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首页> 外文期刊>Ecotoxicology and Environmental Safety >Sulfur dioxide derivatives alleviate cadmium toxicity by enhancing antioxidant defence and reducing Cd~(2+) uptake and translocation in foxtail millet seedlings
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Sulfur dioxide derivatives alleviate cadmium toxicity by enhancing antioxidant defence and reducing Cd~(2+) uptake and translocation in foxtail millet seedlings

机译:二氧化硫衍生物通过增强抗氧化剂防御能力和减少谷子幼苗中Cd〜(2+)的吸收和转运而减轻镉的毒性。

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摘要

Sulfur dioxide (SO2) was recently proposed as a novel bio-regulator in mammals. However, the possible advantageous effects of SO2 in plant adaptation to heavy metal-contaminated environments are largely unknown. In the present study, using Na2SO3/NaHSO3 derivatives as SO2 donors, we investigated the possible roles and regulation mechanisms of SO2 in alleviating Cd2+ toxicity in foxtail millet seedlings. Exogenous SO2 derivatives (0.5 mM) application significantly reduced the seedling growth inhibition caused by Cd2+ stress. Cd2+-induced oxidative damage was also alleviated by SO2 derivatives, which was supported by the decreased malondialdehyde (MDA) level in the leaves of seedlings pretreated with SO2 derivatives. These responses were related to the enhanced activities of representative antioxidant enzymes, including catalase and superoxide dismutase, as well as the up-regulation of ascorbate-glutathione cycle, which contributed to the scavenging of Cd2+-elicited O-2 and H2O2 within the leaves of foxtail millet seedlings. Also, SO2 derivative application promoted sulfur assimilation and increased the content of glutathione and phytochelatins, which may help to enhance Cd2+ detoxification capacity in foxtail millet seedlings. Moreover, application of SO2 derivatives caused down-regulation of the transcript expression levels of several genes involved in Cd2+ uptake and translocation, such as NRAMP1, NRAMP6, IRT1, IRT2, HMA2, and HMA4, thus resulting in reduced Cd2+ accumulation in the shoots and roots of Cd2+-stressed seedlings. Collectively, these results suggest that exogenous SO2 derivative application can alleviate oxidative damage and restrict Cd2+ buildup, thereby reducing Cd2+-induced growth inhibition in foxtail millet seedlings upon Cd2+ exposure. This novel finding indicates that the usage of SO2 derivatives may be an effective approach for enhancing Cd2+ tolerance in foxtail millet and other crops.
机译:二氧化硫(SO2)是最近提出的一种新型的哺乳动物生物调节剂。但是,SO 2在植物适应重金属污染的环境中可能产生的有利影响尚不清楚。在本研究中,使用Na2SO3 / NaHSO3衍生物作为SO2供体,我们研究了SO2在减轻谷子幼苗Cd2 +毒性中的可能作用和调控机制。外源SO2衍生物(0.5 mM)的施用显着降低了Cd2 +胁迫引起的幼苗生长抑制。 SO2衍生物也减轻了Cd2 +引起的氧化损伤,这得益于用SO2衍生物预处理的幼苗叶片中丙二醛(MDA)含量降低。这些反应与代表性抗氧化剂酶(包括过氧化氢酶和超氧化物歧化酶)的活性增强以及抗坏血酸-谷胱甘肽循环的上调有关,这有助于清除Cd2 +诱导的O-2和H2O2在叶片中的清除。谷子的谷子幼苗。此外,SO2衍生物的施用促进了硫的同化作用,并增加了谷胱甘肽和植物螯合素的含量,这可能有助于增强谷子幼苗中Cd2 +的解毒能力。此外,SO2衍生物的应用导致与Cd2 +吸收和易位有关的几个基因(如NRAMP1,NRAMP6,IRT1,IRT2,HMA2和HMA4)的转录表达水平下调,从而导致芽和茎中Cd2 +积累减少。 Cd2 +胁迫幼苗的根。总体而言,这些结果表明,外源SO2衍生物的施用可以减轻氧化损伤并限制Cd2 +的积累,从而减少Cd2 +暴露于Cd2 +后对谷子幼苗引起的生长抑制。这一新发现表明,使用SO2衍生物可能是提高谷子和其他农作物对Cd2 +耐受性的有效方法。

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