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大豆基因 GmMLP34 调控拟南芥对高温胁迫的负响应。

Soybean gene GmMLP34 regulates Arabidopsis negative response to high temperature stress.

机构信息

College of Agronomy, Anhui Agricultural University, Hefei 230036, China.

College of Agronomy, Anhui Agricultural University, Hefei 230036, China.

出版信息

Gene. 2025 Jan 15;933:148983. doi: 10.1016/j.gene.2024.148983. Epub 2024 Oct 4.

Abstract

The functions of major latex proteins (MLPs) in plant defense and stress responses have been widely documented; however, their roles in HT stress response in soybeans have not been elucidated. This study investigated the role of GmMLP34, a member of the major latex protein (MLP) family, in the response of soybeans to HT stress. Transcriptome analysis of HT-resistant (JD21) and HT-sensitive (HD14) soybean leaves under HT stress (43.40 ± 1.70 °C) and field conditions revealed differential expression of GmMLP34. Further examination across different HT-resistant varieties showed that GmMLP34 was down-regulated in the leaves of 6 HT-resistant varieties (85.7 %) and up-regulated in the leaves of 6 HT-sensitive varieties (85.7 %) under the HT treatment (45 °C for 3 h). The results of this study indicate that ectopic expression of the GmMLP34 gene in Arabidopsis led to a significant decrease in the survival rate of seedling when compared to the wild type (WT) under HT stress conditions of 37/28 °C (day/night) for 5 d, Moreover, the results indicated a significant decrease in primary root length and lateral root number under 45 °C/3 h HT stress followed by 12 h room temperature recovery. Additionally, the levels of abscisic acid (ABA), and flavonoids, and the activity of the peroxidase (POD) enzyme in the antioxidant system was decreased, while the activity of the superoxide dismutase (SOD) enzyme increased in GmMLP34-overexpressing transgenic Arabidopsis thaliana. The expression levels of the HT-response genes AtCHS1 and AtCHI2-A, were significantly down-regulated, whereas that of AtGBP1 was significantly up-regulated. These results suggest that GmMLP34 negatively regulates the response of Arabidopsis thaliana to HT stress by modulating flavonoid synthesis, hormone synthesis, and the antioxidant enzyme system. These findings provide theoretical information for the genetic improvement of HT tolerance in soybean and contribute to the understanding of the molecular mechanisms underlying plant responses to abiotic stress.

摘要

主要乳蛋白(MLP)在植物防御和应激反应中的功能已得到广泛证实;然而,它们在大豆 HT 应激反应中的作用尚未阐明。本研究调查了主要乳蛋白(MLP)家族成员 GmMLP34 在大豆对 HT 胁迫响应中的作用。在 HT 胁迫(43.40±1.70°C)和田间条件下,对 HT 抗性(JD21)和 HT 敏感(HD14)大豆叶片的转录组分析显示 GmMLP34 的差异表达。进一步对不同 HT 抗性品种的研究表明,在 HT 处理(45°C 处理 3 小时)下,6 个 HT 抗性品种(85.7%)叶片中 GmMLP34 下调,而 6 个 HT 敏感品种(85.7%)叶片中 GmMLP34 上调。本研究结果表明,与野生型(WT)相比,拟南芥中 GmMLP34 基因的异位表达导致幼苗在 37/28°C(白天/黑夜)HT 胁迫条件下培养 5 天时的存活率显著降低,此外,在 45°C/3h HT 胁迫后,主根长度和侧根数量显著减少,随后在 12 小时室温恢复。此外,在 GmMLP34 过表达转基因拟南芥中,脱落酸(ABA)和类黄酮的水平以及抗氧化系统中的过氧化物酶(POD)酶活性降低,而超氧化物歧化酶(SOD)酶活性增加。HT 应答基因 AtCHS1 和 AtCHI2-A 的表达水平显著下调,而 AtGBP1 的表达水平显著上调。这些结果表明,GmMLP34 通过调节类黄酮合成、激素合成和抗氧化酶系统,负调控拟南芥对 HT 胁迫的反应。这些发现为大豆 HT 耐性的遗传改良提供了理论信息,有助于理解植物对非生物胁迫的分子机制。

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