普通野生稻和亚洲栽培稻种质资源中Hsp101基因的遗传变异分析

    Genetic Variation Analysis of Hsp101 Gene in Common Wild Rice and Asian Cultivated Rice Germplasm Resources

    • 摘要:
      目的  Hsp101基因是调控水稻耐热性的关键基因,然而其在水稻种质资源中的遗传变异和演化模式所知有限。分析Hsp101基因在普通野生稻和亚洲栽培稻中的遗传变异,为发掘优良的耐热基因资源奠定基础。
      方法  利用检索和整理得到的3 325份普通野生稻和亚洲栽培稻种质资源基因组测序数据,使用基因组重测序分析所得到的单核苷酸多态性(SNP)和小片段插入缺失(InDel)变异开展Hsp101基因的遗传多样性和基因变异单倍型分析。
      结果  基于基因组重测序分析得到的高质量遗传变异数据,在Hsp101基因区间内检测到471个遗传突变位点,其中能改变氨基酸编码的非同义变异位点有94个,遗传多样性和群体间分化指数分析表明栽培稻中的遗传多样性明显较低,普通野生稻与籼稻和粳稻的遗传分化明显。单倍型分析共发现8种主要单倍型,普通野生稻含有除Hap6外的7种单倍型,籼稻单倍型以Hap1为主,粳稻单倍型以Hap2为主。进一步对单倍型进行网络分析和系统发育树分析,发现野生稻单倍型Hap8可能是Hsp101较为古老的等位基因。此外,对3个籼粳间的遗传变异位点进行PCR扩增测序的验证,发现Hsp101基因在籼稻和粳稻中的特异变异是存在的。
      结论  发掘鉴定了Hsp101基因上的94个非同义变异及8种主要的基因变异单倍型。该基因的栽培稻单倍型均由野生稻单倍型演化而来,籼稻与野生稻的分化程度比粳稻和野生稻的分化程度更低,推测籼稻的遗传分化时间比粳稻早,籼稻和粳稻在Hsp101基因位点的遗传差异可能与所处环境的自然温度胁迫相关。

       

      Abstract:
      Objective  The Hsp101 gene is a key gene that regulating rice heat tolerance, however, limited knowledge is available about its genetic variation and evolutionary patterns in rice germplasm resources. The study aims to investigate the genetic variation of the Hsp101 gene in common wild rice and Asian cultivated rice, laying a foundation for the exploration of gene resources with excellent heat tolerance.
      Methods  The rice germplasm resources of 3 325 genome sequencing data were obtained through retrieval and collation, and single nucleotide polymorphism (SNP) and small fragment insertion and deletion (InDel) variations were revealed by genome resequencing data analysis. Genetic diversity and gene variation haplotype analysis of the Hsp101 gene was conducted base on these genetic variations.
      Results  A total of 471 genetic mutations were identified in the region of the Hsp101 gene, among which 94 non-synonymous variation sites resulted in amino acid coding changes. The analysis of genetic diversity and inter-population differentiation index showed that the genetic diversity of cultivated rice was significantly lower, and the genetic differentiation between common wild rice and Xian / Geng rice was obvious. Eight major haplotypes were identified, through haplotype analysis, with Hap1 being predominant in indica rice and Hap2 being predominant in japonica rice (7 haplotypes were found in common wild rice, except for Hap6). Further analyses including haplotype network analysis and phylogenetic analysis indicated that the wide rice haplotype Hap8 may be the oldest allele of the Hsp101 gene. In addition, three Xian or Geng rice specific variations were validated by using PCR amplification and Sanger sequencing. It was found that the specific variation of Hsp101 gene existed in Xian rice and Geng rice.
      Conclusion  A total of 94 nonsynonymous variants and 8 major genetic variation haplotypes were identified in the Hsp101 gene. Hsp101 gene haplotypes of cultivated rice were evolved from those found in wild rice, and a lower degree of differentiation was observed between Xian and wild rice compared with Geng rice. It was speculated that the genetic differentiation time of Xian rice was earlier than that of Geng rice, and the genetic differences between Xian rice and Geng rice at the Hsp101 locus may be associated with the natural heat stress of their respective ecological environments.

       

    /

    返回文章
    返回