中国农业科学 ›› 2023, Vol. 56 ›› Issue (16): 3168-3182.doi: 10.3864/j.issn.0578-1752.2023.16.010

• 园艺 • 上一篇    下一篇

利用SLAF-seq简化基因组数据挖掘甜橙果实品质性状基因

李仁静(), 申晚霞, 赵婉彤, 程莉, 李沛, 江东()   

  1. 西南大学柑橘研究所,重庆 400712
  • 收稿日期:2022-12-17 接受日期:2023-02-13 出版日期:2023-08-16 发布日期:2023-08-18
  • 通信作者:
    江东,E-mail:
  • 联系方式: 李仁静,E-mail:18046108857@163.com。
  • 基金资助:
    国家科技重点研发项目(2019YFD1001400); 柑橘种质资源精准鉴定项目(192111142)

Mining Genes Related to Fruit Quality in Sweet Oranges Based on Specific Locus Amplified Fragment Sequencing

LI RenJing(), SHEN WanXia, ZHAO WanTong, CHENG Li, LI Pei, JIANG Dong()   

  1. Citrus Research Institute, Southwest University, Chongqing 400712
  • Received:2022-12-17 Accepted:2023-02-13 Published:2023-08-16 Online:2023-08-18

摘要:

【目的】通过对240份不同甜橙资源群体利用SLAF-seq测序数据进行Fst与XP-CLR选择性清除分析,挖掘调控甜橙中优良性状的相关基因,为甜橙的分子育种工作提供重要参考。【方法】对国家柑橘种质资源圃(重庆)中保存的具有广泛遗传多样性和不同地理来源的240份甜橙种质资源进行SLAF-seq测序,获得全基因组范围内的单核苷酸多态性(single nucleotide polymorphism,SNP)基因型数据和单果重、果脐有无、可滴定酸含量等性状的表型数据,分析不同亚群之间Fst与XP-CLR数值。【结果】采用SLAF-seq技术对240份甜橙进行测序,共获得497.82 Mb短读数据,用BWA软件将测序数据比对到甜橙参考基因组上,取GATK和samtools两种方法得到的SNP标记交集,共得到1 467 968个SNP。利用Fst与XP-CLR分析筛选出了与甜橙果脐有无、单果重以及可滴定酸相关的候选基因。对受选择SNP位点附近区域进行基因注释,结果表明基因orange1.1g044639m和orange1.1g023641m参与编码生长素外排载体,可能与脐的形成相关;orange1.1g023641m在单果重性状中的Fst得分最高,其参与编码E3泛素连接酶,可能影响果实大小和重量,orange1.1g046891m可能通过调节碳水化合物的形成来影响果实重量;orange1.1g011684m编码丙酮酸脱氢酶二氢硫辛酰胺转乙酰基酶,其CDS序列发生碱基突变,可能影响了柠檬酸在不同品种间的含量;orange1.1g034502编码丝氨酸/苏氨酸蛋白激酶,基因注释功能与磷酸化/去磷酸化相关。【结论】本研究利用Fst方法对甜橙的SLAF-seq数据进行筛选。最终在甜橙资源的有无果脐、单果重和可滴定酸等性状上筛选出了6个相关的基因,可作为后期验证的候选基因,为甜橙品种的定向改良提供了依据。

关键词: SLAF-seq, Fst, XP-CLR, 甜橙, 单果重, 可滴定酸含量, 果脐有无

Abstract:

【Objective】By using specific locus amplified fragment sequencing (SLAF-seq) sequencing method and combined with fixation indices analysis on different sweet orange populations, the candidate genes related with some excellent traits in sweet orange were mined, so as to provide some candidate genes for the further molecular breeding in sweet orange. 【Method】SLAF-seq technology was used to genotype 240 sweet orange germplasm resources, which represented extensive genetic diversity and from different geographical origins accessions preserved in the National Citrus Germplasm Repository in Beibei of Chongqing. The genomic SNP genotype data were obtained using the sweet orange genome as the reference, and the Fst and XP-CLR values between different subpopulations were calculated. 【Result】A total of 497.82 Mb-reads were obtained by sequencing 240 sweet oranges accessions with SLAF-seq technology, after the sequencing reads were mapped on to the reference genome by BWA software, and a total of 1 467 968 SNPs were identified by GATK and samtools. The Fst and XP-CLR indices were used to screen out candidate genes related to three traits, including fruit navel occurrence, fruit weight, and titratable acid content. Those genes adjacent to the selected SNPs were called. The result showed that orange1.1G044639m and orange1.1g023641m which annotated auxin efflux vector were related to the formation of navel in sweet orange. SNP in orange1.1G023641m which encoded E3 ubiquitin ligase had the highest Fst score between two different single-fruit weight population, and orange1.1G046891m might affect fruit weight by regulating carbohydrate formation; orange1.1G011684m encoding dihydrolipoamide transacetylase of PDH, and the SNP caused a nonsynonymous mutation in its CDS region, which might determine the citric acid content in fruit; orange1.1G034502m encodes Serine/threonine protein kinase, annotated as phosphorylation dephosphorylation function also related with the citric acid content in fruit. 【Conclusion】In this study, the Fst indices were used to screen six candidate genes associated with three fruit traits in sweet orange by using SNPs from SLAF-seq data. Finally, the relevant genes were screened out for three horticultural traits, including navel occurrence, fruit weight and titratable acid content, and the identified candidate genes should be giving further investigation to explore their regulation mechanism in these traits.

Key words: SLAF-seq, Fst, XP-CLR, sweet orange, fruit weight, titratable acids content, fruit navel occurrence