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首页> 外文期刊>Genetics and Molecular Research >Identification of novel and useful EST-SSR markers from de novo transcriptome sequence of wheat (Triticum aestivum L.)
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Identification of novel and useful EST-SSR markers from de novo transcriptome sequence of wheat (Triticum aestivum L.)

机译:从小麦(Triticum aestivum L.)的转录组序列中鉴定新颖有用的EST-SSR标记

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Simple sequence repeats (SSRs) are highly informative, polymorphic, and co-dominant Mendelian markers that provide an important genomic resource for genetic research. Recently, the use of large-scale transcriptome sequence has become a reliable and efficient approach for the identification and development of new EST-SSR markers. In this study, 8389 potential SSRs with a minimum of five repetitions for all motifs were identified from 121,210 unigenes. Gene ontology analysis indicated that the unigenes containing SSR loci participate in various biological processes of regulation, growth, development, metabolism, and apoptosis in wheat. As in many other plants, trinucleotide repeats were found to be the most abundant repeat units with a frequency of 62.33%. A subset of 300 EST-SSRs was randomly selected for the applicability of EST-SSRs to be evaluated. Of the 300 primer pairs tested, 177 (59%) yielded unambiguous PCR products among five wheat cultivars. Using the Chinese Spring nulli-tetrasomic line, 131 of the 177 EST-SSR primer pairs yielded products and 178 loci were found to be located on all the 21 wheat chromosomes. These findings suggest that the novel EST-SSR markers, as a basis for future genetic linkage and gene tagging analysis, are a valuable tool for genetic mapping, marker assisted selection, and comparative genome analysis.
机译:简单序列重复(SSR)是高度信息化,多态性和共同主导的孟德尔标记,可为遗传研究提供重要的基因组资源。最近,使用大规模转录组序列已成为一种可靠和有效的方法,用于鉴定和开发新的EST-SSR标记。在这项研究中,从121,210个单基因中鉴定出8389个潜在SSR,所有基序至少重复5次。基因本体分析表明,含SSR基因座的单基因参与了小麦调控,生长,发育,代谢和凋亡的各种生物学过程。与其他许多植物一样,三核苷酸重复序列是频率最高的重复单元,频率为62.33%。为了评估待评估的EST-SSR的适用性,随机选择了300个EST-SSR的子集。在300个引物对中,有177个(59%)在五个小麦品种中产生了清晰的PCR产物。使用中国春零-四体学系,在177个EST-SSR引物对中有131个产生了产物,并且在所有21条小麦染色体上都发现了178个基因座。这些发现表明,新颖的EST-SSR标记作为未来遗传连锁和基因标签分析的基础,是进行遗传作图,标记辅助选择和比较基因组分析的有价值的工具。

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