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首页> 外文期刊>Plant Genetic Resources Characterization and Utilization >Genetic diversity of Jatropha curcas collections from different islands in Indonesia
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Genetic diversity of Jatropha curcas collections from different islands in Indonesia

机译:来自印度尼西亚不同岛屿的麻风树凝水卷曲收集的遗传多样性

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Jatropha curcas L. is a potential bioenergy crop but has a lack of improved cultivars with high yields and oil content. Therefore, increasing our understanding of J. curcas germplasm is important for designing breeding strategies. This study was performed to investigate the genetic diversity and population structure of Indonesian J. curcas populations from six different islands. To construct a reference, we de novo assembled the scaffolds (N50 = 355.5 kb) using 182 Gb Illumina HiSeq sequencing data from Thai J. curcas variety Chai Nat. Genetic diversity analysis among 52 Indonesian J. curcas accessions was conducted based on yield traits and single nucleotide polymorphism (SNP) markers detected by mapping genotyping-by-sequencing reads from Indonesian population to Chai Nat scaffolds. Strong variation in yield traits was detected among accessions. Using J. integerrima as an outgroup, 13,916 SNPs were detected. Among J. curcas accessions, including accessions from other countries (Thailand, the Philippines and China), 856 SNPs were detected, but only 297 SNPs were detected among Indonesian J. curcas populations, representing low genetic diversity. Through phylogenetic and structural analysis, the populations were clustered into two major groups. Group one consists of populations from Bangka and Sulawesi in the northern part of Indonesia, which are located at a distance of 1572.59 km. Group two contains populations from islands in the southern part: Java, Lombok-Sumbawa, Flores and Timor. These results indicate that introduction of diverse J. curcas germplasms is necessary for the improvement of the genetic variation in the Indonesian collections.
机译:Joatropha Curcas L.是一种潜在的生物能量作物,但缺乏具有高产率和油含量的改善品种。因此,增加了我们对J的理解。Curcas种质对设计育种策略很重要。进行该研究以研究来自六个不同岛屿的印度尼西亚J. Curcas人口的遗传多样性和人口结构。为了构建参考,我们使用来自泰国J.Curcas品种柴NAT的182 GB Illumina Hiseq测序数据组装了支架(N50 = 355.5 kB)。基于由印度尼西亚人群从印度尼西亚人口映射到柴NATCAffolds来检测到52印度尼西亚语J.Curcas accience的遗传分集分析。在加入中检测到产量性状的强烈变化。使用J. InteGerrima作为小组,检测到13,916个SNP。在J. Curcas的过程中,包括其他国家(泰国,菲律宾和中国)的加入,检测到856个SNP,但在印度尼西亚J. Curcas群体中只检测到297个SNP,代表低遗传多样性。通过系统发育和结构分析,将群体聚集成两个主要群体。第一组由印度尼西亚北部的曼卡和苏拉威西岛的人群组成,位于1572.59公里的距离。第2组包含来自南部的岛屿的人群:Java,Lombok-Sumbawa,Flores和Timor。这些结果表明,改善印度尼西亚收藏品的遗传变异是必要的。

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