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Cy-1 是番茄曲叶病毒抗性的一个主要 QTL,其在黄瓜(Cucumis sativus)中含有一个编码 DFDGD 类 RNA 依赖的 RNA 聚合酶的基因。

Cy-1, a major QTL for tomato leaf curl New Delhi virus resistance, harbors a gene encoding a DFDGD-Class RNA-dependent RNA polymerase in cucumber (Cucumis sativus).

机构信息

Graduate School of Agriculture, Kindai University, Nara, Nara, 631-8505, Japan.

Faculty of Agriculture, Kindai University, Nara, Nara, 631-8505, Japan.

出版信息

BMC Plant Biol. 2024 Oct 2;24(1):879. doi: 10.1186/s12870-024-05591-7.

Abstract

BACKGROUND

Tomato leaf curl New Delhi virus (ToLCNDV) (family Geminiviridae, genus Begomovirus) is a significant threat to cucumber (Cucumis sativus) production in many regions. Previous studies have reported the genetic mapping of loci related to ToLCNDV resistance, but no resistance genes have been identified.

RESULTS

We conducted map-based cloning of the ToLCNDV resistance gene in cucumber accession No.44. Agroinfiltration and graft-inoculation analyses confirmed the resistance of No.44 to ToLCNDV isolates from the Mediterranean and Asian countries. Initial mapping involving two rounds of phenotyping with two independent F populations generated by crossing the begomovirus-susceptible cultivar SHF and No.44 consistently detected major quantitative trait loci (QTLs) on chromosomes 1 and 2 that confer resistance to ToLCNDV. Fine-mapping of Cy-1, the dominant QTL on chromosome 1, using F populations narrowed the candidate region to a 209-kb genomic segment harboring 24 predicted genes. Among these genes, DFDGD-class RNA-dependent RNA polymerase (CsRDR3), an ortholog of Ty-1/Ty-3 of tomato and Pepy-2 of capsicum, was found to be a strong candidate conferring ToLCNDV resistance. The CsRDR3 sequence of No.44 contained multiple amino acid substitutions; the promoter region of CsRDR3 in No.44 had a large deletion; and the CsRDR3 transcript levels were greater in No.44 than in SHF. Virus-induced gene silencing (VIGS) of CsRDR3 using two chromosome segment substitution lines harboring chromosome 1 segments derived from No.44 compromised resistance to ToLCNDV.

CONCLUSIONS

Forward and reverse genetic approaches identified CsRDR3, which encodes a DFDGD-class RNA-dependent RNA polymerase, as the gene responsible for ToLCNDV resistance at the major QTL Cy-1 on chromosome 1 in cucumber. Marker-assisted breeding of ToLCNDV resistance in cucumber will be expedited by using No.44 and the DNA markers developed in this study.

摘要

背景

番茄黄曲叶病毒(ToLCNDV)(双生病毒科,菜豆花叶病毒属)是许多地区黄瓜生产的重大威胁。先前的研究已经报道了与 ToLCNDV 抗性相关的基因座的遗传图谱,但尚未鉴定出抗性基因。

结果

我们对黄瓜品系 44 号进行了 ToLCNDV 抗性基因的图谱克隆。农杆菌浸润和嫁接接种分析证实,44 号对来自地中海和亚洲国家的 ToLCNDV 分离株具有抗性。通过将感病毒的栽培品种 SHF 和 44 号杂交,进行了两轮表型分析,产生了两个独立的 F 群体,最初的图谱检测到位于染色体 1 和 2 上的主要数量性状位点(QTL),这些 QTL 赋予了对 ToLCNDV 的抗性。利用 F 群体对染色体 1 上的显性 QTL Cy-1 进行精细作图,将候选区域缩小到一个包含 24 个预测基因的 209-kb 基因组片段。在这些基因中,DFDGD 类 RNA 依赖性 RNA 聚合酶(CsRDR3)是番茄 Ty-1/Ty-3 和辣椒 Pepy-2 的同源物,被认为是赋予 ToLCNDV 抗性的强候选基因。44 号的 CsRDR3 序列包含多个氨基酸取代;44 号的 CsRDR3 启动子区域有一个大的缺失;并且 44 号的 CsRDR3 转录水平高于 SHF。利用两个含有来自 44 号的染色体 1 片段的染色体片段替换系进行 CsRDR3 的病毒诱导基因沉默(VIGS),导致对 ToLCNDV 的抗性受损。

结论

正向和反向遗传学方法鉴定出 CsRDR3,该基因编码 DFDGD 类 RNA 依赖性 RNA 聚合酶,是黄瓜 1 号染色体上主要 QTL Cy-1 对 ToLCNDV 抗性的基因。利用 44 号和本研究中开发的 DNA 标记,将加速黄瓜对 ToLCNDV 抗性的标记辅助选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb9a/11446051/9afc5e4e1233/12870_2024_5591_Fig1_HTML.jpg

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