Zhang Yanyan, Wang Yifeng, Taylor Jemma L, Jiang Zhonghao, Zhang Shu, Mei Fengling, Wu Yunrong, Wu Ping, Ni Jun
College of Life and Environmental Sciences, Hangzhou Normal University, Hangzhou 310036, China.
State Key Laboratory of Plant Physiology and Biochemistry, College of Life Science, Zhejiang University, Hangzhou 310058, China.
J Exp Bot. 2015 May;66(9):2535-45. doi: 10.1093/jxb/erv043. Epub 2015 Mar 9.
It is well established that both salt and reactive oxygen species (ROS) stresses are able to increase the concentration of cytosolic free Ca(2+) ([Ca(2+)]i), which is caused by the flux of calcium (Ca(2+)). However, the differences between these two processes are largely unknown. Here, we introduced recombinant aequorin into rice (Oryza sativa) and examined the change in [Ca(2+)]i in response to salt and ROS stresses. The transgenic rice harbouring aequorin showed strong luminescence in roots when treated with exogenous Ca(2+). Considering the histological differences in roots between rice and Arabidopsis, we reappraised the discharging solution, and suggested that the percentage of ethanol should be 25%. Different concentrations of NaCl induced immediate [Ca(2+)]i spikes with the same durations and phases. In contrast, H₂O₂ induced delayed [Ca(2+)]i spikes with different peaks according to the concentrations of H₂O₂. According to the Ca(2+) inhibitor research, we also showed that the sources of Ca(2+) induced by NaCl and H₂O₂ are different. Furthermore, we evaluated the contribution of [Ca(2+)]i responses in the NaCl- and H₂O₂-induced gene expressions respectively, and present a Ca(2+)- and H₂O₂-mediated molecular signalling model for the initial response to NaCl in rice.
盐胁迫和活性氧(ROS)胁迫均能增加胞质游离Ca²⁺([Ca²⁺]i)的浓度,这已得到充分证实,其是由钙(Ca²⁺)通量引起的。然而,这两个过程之间的差异在很大程度上尚不清楚。在此,我们将重组水母发光蛋白导入水稻(Oryza sativa),并检测了[Ca²⁺]i对盐胁迫和ROS胁迫的响应变化。携带水母发光蛋白的转基因水稻在用外源Ca²⁺处理时根部发出强烈的荧光。考虑到水稻和拟南芥根部的组织学差异,我们重新评估了提取液,并建议乙醇的百分比应为25%。不同浓度的NaCl诱导出持续时间和相位相同的即时[Ca²⁺]i峰值。相比之下,H₂O₂根据其浓度诱导出峰值不同的延迟[Ca²⁺]i峰值。根据Ca²⁺抑制剂研究,我们还表明NaCl和H₂O₂诱导的Ca²⁺来源不同。此外,我们分别评估了[Ca²⁺]i响应在NaCl和H₂O₂诱导的基因表达中的作用,并提出了一个Ca²⁺和H₂O₂介导的水稻对NaCl初始响应的分子信号模型。