Miranda Oliveira Karine, Rios Laborda Prianda, Augusto F Garcia Antonio, Zagatto Paterniani Maria Elisa A G, de Souza Anete Pereira
Centro de Biologia Molecular e Engenharia Genética (CBMEG), Universidade Estadual de Campinas (UNICAMP), Cidade Universitária Zeferino Vaz, Campinas, SP, Brasil.
Hereditas. 2004;140(1):24-33. doi: 10.1111/j.1601-5223.2004.01702.x.
Diversity among tropical maize inbred lines that compose breeding programs, is not well known. The lack of this information has made the arrangement of heterotic groups to be used for breeding purposes difficult. Methods of molecular analysis have been used as efficient alternatives for evaluating genetic diversity, aiming at heterotic group arrangement and acquisition of new hybrids. In this study, AFLP (amplified fragment length polymorphism) was used to investigate the genetic relationships among 96 tropical maize inbred lines from two different origins. The polymorphism level among the genotypes and the possibility of their allocation in heterotic groups were evaluated. Besides, correlations among genetic diversity and flowering time were analyzed. Nine primer combinations were used to obtain AFLP markers, producing 638 bands, 569 of which were polymorphic. Genetic similarities (GS), determined by Jaccard's similarity coefficient, varied from 0.345 to 0.891, with an average of 0.543. The dendrogram based on the GS and on the UPGMA cluster method did not separate the inbred lines in well-defined groups. Aiming at separating the lines into more accurate groups, Tocher's optimization procedure was carried out, 17 groups being identified. Association between flowering time and germplasm pools was detected. AFLP showed itself to be a robust assay, revealing a great power of detection of genetic variability in the tropical germplasm, and also demonstrated to be very useful for guiding breeding programs.
构成育种计划的热带玉米自交系之间的多样性尚不为人所知。缺乏这方面的信息使得安排用于育种目的的杂种优势群变得困难。分子分析方法已被用作评估遗传多样性的有效替代方法,旨在安排杂种优势群和获得新的杂交种。在本研究中,利用扩增片段长度多态性(AFLP)来研究来自两个不同来源的96个热带玉米自交系之间的遗传关系。评估了基因型之间的多态性水平及其分配到杂种优势群中的可能性。此外,还分析了遗传多样性与开花时间之间的相关性。使用九对引物组合获得AFLP标记,共产生638条带,其中569条具有多态性。由杰卡德相似系数确定的遗传相似性(GS)在0.345至0.891之间变化,平均为0.543。基于GS和非加权组平均法(UPGMA)聚类法的树形图并未将自交系清晰地分为不同的组。为了将这些品系分为更准确的组,进行了托赫尔优化程序,确定了17个组。检测到开花时间与种质库之间的关联。AFLP显示出自身是一种强大的分析方法,揭示了检测热带种质遗传变异的强大能力,并且还证明对指导育种计划非常有用。