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通过与水稻的两个参考基因组进行定位,鉴定基于QTL的多态性基因作为盐响应潜在候选基因

Identification of QTL-Based Polymorphic Genes as Salt-Responsive Potential Candidates through Mapping with Two Reference Genomes in Rice.

作者信息

Abhayawickrama Buddini, Gimhani Dikkumburage, Kottearachchi Nisha, Herath Venura, Liyanage Dileepa, Senadheera Prasad

机构信息

Department of Biotechnology, Faculty of Agriculture and Plantation Management, Wayamba University of Sri Lanka, Makandura, Gonawila, 60170, Sri Lanka.

Department of Agricultural Biology, Faculty of Agriculture, University of Peradeniya, Peradeniya 20400, Sri Lanka.

出版信息

Plants (Basel). 2020 Feb 11;9(2):233. doi: 10.3390/plants9020233.

Abstract

Recent advances in next generation sequencing have created opportunities to directly identify genetic loci and candidate genes for abiotic stress responses in plants. With the objective of identifying candidate genes within the previously identified QTL-hotspots, the whole genomes of two divergent cultivars for salt responses, namely At 354 and Bg 352, were re-sequenced using Illumina Hiseq 2500 100PE platform and mapped to Nipponbare and R498 genomes. The sequencing results revealed approximately 2.4 million SNPs and 0.2 million InDels with reference to Nipponbare while 1.3 million and 0.07 million with reference to R498 in two parents. In total, 32,914 genes were reported across all rice chromosomes of this study. Gene mining within QTL hotspots revealed 1236 genes, out of which 106 genes were related to abiotic stress. In addition, 27 abiotic stress-related genes were identified in non-QTL regions. Altogether, 32 genes were identified as potential genes containing polymorphic non-synonymous SNPs or InDels between two parents. Out of 10 genes detected with InDels, tolerant haplotypes of , , , and were found in the known salinity tolerant donor varieties. Our findings on different haplotypes would be useful in developing resilient rice varieties for abiotic stress by haplotype-based breeding studies.

摘要

新一代测序技术的最新进展为直接鉴定植物非生物胁迫响应的基因位点和候选基因创造了机会。为了在先前确定的QTL热点区域内鉴定候选基因,利用Illumina Hiseq 2500 100PE平台对两个盐响应差异较大的品种At 354和Bg 352的全基因组进行了重测序,并将其定位到日本晴和R498基因组上。测序结果显示,两个亲本相对于日本晴大约有240万个单核苷酸多态性(SNP)和20万个插入缺失(InDel),相对于R498则分别有130万个和7万个。在本研究的所有水稻染色体上总共报道了32914个基因。在QTL热点区域内进行基因挖掘发现了1236个基因,其中106个基因与非生物胁迫相关。此外,在非QTL区域鉴定出27个与非生物胁迫相关的基因。总共鉴定出32个潜在基因,这些基因在两个亲本之间含有多态性非同义SNP或InDel。在检测到的10个含有InDel的基因中,在已知的耐盐供体品种中发现了、、、和的耐受单倍型。我们关于不同单倍型的研究结果将有助于通过基于单倍型的育种研究培育出抗非生物胁迫的水稻品种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52fa/7076550/1167e7e2808d/plants-09-00233-g001.jpg

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