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Ensifer meliloti overexpressing Escherichia coli phytase gene (appA) improves phosphorus (P) acquisition in maize plants

机译:Ensifer meliloti过表达大肠杆菌植酸酶基因(appA)改善玉米植物中的磷(P)吸收

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摘要

The Escherichia coli phytase gene appA encoding enzyme AppA was cloned in a broad host range plasmid pBBR1MCS2 (lac promoter), termed pVAl, and transformed into the Ensifer meliloti 1020. Transformation of pVA1 in Ensifer meliloti {E. m (pVA1)} increased its phosphatase and phytase activity by ~9- and ~50-fold, respectively, compared to the transformants containing empty plasmid as control {E. m (pBBRlMCS2)}. The western blot experiments using rabbit anti-AppA antibody showed that AppA is translocated into the periplasm of the host after its expression. Ensifer meliloti harboring AppA protein {E. m (pVA1)} and {E. m (pBBR1MCS2)} could acidify the unbuffered phytate minimal media (pH 8.0) containing Ca-phytate or Na-phytate as sole organic P (Po) source to below pH 5.0 and released P. However, both {E. m (pVA1)} and {E. m (pBBR1MCS2)} neither dropped pH of the medium nor released P when the medium was buffered at pH 8.0 using Tris-Cl, indicating that acidification of medium was important for the enzymatic hydrolysis of phytate. Further experiments proved that maize plants inoculated with {E. m. (pVA1)} showed increase in growth under sterile semi solid agar (SSA) medium containing Na-phytate as sole P source. The present study could be helpful in generating better transgenic bioinoculants harboring phosphate mineralization properties that ultimately promote plant growth.
机译:将大肠杆菌植酸酶基因appA编码酶AppA克隆到称为pVA1的广泛宿主质粒pBBR1MCS2(lac启动子)中,并转化到Ensifer meliloti 1020中。与含有空质粒作为对照的转化子相比,m(pVA1)}的磷酸酶和植酸酶活性分别提高了约9倍和50倍。 m(pBBRlMCS2)}。使用兔抗AppA抗体的蛋白质印迹实验表明,表达后AppA易位到宿主的周质中。带有AppA蛋白的(Ensifer meliloti) m(pVA1)}和{E。 m(pBBR1MCS2)}可以将含有植酸钙或植酸钠作为唯一有机P(Po)源的非缓冲植酸基本培养基(pH 8.0)酸化至低于pH 5.0并释放出P。 m(pVA1)}和{E。 m(pBBR1MCS2)}在使用Tris-Cl缓冲pH 8.0时,既不降低培养基的pH也不释放P,表明培养基的酸化对于植酸的酶促水解很重要。进一步的实验证明,玉米植株接种了{E.米(pVA1)}显示在含有植酸钠作为唯一P来源的无菌半固体琼脂(SSA)培养基下,生长增加。本研究可能有助于产生更好的具有磷酸盐矿化特性的转基因生物抑制剂,从而最终促进植物的生长。

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  • 来源
    《Naturwissenschaften》 |2016年第10期|55-64|共10页
  • 作者单位

    Department of Biochemistry, Faculty of Science, M.S. University of Baroda, Vadodara, Gujarat 390 002, India,Discipline of Microbiology, School of Life Sciences, College of Agriculture, Engineering and Science, University of KwaZulu-Natal (Westville Campus), Private Bag X54001, Durban 4000, Republic of South Africa;

    Discipline of Microbiology, School of Life Sciences, College of Agriculture, Engineering and Science, University of KwaZulu-Natal (Westville Campus), Private Bag X54001, Durban 4000, Republic of South Africa;

    Department of Microbiology, Faculty of Science, M. S. University of Baroda, Vadodara, Gujarat 390 002, India;

    Department of Biochemistry, Faculty of Science, M.S. University of Baroda, Vadodara, Gujarat 390 002, India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    appA overexpression; Phytate mineralization; Ensifer meliloti; E. coli phytase; Maize;

    机译:appA过表达;植酸盐矿化;香大肠杆菌肌醇六磷酸酶;玉米;

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