National Key Laboratory of Crop Genetic Improvement, Microelement Research Centre, Huazhong Agricultural University, Wuhan, China.
Plant Biotechnol J. 2020 May;18(5):1241-1254. doi: 10.1111/pbi.13288. Epub 2019 Nov 19.
Boron (B) deficiency is one of the major causes of growth inhibition and yield reduction in Brassica napus (B. napus). However, the molecular mechanisms of low B adaptation in B. napus are largely unknown. Here, fifty-one BnaWRKY transcription factors were identified as responsive to B deficiency in B. napus, in which BnaAn.WRKY26, BnaA9.WRKY47, BnaA1.WKRY53 and BnaCn.WRKY57 were tested in yeast one-hybrid assays and showed strong binding activity with conserved sequences containing a W box in the promoters of the B transport-related genes BnaNIP5;1s and BnaBOR1s. Green fluorescent protein fused to the target protein demonstrated the nuclear localization of BnaA9.WRKY47. CRISPR/Cas9-mediated knockout lines of BnaA9.WRKY47 in B. napus had increased sensitivity to low B and lower contents of B than wild-type plants. In contrast, overexpression of BnaA9.WRKY47 enhanced the adaptation to low B with higher B contents in tissues than in wild-type plants. Consistent with the phenotypic response and B accumulation in these transgenic lines, the transcription activity of BnaA3.NIP5;1, a B efficiency candidate gene, was decreased in the knockout lines but was significantly increased in the overexpressing lines under low B conditions. Electrophoretic mobility shift assays, transient expression experiments in tobacco and in situ hybridizations showed that BnaA9.WRKY47 directly activated BnaA3.NIP5;1 expression through binding to the specific cis-element. Taken together, our findings support BnaWRKYs as new participants in response to low B, and BnaA9.WRKY47 contributes to the adaptation of B. napus to B deficiency through up-regulating BnaA3.NIP5;1 expression to facilitate efficient B uptake.
硼(B)缺乏是油菜(B. napus)生长抑制和产量降低的主要原因之一。然而,油菜适应低 B 条件的分子机制在很大程度上尚不清楚。在这里,鉴定了 51 个 BnaWRKY 转录因子对油菜中的低 B 反应,其中 BnaAn.WRKY26、BnaA9.WRKY47、BnaA1.WKRY53 和 BnaCn.WRKY57 在酵母单杂交试验中进行了测试,并且在 B 转运相关基因 BnaNIP5;1s 和 BnaBOR1s 的启动子中显示出与含有 W 框的保守序列的强烈结合活性。靶蛋白与绿色荧光蛋白融合证明了 BnaA9.WRKY47 的核定位。油菜中 BnaA9.WRKY47 的 CRISPR/Cas9 介导的敲除系对低 B 更敏感,且 B 含量低于野生型植物。相比之下,BnaA9.WRKY47 的过表达增强了对低 B 的适应能力,其组织中的 B 含量高于野生型植物。与这些转基因系的表型反应和 B 积累一致,候选 B 效率基因 BnaA3.NIP5;1 的转录活性在敲除系中降低,但在低 B 条件下过表达系中显著增加。电泳迁移率变动分析、烟草瞬时表达实验和原位杂交显示,BnaA9.WRKY47 通过与特异顺式元件结合直接激活 BnaA3.NIP5;1 的表达。总之,我们的研究结果支持 BnaWRKYs 作为响应低 B 的新参与者,并且 BnaA9.WRKY47 通过上调 BnaA3.NIP5;1 的表达来促进有效的 B 吸收,从而有助于油菜对 B 缺乏的适应。