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过量表达自噬相关基因 MdATG10 导致苹果根系自噬活性增强,从而提高了其耐盐性。

Increased autophagic activity in roots caused by overexpression of the autophagy-related gene MdATG10 in apple enhances salt tolerance.

机构信息

State Key Laboratory of Crop Stress Biology for Arid Areas/Shaanxi Key Laboratory of Apple, College of Horticulture, Northwest A&F University, Yangling, Shaanxi 712100, China.

State Key Laboratory of Crop Stress Biology for Arid Areas/Shaanxi Key Laboratory of Apple, College of Horticulture, Northwest A&F University, Yangling, Shaanxi 712100, China.

出版信息

Plant Sci. 2020 May;294:110444. doi: 10.1016/j.plantsci.2020.110444. Epub 2020 Feb 20.

Abstract

Autophagy is a conserved pathway to degrade and recycle damaged proteins and organelles, which has generally been reported to play an important role in plant adaption to various abiotic stressors. Here, we isolated a new apple autophagy-related gene, MdATG10, from Malus domestica. Expression of MdATG10 was induced by salt stress, particularly in roots. To investigate the effects of increased autophagic activity on salt tolerance of apple, we generated three MdATG10-overexpressing apple lines and exposed them to salt stress. The transgenic apple plants exhibited enhanced salt tolerance, accompanied by slightly damaged photosynthetic ability and a milder growth limitation under the salt treatment. In addition, damage to growth and vitality of the root system caused by the salt treatment was alleviated by overexpressing MdATG10. Furthermore, reduced accumulation of Na and a lower Na: K ratio was detected in the MdATG10-overexpressing apple lines under salt stress. The salt treatment induced expression of genes involved in ion homeostasis in transgenic apple roots. These results demonstrate a promoting role of autophagy in ion transport when plants encounter salty conditions.

摘要

自噬是一种降解和回收受损蛋白质和细胞器的保守途径,通常被认为在植物适应各种非生物胁迫方面发挥重要作用。在这里,我们从苹果中分离出一个新的苹果自噬相关基因 MdATG10。MdATG10 的表达受到盐胁迫的诱导,特别是在根中。为了研究增加自噬活性对苹果耐盐性的影响,我们生成了三个 MdATG10 过表达的苹果品系并将其暴露在盐胁迫下。转基因苹果植株表现出增强的耐盐性,伴随着在盐处理下光合作用能力略有受损和生长限制较轻。此外,过表达 MdATG10 减轻了盐处理对根系生长和活力的损害。此外,在盐胁迫下,过表达 MdATG10 的苹果品系中检测到 Na 的积累减少和 Na:K 比值降低。盐处理诱导了转基因苹果根中参与离子稳态的基因的表达。这些结果表明,在植物遇到盐胁迫时,自噬在离子运输中起促进作用。

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