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Breeding drought tolerant rice for shallow rainfed ecosystem of eastern India

机译:为印度东部的浅雨育生态系统选育耐旱水稻

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摘要

In shallow rainfed rice agro-ecosystems, drought stress can occur at any growth stage and can cause a significant yield reduction. During recent years, some rice varieties possessing tolerance of reproductive-stage drought stress have recently been developed. Tolerance of vegetative-stage drought stress is also required to improve rice productivity in drought-prone regions. In this study, we evaluated a set of rice breeding lines for their response to a range of different types of vegetative-stage drought stress in order to propose standardized phenotyping protocols for conducting vegetative-stage drought stress screening trials and also to identify genotypes combining tolerance of vegetative- and reproductive-stage drought stress. A soil water potential threshold of −20 kPa during the vegetative stage was identified as the target for effective selection under vegetative stage with grain yield reduction of about 50% compared to irrigated control trials. Genotypes identified as showing high yield under reproductive-stage drought stress were not necessarily the genotypes showing best performance under vegetative-stage drought stress. Genotypes IR72667-16-1-B-B-3, IR78908-126-B-2-B, and IR79970-B-47-1 showed tolerance of both vegetative-stage and reproductive-stage drought stress. For most, the genotypes that were best under vegetative stage drought or even vegetative stage + reproductive stage drought were different from the genotypes that were best under reproductive stage drought. Based on the cultivar superiority measure, IR69515-6-KKN-4-UBN-4-2-1-1-1 and IR78908-126-B-1-B were the stable genotypes (indicated by low Pi) under both irrigated control and severe vegetative stress conditions, genotypes IR83614-203-B and IR78908-80-B-3-B were stable under irrigated control conditions and moderate stress, whereas IR72667-16-1-B-B-3 was stable under both moderate and severe vegetative-stage stress conditions.
机译:在浅雨养水稻农业生态系统中,干旱胁迫可能在任何生育阶段发生,并可能导致单产大幅下降。近年来,最近已经开发了一些具有生殖阶段干旱胁迫耐受性的水稻品种。在干旱多发地区,还需要忍受营养期干旱胁迫,以提高水稻产量。在这项研究中,我们评估了一套水稻育种系对一系列不同类型的营养期干旱胁迫的反应,以提出用于进行营养期干旱胁迫筛选试验的标准化表型方案,并鉴定结合耐性的基因型营养期和生殖期干旱胁迫。营养阶段土壤水势阈值为-20 kPa被确定为营养阶段有效选择的目标,与灌溉控制试验相比,粮食产量降低约50%。被鉴定为在生殖期干旱胁迫下表现出高产的基因型并不一定是在营养期干旱胁迫下表现出最佳性能的基因型。基因型IR72667-16-1-B-B-3,IR78908-126-B-2-B和IR79970-B-47-1表现出对营养期和生殖期干旱胁迫的耐受性。对于大多数人来说,在营养期干旱,甚至是营养期+生殖期干旱下最好的基因型与在生殖期干旱下最好的基因型不同。根据品种优势测度,在两种灌溉控制下,IR69515-6-KKN-4-UBN-4-2-1-1-1和IR78908-126-B-1-B是稳定的基因型(以低Pi表示)在严重的植物压力条件下,IR83614-203-B和IR78908-80-B-3-B基因型在灌溉控制条件和中等压力条件下稳定,而IR72667-16-1-BB-3在中度和严重营养条件下均稳定阶段的压力条件。

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