Hua Yingpeng, Zhang Didi, Zhou Ting, He Mingliang, Ding Guangda, Shi Lei, Xu Fangsen
National Key Laboratory of Crop Genetic Improvement, Microelement Research Centre, Huazhong Agricultural University, Wuhan, 430070, China.
Plant Cell Environ. 2016 Jul;39(7):1601-18. doi: 10.1111/pce.12731. Epub 2016 May 5.
Allotetraploid rapeseed (Brassica napus L., An An Cn Cn , 2n = 4x = 38) is extraordinarily susceptible to boron (B) deficiency, a ubiquitous problem causing severe losses in seed yield. The breeding of B-efficient rapeseed germ plasm is a cost-effective and environmentally friendly strategy for the agricultural industry; however, genes regulating B efficiency in allotetraploid rapeseed have not yet been isolated. In this research, quantitative trait locus (QTL) fine mapping and digital gene expression (DGE) profiling were combined to identify the candidate genes underlying the major-effect QTL qBEC-A3a, which regulates B efficiency. Comparative phenotype analyses of the near-isogenic lines (NILs) indicated that qBEC-A3a plays a significant role in improving B efficiency under B deficiency. Exploiting QTL fine mapping and DGE analyses revealed a nodulin 26-like intrinsic protein (NIP) gene, which encodes a likely boric acid channel. The gene co-expression network for putative B transporters also highlighted its central role in the efficiency of B uptake. An integration of whole-genome re-sequencing (WGS) with bulked segregant analysis (BSA) authenticated the emerging availability of QTL-seq for the QTL analyses in allotetraploid rapeseed. Transcriptomics-assisted QTL mapping and comparative genomics provided novel insights into the rapid identification of quantitative trait genes (QTGs) in plant species with complex genomes.
异源四倍体油菜(甘蓝型油菜,An An Cn Cn,2n = 4x = 38)对硼(B)缺乏极为敏感,硼缺乏是一个普遍存在的问题,会导致种子产量严重损失。培育硼高效油菜种质是农业产业中一种经济高效且环境友好的策略;然而,调控异源四倍体油菜硼效率的基因尚未被分离出来。在本研究中,结合数量性状基因座(QTL)精细定位和数字基因表达(DGE)分析,以鉴定调控硼效率的主效QTL qBEC - A3a的候选基因。近等基因系(NILs)的比较表型分析表明,qBEC - A3a在硼缺乏条件下提高硼效率方面发挥着重要作用。利用QTL精细定位和DGE分析揭示了一个类结节蛋白26内在蛋白(NIP)基因,该基因编码一种可能的硼酸通道。假定硼转运蛋白的基因共表达网络也突出了其在硼吸收效率中的核心作用。全基因组重测序(WGS)与混合分离分析(BSA)相结合,验证了QTL - seq在异源四倍体油菜QTL分析中的可行性。转录组学辅助的QTL定位和比较基因组学为在具有复杂基因组的植物物种中快速鉴定数量性状基因(QTGs)提供了新的见解。