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Heterologous expression and functional analysis of Rice glutamate receptor-like family indicates its role in glutamate triggered calcium flux in rice roots

机译:水稻谷氨酸受体样家族的异源表达和功能分析表明其在谷氨酸触发水稻根系钙流中的作用

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摘要

Background:\udTremendous progress has been made in understanding the functions of the GLUTAMATE RECEPTOR-LIKE (GLR) family in Arabidopsis. Still, the functions of OsGLRs in rice, especially the ion channel activities, are largely unknown.\ud\udResults:\udUsing the aequorin-based luminescence imaging system, we screened the specificity of amino acids involved in the induction of Ca2+ flux in rice roots. Of all the amino acids tested, glutamate (Glu) was the only one to trigger Ca2+ flux significantly in rice roots. Detailed analysis showed a dose response of Ca2+ increase to different concentrations of Glu. In addition, the Ca2+ spike response to Glu was rapid, within 20 s after the application. A desensitization assay and pharmacological tests showed that the Glu-triggered Ca2+ flux is mediated by OsGLRs. Whole genome analysis identified 13 OsGLR genes in rice, and these genes have various expression patterns in different tissues. Subcellular localization studies showed that all the OsGLRs examined are likely localized to the plasma membrane. Bacteria growth assays showed that at least OsGLR2.1 and OsGLR3.2 have the potential to mediate ion uptake in bacteria. Further analysis using Fura-2-based Ca2+ imaging revealed a Glu-triggered Ca2+ increase in OsGLR2.1-expressing human embryonic kidney (HEK) cells.\ud\udConclusions:\udOur work provides a molecular basis for investigating mechanisms of Glu-triggered Ca2+ flux in rice.
机译:背景:在了解拟南芥中GLUTAMATE RECEPTOR-LIKE(GLR)系列功能方面取得了巨大进展。尽管如此,OsGLRs在水稻中的功能,尤其是离子通道活性,仍然是未知之数。\ ud \ ud结果:\ ud使用基于水母发光蛋白的发光成像系统,我们筛选了诱导水稻中Ca2 +通量的氨基酸的特异性。根。在所有测试的氨基酸中,谷氨酸(Glu)是唯一显着触发稻根中Ca2 +通量的氨基酸。详细分析显示,Ca2 +对不同浓度的Glu的剂量响应增加。此外,在施用后20 s内,Ca2 +对Glu的尖峰响应很快。脱敏测定和药理测试表明,由Glu触发的Ca2 +通量是由OsGLR介导的。全基因组分析确定了水稻中的13个OsGLR基因,这些基因在不同组织中具有多种表达模式。亚细胞定位研究表明,检查的所有OsGLR都可能定位于质膜。细菌生长分析表明,至少OsGLR2.1和OsGLR3.2具有介导细菌吸收离子的潜力。使用基于Fura-2的Ca2 +成像进行的进一步分析显示,表达OsGLR2.1的人胚肾(HEK)细胞中Glu触发的Ca2 +升高。水稻中的Ca2 +通量。

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