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亚麻(亚麻属):植物修复的潜在候选者?生物学和经济学视角

Flax L.): A Potential Candidate for Phytoremediation? Biological and Economical Points of View.

作者信息

Saleem Muhammad Hamzah, Ali Shafaqat, Hussain Saddam, Kamran Muhammad, Chattha Muhammad Sohaib, Ahmad Shoaib, Aqeel Muhammad, Rizwan Muhammad, Aljarba Nada H, Alkahtani Saad, Abdel-Daim Mohamed M

机构信息

MOA Key Laboratory of Crop Ecophysiology and Farming System in the Middle Reaches of the Yangtze River, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan 430070, China.

Department of Environmental Sciences and Engineering, Government College University Allama Iqbal Road, Faisalabad 38000, Pakistan.

出版信息

Plants (Basel). 2020 Apr 13;9(4):496. doi: 10.3390/plants9040496.

Abstract

Flax ( L.) is an important oil seed crop that is mostly cultivated in temperate climates. In addition to many commercial applications, flax is also used as a fibrous species or for livestock feed (animal fodder). For the last 40 years, flax has been used as a phytoremediation tool for the remediation of different heavy metals, particularly for phytoextraction when cultivated on metal contaminated soils. Among different fibrous crops (hemp, jute, ramie, and kenaf), flax represents the most economically important species and the majority of studies on metal contaminated soil for the phytoextraction of heavy metals have been conducted using flax. Therefore, a comprehensive review is needed for a better understanding of the phytoremediation potential of flax when grown in metal contaminated soil. This review describes the existing studies related to the phytoremediation potential of flax in different mediums such as soil and water. After phytoremediation, flax has the potential to be used for additional purposes such as linseed oil, fiber, and important livestock feed. This review also describes the phytoremediation potential of flax when grown in metal contaminated soil. Furthermore, techniques and methods to increase plant growth and biomass are also discussed in this work. However, future research is needed for a better understanding of the physiology, biochemistry, anatomy, and molecular biology of flax for increasing its pollutant removal efficiency.

摘要

亚麻(Linum usitatissimum L.)是一种重要的油料作物,主要种植在温带气候地区。除了许多商业用途外,亚麻还被用作纤维作物或牲畜饲料。在过去的40年里,亚麻一直被用作植物修复工具,用于修复不同的重金属,特别是在金属污染土壤上种植时用于植物提取。在不同的纤维作物(大麻、黄麻、苎麻和红麻)中,亚麻是经济上最重要的品种,并且大多数关于金属污染土壤中重金属植物提取的研究都是使用亚麻进行的。因此,需要进行全面的综述,以更好地了解亚麻在金属污染土壤中生长时的植物修复潜力。本综述描述了与亚麻在土壤和水等不同介质中的植物修复潜力相关的现有研究。植物修复后,亚麻有潜力用于其他用途,如亚麻籽油、纤维和重要的牲畜饲料。本综述还描述了亚麻在金属污染土壤中生长时的植物修复潜力。此外,本文还讨论了促进植物生长和生物量增加的技术和方法。然而,需要未来的研究来更好地了解亚麻的生理学、生物化学、解剖学和分子生物学,以提高其污染物去除效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50aa/7238412/20ac32aea9ac/plants-09-00496-g001.jpg

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