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Physiological biochemical and morphoagronomic characterization of drought-tolerant and drought-sensitive bean genotypes under water stress

机译:水分胁迫下耐旱和干旱敏感的大豆基因型的生理生化和形态农学特征

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摘要

Water deficit is one of the main factors that reduce grain yield. A better understanding of the mechanisms related to this abiotic stress is a key aspect to design and act upon drought tolerance improvement in crop plants. Therefore, the major objective of this study was to investigate four common bean genotypes for drought tolerance and to establish their tolerance mechanisms. The experiment was carried out in a greenhouse, using the completely randomized design in a factorial arrangement (2 × 4), composed by 2 water conditions (well-watered and water deficit) and 4 cultivars, with six replicates per treatment. The four cultivars, two drought-sensitive (IAC Tybatã and BRS Pontal) and two drought-tolerant (IAPAR 81 and BAT 477), were evaluated for some physiological, biochemical and morphoagronomic traits. Drought promoted physiological and metabolic changes in the plants, reflecting on the morphoagronomic traits. Under water deficit, the genotype IAPAR 81 stood out from the others in terms of physiological characters, however, it presented a low efficiency concerning biochemical activities and a significant reduction in the morphoagronomic characters. The cultivar BAT 477 demonstrated to be drought-adapted presenting more efficient biochemical and morphoagronomic adaptions and the genotype BRS Pontal obtained morphoagronomic values similar to BAT 477, thus it may be classified as moderately tolerant to drought.
机译:缺水是降低谷物产量的主要因素之一。更好地了解与这种非生物胁迫相关的机制是设计并采取行动应对农作物抗旱性的关键方面。因此,本研究的主要目的是研究四种常见的大豆基因型耐旱性并建立其耐性机制。该实验是在温室中进行的,采用完全随机设计并按因子分解排列(2××4),由2种水条件(浇水充足和缺水)和4个品种组成,每个处理重复6次。对四个品种(两个对干旱敏感的品种(IACTybatã和BRS Pontal)和两个对干旱具有耐受性的品种(IAPAR 81和BAT 477))进行了一些生理,生化和形态农艺性状评估。干旱促进了植物的生理和代谢变化,反映了形态农艺学特征。在缺水情况下,IAPAR 81基因型在生理特性方面脱颖而出,但是,其生化活性效率低下,形态农艺性状显着降低。 BAT 477品种具有干旱适应性,表现出更有效的生化和形态农艺适应性状,基因型BRS Pontal获得了与BAT 477相似的形态农艺值,因此可以分类为中等耐旱性。

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