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首页> 外文期刊>Journal of Crop Improvement >Diallel analysis for aflatoxin accumulation and fall armyworm leaf-feeding damage in maize
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Diallel analysis for aflatoxin accumulation and fall armyworm leaf-feeding damage in maize

机译:黄曲霉毒素积累和秋季玉米植物饲养损伤的脑依赖性分析

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摘要

Two major impediments to profitable maize, Zea mays L, production in the southern United States are from feeding by fall armyworm, Spodoptera frugiperda (J.E. Smith), and losses from the production and accumulation of aflatoxin in maize grain. A diallel cross was produced by making all possible crosses among five germplasm lines developed as sources of resistance to fall armyworm leaf feeding and five lines developed as sources of resistance to aflatoxin accumulation. For resistance to both leaf feeding and aflatoxin accumulation, general combining ability (GCA) was a significant source of variation. Specific combining ability (SCA) was significant for fall armyworm feeding only. Estimates of GCA effects for reduced aflatoxin accumulation were significant for Mp715 and Mp719, two lines selected for resistance to aflatoxin accumulation. The GCA effects for reduced fall armyworm damage were significant for all five lines selected for fall armyworm resistance: Mp707, Mp708, Mp713, Mp714, and Mp716.
机译:Zea Mays L的两个主要障碍,Zea Mays L,美国南部的生产都是由秋季武器,Spodoptera Frugiperda(J.E. Smith)的喂养,以及从玉米谷物中的黄曲霉毒素的生产和积累的损失。通过在开发的五种种质线中产生所有可能的十字架,作为抗秋季虫叶片喂养的源的源,五条线条作为抗黄曲霉毒素积累的耐药来源开发的所有可能的十字架产生。为了抵抗叶片喂养和黄曲霉毒素累积,一般组合能力(GCA)是一个重要的变异来源。特定的组合能力(SCA)仅适用于秋季蚯蚓喂养。对于MP715和MP719,GCA效应降低的GCA效应的估计对于抗黄曲霉毒素累积的两条线是显着的。对于降低秋季蚯蚓损伤的GCA效应对于秋季蚯蚓抗性的所有五条曲线显着:MP707,MP708,MP713,MP714和MP716。

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