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Genetic diversity within African tomato using next generation sequencing

机译:使用下一代测序在非洲番茄中的遗传多样性

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Full potential of African tomato has not been tapped due to lack of information regarding its characterization. The aim of this work was to study the diversity of 17 African tomato landraces collected from Solanaceae gene bank – Tanzania. Evaluation was done using Complete Random Block Design. Morphological data collected were subjected to GenStat's and Darwin6 software. RNA was extracted from leaf samples, fruits at three ripening stages using modified Trizol method and sequencing done using Illumina sequencing platform. The raw reads were filtered and analysed using the Bioinformatics tools. Phenotypically, the landraces clustered into three clusters dendrogram representation. Clustering was attributed by phenotypic variation. Analysis of variance showed significant phenotypic variations among the landraces (P 0.05). A total of 115,965 validated single nucleotide polymorphisms (SNPs) were mined from the 303,754,051 high-quality filtered reads. Molecular characterization showed significant variation within the landraces at fruit development stages. Unlike the phenotypic variation, phylogenetic tree representation grouped the 17 landraces according to their geographical location with some landraces from different countries grouping together. The findings of this study reveal significant morphological variation among African tomato contributed by plant height, leaf blade length, leaf blade width and fruit width. Positive correlation between fruit width and yield (r = 0.93, P 0.01) was observed. Results of this study reveal that there is admixture of landraces from various geographical locations. Morphological characterization of African tomato can only lay a foundation but it does not reveal genetic diversity. The transcriptome SNP analysis revealed significant variation among the African tomato according to their geographical location.
机译:由于缺乏关于其特征的信息,非洲番茄的全部潜力尚未被删除。这项工作的目的是研究从Solanaceae Gene Bank - 坦桑尼亚收集的17个非洲番茄体力的多样性。使用完整的随机块设计进行评估。收集的形态学数据受到Genstat和Darwin6软件的影响。使用改性的三嗪法从叶样品,在三个成熟阶段中提取RNA,使用illumina测序平台完成的三个成熟阶段。使用生物信息工具进行过滤并分析原始读取。表型,体力集聚成三个集群树木表示。聚类因表型变异而归因。差异分析显示了体重标体的显着表型变化(P <0.05)。从303,754,051种高质量的过滤读数中开采了总共115,965个验证的单核苷酸多态性(SNP)。分子表征在果实发育阶段的体力缺陷内显示出显着的变化。与表型变异不同,系统发育树代表根据他们的地理位置与来自不同国家的一些地理位置,分组了一些来自不同国家的地理位置。本研究的结果揭示了非洲番茄之间的显着形态变异,由植物高度,叶片长度,叶片宽度和果实宽度贡献。果宽和产率之间的正相关性(r = 0.93,p <0.01)。该研究的结果表明,各种地理位置的地球产地综合征。非洲番茄的形态学表征只能奠定基础,但它没有揭示遗传多样性。转录组SNP分析根据其地理位置揭示了非洲番茄之间的显着变化。

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