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Zinc alleviates growth inhibition and oxidative stress caused by cadmium in rice.

机译:锌减轻了镉对水稻的生长抑制和氧化应激。

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A hydroponic experiment with two rice cultivars differing in cadmium (Cd) tolerance was conducted to investigate the alleviating effect of zinc (Zn) on growth inhibition and oxidative stress caused by Cd. Treatments consisted of all combinations of two Zn concentrations (0.2 and 1 micro M), three Cd concentrations (0, 1, and 5 micro M), and two rice cultivars (Bing 97252, Cd-tolerant; Xiushui 63, Cd-sensitive). Cd toxicity caused a dramatic reduction in plant height and biomass, chlorophyll concentration and photosynthetic rate, and an increase in Cd concentration in both roots and shoots, malondialdehyde (MDA) concentration, and superoxide dismutase (SOD) and peroxidase (POD) activities in shoots. The response of all these parameters was much larger for Xiushui 63 than for Bing 97252. Addition of Zn to the medium solution alleviated Cd toxicity, which was reflected in a significant increase in plant height, biomass, chlorophyll concentration, and photosynthetic rate, and a marked decrease in MDA concentration and activity of anti-oxidative enzymes. However, it was noted that Zn increased shoot Cd concentration at higher Cd supply, probably due to the enhancement of Cd translocation from roots to shoots. Therefore, further studies are necessary to determine the effect of Zn supply on Cd translocation from vegetative organs to grains or grain Cd accumulation before Zn fertilizer is applied to Cd-contaminated soils to alleviate Cd toxicity in rice.
机译:进行了两个对镉(Cd)耐受性不同的水稻品种的水培试验,以研究锌(Zn)对镉引起的生长抑制和氧化胁迫的缓解作用。处理包括两个锌浓度(0.2和1 microM),三个Cd浓度(0、1、5 microM)和两个水稻品种(Bing 97252,耐Cd;秀水63,对Cd敏感)的所有组合。 。镉的毒性导致植物高度和生物量,叶绿素浓度和光合速率的急剧降低,根和芽中镉的浓度,丙二醛(MDA)浓度以及芽中的超氧化物歧化酶(SOD)和过氧化物酶(POD)活性均增加。 。秀水63的所有这些参数的响应都比冰97252的响应大得多。向培养基溶液中添加锌减轻了Cd的毒性,这反映在植物高度,生物量,叶绿素浓度和光合速率的显着提高以及MDA浓度和抗氧化酶活性显着下降。但是,注意到在较高的Cd供应下,Zn增加了Cd浓度,这可能是由于Cd从根向芽的转运增强所致。因此,有必要进行进一步的研究来确定锌供应对从营养器官到谷物或谷物Cd积累的Cd转运的影响,然后再将Zn肥料施用到受Cd污染的土壤上以减轻水稻中Cd的毒性。

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