Candidate genes associated with low temperature tolerance in cucumber adult plants identified by combining GWAS & QTL mapping.

Caixia Li, Shaoyun Dong, Diane M Beckles, Xiaoping Liu, Jiantao Guan, Zaizhan Wang, Xingfang Gu, Han Miao, Shengping Zhang
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Abstract

Fruit quality and yield are reduced when cucumber (Cucumis sativus L.) plants are exposed to low temperature (LT) stress, yet, the inheritance and genes linked to cold tolerance in adult plants have not been reported yet. Here, the LT-tolerance of 120 cucumber accessions representing four ecotypes were evaluated by GWAS, and also, in 140 recombinant inbred lines (RILs) derived from a biparental cross. Plants were exposed to naturally occurring LT environments in a plastic greenhouse, in winter 2022, and 2023, and a low temperature injury index (LTII) was employed to evaluate plant performance. Genetic analysis revealed that the LT-tolerance evaluated in the adult cucumber plants was a multigenic quantitative trait, and that 18 of the 120 accessions were highly LT tolerant by our LTII assessment. Two loci (gLTT1.1 and gLTT3.1) exhibited strong signals that were consistent and stable in two environments. In addition, two QTLs-qLTT1.2 on chromosome (Chr.) 1, and qLTT3.1 on Chr. 3, were discovered in all tests using RIL population derived from a cross between LT-sensitive 'CsIVF0106', and LT-tolerant 'CsIVF0168'. qLTT1.2 was delimited to a 1.24-Mb region and qLTT3.1 was narrowed to a 1.43-Mb region. Interestingly, a peak single nucleotide polymorphism (SNP) at gLTT1.1 and gLTT3.1 was also found in qLTT1.2 and qLTT3.1, respectively. These loci were thus renamed as gLTT1.1 and gLTT3.1. In these regions, 25 genes were associated with the LT response. By identifying differences in haplotypes and transcript profiles among these genes, we identified four candidates: CsaV3_1G012520 (an ethylene-responsive transcription factor) and CsaV3_1G013060 (a RING/U-box superfamily protein) in gLTT1.1, and two RING-type E3 ubiquitin transferases at CsaV3_3G018440 and CsaV3_3G017700 in gLTT3.1 that may regulate LT-tolerance in adult cucumber. Interestingly, the accessions in which the LT-tolerant haplotypes for two loci were pyramided, displayed maximally high tolerance for LT. These findings therefore provide a solid foundation for the identification of LT-tolerant genes and the molecular breeding of cucumber with LT-tolerance.

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利用GWAS和QTL定位相结合的方法鉴定黄瓜成株耐低温相关候选基因。
黄瓜(Cucumis sativus L.)在低温胁迫下果实品质和产量下降,但成株耐冷性的遗传和相关基因尚未见报道。本研究利用GWAS技术对来自4个生态型的120个黄瓜材料和140个双亲本杂交的重组自交系(RILs)的耐低温性进行了评价。将植物分别于2022年和2023年冬季暴露于塑料大棚的低温环境中,采用低温伤害指数(LTII)评价植物的低温性能。遗传分析表明,成体黄瓜耐盐性是一种多基因数量性状,经LTII鉴定,120份材料中有18份具有高耐盐性。两个基因座(gLTT1.1和gLTT3.1)在两种环境中表现出一致和稳定的强信号。此外,在使用由lt敏感的‘CsIVF0106’和lt耐受性的‘CsIVF0168’杂交而来的RIL群体进行的所有测试中,都发现了两个qtl - qltt1.2位于染色体(Chr.) 1, qLTT3.1位于Chr. 3。qLTT1.2被划分为1.24 mb的区域,qLTT3.1被缩小到1.43 mb的区域。有趣的是,gLTT1.1和gLTT3.1的单核苷酸多态性(SNP)峰值也分别在qLTT1.2和qLTT3.1中被发现。这些基因座因此被重命名为gLTT1.1和gLTT3.1。在这些区域中,有25个基因与LT反应相关。通过鉴定这些基因之间的单倍型和转录谱的差异,我们确定了四个候选基因:gLTT1.1中的CsaV3_1G012520(乙烯应答转录因子)和CsaV3_1G013060 (RING/U-box超家族蛋白),以及gLTT3.1中的CsaV3_3G018440和CsaV3_3G017700两个RING型E3泛素转移酶,它们可能调节成年黄瓜的耐盐性。有趣的是,具有两个位点的耐lt单倍型的材料对lt的耐受性最高。这些发现为耐lt基因的鉴定和耐lt黄瓜的分子育种提供了坚实的基础。
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