Laboratory of Modern Biotechnology, School of Forestry and Landscape Architecture, Anhui Agricultural University, Hefei 230061, China.
National Engineering Laboratory of Crop Stress Resistance Breeding, College of Life Sciences, Anhui Agricultural University, Hefei 230061, China.
Int J Mol Sci. 2022 Mar 21;23(6):3371. doi: 10.3390/ijms23063371.
Drought-induced 19 (Di19) proteins play important roles in abiotic stress responses. Thus far, there are no reports about Di19 family in woody plants. Here, eight Di19 genes were identified in poplar. We analyzed phylogenetic tree, conserved protein domain, and gene structure of Di19 gene members in seven species. The results showed the Di19 gene family was very conservative in both dicotyledonous and monocotyledonous forms. On the basis of transcriptome data, the expression patterns of Di19s in poplar under abiotic stress and ABA treatment were further studied. Subsequently, homologous genes and with strong response to drought stress were identified. PtDi19-2 functions as a nuclear transcriptional activator with a transactivation domain at the C-terminus. PtDi19-7 is a nuclear and membrane localization protein. Additionally, PtDi19-2 and PtDi19-7 were able to interact with each other in yeast two-hybrid system. Overexpression of and in was found. Phenotype identification and physiological parameter analysis showed that transgenic increased ABA sensitivity and drought tolerance. -7 was overexpressed in hybrid poplar 84K (). Under drought treatment, the phenotype and physiological parameters of transgenic poplar were consistent with those of transgenic . In addition, exogenous ABA treatment induced lateral bud dormancy of transgenic poplar and stomatal closure of transgenic . The expression of ABA/drought-related marker genes was upregulated under drought treatment. These results indicated that and might play a similar role in improving the drought tolerance of transgenic plants through ABA-dependent signaling pathways.
干旱诱导蛋白 19(Di19)在非生物胁迫反应中发挥重要作用。迄今为止,木质植物中尚无关于 Di19 家族的报道。本研究在杨属中鉴定了 8 个 Di19 基因。我们分析了 7 种物种中 Di19 基因成员的系统发育树、保守蛋白结构域和基因结构。结果表明,Di19 基因家族在双子叶植物和单子叶植物中都非常保守。基于转录组数据,进一步研究了杨树在非生物胁迫和 ABA 处理下 Di19 的表达模式。随后,鉴定了对干旱胁迫反应强烈的同源基因 和 。PtDi19-2 作为核转录激活因子,其 C 末端具有转录激活结构域。PtDi19-7 是一种核定位和膜定位蛋白。此外,PtDi19-2 和 PtDi19-7 能够在酵母双杂交系统中相互作用。在 中发现了 和 的过表达。表型鉴定和生理参数分析表明,转基因 提高了 ABA 敏感性和耐旱性。-7 在杂种杨树 84K ()中过表达。在干旱处理下,转基因杨树的表型和生理参数与转基因 的一致。此外,外源 ABA 处理诱导转基因杨树侧芽休眠和气孔关闭。干旱处理下 ABA/干旱相关标记基因的表达上调。这些结果表明, 和 可能通过 ABA 依赖的信号通路在提高转基因植物的耐旱性方面发挥类似作用。