钙和环GMP在磁激缓解大豆幼苗盐胁迫中的刺激作用

S. Kataria, S. Shukla, K. Jumrani, Meeta Jain, R. Gadre
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摘要

本研究通过静磁场(SMF, 200 mT, 1 h)对大豆品种JS-335种子进行磁激处理,研究钙(Ca)和环GMP (cGMP)在减轻盐胁迫不利影响中的作用。盐胁迫(50 mMNaCl)对大豆幼苗早期生长(64%)、活力指数i(71%)、活力指数ii(39%)、总淀粉酶(59%)、蛋白酶(63%)和硝酸还原酶(19%)活性的影响。然而,磁优化和Ca处理均增强了这些测量参数,并显著增加了活性氧(ROS)和一氧化氮(NO)含量。外源应用硝苯地平(Ca2+通道阻滞剂)、EGTA、乙二醇-β-氨基乙醚四乙酸(Ca2+螯合剂)、染料木素(cGMP阻滞剂)和二甲硫脲(DMTU, H2O2抑制剂)等Ca2+、cGMP和ROS调节剂对smf诱导的大豆幼苗长度、幼苗活力、ROS、NO以及蛋白酶、总淀粉酶和NR等酶活性均有负面影响。通过对Ca、cGMP或ROS信号的生物化学抑制剂在体内的特异性研究表明,Ca和cGMP也参与了ROS和NO在盐胁迫下磁场激发大豆种子萌发和幼苗生长的信号转导。
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Stimulating Role of Calcium and Cyclic GMP in Mediating the Effect of Magnetopriming for Alleviation of Salt Stress in Soybean Seedlings
This current study examined the role of calcium (Ca) and Cyclic GMP (cGMP) in mitigating the adverse effect of salt stress through magnetopriming of soybean cultivar JS-335 seeds with a static magnetic field (SMF, 200 mT for 1 h). The salt stress (50 mMNaCl) extensively reduced the early seedling growth (64%), vigour Index-I (71%), vigour Index-II (39%), total amylase (59%), protease (63%), and nitrate reductase (NR, 19%) activities in un-primed soybean seedlings. However, magnetopriming and Ca treatment enhanced all of these measured parameters along with remarkable increase in reactive oxygen species (ROS) and nitric oxide (NO) content. The exogenous application of Ca2+, cGMP and ROS regulators such as nifedipine (Ca2+ channel blocker), EGTA, ethylene glycol-β-amino ethyl ether tetra acetic acid (Ca2+chelators), genistein (cGMP blocker), and dimethyl thiourea (DMTU, H2O2 inhibitor) negatively affects the SMF-induced seedling length, seedling vigour, ROS, NO, and enzyme activities such as protease, total amylase, and NR in soybean seedlings. Results presented by using specific various biochemical inhibitors of Ca, cGMP, or ROS signalling in vivo indicated that Ca and cGMP are also involved with ROS and NO in the signal transduction of magnetic field enthused soybean seed germination and seedling growth under salt stress.
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