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首页> 外文期刊>Scientia horticulturae >Isolation and characterization of MdATG18a, a WD40-repeat AuTophaGy-related gene responsive to leaf senescence and abiotic stress in Malus.
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Isolation and characterization of MdATG18a, a WD40-repeat AuTophaGy-related gene responsive to leaf senescence and abiotic stress in Malus.

机译:MdATG18a的分离和表征,MdATG18a是一种与WD40重复的AuTophaGy相关基因,对苹果叶片的衰老和非生物胁迫有反应。

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摘要

Autophagy is an important means for recycling damaged cell components or degrading various proteins when plants are under starvation or oxidative stress. AuTophaGy-related gene 18 (ATG18), a phosphoinositide-binding protein that functions through the WD40 domain, is required for vesicle formation in autophagy. Here, we isolated and characterized MdATG18a from Malus domestica. Its full-length cDNA is a complete 1281 bp open reading frame (ORF) of nucleotides encoding a polypeptide of 426 amino acids. The deduced protein contains two WD40 domains. Phylogenetic analysis confirmed that MdATG18a clusters with Arabidopsis members AtATG18a, c, d, and e. The 3D structure has a seven-bladed beta -propeller and two putative phosphatidylinositol 3-phosphate (PI3P) binding sites. When transiently expressed in onion epidermal cells, the MdATG18a-GFP fusion protein was localized in the nucleus and cell membrane. Prediction of a 1824 bp promoter region cloned from apple genome DNA indicated several key cis-regulatory elements involved in plant responses to abiotic stresses. MdATG18a was expressed in all tested tissues and showed obvious up-regulation under leaf senescence, drought, heat, oxidative stress, nitrogen starvation or ER stress. Taken together, our findings suggest that MdATG18a plays a role in responses to leaf senescence and abiotic stresses, which might be indicative of autophagy involved in mechanism regulation for stress tolerance in apple.
机译:自噬是在植物处于饥饿或氧化胁迫时回收受损细胞成分或降解各种蛋白质的重要​​手段。自噬中的囊泡形成需要AuTophaGy相关基因18(ATG18),它是通过WD40域起作用的磷酸肌醇结合蛋白。在这里,我们从海棠中分离并鉴定了MdATG18a。它的全长cDNA是一个完整的1281 bp开放阅读框(ORF),其核苷酸编码426个氨基酸的多肽。推导的蛋白质包含两个WD40域。系统发育分析证实,MdATG18a与拟南芥成员AtATG18a,c,d和e簇聚。 3D结构具有一个七叶β-螺旋桨和两个推定的磷脂酰肌醇3-磷酸(PI3P)结合位点。当在洋葱表皮细胞中瞬时表达时,MdATG18a-GFP融合蛋白位于细胞核和细胞膜中。从苹果基因组DNA克隆的1824 bp启动子区域的预测表明,几个关键的顺式调控元件参与了植物对非生物胁迫的反应。 MdATG18a在所有测试组织中均有表达,并在叶片衰老,干旱,高温,氧化胁迫,氮饥饿或内质网胁迫下表现出明显的上调。综上所述,我们的发现表明MdATG18a在对叶片衰老和非生物胁迫的应答中起作用,这可能表明自噬参与了苹果对胁迫耐性的机制调控。

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