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Selection for drought resistance in common bean also improves yield in phosphorus limited and favorable environments

机译:在普通的豆类中选择抗旱性还可以提高磷有限和有利环境下的产量

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摘要

An estimated 60% of common bean (Phaseolus vulgaris L.) production worldwide is at risk of drought. A breeding program was developed at the International Center of Tropical Agriculture (CIAT) to create drought resistant breeding lines with varietal potential in the small red, small black, cream (mulatinho) and cream-striped (carioca) grain classes. Breeding populations were created from triple or double crosses. Field screening under terminal drought was performed at Palmira, Colombia in the dry season in F 21 F 3:51 and F 6:8 generations over two cycles of recurrent selection in the small red and small black classes, and one cycle in the mulatinho and carioca classes. Drought resistant lines yielded significantly more than commercial check cultivars under drought in all color classes. Some outyielded the respective checks by 15 to 25% (depending on color class and trial) in one or more of three favorable environments, or in the combined analysis across favorable environments, and were also earlier to mature. Drought resistant lines presented up to 36% greater yield d(-1) in favorable environments. Some also expressed superior yields in a phosphorus-limited environment. Thus, selection for drought resistance has improved yield potential and plant efficiency across different environments. It is suggested that selection under drought stress reveals genes that correct inefficiencies inherited from the wild Phaseolus vulgaris, and are key to yield improvement of common bean.
机译:全世界估计有60%的普通豆(菜豆)有干旱的风险。国际热带农业中心(CIAT)制定了育种计划,以在红色,黑色小,奶油色(mulatinho)和奶油色条纹(carioca)谷物类别中创建具有品种潜力的抗旱育种系。繁殖种群由三倍或双倍杂交产生。在干旱季节,在干旱的F 21 F 3:51和F 6:8世代中,在哥伦比亚的Palmira进行了终末干旱下的田间筛选,在红色和黑色小类别的两次轮回选择中,在mulatinho和黑色黑夜中进行了一个轮回。卡里奥卡课程。在所有颜色等级下,抗旱品系的产量明显高于干旱条件下的商业检查品种。在三个有利环境中的一个或多个环境中,或在有利环境中的组合分析中,有些人的检查结果胜过15%到25%(取决于颜色等级和试验),而且还早于成熟。在有利的环境下,抗旱品系的产量d(-1)最高提高36%。一些人在磷限制的环境中也表现出较高的产量。因此,在不同环境下选择抗旱性可提高单产潜力和植物效率。这表明在干旱胁迫下的选择揭示了纠正自野生菜豆遗传的低效率的基因,并且是提高普通豆产量的关键。

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