Kong Hui, Xia Wenwen, Hou Mengjuan, Ruan Nan, Li Jin, Zhu Jianbo
Key Laboratory of Agricultural Biotechnology, College of Life Sciences, Shihezi University, Shihezi, China.
Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing, China.
Front Plant Sci. 2022 Jul 19;13:957133. doi: 10.3389/fpls.2022.957133. eCollection 2022.
Late embryogenesis abundant proteins (LEA) help adapt to adverse low-temperature environments. The , which encodes a membrane protein, was significantly up-regulated in response to low temperature stress. expressing SiLEA4 showed enhanced low-temperature tolerance, as evident from the significantly higher survival numbers and growth rates at low temperatures. Moreover, tomato strains expressing SiLEA4 had significantly greater freezing resistance, due to a significant increase in the antioxidase activities and proline content. Furthermore, they had higher yields due to higher water utilization and photosynthetic efficiency under the same water and fertilizer conditions. Thus, expressing SiLEA4 has multiple advantages: (1) mitigating chilling injury, (2) increasing yields, and (3) water-saving, which also indicates the great potential of the for breeding applications.
晚期胚胎发生丰富蛋白(LEA)有助于适应不利的低温环境。编码一种膜蛋白的[具体基因名称未给出]在低温胁迫下显著上调。表达SiLEA4的[具体生物名称未给出]表现出增强的低温耐受性,从低温下显著更高的存活数量和生长速率可以明显看出。此外,由于抗氧化酶活性和脯氨酸含量显著增加,表达SiLEA4的番茄品系具有显著更高的抗冻性。此外,在相同的水肥条件下,它们因更高的水分利用和光合效率而产量更高。因此,表达SiLEA4具有多种优势:(1)减轻冷害,(2)提高产量,(3)节水,这也表明[具体基因名称未给出]在育种应用中具有巨大潜力。