Li Tian, Nagarajan Ragupathi, Liu Shujuan, Luzuriaga Juan C, Zhai Wenxuan, Cao Shuanghe, Jia Haiyan, Carver Brett F, Yan Liuling
Department of Plant and Soil Sciences, Oklahoma State University, Stillwater, OK 74078, USA.
Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, China.
Plant Physiol. 2024 Dec 23;197(1). doi: 10.1093/plphys/kiae606.
In wheat (Triticum aestivum), early maturity is desired to avoid the hot and dry summer season, especially in view of climate change. Here, we report that TaE3V1, a C3H2C3 RING-type E3 ligase that interacts with TaVRN1, is associated with early development. Aside from its RING domain, TaE3V1 does not harbor any domains that are conserved in other RING-type or other E3 ligase proteins. TaE3V-B1b, encoded by the functional TaE3V1 allele, interacts with and ubiquitinates TaVRN1. In contrast, TaE3V-B1a, encoded by a natural nonfunctional TaE3V1 allele, neither interacts with TaVRN1 nor has E3 ligase activity. TaE3V-B1b activity decreases with plant age under warmer temperatures, but not under the low temperatures required for vernalization. We employed a gene editing method to simultaneously inactivate the 3 homoeologous TaE3V1 genes to validate their functions. Overall, our results suggest that the naturally mutated and edited TaE3V1 alleles can accelerate wheat development and aid adaptation to warming climates.
在小麦(普通小麦)中,人们期望早熟以避开炎热干燥的夏季,尤其是考虑到气候变化的因素。在此,我们报道了TaE3V1,一种与TaVRN1相互作用的C3H2C3型环状E3连接酶,它与小麦的早期发育相关。除了其环状结构域外,TaE3V1不具有在其他环状型或其他E3连接酶蛋白中保守的任何结构域。由功能性TaE3V1等位基因编码的TaE3V - B1b与TaVRN1相互作用并使其泛素化。相比之下, 由天然无功能的TaE3V1等位基因编码的TaE3V - B1a既不与TaVRN1相互作用,也不具有E3连接酶活性。在较高温度下,TaE3V - B1b的活性随植株年龄增长而降低,但在春化所需的低温条件下则不然。我们采用基因编辑方法同时使3个同源TaE3V1基因失活,以验证它们的功能。总体而言,我们的结果表明,自然突变和编辑的TaE3V1等位基因可以加速小麦发育,并有助于适应气候变暖。