State Key Laboratory of Cotton Biology, Cotton Institute of the Chinese Academy of Agricultural Sciences, Key Laboratory of Cotton Genetic Improvement, Ministry of Agriculture, Anyang, Henan 455000, China; College of Agronomy, Northwest A&F University, Yangling, Shanxi 712100, China.
State Key Laboratory of Cotton Biology, Cotton Institute of the Chinese Academy of Agricultural Sciences, Key Laboratory of Cotton Genetic Improvement, Ministry of Agriculture, Anyang, Henan 455000, China.
Plant Sci. 2019 Sep;286:89-97. doi: 10.1016/j.plantsci.2019.05.019. Epub 2019 May 31.
Cottonseed oil is one of the most important renewable resources for edible oil and biodiesel. To detect QTLs associated with cottonseed oil content (OC) and identify candidate genes that regulate oil biosynthesis, a panel of upland cotton germplasm lines was selected among those previously used to perform GWASs in China. In the present study, 13 QTLs associated with 53 common SNPs on 13 chromosomes were identified in multiple environments based on 15,369 polymorphic SNPs using the Cotton63 KSNP array. Of these, the OC QTL qOC-Dt5-1 delineated by nine SNPs occurred in a confidence interval of 4 SSRs with previously reported OC QTLs. A combined transcriptome and qRT-PCR analysis revealed that a peroxidase gene (GhPRXR1) was predominantly expressed during the middle-late stage (20-35 days post anthesis) of ovule development. The overexpression of GhPRXR1 in yeast significantly increased the OC by 20.01-37.25 %. Suppression of GhPRXR1 gene expression in the virus-induced gene-silenced cotton reduced the OC by 18.11%. Our results contribute to identifying more OC QTLs and verifying a candidate gene that influences cottonseed oil biosynthesis.
棉籽油是食用油和生物柴油最重要的可再生资源之一。为了检测与棉籽油含量(OC)相关的 QTL 并鉴定调控油脂生物合成的候选基因,本研究从先前在中国进行 GWAS 研究中使用的陆地棉种质资源系中选择了一组系。在本研究中,利用 Cotton63KSNP 阵列,在 13 条染色体上的 53 个常见 SNP 上,基于 15369 个多态性 SNP,在多个环境中鉴定到 13 个与 OC 相关的 QTL。其中,由 9 个 SNP 界定的 OC QTL qOC-Dt5-1 与先前报道的 OC QTL 位于 4 个 SSR 置信区间内。综合转录组和 qRT-PCR 分析表明,一个过氧化物酶基因(GhPRXR1)在胚珠发育的中晚期(授粉后 20-35 天)表达量较高。在酵母中过表达 GhPRXR1 可使 OC 增加 20.01-37.25%。病毒诱导的基因沉默棉中 GhPRXR1 基因表达的抑制使 OC 降低了 18.11%。我们的研究结果有助于鉴定更多的 OC QTL 并验证影响棉籽油生物合成的候选基因。