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Phenotypic characterization of mycotoxin resistant maize (Zea mays L.) inbred lines

机译:霉菌毒素抗性玉米(Zea mays L.)近交系的表型表征

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Understanding the genetic variation among ear rot/mycotoxin resistant maize inbred lines would greatly aid in breeding high yielding and stable ear rot and mycotoxin resistant hybrids. This study was executed with the objective to characterize ear rotresistant maize inbred lines using phenotypic traits. Experiments were conducted at Ukulinga and Makhathini Research Stations in South Africa. Genetic variability study revealed a significant difference among the mycotoxin resistant inbred lines for Aspergillus ear rot, Fusarium ear rot and other selected secondary traits except for husk cover. Plant height, ear height and primary tassel branches recorded higher heritability estimates (81.6, 81.2 and 82.8%, respectively) compared to all the traits. Theprincipal component analysis clustered the ear rot resistant inbred lines into five groups over the quadrants based on their phenotypic characteristics within the family. The information generated from this study will assist in developing local hybridswith high resistance to ear rots and mycotoxin contaminations, which attribute better agronomic performance.
机译:了解耳腐肉/霉菌毒素抗性玉米自交系中的遗传变异将大大有助于育种高产和稳定的耳鼻腐蚀和霉菌毒素抗性杂种。本研究采用了使用表型特征来表征耳旋转玉米自交系的目的。实验在南非尤其是尤克林和Makhathini研究站进行。遗传变异研究表明,除壳覆盖外,镰刀菌腐蚀,镰刀菌腐蚀和其他选定的次级性状的霉菌毒素耐血交患者的显着差异。与所有特征相比,植物高度,耳朵高度和初级流苏分支分别记录了更高的遗传性估算(分别为81.6,81.2和82.8%)。基于家庭内的表型特征,抗铂成分分析将耳朵腐蚀性近交系聚集成五组。本研究产生的信息将有助于开发局部杂交高抗耳腐蚀和霉菌毒素污染,这将归因于更好的农艺性能。

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