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苹果脂氧合酶MdLOX3正向调控锌耐受性。

The apple lipoxygenase MdLOX3 positively regulates zinc tolerance.

作者信息

Chen Guo-Lin, Wang Da-Ru, Liu Xin, Wang Xun, Liu Hao-Feng, Zhang Chun-Ling, Zhang Zhen-Lu, Li Lin-Guang, You Chun-Xiang

机构信息

National Key Laboratory of Wheat Improvement, National Research Center for Apple Engineering and Technology, College of Horticulture Science and Engineering, Shandong Agricultural University, Taian, Shandong 271018, China.

Shandong Agriculture and Engineering University, China.

出版信息

J Hazard Mater. 2024 Jan 5;461:132553. doi: 10.1016/j.jhazmat.2023.132553. Epub 2023 Sep 14.

DOI:10.1016/j.jhazmat.2023.132553
PMID:37722326
Abstract

Various abiotic stresses, especially heavy metals near factories around the world, limit plant growth and productivity worldwide. Zinc is a light gray transition metal, and excessive zinc will inactivate enzymes in the soil, weaken the biological function of microorganisms, and enter the food chain through enrichment, thus affecting human health. Lipoxygenase (LOX) can catalyze the production of fatty acid derivatives from phenolic triglycerides in plants and is an important pathway of fatty acid oxidation in plants, which usually begins under unfavorable conditions, especially under biotic and abiotic stresses. Lipoxygenase can be divided into 9-LOX and 13-LOX. MdLOX3 is a homolog of AtLOX3 and has been identified in apples (housefly apples). MdLOX3 has a typical conserved lipoxygenase domain, and promoter analysis shows that it contains multiple stress response elements. In addition, different abiotic stresses and hormonal treatments induced the MdLOX3 response. In order to explore the inherent anti-heavy metal mechanism of MdLOX3, this study verified the properties of MdLOX3 based on genetic analysis and overexpression experiments, including plant taproots length, plant fresh weight, chlorophyll, anthocyanins, MDA, relative electrical conductivity, hydrogen peroxide and superoxide anion, NBT\DAB staining, etc. In the experiment, overexpression of MdLOX3 in apple callus and Arabidopsis effectively enhanced the tolerance to zinc stress by improving the ability to clear ROS. Meanwhile, tomato materials with overexpression of ectopia grew better under excessive zinc ion stress. These results indicated that MdLOX3 had a good tolerance to heavy metal zinc. Homologous mutants are more sensitive to zinc, which proves that MdLOX3 plays an important positive role in zinc stressed apples, which broadens the range of action of LOX3 in different plants.

摘要

世界各地工厂附近的各种非生物胁迫,尤其是重金属,限制了全球植物的生长和生产力。锌是一种浅灰色过渡金属,过量的锌会使土壤中的酶失活,削弱微生物的生物功能,并通过富集进入食物链,从而影响人类健康。脂氧合酶(LOX)可以催化植物中酚类甘油三酯生成脂肪酸衍生物,是植物脂肪酸氧化的重要途径,通常在不利条件下启动,尤其是在生物和非生物胁迫下。脂氧合酶可分为9-LOX和13-LOX。MdLOX3是AtLOX3的同源物,已在苹果(家蝇苹果)中鉴定出来。MdLOX3具有典型的保守脂氧合酶结构域,启动子分析表明它含有多个胁迫响应元件。此外,不同的非生物胁迫和激素处理诱导了MdLOX3的响应。为了探究MdLOX3内在的抗重金属机制,本研究基于遗传分析和过表达实验验证了MdLOX3的特性,包括植物主根长度、植物鲜重、叶绿素、花青素、丙二醛、相对电导率、过氧化氢和超氧阴离子、NBT\DAB染色等。在实验中,MdLOX3在苹果愈伤组织和拟南芥中的过表达通过提高清除活性氧的能力有效增强了对锌胁迫的耐受性。同时,异位过表达的番茄材料在过量锌离子胁迫下生长得更好。这些结果表明MdLOX3对重金属锌具有良好的耐受性。同源突变体对锌更敏感,这证明MdLOX3在锌胁迫苹果中发挥着重要的正向作用,拓宽了LOX3在不同植物中的作用范围。

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