首页> 外文期刊>Canadian Journal of Biotechnology >Allele Mining and Allelic Diversity of Genes Governing Grain Size Related Traits in Rice (Oryza sativa L.)
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Allele Mining and Allelic Diversity of Genes Governing Grain Size Related Traits in Rice (Oryza sativa L.)

机译:水稻籽粒大小相关性状相关基因的等位基因挖掘和等位基因多样性

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Mining elite alleles for grain size is one of the key aspects for the improvement of cultivated rice to suit diverse global consumer preferences. Thus with the goal of identification of novel and superior alleles from the genes governing the grain size related traits by exploring the natural variability present in the rice germplasm, the present study was conducted. 124 rice genotypes were evaluated for different grain traits such as grain length (GL), grain width (GW), grain length to width ratio (GL/GW), and 1000-grain weight (TGW). The germplasm of 124 rice genotypes presented substantial variation for grain size traits. Significant correlations were detected among the grain size traits. All the four traits exhibited normal distribution in the germplasm indicating quantitative inheritance of these traits. In total, 32 molecular markers comprising of 8 grain size gene-specific markers and 24 SSR markers covering all 12 chromosomes were used in this study and all markers showed polymorphism and produced a total of 86 alleles among the 124 rice varieties. Number of alleles ranged from 2 to 4 with an average of 2.68 alleles per locus. The mean polymorphism information content (PIC) value was 0.34. Analysis revealed 124 genotypes could be made into two groups, A and B. The group A exclusively includes the extra-long grain length basmati genotypes. However, the group B again divided into two groups i.e., B1 and B2. The group B1 includes mostly long grain genotypes. The group B2 comprised of all classes of grain length and size genotypes. Based on the population structure Q matrix data the 124 accessions are divided into four clusters/subpopulations, viz., from POP1 to POP4. POP1 subpopulation was grouped under extra-long grain type, POP2 was grouped under long grain type, POP3 and POP4 includes all the four grain size classes. Eight marker-trait associations were identified by screening 124 genotypes with grain size specific primers for GL, GW, L/B and TGW traits. One GS3 gene-specific marker, GS3RGS1 was found to be associated with GL, GW, L/B and TGW traits with their PVE as 15.2%, 16.9%, 10.3% and 7.8%, respectively. Earlier results also reported that the GS3 is the major gene governing the grain length and minor gene for grain width. Similarly, one SSR marker, RM505 was showed association with GL, GW, L/B and TGW traits with their PVE as 4.4%, 2.6%, 1.9% and 3.8%, respectively. The present investigation reinforces the fact that grain size is a complex trait regulated by many genes located on different chromosomes. However, the gene specific markers, for GL, GW, TGW and L/B traits, such as GS3RGS1 and RM505 have potential to be used as foreground markers in marker-assisted breeding. Mining of complete gene sequences and other genes governing grain size traits is warranted further investigation adding some more germplasm.
机译:挖掘优良等位基因的谷物大小是改良稻米以适应全球不同消费者喜好的关键方面之一。因此,本研究旨在通过探索水稻种质中存在的自然变异性,从与晶粒大小相关性状相关的基因中鉴定出新的和优良的等位基因。对124种水稻基因型进行了评估,以评估其不同的谷物性状,例如籽粒长度(GL),籽粒宽度(GW),籽粒长宽比(GL / GW)和1000粒重(TGW)。 124个水稻基因型的种质资源表现出较大的谷粒性状变异。在粒度特征之间检测到显着的相关性。这四个性状在种质中均表现出正态分布,表明这些性状的定量遗传。总共使用了32个分子标记,包括8个颗粒大小的基因特异性标记和覆盖全部12条染色体的24个SSR标记,所有标记均表现出多态性,并在124个水稻品种中产生了86个等位基因。等位基因的数量范围为2至4,平均每个位点为2.68个等位基因。平均多态信息含量(PIC)值为0.34。分析显示,可以将124个基因型分为A和B两类。A组仅包括超长晶粒长的basmati基因型。但是,B组又分为两个组,即B1和B2。 B1组主要包括长粒基因型。 B2组由所有类别的晶粒长短和大小基因型组成。根据种群结构Q矩阵数据,将124个种质分为四个簇/亚群,即POP1至POP4。 POP1亚群归类为超长粒类型,POP2归类为长粒类型,POP3和POP4包括所有四个粒度级别。通过使用针对GL,GW,L / B和TGW性状的粒度特异性引物筛选124个基因型,鉴定出八个标记性状关联。发现一种GS3基因特异性标记物GS3RGS1与GL,GW,L / B和TGW性状相关,其PVE分别为15.2%,16.9%,10.3%和7.8%。较早的结果还报道了GS3是控制晶粒长度的主要基因,而是晶粒宽度的次要基因。同样,一种SSR标记RM505与GL,GW,L / B和TGW性状相关,其PVE分别为4.4%,2.6%,1.9%和3.8%。本研究进一步证实了一个事实,即晶粒大小是由位于不同染色体上的许多基因调控的复杂性状。然而,针对GL,GW,TGW和L / B性状的基因特异性标记,例如GS3RGS1和RM505,有可能在标记辅助育种中用作前景标记。完整基因序列和其他控制晶粒度状的基因的挖掘有待进一步研究,以增加更多的种质资源。

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