Department of Agronomy, College of Agriculture and Biotechnology, Zijingang Campus, Zhejiang University, Hangzhou 310058, PR China.
J Hazard Mater. 2012 Mar 30;209-210:121-8. doi: 10.1016/j.jhazmat.2011.12.076. Epub 2012 Jan 9.
Greenhouse hydroponic experiments were performed to evaluate potential role of H(2)S on Al toxicity in barley seedlings. Seedlings pretreated with 200 μM NaHS as a donor of H(2)S for 24h and subsequently exposed to 100 μM AlCl(3) for 24h had significantly longer roots than those without NaHS. The promoted root elongation was correlated with a substantial decrease in Al-induced overproduction of lipid peroxidation, electrolyte leakage and Al accumulation in roots, and a marked increase in Al-induced depress activities of Na(+)K(+)-ATPase and H(+)-ATPase. The alleviating role of H(2)S on Al-induced toxicity was also found in a time- and dose-dependent experiment. Addition of 200 and 400 μM NaHS to 100 μM AlCl(3) effectively alleviated Al-toxicity, markedly diminished Al-induced MDA accumulation, and increased chlorophyll content, net photosynthetic rate (Pn) and maximal photochemical efficiency (Fv/Fm) compared with Al alone. Exogenous H(2)S significantly elevated depressed CAT activities, and further improved root POD activity. Moreover, NaHS decreased Al accumulation, but elevated concentrations of S, P, Ca, Mg and Fe in plants. These data suggest that H(2)S-induced alleviation in Al toxicity is attributed to reduced Al uptake and MDA accumulation, improved uptake of P, Ca, Mg and Fe, and elevated ATPase and photosynthetic performance.
温室水培实验评估了 H(2)S 在大麦幼苗耐铝性中的潜在作用。用 200μM NaHS 预处理 24h 的幼苗作为 H(2)S 的供体,随后暴露于 100μM AlCl(3)24h,其根长明显长于未用 NaHS 处理的根。促进根伸长与铝诱导的脂质过氧化过度产生、电解质渗漏和根中铝积累的大量减少,以及铝诱导的 Na(+)K(+)-ATPase 和 H(+)-ATPase 活性显著降低有关。在时间和剂量依赖性实验中也发现了 H(2)S 对铝诱导毒性的缓解作用。在 100μM AlCl(3)中添加 200 和 400μM NaHS 可有效缓解铝毒性,明显减少铝诱导的 MDA 积累,增加叶绿素含量、净光合速率(Pn)和最大光化学效率(Fv/Fm)与单独的 Al 相比。外源 H(2)S 显著提高了受抑制的 CAT 活性,并进一步提高了根 POD 活性。此外,NaHS 减少了 Al 积累,但提高了植物中 S、P、Ca、Mg 和 Fe 的浓度。这些数据表明,H(2)S 诱导的铝毒性缓解归因于减少 Al 吸收和 MDA 积累,提高 P、Ca、Mg 和 Fe 的吸收,以及提高 ATPase 和光合作用性能。