Phylogenetic Relationship among Grasses, Wheat and Pearl Millet using matK and rbcR Genes

M. Molla, M. Saha, D. Serba, S. Talukdar, M. Salam, M. Ahmed, M. S. Islam
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Abstract

Fourteen genotypes of tall fescue, Brachypodium, wheat and pearl millet were used to find out phylogenetic relationships at their different ploidy level. Isolated chloroplast DNA of the 14 genotypes was sequenced using some selected matK and rbcR genetic markers. The matK and rbcR chloroplast gene sequences length were 1539bp and 1431bp, respectively. The consensus sequence length of matK gene was 1265bp in Brachypodium and wheat, 1266bp in both tall fescue Continental and Mditerranean species, 1269bp in pearl millet and for rbcR gene was only 1156bp in all studied four species. Except in Brachypodium, the variations of SNP for both matK and rbcR genes were observed in different ploidy levels of pearl millet and between the tall fescue Continental and Mediterranean species. Wheat with their different ploidy level gave the SNP variations only for matK gene. In respect of all ploidy levels, pearl millet had the highest number of SNP for both matK (247) and rbcR (130) genes. The tall fescue Continental (129) and Mediterranean (123) were in second position to show their genetic variation for matK gene. The rbcR gene had higher SNP at 5¢ regions of all four species, but matK gene only in wheat and tall fescue and 3¢ in millet and Brachypodium species. There was no in-del for rbcR gene, but the insertion of nucleotide for the matK gene was found highest in diploid wheat (11) and the deletion was in pearl millet (6). The phylogenetic analysis stated that their relationships were tall fescue Continental and tall fescue Mediterranean was much more related to wheat than pearl millet and Brachypodium. Plant Tissue Cult. & Biotech. 33(1): 57-70, 2023 (June)
利用matK和rbcR基因研究禾草、小麦和珍珠粟的系统发育关系
利用高羊茅、短柄羊茅、小麦和珍珠小米的14个基因型,在不同倍性水平上寻找系统发育关系。使用一些选择的matK和rbcR遗传标记对14个基因型的分离叶绿体DNA进行测序。matK和rbcR叶绿体基因序列长度分别为1539bp和1431bp。matK基因在Bracchydium和小麦中的一致序列长度为1265bp,在高羊茅大陆种和中羊茅属中的一致长度为1266bp,在珍珠小米中的一致基因长度为1269bp,在所有研究的四个物种中,rbcR基因的一致序列长度仅为1156bp。除Bracchydium外,在不同倍性水平的珍珠小米中,以及在高羊茅大陆种和地中海种之间,都观察到matK和rbcR基因的SNP变异。不同倍性水平的小麦只对matK基因产生SNP变异。就所有倍性水平而言,珍珠小米的matK(247)和rbcR(130)基因的SNP数量最高。大陆羊茅(129)和地中海羊茅(123)的matK基因变异居第二位。rbcR基因在5¢区域均具有较高的SNP,但matK基因仅在小麦和高羊茅中存在,在小米和短梗中存在3¢。rbcR基因没有del,但matK基因的核苷酸插入在二倍体小麦中最高(11),缺失在珍珠小米中(6)。系统发育分析表明,它们的亲缘关系为大陆高羊茅,地中海高羊茅与小麦的亲缘关系远大于珍珠小米和Bracchydium生物技术。33(1):57-702023(六月)
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