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QTL Mapping by SLAF-seq and Expression Analysis of Candidate Genes for Aphid Resistance in Cucumber

机译:通过SLAF-seq进行QTL定位和黄瓜蚜虫抗性候选基因的表达分析

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摘要

Cucumber, a very important vegetable crop worldwide, is easily damaged by pests. Aphid is one of the most serious cucumber pests and frequently cause severe damage to commercially produced crops. Understanding the genetic mechanisms underlying pest resistance is important for aphid-resistant cucumber varieties breeding. In this study, two parental cucumber lines, JY30 (aphid susceptible) and EP6392 (aphid resistant), and pools of resistant and susceptible (n = 50 each) plants from 1000 F2 individuals derived from crossing JY30 with EP6392, were used to detect genomic regions associated with aphid resistance in cucumbers. The analysis was performed using specific length amplified fragment sequencing (SLAF-seq), bulked segregant analysis (BSA), and single nucleotide polymorphism index (SNP-index) methods. A main effect QTL (quantitative trait locus) of 0.31 Mb on Chr5, including 43 genes, was identified by association analysis. Sixteen of the 43 genes were identified as potentially associated with aphid resistance through gene annotation analysis. The effect of aphid infestation on the expression of these candidate genes screened by SLAF-seq was investigated in EP6392 plants by qRT-PCR. The results indicated that seven genes including encoding transcription factor MYB59-like (Csa5M641610.1), auxin transport protein BIG-like (Csa5M642140.1), F-box/kelch-repeat protein At5g15710-like (Csa5M642160.1), transcription factor HBP-1a-like (Csa5M642710.1), beta-glucan-binding protein (Csa5M643380.1), endo-1,3(4)-beta-glucanase 1-like (Csa5M643880.1), and proline-rich receptor-like protein kinase PERK10-like (Csa5M643900.1), out of the 16 genes were down regulated after aphid infestation, whereas 5 genes including encoding probable leucine-rich repeat (LRR) receptor-like serine/threonine-protein kinase At5g15730-like (Csa5M642150.1), Stress-induced protein KIN2 (Csa5M643240.1 and Csa5M643260.1), F-box family protein (Csa5M643280.1), F-box/kelch-repeat protein (Csa5M643290.1), were up-regulated after aphid infestation. The gene Csa5M642150.1, encoding probable LRR receptor-like serine/threonine-protein kinase At5g15730-like, was most likely a key candidate gene in cucumber plants in response to infestation. This study provides a certain theoretical basis of molecular biology for genetic improvement of cucumber aphid resistance and aphid resistant variety breeding.
机译:黄瓜是世界范围内非常重要的蔬菜作物,很容易受到害虫的破坏。蚜虫是最严重的黄瓜害虫之一,经常对商业生产的农作物造成严重损害。了解抗虫性的遗传机制对于抗蚜虫黄瓜品种的育种很重要。在这项研究中,使用两个亲本黄瓜系JY30(易感蚜虫)和EP6392(抗蚜虫),以及从JY30与EP6392杂交而来的1000个F2个体的抗性和易感植物(每个n = 50)库中检测基因组黄瓜中与蚜虫抗性有关的区域。使用特定长度扩增片段测序(SLAF-seq),本体分离分析(BSA)和单核苷酸多态性指数(SNP-index)方法进行分析。通过关联分析确定了0.31 Mb对Chr5的主要影响QTL(定量性状基因座),包括43个基因。通过基因注释分析,鉴定出43个基因中有16个与蚜虫抗性潜在相关。通过qRT-PCR在EP6392植物中研究了蚜虫侵染对通过SLAF-seq筛选的这些候选基因表达的影响。结果表明,编码转录因子MYB59样(Csa5M641610.1),生长素转运蛋白BIG样(Csa5M642140.1),F-box / kelch-repeat蛋白At5g15710样(Csa5M642160.1),转录因子等7个基因HBP-1a-like(Csa5M642710.1),β-葡聚糖结合蛋白(Csa5M643380.1),endo-1,3(4)-beta-葡聚糖酶1-like(Csa5M643880.1)和脯氨酸丰富的受体-像蛋白激酶PERK10样(Csa5M643900.1)一样,在蚜虫侵染后16个基因中的表达下调,而5个基因包括编码可能富含亮氨酸的重复序列(LRR)受体样丝氨酸/苏氨酸蛋白激酶At5g15730样( Csa5M642150.1),应激诱导蛋白KIN2(Csa5M643240.1和Csa5M643260.1),F-box家族蛋白(Csa5M643280.1),F-box / kelch-repeat蛋白(Csa5M643290.1)在上调后蚜虫侵扰。编码可能为LRR受体样丝氨酸/苏氨酸蛋白激酶At5g15730样的基因Csa5M642150.1最有可能是黄瓜植物应对这种侵害的关键候选基因。该研究为黄瓜抗蚜和抗蚜品种的遗传改良提供了分子生物学的理论基础。

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