College of Biological Sciences and Biotechnology, Beijing Forestry University, Beijing 100083, China.
National Engineering Laboratory for Tree Breeding, The Tree and Ornamental Plant Breeding and Biotechnology Laboratory of Chinese Forestry Administration, Beijing 100083, China.
Int J Mol Sci. 2021 Feb 9;22(4):1715. doi: 10.3390/ijms22041715.
Dehydrins (DHN) belong to the late embryogenesis abundant II family and have been found to enhance plant tolerance to abiotic stress. In the present study, we reported four DHNs in (LkDHN) which were identified from the published transcriptome. Alignment analysis showed that these four LkDHNs shared close relationships and belonged to SK-type DHNs. The electrophoretic mobility shift assay indicated that these four LkDHNs all possess sequence-independent binding capacity for double-strands DNAs. The subcellular localizations of the four LkDHNs were in both the nucleus and cytoplasm, indicating that these LkDHNs enter the nucleus to exert the ability to bind DNA. The preparation of tobacco protoplasts with different concentrations of mannitol showed that LkDHNs enhanced the tolerance of plant cells under osmotic stress. The overexpression of LkDHNs in yeasts enhanced their tolerance to osmotic stress and helped the yeasts to survive severe stress. In addition, LkDHNs in the nucleus of salt treated tobacco increased. All of these results indicated that the four LkDHNs help plants survive from heavy stress by participating in DNA protection. These four LKDHNs played similar roles in the response to osmotic stress and assisted in the adaptation of . to the arid and cold winter of northern China.
脱水素(DHN)属于晚期胚胎丰富 II 家族,已被发现可增强植物对非生物胁迫的耐受性。本研究从已发表的转录组中鉴定了 中的 4 个 DHN(LkDHN)。比对分析表明,这 4 个 LkDHN 具有密切的亲缘关系,属于 SK 型 DHN。电泳迁移率变动分析表明,这 4 个 LkDHN 均具有序列非依赖性双链 DNA 结合能力。4 个 LkDHN 的亚细胞定位均在细胞核和细胞质中,表明这些 LkDHN 进入细胞核以发挥结合 DNA 的能力。用不同浓度甘露醇制备烟草原生质体表明,LkDHN 增强了植物细胞在渗透胁迫下的耐受性。在酵母中过表达 LkDHN 增强了其对渗透压胁迫的耐受性,并帮助酵母在严重胁迫下存活。此外,盐处理烟草细胞核中的 LkDHN 增加。所有这些结果表明,这 4 个 LkDHN 通过参与 DNA 保护帮助植物从重胁迫中存活。这四个 LKDHN 在应对渗透胁迫方面发挥了相似的作用,并有助于 适应中国北方干旱寒冷的冬季。