The homeodomain of the Raphanus sativus WOX4 binds to the promoter of the LOG3 cytokinin biosynthesis gene

Xenia Andreevna Kuznetsova, I. Dodueva, L. A. Lutova
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Abstract

Background The WOX4 transcription factor plays a crucial role in maintaining the organisation of cambium meristem during secondary growth, but its direct targets are unknown. The objectives of our work were to study the effect of WOX4 overexpression on the root development and gene expression in radish (Raphanus sativus L.), a root crop related to Arabidopsis thaliana, and to search for direct targets of the WOX4 in radish. Materials and methods Radish line 19 of the St. Petersburg State University radish genetic collection was used. Plants were grown on Murashige-Skoog medium and then in soil at 23оС and 16 h of daylight. Total DNA was extracted from radish seedlings using the CTAB method. The PCR-amplified full-length RsWOX4-2 gene, gene fragments or homeobox sequence were cloned into the vectors for overexpression (pB7WG2D), RNA interference (pH7GWIWG2) and yeast one-hybrid assay (pDEST22), respectively, using the Gateway system. The vectors for overexpression and RNA interference of RsWOX4-2 were transformed into Escherichia coli DH10B and then into Agrobacteium rhizogenes Arqua chemically competent cells. Radish seedlings were transformed transformation with A. rhizogenes containing vectors for overexpression and RNA interference of RsWOX4-2, and GUS-overexpressing A. rhizogenes was used as a control. Total RNA from transgenic radish roots was extracted with Trizol reagent. RNA reverse transcription was performed using dT-18 primers and RevertAid reverse transcriptase. qPCR was performed using the Eva Green reagent kit on a CFX96 thermocycler with fluorescence detection system. Results were processed using the 2-ΔΔCT method. Yeast transformation with competent Saccharomyces cerevisiae of Y2H Gold strain cells and yeast one-hybrid assay were performed as described in the article. The obtained yeast colonies transformed with plasmids containing TF homeodomain sequence and promoter regions of genes were grown on DDO and TDO selective media with different concentrations of 3-amino-1,2,4-triazole. Statistical processing based on Student's t-test and graphing were performed using the ggplot2 package for the R programming language (v.4.0.2). Results Overexpression of the RsWOX4-2 gene affects the structure of the radish root stele and alters the number of vessels and cambium cells. Overexpression and RNA interference of the RsWOX4-2 causes changes in the expression levels of putative target genes with the WOX family transcription factor conserved binding sites in their promoters. Using the yeast one-hybrid assay, we have shown that the DNA-binding homeodomain of RsWOX4-2 interacts with the TAATCC site in the promoter of the RsLOG3 gene, which encodes the enzyme for cytokinin biosynthesis. Conclusion We have demonstrated the effect of RsWOX4-2 overexpression on radish root stele and gene expression and identified the RsLOG3 as the putative direct target of the WOX4 transcription factor in radish.
油菜 WOX4 的同源结构域与 LOG3 细胞分裂素生物合成基因的启动子结合
背景 WOX4 转录因子在维持二次生长过程中的骨膜分生组织中起着至关重要的作用,但其直接靶标尚不清楚。我们工作的目的是研究 WOX4 过表达对萝卜(Raphanus sativus L.)根系发育和基因表达的影响,萝卜是一种与拟南芥相关的根茎作物,并寻找 WOX4 在萝卜中的直接靶标。材料与方法 使用圣彼得堡国立大学萝卜基因库中的萝卜品系 19。植株先在 Murashige-Skoog 培养基上生长,然后在 23оС、日照 16 小时的土壤中生长。采用 CTAB 法从萝卜幼苗中提取总 DNA。利用 Gateway 系统将 PCR 扩增的全长 RsWOX4-2 基因、基因片段或同源染色体序列分别克隆到过表达(pB7WG2D)、RNA 干扰(pH7GWIWG2)和酵母单杂交(pDEST22)载体中。将 RsWOX4-2 的过表达和 RNA 干扰载体转化到大肠杆菌 DH10B 中,然后转化到根瘤农杆菌 Arqua 化学能细胞中。用含有 RsWOX4-2 的过表达和 RNA 干扰载体的根瘤农杆菌转化萝卜幼苗,并用过表达 GUS 的根瘤农杆菌作为对照。用 Trizol 试剂提取转基因萝卜根的总 RNA。使用 dT-18 引物和 RevertAid 逆转录酶进行 RNA 逆转录。在带荧光检测系统的 CFX96 热循环仪上使用 Eva Green 试剂盒进行 qPCR。结果采用 2-ΔΔCT 方法处理。酵母转化 Y2H Gold 菌株细胞和酵母单杂交试验按文章所述进行。用含有 TF 同源域序列和基因启动子区域的质粒转化得到的酵母菌落在含有不同浓度 3-氨基-1,2,4-三唑的 DDO 和 TDO 选择性培养基上生长。使用 R 编程语言的 ggplot2 软件包(v.4.0.2)进行了基于学生 t 检验的统计处理和图表绘制。结果 RsWOX4-2基因的过表达会影响萝卜根茎的结构,并改变血管和骨架细胞的数量。过表达和 RNA 干扰 RsWOX4-2 会导致启动子中含有 WOX 家族转录因子保守结合位点的假定靶基因的表达水平发生变化。通过酵母单杂交试验,我们发现 RsWOX4-2 的 DNA 结合同源结构域与 RsLOG3 基因启动子中的 TAATCC 位点相互作用,RsLOG3 基因编码细胞分裂素生物合成酶。结论 我们证明了 RsWOX4-2 过表达对萝卜根茎和基因表达的影响,并确定 RsLOG3 是萝卜中 WOX4 转录因子的假定直接靶标。
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