultivation of durum wheat, a crucial crop for global food security. Plants respond to drought by adjusting their mineral nutrient profiles to cope with water scarcity, showing the importance of nutrient plasticity for plant acclimation and adaptation to diverse environments. Therefore, it is essential to understand the genetic basis of mineral nutrient profile plasticity in durum wheat under drought stress to select drought-tolerant varieties. The research study investigated the responses of different durum wheat genotypes to severe drought stress at the seedling stage. The study employed an ionomic, molecular, biochemical and physiological approach to shed light on distinct behaviors among different genotypes. The drought tolerance of SVEMS16, SVEVO, and BULEL was related to their capacity of maintaining or increasing nutrient's accumulation, while the limited nutrient acquisition capability of CRESO and S.CAP likely resulted in their susceptibility to drought. The study highlighted the importance of macronutrients such as SO42−, NO3, PO43−, and K+ in stress resilience and identified variant-containing genes potentially influencing nutritional variations under drought. These findings provide valuable insights for further field studies to assess the drought tolerance of durum wheat genotypes across various growth stages, ultimately ensuring food security and sustainable production in the face of changing environmental conditions.

干旱诱导的矿物质养分可塑性有助于硬粒小麦的耐旱性鉴别
干旱是硬质小麦种植面临的主要挑战,而硬质小麦是全球粮食安全的重要作物。植物通过调整矿质营养成分来应对干旱,以应对缺水问题,这表明营养成分的可塑性对植物适应和适应不同环境的重要性。因此,了解干旱胁迫下硬质小麦矿质养分谱可塑性的遗传基础对选育耐旱品种至关重要。本研究调查了不同硬粒小麦基因型在幼苗期对严重干旱胁迫的反应。研究采用了离子组学、分子、生物化学和生理学方法来揭示不同基因型的不同行为。SVEMS16、SVEVO和BULEL的耐旱性与其维持或增加养分积累的能力有关,而CRESO和S.CAP有限的养分获取能力可能导致其对干旱的易感性。该研究强调了SO42-、NO3-、PO43-和K+等大量营养素在抗逆性中的重要性,并发现了可能影响干旱下营养变化的变异基因。这些发现为进一步开展实地研究,评估硬质小麦基因型在不同生长阶段的抗旱性提供了宝贵的见解,最终确保在不断变化的环境条件下的粮食安全和可持续生产。
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来源期刊
Plant Physiology and Biochemistry
Plant Physiology and Biochemistry 生物-植物科学
CiteScore
11.10
自引率
3.10%
发文量
410
审稿时长
33 days
期刊介绍: Plant Physiology and Biochemistry publishes original theoretical, experimental and technical contributions in the various fields of plant physiology (biochemistry, physiology, structure, genetics, plant-microbe interactions, etc.) at diverse levels of integration (molecular, subcellular, cellular, organ, whole plant, environmental). Opinions expressed in the journal are the sole responsibility of the authors and publication does not imply the editors'' agreement. Manuscripts describing molecular-genetic and/or gene expression data that are not integrated with biochemical analysis and/or actual measurements of plant physiological processes are not suitable for PPB. Also "Omics" studies (transcriptomics, proteomics, metabolomics, etc.) reporting descriptive analysis without an element of functional validation assays, will not be considered. Similarly, applied agronomic or phytochemical studies that generate no new, fundamental insights in plant physiological and/or biochemical processes are not suitable for publication in PPB. Plant Physiology and Biochemistry publishes several types of articles: Reviews, Papers and Short Papers. Articles for Reviews are either invited by the editor or proposed by the authors for the editor''s prior agreement. Reviews should not exceed 40 typewritten pages and Short Papers no more than approximately 8 typewritten pages. The fundamental character of Plant Physiology and Biochemistry remains that of a journal for original results.
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