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De Novo Sequencing and Hybrid Assembly of the Biofuel Crop Jatropha curcas L.: Identification of Quantitative Trait Loci for Geminivirus Resistance

机译:De Novo测序和生物燃料作物麻风树麻疯树的杂交大会:双子病毒抗性的定量性状位点的鉴定。

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Jatropha curcas is an important perennial, drought tolerant plant that has been identified as a potential biodiesel crop. We report here the hybrid de novo genome assembly of J. curcas generated using Illumina and PacBio sequencing technologies, and identification of quantitative loci for Jatropha Mosaic Virus (JMV) resistance. In this study, we generated scaffolds of 265.7 Mbp in length, which correspond to 84.8% of the gene space, using Benchmarking Universal Single-Copy Orthologs (BUSCO) analysis. Additionally, 96.4% of predicted protein-coding genes were captured in RNA sequencing data, which reconfirms the accuracy of the assembled genome. The genome was utilized to identify 12,103 dinucleotide simple sequence repeat (SSR) markers, which were exploited in genetic diversity analysis to identify genetically distinct lines. A total of 207 polymorphic SSR markers were employed to construct a genetic linkage map for JMV resistance, using an interspecific F 2 mapping population involving susceptible J. curcas and resistant Jatropha integerrima as parents. Quantitative trait locus (QTL) analysis led to the identification of three minor QTLs for JMV resistance, and the same has been validated in an alternate F 2 mapping population. These validated QTLs were utilized in marker-assisted breeding for JMV resistance. Comparative genomics of oil-producing genes across selected oil producing species revealed 27 conserved genes and 2986 orthologous protein clusters in Jatropha . This reference genome assembly gives an insight into the understanding of the complex genetic structure of Jatropha , and serves as source for the development of agronomically improved virus-resistant and oil-producing lines.
机译:麻疯树是一种重要的多年生耐旱植物,已被确定为潜在的生物柴油作物。我们在这里报告了使用Illumina和PacBio测序技术生成的麻疯树的杂种从头基因组装配,并鉴定了麻疯树花叶病毒(JMV)抗性的定量基因座。在这项研究中,我们使用基准通用单拷贝直系同源物(BUSCO)分析生成了长度为265.7 Mbp的支架,相当于基因空间的84.8%。此外,在RNA测序数据中捕获了96.4%的预测蛋白质编码基因,这再次证实了组装基因组的准确性。该基因组用于鉴定12,103个二核苷酸简单序列重复(SSR)标记,这些标记在遗传多样性分析中用于鉴定遗传上不同的品系。总共207个多态性SSR标记用于构建JMV抗性的遗传连锁图谱,使用涉及易感麻疯树和抗性麻疯树的种间F 2作图群体作为亲本。数量性状基因座(QTL)分析导致鉴定出三个对JMV抗性的次要QTL,并且在替代的F 2作图群体中也已验证了该特征。这些经过验证的QTL用于JMV抗性的标记辅助育种。在选定的产油物种中,产油基因的比较基因组学揭示了麻风树中有27个保守基因和2986个直系同源蛋白质簇。该参考基因组装配可深入了解麻疯树的复杂遗传结构,并可作为农艺改良病毒抗性和产油品系开发的来源。

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