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首页> 外文期刊>Plant Breeding >Inheritance of resistance to Gibberella ear rot and deoxynivalenol contamination in five flint maize crosses.
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Inheritance of resistance to Gibberella ear rot and deoxynivalenol contamination in five flint maize crosses.

机译:在五个火石玉米杂交品种中获得了对赤霉菌性穗腐烂和脱氧雪腐酚污染的抗性传承。

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摘要

Gibberella ear rot (GER) of maize caused by Fusarium graminearum leads to contamination of grains with mycotoxins such as deoxynivalenol (DON), thus reducing the quality of food and feed. A generation means analysis was conducted to estimate gene effects influencing the resistance to GER and DON contamination in flint maize germplasm adapted to Central Europe. Five crosses of two resistant and two susceptible flint inbred lines were developed, and each cross comprised both parent lines (P1, P2) as well as the F1 and F2 generation and the first backcross to both parents (BC1-P1, BC1-P2). All entries were grown in four environments and artificially inoculated with F. graminearum. There was a prevalence of additive gene action, while significant dominance effects were found in only one cross for resistance to GER, but in four crosses for resistance to DON contamination. Owing to the prevalence of additive gene action, the prospects are good to improve the resistance of the flint germplasm and to accumulate more favourable gene combinations in future breeding lines. copyright 2011 Blackwell Verlag GmbH.
机译:禾谷镰刀菌引起的玉米赤霉病(GER)导致谷物中的霉菌毒素(如脱氧雪腐酚(DON))污染,从而降低了食品和饲料的质量。进行了世代均值分析,以评估影响中欧的火石玉米种质对GER和DON污染的抵抗力的基因效应。开发了两个抗性和两个易感的火石近交系的五个杂交,每个杂交既包含亲本系(P1,P2)又包括F 1 和F 2 世代以及与父母双方的第一个回交(BC 1 -P1,BC 1 -P2)。所有条目均在四种环境中生长并人工接种 F。禾本科。普遍存在加性基因作用,而在仅一个抗GER的杂交中发现了显着的优势作用,而在抗DON污染的四个杂交中发现了显着的显性作用。由于加性基因作用的普遍存在,在未来的育种系中改善improve石种质的抗性并积累更有利的基因组合的前景良好。版权所有2011 Blackwell Verlag GmbH。

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