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首页> 外文期刊>Maydica >Assesment of genetic diversity and relationships among maize inbred lines developed in Italy.
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Assesment of genetic diversity and relationships among maize inbred lines developed in Italy.

机译:在意大利开发的玉米自交系之间的遗传多样性和关系的评估。

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The genetic diversity pattern of a sample of 144 maize inbred lines comprising 106 Italian entries, considered representative of the breeding material developed at the Bergamo Maize Breeding Station, and a sample of 38, mainly US Corn Belt based, reference lines was accessed using AFLP markers. A total of 811 polymorphic fragments were identified. Exploration of the variation disclosed by the lines by means of principal component analysis (PCA) and hierarchical clustering allowed their division into major heterotic groups. The obtained grouping of the inbred lines reflected pedigree information and resulted in the identification of major clusters derived from Lancaster Sure Crop (LSC), Iowa Stiff Stock Synthetic (BSSS), and miscellaneous heterotic breeding material. AMOVA statistics, performed on the established genetic structure, revealed a high proportion of variance between individuals and among populations stressing the high polymorphic nature of the maize pool analyzed. Regarding population structures, the genetic distance among populations (FST=0.50+or-0.1) and the degree of inbreeding within groups (FSC=0.46+or-0.1) did not diverge significantly, while both significantly differed from the degree of relatedness between markers within groups (FCT=0.06+or-0.04). In conclusion, the results presented indicate that AFLPs are useful in assigning inbred lines to heterotic groups and for superior line development with the aim to maximize heterosis and consequently yield performance.
机译:144个玉米自交系样品的遗传多样性模式,包括106个意大利品种,被认为是贝加莫玉米育种站开发的育种材料的代表,并使用AFLP标记访问了38个样品,主要是基于美国玉米带的参考系。总共鉴定出811个多态性片段。通过主成分分析(PCA)和层次聚类的方法对品系所揭示的变异进行探索,可以将其划分为主要的杂种组。所获得的近交系分组反映了系谱信息,并导致鉴定了主要产自兰开斯特保育作物(LSC),爱荷华硬质人工合成林(BSSS)和其他杂种育种材料的簇。根据已建立的遗传结构进行的AMOVA统计显示,个体之间和种群之间的差异很大,这突出了所分析玉米库的高度多态性。关于种群结构,种群之间的遗传距离(F ST = 0.50 + or-0.1)和群体内的近交程度(F SC = 0.46 + or-0.1)没有显着差异,但两者均与组内标记之间的相关程度显着不同(F CT = 0.06 +或-0.04)。总之,提出的结果表明,AFLP可用于将近交系分配给杂种群体,并有利于优良系的开发,目的是使杂种优势最大化,从而提高产量。

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