The Genetic Engineering International Cooperation Base of Chinese Ministry of Science and Technology, Key Laboratory of Molecular Biophysics of Chinese Ministry of Education, College of Life Science and Technology, Huazhong University of Science and Technology (HUST), Wuhan 430074, China.
The Genetic Engineering International Cooperation Base of Chinese Ministry of Science and Technology, Key Laboratory of Molecular Biophysics of Chinese Ministry of Education, College of Life Science and Technology, Huazhong University of Science and Technology (HUST), Wuhan 430074, China.
Plant Sci. 2020 Oct;299:110623. doi: 10.1016/j.plantsci.2020.110623. Epub 2020 Jul 28.
Flowering time is an important agronomic trait that greatly influences plant architecture and grain yield in cereal crops. The present study identified a light-regulated gene, TaLWD1L-A, from hexaploid wheat that encodes a WD40 domain-containing protein. TaLWD1L-A was localized in the nucleus. Phenotypic analysis demonstrated that TaLWD1L-A overexpression in transgenic wheat led to an obvious early flowering phenotype. Upregulation of the floral activator gene TaFT1 caused the early flowering phenotype in transgenic wheat plants. TaLWD1L-A also affected the expression of circadian clock genes, including TaTOC1, TaLHY, TaPRR59, TaPRR73 and TaPRR95, and indirectly regulated the expression of the TaFT1 in transgenic plants by affecting the expression of vernalization-related genes TaVRN1 and TaVRN2 and photoperiod-related genes TaPpd-1 and TaGI. The early flowering phenotype in TaLWD1L-A-overexpressing transgenic lines led to a relatively shorter phenotype and yield reduction. Our results revealed that TaLWD1L-A affected the expression of circadian clock-related genes and played an important role in wheat flowering regulation by influencing the expression of genes related to vernalization and photoperiod pathways.
开花时间是一个重要的农艺性状,极大地影响了谷类作物的植物结构和籽粒产量。本研究从六倍体小麦中鉴定出一个光调控基因 TaLWD1L-A,它编码一个 WD40 结构域蛋白。TaLWD1L-A 定位于细胞核中。表型分析表明,过表达六倍体小麦 TaLWD1L-A 导致转基因小麦出现明显的早花表型。花激活基因 TaFT1 的上调导致转基因小麦植株出现早花表型。TaLWD1L-A 还影响生物钟基因的表达,包括 TaTOC1、TaLHY、TaPRR59、TaPRR73 和 TaPRR95,并通过影响春化相关基因 TaVRN1 和 TaVRN2 以及光周期相关基因 TaPpd-1 和 TaGI 的表达,间接调控转基因植物中 TaFT1 的表达。过表达 TaLWD1L-A 的转基因株系出现早花表型,导致相对较短的株高和产量降低。我们的研究结果表明,TaLWD1L-A 影响生物钟相关基因的表达,通过影响春化和光周期途径相关基因的表达,在小麦开花调控中发挥重要作用。