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Fine mapping of the tomato yellow leaf curl virus resistance gene Ty-2 on chromosome 11 of tomato

机译:番茄黄曲叶病毒抗性基因Ty-2在番茄11号染色体上的精细定位

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摘要

Resistances to begomoviruses, including bipartite tomato mottle virus and monopartite tomato yellow leaf curl virus (TYLCV), have been introgressed to cultivated tomato (Solanum lycopersicum) from wild tomato accessions. A major gene, Ty-2 from S. habrochaites f. glabratum accession “B6013,” that confers resistance to TYLCV was previously mapped to a 19-cM region on the long arm of chromosome 11. In the present study, approximately 11,000 plants were screened and nearly 157 recombination events were identified between the flanking markers C2_At1g07960 (82.5 cM, physical distance 51.387 Mb) and T0302 (89 cM, 51.878 Mb). Molecular marker analysis of recombinants and TYLCV evaluation of progeny from these recombinants localized Ty-2 to an approximately 300,000-bp interval between markers UP8 (51.344 Mb) and M1 (51.645 Mb). No recombinants were identified between TG36 and C2_At3g52090, a region of at least 115 kb, indicating severe recombination suppression in this region. Due to the small interval, fluorescence in situ hybridization analysis failed to clarify whether recombination suppression is caused by chromosomal rearrangements. Candidate genes predicted based on tomato genome annotation were analyzed by RT-PCR and virus-induced gene silencing. Results indicate that the NBS gene family present in the Ty-2 region is likely not responsible for the Ty-2-conferred resistance and that two candidate genes might play a role in the Ty-2-conferred resistance. Several markers very tightly linked to the Ty-2 locus are presented and useful for marker-assisted selection in breeding programs to introgress Ty-2 for begomovirus resistance.Electronic supplementary materialThe online version of this article (doi:10.1007/s11032-014-0072-9) contains supplementary material, which is available to authorized users.
机译:已经对来自野生番茄种的栽培番茄(Solanum lycopersicum)渗入了对begomoviruses的抗性,包括两方番茄斑驳病毒和单方番茄黄叶卷曲病毒(TYLCV)。一个主要基因,S。habrochaites f。的Ty-2。赋予TYLCV抗性的青草登录号“ B6013”先前定位于11号染色体长臂的19-cM区。 (82.5 cM,物理距离51.387 Mb)和T0302(89 cM,51.878 Mb)。重组子的分子标记分析和TYLCV对这些重组子代的后代评估将Ty-2定位在标记UP8(51.344 Mb)和M1(51.645 Mb)之间大约300,000 bp的间隔。在TG36和C2_At3g52090(至少115kb的区域)之间未发现重组体,表明该区域存在严重的重组抑制。由于间隔很小,荧光原位杂交分析无法阐明重组抑制是否是由染色体重排引起的。通过RT-PCR和病毒诱导的基因沉默分析了基于番茄基因组注释预测的候选基因。结果表明,存在于Ty-2区域的NBS基因家族可能与Ty-2赋予的抗性无关,并且两个候选基因可能在Ty-2赋予的抗性中起作用。提出了与Ty-2基因座非常紧密相关的几种标记物,这些标记物可用于育种程序中的标记物辅助选择,以使 Ty - 2 渗入对夜蛾病毒的抗性。电子补充材料在线本文的版本(doi:10.1007 / s11032-014-0072-9)包含补充材料,可供授权用户使用。

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