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智利野生番茄的渐渗系在栽培番茄基因组中的存在。

Introgression lines of Solanum sitiens, a wild nightshade of the Atacama Desert, in the genome of cultivated tomato.

机构信息

C. M. Rick Tomato Genetics Resource Center, Department of Plant Sciences, University of California, Davis, CA, 95616, USA.

出版信息

Plant J. 2019 Nov;100(4):836-850. doi: 10.1111/tpj.14460. Epub 2019 Sep 15.

DOI:10.1111/tpj.14460
PMID:31323151
Abstract

The wild tomato relative Solanum sitiens is a xerophyte endemic to the Atacama Desert of Chile and a potential source of genes for tolerance to drought, salinity and low-temperature stresses. However, until recently, strong breeding barriers prevented its hybridization and introgression with cultivated tomato, Solanum lycopersicum L. We overcame these barriers using embryo rescue, bridging lines and allopolyploid hybrids, and synthesized a library of introgression lines (ILs) that captures the genome of S. sitiens in the background of cultivated tomato. The IL library consists of 56 overlapping introgressions that together represent about 93% of the S. sitiens genome: 65% in homozygous and 28% in heterozygous (segregating) ILs. The breakpoints of each segment and the gaps in genome coverage were mapped by single nucleotide polymorphism (SNP) genotyping using the SolCAP SNP array. Marker-assisted selection was used to backcross selected introgressions into tomato, to recover a uniform genetic background, to isolate recombinant sub-lines with shorter introgressions and to select homozygous genotypes. Each IL contains a single S. sitiens chromosome segment, defined by markers, in the genetic background of cv. NC 84173, a fresh market inbred line. Large differences were observed between the lines for both qualitative and quantitative morphological traits, suggesting that the ILs contain highly divergent allelic variation. Several loci contributing to unilateral incompatibility or hybrid necrosis were mapped with the lines. This IL population will facilitate studies of the S. sitiens genome and expands the range of genetic variation available for tomato breeding and research.

摘要

野生番茄近缘种 Solanum sitiens 是智利阿塔卡马沙漠的旱生植物,是耐旱、耐盐和耐低温胁迫的基因的潜在来源。然而,直到最近,强烈的育种障碍阻止了它与栽培番茄 Solanum lycopersicum L. 的杂交和基因渗入。我们使用胚挽救、桥接系和异源多倍体杂种克服了这些障碍,并合成了一个渗入系(IL)文库,该文库以栽培番茄为背景捕获了 S. sitiens 的基因组。IL 文库由 56 个重叠的渗入片段组成,这些片段共同代表了 S. sitiens 基因组的约 93%:65%在纯合子中,28%在杂合子(分离)ILs 中。每个片段的断点和基因组覆盖的缺口通过使用 SolCAP SNP 阵列进行单核苷酸多态性(SNP)基因分型进行了映射。通过标记辅助选择,将选定的渗入片段回交到番茄中,恢复均匀的遗传背景,分离具有较短渗入片段的重组亚系,并选择纯合基因型。每个 IL 都包含一个在遗传背景为 cv. NC 84173(一种鲜食自交系)中的标记定义的 S. sitiens 染色体片段。在定性和定量形态性状方面,这些系之间存在着显著的差异,这表明 ILs 包含高度分化的等位基因变异。用这些系定位了几个与单侧不亲和或杂种坏死有关的基因座。该 IL 群体将有助于研究 S. sitiens 基因组,并扩展了番茄育种和研究中可用的遗传变异范围。

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