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Dose dependent differential effects of toxic metal cadmium in tomato roots: Role of endogenous hydrogen sulfide

机译:番茄根中有毒金属镉的剂量依赖性差异:内源性硫化氢的作用

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In this study, hydroponic experiments were conducted to elucidate mechanism(s) that are associated with differential effects of low (5 mu M) and high (25 mu M) dose of cadmium (Cd) stress in tomato. Furthermore, emphasis has also been focused on any involvement of endogenous hydrogen sulfide (H2S) in differential behaviour of low and high doses of Cd stress. At low dose of Cd, root growth i.e. root fresh weight, length and fitness did not significantly alter when compared to the control seedlings. Though at low dose of Cd, cellular accumulation of Cd was slightly increased but this was accompanied by higher endogenous H2S and phytochelatins, (L)-cysteine desulfhydrase (DES) activity, activities of glutathione biosynthetic and AsA-GSH cycle enzymes, and maintained redox status of ascorbate and glutathione. However, addition of hypotaurine (HT, a scavenger of H2S) resulted in greater toxicity, even at low dose of Cd, and these responses resembled with higher dose of Cd stress such as greater decline in root growth, endogenous H2S and phytochelatins, activities of DES, glutathione biosynthesis and AsA-GSH cycle enzymes, disturbed redox status of ascorbate and glutathione which collectively led to higher oxidative stress in tomato roots. Moreover, addition of HT with higher dose of Cd also further enhanced its toxicity. Collectively, the results showed that differential behaviour of low and high dose of Cd stress is mediated by differential regulation of biochemical attributes in which endogenous H2S has a crucial role.
机译:在该研究中,进行了水培实验,以阐明与番茄中镉(CD)胁迫的低(5μm)和高(25μm)剂量的差异效应相关的机制。此外,强调还专注于内源性硫化氢(H2S)在低剂量的CD胁迫下的差异行为中的任何累及。在低剂量的Cd中,与对照幼苗相比,根生长,即根部鲜重,长度和健身并没有显着改变。虽然低剂量的Cd,但CD的细胞积聚略微增加,但是伴随着更高的内源性H 2 S和Phytochelatins,(L) - 琥珀脱硫酶(DES)活性,谷胱甘肽生物合成和ASA-GSH循环酶的活性,并维持氧化还原抗坏血酸和谷胱甘肽的状态。但是,即使在低剂量的CD下,也导致胃鹿(H2S的清除剂)添加更大的毒性,并且这些反应类似于较高剂量的CD胁迫,如根生长,内源H2S和植物切肽的更大下降, DES,谷胱甘肽生物合成和ASA-GSH循环酶,抗坏血酸盐和谷胱甘肽的氧化氧化还原状态统一地导致番茄根中较高的氧化应激。此外,具有较高剂量的Cd的HT也进一步增强了其毒性。总的来说,结果表明,低剂量的Cd胁迫的差异行为是通过差异调节生化属性的差异调节,其中内源性H2S具有至关重要的作用。

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