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首页> 外文期刊>Crop science >Developing Aerobic Rice Cultivars for Water-Short Irrigated and Drought-Prone Rainfed Areas in the Tropics
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Developing Aerobic Rice Cultivars for Water-Short Irrigated and Drought-Prone Rainfed Areas in the Tropics

机译:在热带地区为缺水灌溉和干旱灌溉的雨养区开发有氧水稻品种

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摘要

Aerobic rice is a production system in which rice is direct seeded and grown in nonpuddled and nonflooded aerobic soils. Aerobic rice varieties need to be developed to cope with the increasing water scarcity in tropical Asia. Advanced breeding lines were evaluated in 24 yield trials under both nonstressed and stressed aerobic soil conditions in 4 yr (2005a€“2008) to assess the efficacy of the two-stress-level screening protocol and selection strategies for developing aerobic rice and to identify genotypes that are high yielding and drought tolerant. Twenty-six genotypes outyielded the reference varieties Apo and UPLRi-7 by more than 10% under both nonstress and stress conditions. High harvest index (HI) and vegetative vigor accounted for the increased yield of the newly developed genotypes. On average, the drought stress reduced grain yield by 60%, HI by 50%, and plant height by 12 cm and delayed flowering by 3 d. There was a low genetic correlation for yield across the two stress levels, and indirect selection under one stress level was not predicted to be effective in improving grain yield under the other, suggesting that screening genotypes under both nonstress and stress conditions for yield is needed to develop aerobic-adapted varieties combining high yield potential with drought tolerance. The elite germplasm identified in this study is likely to be useful to farmers in water-short irrigated and rainfed areas in the tropics.
机译:好氧稻米是一种生产系统,在该系统中,将稻米直接播种并种植在无水和无水的好氧土壤中。需要开发有氧水稻品种以应对热带亚洲日益严重的缺水问题。在4年(2005年至2008年)的无胁迫和胁迫需氧土壤条件下,在24个产量试验中对先进育种系进行了评估,以评估双胁迫水平筛选方案和选择策略对开发有氧水稻的有效性,并鉴定基因型产量高,耐旱。在无压力和胁迫条件下,有26种基因型的产量比参考品种Apo和UPLRi-7高出10%以上。高收成指数(HI)和植物生长力导致了新开发基因型的增产。平均而言,干旱胁迫使谷物产量降低60%,HI降低50%,株高降低12 cm,开花延迟3 d。两种胁迫水平下产量的遗传相关性很低,在一种胁迫水平下间接选择不能有效提高另一种胁迫下的谷物产量,这表明需要在非胁迫和胁迫条件下筛选基因型以提高产量。开发兼具高产潜力和耐旱性的需氧适应品种。在这项研究中确定的优良种质可能对热带地区缺水灌溉和雨养地区的农民有用。

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