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砷污染在水稻农业环境中的影响与缓解策略:全面的认识。

Arsenic contamination, impact and mitigation strategies in rice agro-environment: An inclusive insight.

机构信息

Plant Stress Biology and Metabolomics Laboratory Central Instrumentation Laboratory (CIL), Assam University, Silchar 788 011, India.

Division of Agricultural Physics, Indian Agricultural Research Institute, Pusa, New Delhi 110012, India.

出版信息

Sci Total Environ. 2021 Dec 15;800:149477. doi: 10.1016/j.scitotenv.2021.149477. Epub 2021 Aug 9.

Abstract

Arsenic (As) contamination and its adverse consequences on rice agroecosystem are well known. Rice has the credit to feed more than 50% of the world population but concurrently, rice accumulates a substantial amount of As, thereby compromising food security. The gravity of the situation lays in the fact that the population in theAs uncontaminated areas may be accidentally exposed to toxic levels of As from rice consumption. In this review, we are trying to summarize the documents on the impact of As contamination and phytotoxicity in past two decades. The unique feature of this attempt is wide spectrum coverages of topics, and that makes it truly an interdisciplinary review. Aprat from the behaviour of As in rice field soil, we have documented the cellular and molecular response of rice plant upon exposure to As. The potential of various mitigation strategies with particular emphasis on using biochar, seed priming technology, irrigation management, transgenic variety development and other agronomic methods have been critically explored. The review attempts to give a comprehensive and multidiciplinary insight into the behaviour of As in Paddy -Water - Soil - Plate prospective from molecular to post-harvest phase. From the comprehensive literature review, we may conclude that considerable emphasis on rice grain, nutritional and anti-nutritional components, and grain quality traits under arsenic stress condition is yet to be given. Besides these, some emerging mitigation options like seed priming technology, adoption of nanotechnological strategies, applications of biochar should be fortified in large scale without interfering with the proper use of biodiversity.

摘要

砷(As)污染及其对水稻农业生态系统的不良后果是众所周知的。水稻养活了世界上 50%以上的人口,但同时,水稻也积累了大量的砷,从而影响了粮食安全。情况的严重性在于,在没有砷污染的地区,人们可能会意外地从食用大米中摄入有毒水平的砷。在这篇综述中,我们试图总结过去二十年中关于砷污染和植物毒性影响的文献。这一尝试的独特之处在于广泛涵盖了主题,这使其真正成为一篇跨学科的综述。除了砷在稻田土壤中的行为外,我们还记录了水稻植物在暴露于砷时的细胞和分子反应。我们还批判性地探讨了各种缓解策略的潜力,特别是利用生物炭、种子引发技术、灌溉管理、转基因品种开发和其他农业方法。本综述试图从分子到收获后阶段,从多学科的角度全面深入地了解砷在稻田-水-土-盘的行为。从全面的文献综述中,我们可以得出结论,在砷胁迫条件下,对水稻籽粒、营养和抗营养成分以及籽粒品质特性的研究还需要进一步加强。除此之外,一些新兴的缓解措施,如种子引发技术、采用纳米技术策略、生物炭的应用,应该在不干扰生物多样性的适当利用的情况下,在更大规模上得到加强。

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