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首页> 外文期刊>Crop Science >Efficiency of Managed-Stress Screening of Elite Maize Hybrids under Drought and Low Nitrogen for Yield under Rainfed Conditions in Southern Africa
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Efficiency of Managed-Stress Screening of Elite Maize Hybrids under Drought and Low Nitrogen for Yield under Rainfed Conditions in Southern Africa

机译:干旱和低氮条件下南部非洲旱作优质玉米杂交种的有情胁迫筛选效率

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摘要

Maize (Zea mays L.) yields in southern Africa are low, due largely to drought and low-N stress. Selection of stress-tolerant genotypes by CIMMYT is conducted indirectly under managed stress conditions, although the selection efficiency of this approach is not known. A retrospective analysis of 704 elite hybrid trials concluded from 2001 to 2009 was used to determine the relative ability of optimal, low-N, and managed drought trials to predict performance under the conditions of random abiotic stress and low-N fertility usually faced by African farmers. Well-fertilized trials in the rainy season were categorized as having experienced random abiotic stress if mean yield was < 3 t ha(-1) and the yield-anthesis date correlation was < 0.1; otherwise they were classed as optimal. High genetic correlations were estimated between random abiotic stress and low-N or optimal conditions. Heritability was highest under optimal conditions and lowest under random abiotic stress. Indirect selection under low-N and optimal conditions was more efficient than direct selection under random abiotic stress or indirect selection under managed drought, especially for early maturing genotypes, but direct selection was most efficient for predicting performance under low N. Elite maize hybrids tolerant to random abiotic stress can be most efficiently selected under optimal and/or low-N conditions while low-N tolerant genotypes should be selected directly under low N.
机译:南部非洲的玉米单产较低,这主要是由于干旱和低氮胁迫。尽管尚不知道这种方法的选择效率,但通过CIMMYT选择承受胁迫的基因型是在受控的胁迫条件下间接进行的。回顾性分析2001年至2009年间完成的704个精英杂交试验,以确定最佳,低氮和管理干旱试验的相对能力,以预测在非洲通常面临的随机非生物胁迫和低氮肥力条件下的性能农民。如果平均产量<3 t ha(-1)且产量-开花日期相关性<0.1,则在雨季受精的试验被归类为经历了随机的非生物胁迫。否则,它们被归类为最佳。随机非生物胁迫与低氮或最佳条件之间的遗传相关性高。在最佳条件下,遗传力最高,在随机非生物胁迫下,遗传力最低。在低氮和最佳条件下的间接选择比在随机非生物胁迫下的直接选择或在干旱管理下的间接选择(特别是对于早熟的基因型)下的间接选择更有效,但是直接选择对于预测在低氮下的表现最为有效。在最佳和/或低氮条件下,可以最有效地选择随机的非生物胁迫,而在低氮条件下应直接选择耐低氮基因型。

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