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低剂量γ射线预处理提高青稞幼苗重金属耐受性的生理生化及分子机制。

Physio-biochemical and molecular mechanism underlying the enhanced heavy metal tolerance in highland barley seedlings pre-treated with low-dose gamma irradiation.

机构信息

Henan Key Laboratory of Ion- beam Bioengineering, Zhengzhou University, Zhengzhou, 450052, China.

出版信息

Sci Rep. 2017 Oct 27;7(1):14233. doi: 10.1038/s41598-017-14601-8.

Abstract

Heavy metal pollution, as a consequence of rapid industrialization and urbanization, poses a threat to highland barley grown in Tibet. This study investigates the effect of different doses of gamma irradiation (50-300 Gy) on the physio-biochemical and molecular mechanism of highland barley under heavy metal stress. Growth data showed that 50-Gy gamma irradiation had the maximal beneficial effects on the highland barley seedlings under lead/cadmium stress. The results of oxidative parameters demonstrated that 50-Gy gamma-irradiated seedlings had lower hydrogen peroxide and malondialdehyde contents under lead/cadmium stress compared to non-irradiated seedlings. Moreover, the activities of antioxidant enzyme and proline levels in 50-Gy gamma-irradiated seedlings were drastically higher than those in non-irradiated seedlings under lead/cadmium stress. Additionally, transmission electron microscopy results revealed that the 50-Gy gamma-irradiated seedlings exhibited improved chloroplasts ultrastructure compared with non-irradiated seedlings exposed to lead/cadmium stress. Notably, transcriptional expression analysis showed that 50-Gy gamma irradiation could significantly affect the expression of genes related to heavy metal transport and abscisic acid metabolism under lead/cadmium stress. Collectively, these results provide insights into the physio-biochemical and molecular mechanisms of low-dose-gamma-irradiation-enhanced heavy metal tolerance in highland barley seedlings, thus proposing gamma irradiation as a potential technology to mitigate heavy metal toxicity in crops.

摘要

重金属污染是工业化和城市化快速发展的结果,对西藏青稞的生长构成了威胁。本研究探讨了不同剂量伽马辐射(50-300Gy)对重金属胁迫下青稞的生理生化和分子机制的影响。生长数据表明,50Gy 伽马辐射对铅/镉胁迫下的青稞幼苗具有最大的有益效果。氧化参数的结果表明,与未辐照幼苗相比,50Gy 伽马辐照幼苗在铅/镉胁迫下的过氧化氢和丙二醛含量较低。此外,在铅/镉胁迫下,50Gy 伽马辐照幼苗中的抗氧化酶活性和脯氨酸水平明显高于未辐照幼苗。此外,透射电子显微镜结果表明,与铅/镉胁迫下未辐照的幼苗相比,50Gy 伽马辐照的幼苗表现出改善的叶绿体超微结构。值得注意的是,转录表达分析表明,50Gy 伽马辐照可显著影响铅/镉胁迫下与重金属转运和脱落酸代谢相关的基因表达。总之,这些结果深入了解了低剂量伽马辐照增强青稞幼苗重金属耐受性的生理生化和分子机制,从而提出伽马辐照作为减轻作物重金属毒性的一种潜在技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2612/5660250/a8f4069b0c70/41598_2017_14601_Fig1_HTML.jpg

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