Yang Xueying, Zhao Wenjuan, Li Hui, Zhao Zhenxia, Zhu Jianbo, Li Jin
College of Life Sciences, Shihezi University, Shihezi 832000, China.
Plants (Basel). 2025 Jan 10;14(2):180. doi: 10.3390/plants14020180.
Plants have large amounts of the late embryogenesis abundant protein (LEA) family of proteins, which is involved in osmotic regulation. The Korla Pear () is an uncommon pear species that thrives in Xinjiang and can survive below-freezing conditions. We found that the gene was more expressed after cold treatment by looking at the transcriptome data of the Korla Pear. In order to evaluate the biological function of the protein under low-temperature stress and its potential for use in agricultural breeding, we cloned the gene from the Korla Pear, made a plant overexpression vector, and transformed it into a tomato via Agrobacterium transformation. When exposed to low temperatures, we found that overexpression can regulate proline metabolism and antioxidant enzyme activity in tomatoes compared to wild tomatoes. Because of this, transgenic tomatoes are more resilient to cold temperatures and produce more than their wild counterparts. Thus, expressing has multiple advantages: (1) Improving frost resistance and reducing plant damage. (2) Increasing crop yield. Therefore, this study provides a theoretical basis for the role of the protein in plants' resilience to low temperatures, as well as for its potential application in crop breeding.
植物含有大量参与渗透调节的胚胎发育晚期丰富蛋白(LEA)家族蛋白。库尔勒香梨()是一种罕见的梨品种,生长于新疆,能在冰点以下的环境中存活。通过查看库尔勒香梨的转录组数据,我们发现基因在冷处理后表达量更高。为了评估该蛋白在低温胁迫下的生物学功能及其在农业育种中的应用潜力,我们从库尔勒香梨中克隆了基因,构建了植物过表达载体,并通过农杆菌介导转化法将其导入番茄。在低温条件下,我们发现与野生番茄相比,过表达能调节番茄中的脯氨酸代谢和抗氧化酶活性。因此,转基因番茄比野生番茄更耐低温,产量也更高。由此可见,表达具有多重优势:(1)提高抗冻性,减少植物损伤。(2)增加作物产量。因此,本研究为该蛋白在植物抗低温方面的作用及其在作物育种中的潜在应用提供了理论依据。