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首页> 外文期刊>Industrial Crops and Products >Genome-wide discovery of microsatellite markers and, population genetic diversity inferences revealed high anthropogenic pressure on endemic populations of Trillium govanianum
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Genome-wide discovery of microsatellite markers and, population genetic diversity inferences revealed high anthropogenic pressure on endemic populations of Trillium govanianum

机译:微卫星标志物的基因组发现,人口遗传多样性推论揭示了毒素流动群的高度推动压力

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摘要

Trillium govanianum ethnobotanical perspectives include the treatment of cancer, hypertension, neurasthenia, giddiness, arthritis, dysentery, and inflammation. As its industrial demand for steroidal content is increasing, the endemic species have been subjected to severe habitat degradation and fragmentation by the illicit trade in Indian Himalayan Region (IHR). Additionally, molecular genetics efforts in T. govanianum has also lagged, mainly because of the non-availability of genome-wide molecular marker resources. Apropos, using tissue-specific transcriptomic data derived from the rhizome, stem, leaf, and fruit, the present study identified 5337 novel functionally relevant genome-wide SSR markers. The tri repeats were most abundant (41%) with a higher occurrence of CCG/CGG repeat motif, mostly located in the CDS region. Based on functional annotations of SSR transcripts with multifarious public databases (NR, TAIR, KEGG, KOG, SwissProt & PTFdb), a set of 288 SSR markers encompassing important roles in steroidal saponins pathway, cellular and metabolic processes such as response to stress, binding, and catalytic activity were validated, successfully. Genetic diversity and population structure analysis of 290 genotypes of 14 geographically distinct populations representing eight different valleys (2086-3500 m amsl) of the IHR amplified an average of 4.33 alleles per locus. Overall, a low genetic diversity (He: 0.25), high genetic divergence (G(ST): 0.23), high within populations molecular variance (72 %), limited gene flow (0.792), and slight positive isolation by distance (R-xy = 0.260; p = 0.030) is recorded in T. govanianum populations. Further, neighbor-joining (NJ) based hierarchical clustering, PCoA, and Bayesian structure clustering identified two major groups in the tested populations. Novel microsatellite marker resources and population diversity inferences studied for the first time revealed that there is a need to recuperate diversity in situ and maintain effective population size, a much-required step to mitigate high anthropogenic pressure on T. govanianum in Indian Himalayan Region.
机译:Trillium govanianum ethnobotanical的观点包括治疗癌症,高血压,神经衰弱,眩晕,关节炎,痢疾和炎症。随着其对甾体含量的工业需求正在增加,人群物种受到印度喜马拉雅地区(IHR)的非法贸易的严重栖息地降解和破碎。此外,T.Govanianum的分子遗传措施也滞后,主要是因为基因组宽的分子标记资源的非可用性。 APROPOS,使用来自根茎,茎,叶和果的组织特异性转录组数据,本研究确定了5337个功能相关的基因组SSR标记。 TRI重复最丰富(41%),具有较高出现的CCG / CGG重复主题,主要位于CDS区域。基于具有多种公共数据库的SSR成绩单的功能注释(NR,TAIR,KEGG,KOG,SWISSPROT和PTFDB),一套288个SSR标记,包括甾体皂苷途径,细胞和代谢过程中重要作用,如响应应力,结合并且成功地验证了催化活性。遗传多样性和人口结构分析14个地理上不同群体的290个基因型,代表八种不同的谷(2086-3500Mams)的IHR,平均每位基因座平均4.33等位基因。总体而言,低遗传多样性(他:0.25),高遗传分歧(G(ST):0.23),群体内的高分子分子方差(72%),有限的基因流动(0.792),距距离轻微阳性隔离(R- XY = 0.260; P = 0.030)记录在Govanianum群体中。此外,基于邻居(NJ)的分层聚类,PCOA和贝叶斯结构聚类在测试的人群中识别了两个主要群体。新的微卫星标记资源和人口多样性推论首次研究表明,有必要恢复原位多样性并保持有效的人口规模,这是一种需要减轻印度喜马拉雅地区的T. Govanianum的高度推动力的步骤。

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