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利用全基因组重测序对芥菜白花突变体Bjpc2进行精细定位和候选基因分析。

Fine-mapping and candidate gene analysis of the Brassica juncea white-flowered mutant Bjpc2 using the whole-genome resequencing.

作者信息

Zhang Xiangxiang, Li Rihui, Chen Li, Niu Sailun, Chen Lei, Gao Jie, Wen Jing, Yi Bin, Ma Chaozhi, Tu Jingxing, Fu Tingdong, Shen Jinxiong

机构信息

National Key Laboratory of Crop Genetic Improvement, National Sub-center of Rapeseed Improvement in Wuhan, Huazhong Agricultural University, Wuhan, 430070, People's Republic of China.

出版信息

Mol Genet Genomics. 2018 Apr;293(2):359-370. doi: 10.1007/s00438-017-1390-5. Epub 2017 Nov 8.

Abstract

Flower color in Brassica spp. is an important trait and considered a major visual signal for insect-pollinated plants. In previous study, we isolated and identified two genes (BjPC1 and BjPC2) that control the flower color in B. juncea, and mapped BjPC1 to a 0.13-cM region. In this study, we report the fine-mapping and candidate analysis of BjPC2. We conducted whole-genome resequencing, using bulked segregant analysis (BSA) to determine the BjPC2 candidate intervals. Crossing, allelism testing, and repeated full-sib mating were used to generate XG3, a near isogenic line (NIL) population that segregated on the BjPC2 locus. Through a genome-wide comparison of single nucleotide polymorphism (SNP) profiles between the yellow- and white-flowered bulks, a candidate interval for BjPC2 was identified on chromosome B04 (2.45 Mb). The BjPC2 linkage map was constructed with the newly developed simple sequence repeat (SSR) markers in the candidate interval to narrow the candidate BjPC2 region to 31-kb. Expression profiling and RNA-seq analysis partially confirmed that the AtPES2 homolog, BjuB027334 is the most promising candidate gene for BjPC2. Furthermore, analyses with high pressure liquid chromatography and transmission electron microscopy demonstrated that BjPC2 might be important in xanthophyll esterification, a process that limits xanthophyll degradation and increases sequestration. Overall, we mapped the BjPC2 to a 31-kb region on the B04 in B. juncea and identified BjuB027334 as a valuable candidate gene. Our results provide a basis for understanding the molecular mechanisms underlying the white-flowered trait and for molecular marker-assisted selection of flower color in B. juncea breeding.

摘要

芸苔属植物的花色是一个重要性状,被认为是虫媒授粉植物的主要视觉信号。在之前的研究中,我们分离并鉴定了两个控制芥菜花色的基因(BjPC1和BjPC2),并将BjPC1定位到一个0.13厘摩的区域。在本研究中,我们报告了BjPC2的精细定位和候选基因分析。我们进行了全基因组重测序,采用混合分离群体分析法(BSA)来确定BjPC2的候选区间。通过杂交、等位性测试和重复全同胞交配,构建了一个在BjPC2位点上分离的近等基因系(NIL)群体XG3。通过对黄花和白花混合群体之间的单核苷酸多态性(SNP)图谱进行全基因组比较,在B04染色体上确定了一个BjPC2的候选区间(2.45兆碱基)。利用候选区间中新开发的简单序列重复(SSR)标记构建了BjPC2连锁图谱,将BjPC2候选区域缩小到31千碱基。表达谱分析和RNA测序分析部分证实,拟南芥PES2同源基因BjuB027334是BjPC2最有希望的候选基因。此外,高压液相色谱和透射电子显微镜分析表明,BjPC2可能在叶黄素酯化过程中起重要作用,该过程限制了叶黄素的降解并增加了其封存。总体而言,我们将BjPC2定位到芥菜B04染色体上的一个31千碱基区域,并鉴定出BjuB027334为一个有价值的候选基因。我们的结果为理解白花性状的分子机制以及芥菜育种中花色的分子标记辅助选择提供了基础。

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