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首页> 外文期刊>Plant biology >Calcium acetate-induced reduction of cadmium accumulation in Oryza sativa: Expression of auto-inhibited calcium-ATPase and cadmium transporters
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Calcium acetate-induced reduction of cadmium accumulation in Oryza sativa: Expression of auto-inhibited calcium-ATPase and cadmium transporters

机译:醋酸钙诱导的菊氨酸镉积累还原:自动抑制钙 - ATP酶和镉转运蛋白的表达

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摘要

Calcium (Ca) signalling has an essential role in regulating plant responses to various abiotic stresses. This study applied Ca in various forms (Ca acetate and CaCl2) and concentrations to reduce cadmium (Cd) concentration in rice and propose a possible mechanism through which Ca acts to control the Cd concentration in rice. The results showed that supplementation of Cd-contaminated soil with Ca acetate reduced the Cd concentration in rice after exposure for 7 days in both hydroponic and soil conditions. The possible involvement of the auto-inhibited Ca2+-ATPase gene (ACA) might act to control the primary signal of the Cd stress response. The messages from ACA3 and ACA13 tended to up-regulate the low-affinity cation transporter (OsLCT1) and down-regulate Cd uptake and the Cd translocation transporter, including the genes, natural resistance-associated macrophage protein 5 (Nramp5) and Zn/Cd-transporting ATPase 2 (HMA2), which resulted in a reduction in the Cd concentration in rice. After cultivation for 120 days, the application of Ca acetate into Cd-contaminated soil inhibited Cd uptake of rice. Increasing the Ca acetate concentration in the soil lowered the Cd concentration in rice shoots and grains. Moreover, Ca acetate maintained rice productivity and quality whereas both aspects decreased under Cd stress.
机译:钙(CA)信号传导在调节对各种非生物应激的植物反应方面具有重要作用。该研究以各种形式(Ca乙酸盐和CaCl2)和浓度的浓度应用Ca,以减少水稻中镉(Cd)浓度,并提出了Ca通过该机制来控制水稻中Cd浓度。结果表明,在水培和土壤条件下,补充了Ca醋酸醋酸酯的CD污染土壤在水稻中降低了水稻中的CD浓度7天。自动抑制的Ca2 + -AtPase基因(ACA)的可能涉及可以采用来控制CD应激反应的主要信号。来自ACA3和ACA13的消息倾向于上调低亲和力阳离子转运蛋白(OSLCT1)和下调CD摄取和CD转移转运蛋白,包括基因,固体抗性相关的巨噬细胞5(NRAMP5)和Zn / CD -Transporting ATP酶2(HMA2),导致水稻中CD浓度降低。培养120天后,将Ca醋酸酯在CD污染土壤中的应用抑制CD的水稻。增加土壤中的Ca醋酸盐浓度降低了水稻芽和晶粒中的Cd浓度。此外,Ca醋酸盐保持水稻生产率和质量,而CD胁迫下两个方面都降低。

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