首页> 外文期刊>International Journal of Phytoremediation >Phytoremediation: State-of-the-art and a key role for the plant microbiome in future trends and research prospects
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Phytoremediation: State-of-the-art and a key role for the plant microbiome in future trends and research prospects

机译:植物修复:最先进的植物微生物组在未来趋势和研究前景的关键作用

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摘要

Phytoremediation is increasingly adopted as a more sustainable approach for soil remediation. However, significant advances in efficiency are still necessary to attain higher levels of environmental and economic sustainability. Current interventions do not always give the expected outcomes in field settings due to an incomplete understanding of the multicomponent biological interactions. New advances in -omics are gradually implemented for studying microbial communities of polluted land in situ. This opens new perspectives for the discovery of biodegradative strains and provides us new ways of interfering with microbial communities to enhance bioremediation rates. This review presents retrospectives and future perspectives for plant microbiome studies relevant to phytoremediation, as well as some knowledge gaps in this promising research field. The implementation of phytoremediation in soil clean-up management systems is discussed, and an overviewof the promoting factors that determine the growth of the phytoremediation market is given. Continuous growth is expected since elimination of contaminants from the environment is demanded. The evolution of scientific thought from a reductionist view to a more holistic approach will boost phytoremediation as an efficient and reliable phytotechnology. It is anticipated that phytoremediation will prove the most promising for organic contaminant degradation and bioenergy crop production on marginal land.
机译:植物化越来越多地被采用作为更可持续的土壤修复方法。然而,效率的显着进展仍然需要获得更高水平的环境和经济可持续性。由于对多组分生物相互作用不完全了解,目前的干预措施并不总是在现场设置中提供预期的结果。为研究原地的污染土地的微生物群落逐渐实施 - 逐渐实施。这为发现生物学菌株开辟了新的透视,并为我们提供了干扰微生物社区的新方法,以提高生物修复率。本综述介绍了与植物修复相关的植物微生物组研究的回顾利用和未来的观点,以及这一有前途的研究领域的一些知识差距。讨论了土壤清理管理系统中植物修复的实施,并概述了确定植物修复市场的生长的促进因子。预期持续增长是预期,因为要求消除来自环境的污染物。从还原师视图到更全面方法的科学思想的演变将使植物化成为一种有效且可靠的植物技术。预计植物修复将证明有机污染物降解和生物能量作物生产在边际土地上。

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