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通过基因组重测序分析鉴定茄子千粒重的数量性状位点

Identifying Quantitative Trait Loci for Thousand Grain Weight in Eggplant by Genome Re-Sequencing Analysis.

作者信息

Qian Zongwei, Ji Yanhai, Li Ranhong, Lanteri Sergio, Chen Haili, Li Longfei, Jia Zhiyang, Cui Yanling

机构信息

National Engineering Research Center for Vegetables, Vegetable Research Institute, Beijing Academy of Agriculture and Forestry Sciences, Beijing, China.

Key Laboratory of Biology and Genetic Improvement of Horticultural Crops (North China), Ministry of Agriculture and Rural Affairs, Beijing, China.

出版信息

Front Genet. 2022 May 18;13:841198. doi: 10.3389/fgene.2022.841198. eCollection 2022.

Abstract

Eggplant ( L.; 2n = 24) is one of the most important Solanaceae vegetables and is primarily cultivated in China (approximately 42% of world production) and India (approximately 39%). Thousand-grain weight (TGW) is an important trait that affects eggplant breeding cost and variety promotion. This trait is controlled by quantitative trait loci (QTLs); however, no quantitative trait loci (QTL) has been reported for TGW in eggplant so far, and its potential genetic basis remain unclear. In this study, two eggplant lines, 17C01 (P1, wild resource, small seed) and 17C02 (P2, cultivar, large seed), were crossed to develop F1, F2 (308 lines), BC1P1 (44 lines), and BC1P2 (44 lines) populations for quantitative trait association analysis. The TGWs of P1, P2 and F1 were determined as 3.00, 3.98 and 3.77 g, respectively. The PG-ADI (polygene-controlled additive-dominance-epistasis) genetic model was identified as the optimal model for TGW and the polygene heritability value in the F2 generation was as high as 80.87%. A high-quality genetic linkage bin map was constructed with resequencing analysis. The map contained 3,918 recombination bins on 12 chromosomes, and the total length was 1,384.62 cM. A major QTL (named as TGW9.1) located on chromosome 9 was identified to be strongly associated with eggplant TGW, with a phenotypic variance explanation of 20.51%. A total of 45 annotated genes were identified in the genetic region of TGW9.1. Based on the annotation of Eggplant genome V3 and orthologous genes in , one candidate gene SMEL_009g329850 (SmGTS1, encoding a putative ubiquitin ligase) contains 4 SNPs and 2 Indels consecutive intron mutations in the flank of the same exon in P1. SmGTS1 displayed significantly higher expression in P1 and was selected as a potential candidate gene controlling TGW in eggplant. The present results contribute to shed light on the genetic basis of the traits exploitable in future eggplant marker-assisted selection (MAS) breeding.

摘要

茄子(L.;2n = 24)是最重要的茄科蔬菜之一,主要在中国(约占世界产量的42%)和印度(约占39%)种植。千粒重(TGW)是影响茄子育种成本和品种推广的一个重要性状。该性状由数量性状基因座(QTL)控制;然而,迄今为止尚未见茄子千粒重的数量性状基因座(QTL)报道,其潜在的遗传基础仍不清楚。本研究中,将两个茄子品系17C01(P1,野生资源,种子小)和17C02(P2,栽培品种,种子大)杂交,构建F1、F2(308个株系)、BC1P1(44个株系)和BC1P2(44个株系)群体用于数量性状关联分析。P1、P2和F1的千粒重分别测定为3.00、3.98和3.77克。PG-ADI(多基因控制的加性-显性-上位性)遗传模型被确定为千粒重的最优模型,F2代的多基因遗传力值高达80.87%。通过重测序分析构建了高质量的遗传连锁bin图谱。该图谱在12条染色体上包含3918个重组bin,总长为1384.62 cM。在9号染色体上鉴定出一个与茄子千粒重显著相关的主效QTL(命名为TGW9.1),可解释20.51%的表型变异。在TGW9.1的遗传区域共鉴定出45个注释基因。基于茄子基因组V3的注释和直系同源基因,一个候选基因SMEL_009g329850(SmGTS1,编码一个假定的泛素连接酶)在P1中同一外显子侧翼的内含子中有4个SNP和2个Indel连续突变。SmGTS1在P1中表达显著更高,被选为控制茄子千粒重的潜在候选基因。本研究结果有助于揭示茄子未来标记辅助选择(MAS)育种中可利用性状的遗传基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7f1/9157640/c2a75da4f305/fgene-13-841198-g001.jpg

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