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转录因子 BnaA9.WRKY47 通过上调硼酸通道基因 BnaA3.NIP5;1 促进油菜对低硼胁迫的适应。

Transcription factor BnaA9.WRKY47 contributes to the adaptation of Brassica napus to low boron stress by up-regulating the boric acid channel gene BnaA3.NIP5;1.

机构信息

National Key Laboratory of Crop Genetic Improvement, Microelement Research Centre, Huazhong Agricultural University, Wuhan, China.

出版信息

Plant Biotechnol J. 2020 May;18(5):1241-1254. doi: 10.1111/pbi.13288. Epub 2019 Nov 19.

Abstract

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.

摘要

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。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1507/11386582/b9d26aebc4b8/PBI-18-1241-g001.jpg

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