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杨树中 PsAMT1.2 的过表达增强了氮素利用和抗旱性。

Overexpression of PsAMT1.2 in poplar enhances nitrogen utilization and resistance to drought stress.

机构信息

College of Forestry, Northwest A&F University, 3 Taicheng Road, Yangling 712100, Shaanxi Province, China.

出版信息

Tree Physiol. 2023 Oct 8;43(10):1796-1810. doi: 10.1093/treephys/tpad082.

Abstract

Ammonium is an important form of inorganic nitrogen, which is essential for plant growth and development, and the uptake of ammonium is mediated by different members of ammonium transporters (AMTs). It is reported that PsAMT1.2 is specially expressed in the root of poplar, and the overexpression of PsAMT1.2 could improve plant growth and the salt tolerance of poplar. However, the role of AMTs in plant drought and low nitrogen (LN) resistance remains unclear. To understand the role of PsAMT1.2 in drought and LN tolerance, the response of PsAMT1.2-overexpression poplar to polyethylene glycol (PEG)-simulated drought stress (5% PEG) under LN (0.001 mM NH4NO3) and moderate nitrogen (0.5 mM NH4NO3) conditions was investigated. The PsAMT1.2-overexpression poplar showed better growth with increased stem increment, net photosynthetic rate, chlorophyll content, root length, root area, average root diameter and root volume under drought and/or LN stress compared with the wild type (WT). Meanwhile, the content of malondialdehyde significantly decreased, and the activities of superoxide dismutase and catalase significantly increased in the roots and leaves of PsAMT1.2-overexpression poplar compared with WT. The content of NH4+ and NO2- in the roots and leaves of PsAMT1.2-overexpression poplar was increased, and nitrogen metabolism-related genes, such as GS1.3, GS2, Fd-GOGAT and NADH-GOGAT, were significantly upregulated in the roots and/or leaves of PsAMT1.2-overexpression poplar compared with WT under drought and LN stress. The result of this study would be helpful for understanding the function of PsAMT1.2 in plant drought and LN tolerance and also provides a new insight into improving the drought and LN tolerance of Populus at the molecular level.

摘要

铵是一种重要的无机氮形式,对植物的生长和发育至关重要,而铵的摄取则由不同的铵转运体(AMTs)成员介导。据报道,PsAMT1.2 特异性表达于杨树的根部,过表达 PsAMT1.2 可以提高植物的生长和杨树的耐盐性。然而,AMTs 在植物抗旱和低氮(LN)抗性中的作用尚不清楚。为了了解 PsAMT1.2 在抗旱和 LN 耐性中的作用,研究了在 LN(0.001 mM NH4NO3)和中氮(0.5 mM NH4NO3)条件下,过表达 PsAMT1.2 的杨树对聚乙二醇(PEG)模拟干旱胁迫(5% PEG)的响应。与野生型(WT)相比,过表达 PsAMT1.2 的杨树在干旱和/或 LN 胁迫下表现出更好的生长,表现为茎增粗、净光合速率、叶绿素含量、根长、根面积、平均根直径和根体积增加。同时,过表达 PsAMT1.2 的杨树根和叶中的丙二醛含量显著降低,超氧化物歧化酶和过氧化氢酶活性显著升高。过表达 PsAMT1.2 的杨树根和叶中的 NH4+和 NO2-含量增加,根和/或叶中的氮代谢相关基因,如 GS1.3、GS2、Fd-GOGAT 和 NADH-GOGAT,也显著上调。本研究结果有助于了解 PsAMT1.2 在植物抗旱和 LN 耐性中的功能,也为在分子水平上提高杨树的抗旱和 LN 耐性提供了新的见解。

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