Institute of Crop Science, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.
Qujing Academy of Agricultural Sciences, Qujing, 655000, China.
BMC Plant Biol. 2022 May 25;22(1):260. doi: 10.1186/s12870-022-03635-4.
Common bean (Phaseolus vulgaris L.) is an important agricultural product with large nutritional value, and the insect pest Acanthoscelides obtectus (Say) seriously affects its product quality and commodity quality during storage. Few researches on genes of bruchid resistance have investigated in common bean cultivars.
In this study, a bruchid-resistant cultivar black kidney bean and a highly susceptible accession Longyundou3 from different gene banks were crossed to construct a recombinant inbred line population. The genetic analysis indicated a quantitative inheritance of the bruchid resistance trait controlled by polygenes. A high-density genetic map of a total map distance of 1283.68 cM with an average interval of 0.61 cM between each marker was constructed using an F population of 157 recombinant inbred lines. The map has 3106 bin markers, containing 2,234,769 SNPs. Using the high-density genetic map, a new quantitative trait locus for the resistance to Acanthoscelides obtectus was identified on chromosome 6. New molecular markers based on the candidate region were developed, and this locus was further delimited to an interval of 122.3 kb between SSR markers I6-4 and I6-16 using an F population. This region comprised five genes. Phvul.006G003700, which encodes a bifunctional inhibitor, may be a potential candidate gene for bruchid resistance. Sequencing analysis of candidate gene identified a 5 bp insertion-deletion in promoter of gene Phvul.006G003700 between two parents. Expression analysis of candidate gene revealed that the expression level of Phvul.006G003700 in bruchid-resistant parent was markedly higher than that in bruchid-susceptible parent both in dry seeds and leaves.
A high-density genetic linkage map was constructed utilizing whole-genome resequencing and one new QTL for bruchid resistance was identified on chromosome 6 in common bean cultivar. Phvul.006G003700 (encoding a bifunctional inhibitor) may be a potential candidate gene. These results may form the basis for further research to reveal the bruchid resistance molecular mechanism of common bean.
普通菜豆(Phaseolus vulgaris L.)是一种重要的农产品,具有很高的营养价值,其在储存过程中容易受到豆象的侵害,严重影响其产品质量和商品质量。在普通菜豆品种中,对豆象抗性基因的研究较少。
本研究以不同基因库的抗虫品种黑肾豆和高感品种龙云豆 3 为亲本,构建重组自交系群体,遗传分析表明该抗虫性受多基因控制,表现为数量遗传。利用 157 个重组自交系构建了一张总图谱距离为 1283.68cM、标记间平均距离为 0.61cM 的高密度遗传图谱,该图谱包含 3106 个 bin 标记,包含 2234769 个 SNPs。利用高密度遗传图谱,在第 6 号染色体上鉴定到一个新的抗豆象数量性状位点。基于候选区域开发了新的分子标记,利用 F2 群体将该位点进一步限定在 SSR 标记 I6-4 和 I6-16 之间 122.3kb 的区间内,该区间包含 5 个基因。Phvul.006G003700 编码一个双功能抑制剂,可能是豆象抗性的一个潜在候选基因。候选基因测序分析发现,在抗虫亲本和感虫亲本之间,该基因启动子区存在 5bp 的插入缺失。候选基因表达分析表明,在抗虫亲本的干种子和叶片中,Phvul.006G003700 的表达水平明显高于感虫亲本。
本研究利用全基因组重测序构建了一张高密度遗传连锁图谱,并在普通菜豆品种第 6 号染色体上鉴定到一个新的抗豆象数量性状位点。Phvul.006G003700(编码一个双功能抑制剂)可能是一个潜在的候选基因。这些结果可能为进一步研究普通菜豆抗豆象的分子机制提供基础。