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Drought Resistance Improvement in Rice: An Integrated Genetic and Resource Management Strategy

机译:提高水稻的抗旱性:遗传和资源综合管理策略

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Drought is the major constraint to rice production in rainfed areas across Asia and sub-Saharan Africa. In the context of current and predicted water scarcity, increasing irrigation is generally not a viable option for alleviating drought problems in rainfed rice-growing systems. It is therefore critical that genetic management strategies for drought focus on maximum extraction of available soil moisture and its efficient use in crop establishment and growth to maximize biomass and yield. Extensive genetic variation for drought resistance exists in rice germplasm. However, the current challenge is to decipher the complexities of drought resistance in rice and exploit all available genetic resources to produce rice varieties combining drought adaptation with high yield potential, quality, and resistance to biotic stresses. The strategy described here aims at developing a pipeline for elite breeding lines and hybrids that can be integrated with efficient management practices and delivered to rice farmers. This involves the development of high-throughput, high-precision phenotyping systems to allow genes for yield components under stress to be efficiently mapped and their effects assessed on a range of drought-related traits, and then moving the most promising genes into widely grown rice mega-varieties, while scaling up gene detection and delivery for use in marker-aided breeding.
机译:干旱是亚洲和撒哈拉以南非洲雨养地区水稻生产的主要制约因素。在当前和预计的缺水情况下,增加灌溉通常不是减轻雨养水稻种植系统干旱问题的可行选择。因此,至关重要的是,干旱的遗传管理战略应着眼于最大程度地利用土壤中的可用水分,并有效利用其在作物的生长和生长中,以最大限度地提高生物量和产量。水稻种质存在广泛的抗旱遗传变异。但是,当前的挑战是破译水稻抗旱性的复杂性,并利用所有可用的遗传资源来生产水稻品种,将干旱适应性与高产潜力,高质量和对生物胁迫的抗性相结合。本文描述的策略旨在为精英育种系和杂交种开发一条管道,该管道可以与有效的管理实践整合并交付给稻农。这涉及开发高通量,高精度的表型分析系统,从而可以有效地定位胁迫下产量构成要素的基因,并评估其对一系列干旱相关性状的影响,然后将最有前途的基因转移到广泛种植的水稻中大型品种,同时扩大了基因检测和传递以用于标记辅助育种的规模。

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