Division of Biochemistry, ICAR - IARI, New Delhi, India.
Division of Biochemistry, ICAR - IARI, New Delhi, India.
Plant Physiol Biochem. 2018 Feb;123:331-341. doi: 10.1016/j.plaphy.2017.12.026. Epub 2017 Dec 19.
Phytic acid (PA) is implicative in a spectrum of biochemical and physiological processes involved in plant stress response. Inositol 1,3,4, Tris phosphate 5/6 kinase (ITPK), a polyphosphate kinase that converts Inositol 1,3,4 trisphosphate to Inositol 1,3,4,5/6 tetra phosphate, averting the inositol phosphate pool towards PA biosynthesis, is a key regulator that exists in four different isoforms in soybean. In the present study, in-silico analysis of the promoter region of ITPKs was done and among the four isoforms, promoter region of GmITPK2 showed the presence of two MYB binding elements for drought inducibility and one for ABA response. Expression profiling through qRT-PCR under drought and salinity stress showed higher expression of GmITPK2 isoform compared to the other members of the family. The study revealed GmITPK2 as an early dehydration responsive gene which is also induced by dehydration and exogenous treatment with ABA. To evaluate the osmo-protective role of GmITPK2, attempts were made to assess the bacterial growth on Luria Broth media containing 200 mM NaCl, 16% PEG and 100 μM ABA, individually. The transformed E. coli BL21 (DE3) cells harbouring the GmITPK2 gene depicted better growth on the media compared to the bacterial cells containing the vector alone. Similarly, the growth of the transformed cells in the liquid media containing 200 mM NaCl, 16% PEG and 100 μM ABA showed higher absorbance at 600 nm compared to control, at different time intervals. The GmITPK2 recombinant E. coli cells showing tolerance to drought and salinity thus demonstrated the functional redundancy of the gene across taxa. The purity and specificity of the recombinant protein was assessed and confirmed through PAGE showing a band of ∼35 kDa on western blotting using Anti- Penta His- HRP conjugate antibody. To the best of our knowledge, the present study is the first report exemplifying the role of GmITPK2 isoform in drought and salinity tolerance in soybean.
植酸(PA)参与了植物应激反应中涉及的一系列生化和生理过程。肌醇 1,3,4,三磷酸 5/6 激酶(ITPK)是一种多磷酸盐激酶,可将肌醇 1,3,4 三磷酸转化为肌醇 1,3,4,5/6 四磷酸,从而防止肌醇磷酸盐池向 PA 生物合成转化,是大豆中存在的四种不同同工型的关键调节因子。在本研究中,对 ITPK 的启动子区域进行了计算机分析,在这四个同工型中,GmITPK2 的启动子区域显示出存在两个对干旱诱导有结合能力的 MYB 结合元件和一个对 ABA 反应有结合能力的 MYB 结合元件。通过干旱和盐胁迫下的 qRT-PCR 表达谱分析显示,与家族的其他成员相比,GmITPK2 同工型的表达更高。该研究揭示了 GmITPK2 作为一个早期脱水响应基因,也可被脱水和外源 ABA 处理诱导。为了评估 GmITPK2 的渗透保护作用,尝试单独评估含有 200mM NaCl、16%PEG 和 100μM ABA 的 Luria Broth 培养基上细菌的生长情况。含有 GmITPK2 基因的转化大肠杆菌 BL21(DE3)细胞在含有该基因的培养基上的生长情况优于仅含有载体的细菌细胞。同样,在含有 200mM NaCl、16%PEG 和 100μM ABA 的液体培养基中转化细胞的生长情况在不同时间间隔时在 600nm 处的吸光度高于对照。显示对干旱和盐度耐受的 GmITPK2 重组大肠杆菌细胞表明该基因在不同分类群中具有功能冗余性。通过 PAGE 评估和确认重组蛋白的纯度和特异性,使用 Anti-Penta His-HRP 共轭抗体进行 Western blot 显示出约 35kDa 的条带。据我们所知,本研究首次报道了 GmITPK2 同工型在大豆干旱和耐盐性中的作用。