Li Bao, Liu Xinhong, Guo Yiming, Deng Lichao, Qu Liang, Yan Mingli, Li Mei, Wang Tonghua
Crop Research Institute, Hunan Academy of Agricultural Sciences, Changsha, 410125, China.
Hunan Hybrid Rapeseed Engineering and Technology Research Center, Changsha, 410125, China.
Theor Appl Genet. 2023 Mar 3;136(3):29. doi: 10.1007/s00122-023-04325-x.
Using map-based cloning and transgenic transformation, we revealed that glycogen kinase synthase 3-like kinase, BnaC01.BIN2, modulates plant height and yield in rapeseed. The modification of plant height is one of the most important goals in rapeseed breeding. Although several genes that regulate rapeseed plant height have been identified, the genetics mechanisms underlying rapeseed plant height regulation remain poorly understood, and desirable genetic resources for rapeseed ideotype breeding are scarce. Here, we map-based cloned and functionally verified that the rapeseed semi-dominant gene, BnDF4, greatly affects rapeseed plant height. Specifically, BnDF4 encodes brassinosteroid (BR)-insensitive 2, a glycogen synthase kinase 3 primarily expressed in the lower internodes to modulate rapeseed plant height by blocking basal internode-cell elongation. Transcriptome data showed that several cell expansion-related genes involving auxin and BRs pathways were significantly downregulated in the semi-dwarf mutant. Heterozygosity in the BnDF4 allele results in small stature with no marked differences in other agronomic traits. Using BnDF4 in the heterozygous condition, the hybrid displayed strong yield heterosis through optimum intermediate plant height. Our results provide a desirable genetic resource for breeding semi-dwarf rapeseed phenotypes and support an effective strategy for breeding rapeseed hybrid varieties with strong yield heterosis.
通过图位克隆和转基因转化,我们发现糖原激酶合酶3样激酶BnaC01.BIN2调控油菜的株高和产量。株高改良是油菜育种最重要的目标之一。尽管已经鉴定出几个调控油菜株高的基因,但油菜株高调控的遗传机制仍知之甚少,且油菜理想株型育种所需的遗传资源匮乏。在此,我们通过图位克隆并功能验证了油菜半显性基因BnDF4对油菜株高有显著影响。具体而言,BnDF4编码油菜素内酯(BR)不敏感蛋白2,这是一种糖原合酶激酶3,主要在下位节间表达,通过阻止基部节间细胞伸长来调控油菜株高。转录组数据显示,在半矮秆突变体中,几个涉及生长素和油菜素内酯信号通路的细胞扩张相关基因显著下调。BnDF4等位基因的杂合性导致植株矮小,而其他农艺性状无明显差异。在杂合条件下使用BnDF4,杂交种通过最佳中间株高表现出较强的产量杂种优势。我们的研究结果为培育半矮秆油菜表型提供了理想的遗传资源,并支持了一种培育具有较强产量杂种优势的油菜杂交品种的有效策略。