Chromosome-specific polymorphic SSR markers in tropical eucalypt species using low coverage whole genome sequences: systematic characterization and validation.

Q2 Agricultural and Biological Sciences Genomics and Informatics Pub Date : 2021-09-01 Epub Date: 2021-09-30 DOI:10.5808/gi.21031
Maheswari Patturaj, Aiswarya Munusamy, Nithishkumar Kannan, Ulaganathan Kandasamy, Yasodha Ramasamy
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Abstract

Eucalyptus is one of the major plantation species with wide variety of industrial uses. Polymorphic and informative simple sequence repeats (SSRs) have broad range of applications in genetic analysis. In this study, two individuals of Eucalyptus tereticornis (ET217 and ET86), one individual each from E. camaldulensis (EC17) and E. grandis (EG9) were subjected to whole genome resequencing. Low coverage (10×) genome sequencing was used to find polymorphic SSRs between the individuals. Average number of SSR loci identified was 95,513 and the density of SSRs per Mb was from 157.39 in EG9 to 155.08 in EC17. Among all the SSRs detected, the most abundant repeat motifs were di-nucleotide (59.6%-62.5%), followed by tri- (23.7%-27.2%), tetra- (5.2%-5.6%), penta- (5.0%-5.3%), and hexa-nucleotide (2.7%-2.9%). The predominant SSR motif units were AG/CT and AAG/TTC. Computational genome analysis predicted the SSR length variations between the individuals and identified the gene functions of SSR containing sequences. Selected subset of polymorphic markers was validated in a full-sib family of eucalypts. Additionally, genome-wide characterization of single nucleotide polymorphisms, InDels and transcriptional regulators were carried out. These variations will find their utility in genome-wide association studies as well as understanding of molecular mechanisms involved in key economic traits. The genomic resources generated in this study would provide an impetus to integrate genomics in marker-trait associations and breeding of tropical eucalypts.

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利用低覆盖全基因组序列的热带桉树物种染色体特异性多态性SSR标记:系统表征和验证。
桉树是具有广泛工业用途的主要人工林树种之一。多态和信息丰富的简单重复序列(SSRs)在遗传分析中有着广泛的应用。本研究对2个长角桉(ET217和ET86)、1个camaldulensis (EC17)和1个grandis (EG9)进行了全基因组重测序。采用低覆盖率(10x)基因组测序,寻找个体间多态SSRs。平均SSR位点数为95,513个,SSR位点密度为157.39 / Mb ~ 155.08 / Mb。在所有检测到的ssr序列中,重复序列最多的是二核苷酸(59.6% ~ 62.5%),其次是三核苷酸(23.7% ~ 27.2%)、四核苷酸(5.2% ~ 5.6%)、五核苷酸(5.0% ~ 5.3%)和六核苷酸(2.7% ~ 2.9%)。优势SSR基序单元为AG/CT和AAG/TTC。计算基因组分析预测了个体间SSR长度的差异,鉴定了SSR序列的基因功能。选择的多态标记子集在一个全同胞桉树家族中得到验证。此外,还进行了单核苷酸多态性、InDels和转录调控因子的全基因组表征。这些变异将在全基因组关联研究以及对涉及关键经济性状的分子机制的理解中发挥作用。本研究产生的基因组资源将为热带桉树的标记性状关联和育种整合基因组学提供动力。
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来源期刊
Genomics and Informatics
Genomics and Informatics Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
1.90
自引率
0.00%
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0
审稿时长
12 weeks
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