State Key Laboratory of Plateau Ecology and Agriculture of Qinghai University, Key Laboratory of Qinghai Province for Spring Rapeseed Genetic Improvement, The Qinghai Research Branch of the National Rapeseed Genetic Improvement Center, Qinghai Academy of Agricultural and Forestry Sciences, Qinghai University, Xining, 810016, China.
National Key Lab of Crop Genetic Improvement, National Center of Rapeseed Improvement in Wuhan, Huazhong Agricultural University, Wuhan, 430070, P.R. China.
Sci Rep. 2018 Mar 28;8(1):5339. doi: 10.1038/s41598-018-23636-4.
Multilocular trait has recently attracted considerable attention for its potential to increase yield. Our previous studies indicated that two genes (Bjln1 and Bjln2) are responsible for multilocular siliques in Brassica juncea and the Bjln1 gene has been delimited to a 208-kb region. In present study, the Bjln1 gene was successfully isolated using the map-based cloning method. Complementation test indicated that the BjuA07.CLV1 (equivalent to BjLn1) could rescue the multilocular phenotype and generate bilocular siliques. Two amino acids changes at positions 28 and 63 in BjuA07.clv1 as well as a 702-bp deletion in its promoter have been proved to affect the carpel numbers. Microscopic analyses suggested that BjuA07.CLV1 is involved in the maintenance of shoot and floral meristem size. The expression level of BjuA07.clv1 was significantly reduced in the SAM. Furthermore, WUS, CLV2, CLV3, RPK2 and POL, key genes in the CLV/WUS signal pathway, showed lower expression level in the multilocular plants. These data suggest that the mutations in the CDS and promoter of BjuA07.clv1 reduced its function and expression level, which disturbed CLV/WUS signal pathway, thereby leading to the enlargement of the shoot and floral meristem and resulting in the multilocular siliques.
多室性状因其潜在的增产能力而引起了广泛关注。我们之前的研究表明,两个基因(Bjln1 和 Bjln2)负责芸薹属植物多室长角果的形成,并且 Bjln1 基因已被限定在一个 208-kb 的区域内。在本研究中,我们成功地使用基于图谱的克隆方法分离出了 Bjln1 基因。互补测试表明,BjuA07.CLV1(相当于 BjLn1)可以挽救多室表型并产生二室长角果。BjuA07.clv1 中第 28 位和第 63 位的两个氨基酸变化以及其启动子中 702-bp 的缺失已被证明会影响心皮数量。显微镜分析表明,BjuA07.CLV1 参与了分生组织大小的维持。BjuA07.clv1 的表达水平在 SAM 中显著降低。此外,CLV/WUS 信号通路中的关键基因 WUS、CLV2、CLV3、RPK2 和 POL 在多室植株中的表达水平也较低。这些数据表明,BjuA07.clv1 的 CDS 和启动子突变降低了其功能和表达水平,干扰了 CLV/WUS 信号通路,从而导致分生组织和花分生组织的增大,导致多室长角果的形成。