Suppr超能文献

小麦创伤响应的 HD-Zip IV 转录因子 GL7 主要在籽粒中表达,并激活防御素基因的表达。

Wheat wounding-responsive HD-Zip IV transcription factor GL7 is predominantly expressed in grain and activates genes encoding defensins.

机构信息

School of Agriculture, Food and Wine, University of Adelaide, Glen Osmond, SA, 5064, Australia.

Agronomy College, Sichuan Agricultural University, Ya'an, 625014, China.

出版信息

Plant Mol Biol. 2019 Sep;101(1-2):41-61. doi: 10.1007/s11103-019-00889-9. Epub 2019 Jun 10.

Abstract

Several classes of transcription factors are involved in the activation of defensins. A new type of the transcription factor responsible for the regulation of wheat grain specific defensins was characterised in this work. HD-Zip class IV transcription factors constitute a family of multidomain proteins. A full-length cDNA of HD-Zip IV, designated TaGL7 was isolated from the developing grain of bread wheat, using a specific DNA sequence as bait in the Y1H screen. 3D models of TaGL7 HD complexed with DNA cis-elements rationalised differences that underlined accommodations of binding and non-binding DNA, while the START-like domain model predicted binding of lipidic molecules inside a concave hydrophobic cavity. The 3'-untranslated region of TaGL7 was used as a probe to isolate the genomic clone of TdGL7 from a BAC library prepared from durum wheat. The spatial and temporal activity of the TdGL7 promoter was tested in transgenic wheat, barley and rice. TdGL7 was expressed mostly in ovary at fertilisation and its promoter was active in a liquid endosperm during cellularisation and later in the endosperm transfer cells, aleurone, and starchy endosperm. The pattern of TdGL7 expression resembled that of genes that encode grain-specific lipid transfer proteins, particularly defensins. In addition, GL7 expression was upregulated by mechanical wounding, similarly to defensin genes. Co-bombardment of cultured wheat cells with TdGL7 driven by constitutive promoter and seven grain or root specific defensin promoters fused to GUS gene, revealed activation of four promoters. The data confirmed the previously proposed role of HD-Zip IV transcription factors in the regulation of genes that encode lipid transfer proteins involved in lipid transport and defence. The TdGL7 promoter could be used to engineer cereal grains with enhanced resistance to insects and fungal infections.

摘要

几种转录因子参与防御素的激活。本工作中鉴定了一种新的负责调节小麦籽粒特异性防御素的转录因子。HD-Zip 类 IV 转录因子构成了一类多功能蛋白家族。使用特异性 DNA 序列作为 Y1H 筛选的诱饵,从面包小麦发育的谷物中分离出 HD-Zip IV 的全长 cDNA,命名为 TaGL7。TaGL7 与 DNA 顺式元件形成的 HD 复合物的 3D 模型合理化了差异,这些差异强调了结合和非结合 DNA 的适应性,而 START 样结构域模型预测了脂质分子在凹形疏水性腔体内的结合。使用 TaGL7 的 3'-UTR 作为探针,从硬粒小麦制备的 BAC 文库中分离出 TdGL7 的基因组克隆。在转基因小麦、大麦和水稻中测试了 TdGL7 启动子的时空活性。TdGL7 在受精时主要在卵巢中表达,其启动子在细胞化过程中的液体胚乳中以及后来的胚乳转移细胞、糊粉层和淀粉胚乳中具有活性。TdGL7 的表达模式类似于编码籽粒特异性脂质转运蛋白的基因,特别是防御素。此外,GL7 的表达像防御素基因一样受到机械损伤的上调。用组成型启动子驱动的 TdGL7 和融合到 GUS 基因的七个籽粒或根特异性防御素启动子共同轰击培养的小麦细胞,揭示了四个启动子的激活。该数据证实了 HD-Zip 类 IV 转录因子在调节编码脂质转运蛋白的基因中的先前提出的作用,这些基因参与脂质转运和防御。TdGL7 启动子可用于工程化具有增强的抗昆虫和真菌感染的谷物。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验