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Increased Cytosolic Calcium Contributes to Hydrogen-Rich Water-Promoted Anthocyanin Biosynthesis Under UV-A Irradiation in Radish Sprouts Hypocotyls

机译:萝卜芽菜胚轴中UV-A辐射下增加的胞液钙有助于富氢水促进花色苷的生物合成。

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摘要

Our previous studies showed that hydrogen-rich water (HRW) promoted the biosynthesis of anthocyanin under UV-A in radish. However, molecular mechanism involved in the regulation of the anthocyanin biosynthesis is still unclear. In this study, the role of calcium (Ca2+) in HRW-promoted anthocyanin biosynthesis in radish sprouts hypocotyls under UV-A was investigated. The results showed that a positive effect of HRW on the content of cytosolic calcium and anthocyanin accumulation, mimicking the effects of induced CaCl2. Exogenous addition of Ca2+ chelator bis (β-aminoethylether)-N,N,N′,N′-tetraacetic acid (EGTA) and inositol 1,4,5-trisphosphate (IP3) synthesis inhibitor neomycin partially reversed the facilitated effect of HRW. The positive effects of HRW on activity of anthocyanin biosynthetic-enzymes (L-phenylalanine ammonia-lyase, PAL; chalcone isomerase, CHI; dihydroflavonol 4-reductase, DFR and UDP glc-flavonoid 3-O-glucosyl transferase, UFGT) were reversed by EGTA and neomycin. Further tests confirmed that the upregulation of anthocyanin biosynthetic related genes induced by HRW was substantially inhibited by calcium antagonists. The possible involvement of CaM in HRW-regulated anthocyanin biosynthesis was also preliminarily investigated in this study. Taken together, our results indicate that IP3-dependent calcium signaling pathway might be involved in HRW-regulated anthocyanin biosynthesis under UV-A irradiation.
机译:我们以前的研究表明,富氢水(HRW)促进了UV-A下萝卜中花青素的生物合成。但是,尚不清楚花青素生物合成调控的分子机制。在这项研究中,研究了钙(Ca 2 + )在UV-A下萝卜丝下胚轴中HRW促进的花青素生物合成中的作用。结果表明,HRW对胞质钙含量和花青素积累具有积极作用,与诱导的CaCl2的作用相似。 Ca 2 + 螯合剂双(β-氨基乙基醚)-N,N,N',N'-四乙酸(EGTA)和肌醇1,4,5-三磷酸(IP3)合成抑制剂的添加新霉素部分逆转了HRW的促进作用。 HRW对花色苷生物合成酶(L-苯丙氨酸氨裂合酶,PAL;查尔酮异构酶,CHI;二氢黄酮醇4-还原酶,DFR和UDP glc-类黄酮3-O-葡萄糖基转移酶,UFGT)活性的正作用。 EGTA和新霉素。进一步的测试证实,钙拮抗剂可显着抑制HRW诱导的花色苷生物合成相关基因的上调。在这项研究中,还初步研究了CaM可能参与HRW调节的花色苷生物合成。两者合计,我们的结果表明,IP3依赖性钙信号通路可能参与UV-A辐射下HRW调节的花色苷生物合成。

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