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土壤重金属污染的植物修复与金属超富集植物及其遗传工程研究 被引量:44
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作者 王松良 郑金贵 《中国生态农业学报》 CAS CSCD 2007年第1期190-194,共5页
本文综述了土壤重金属污染的植物修复、金属超富集植物及其遗传工程的最新研究进展及存在问题,并提出加紧筛选和发现野生高生物量的金属超富集植物,在现有高生物量作物种质资源中筛选金属超富集作物,应用遗传工程技术把野生植物的超富... 本文综述了土壤重金属污染的植物修复、金属超富集植物及其遗传工程的最新研究进展及存在问题,并提出加紧筛选和发现野生高生物量的金属超富集植物,在现有高生物量作物种质资源中筛选金属超富集作物,应用遗传工程技术把野生植物的超富集基因转移到现有高生物量植物(作物)中,寻找综合、可持续的植物修复手段等对策。 展开更多
关键词 土壤重金属污染 植物修复 金属超富集植物 遗传工程
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Research Progress of Phytoremediation Technology on Soils Polluted by Heavy Metals in Mining Areas 被引量:6
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作者 王莹 向准 +2 位作者 贺红早 任春光 孙超 《Agricultural Science & Technology》 CAS 2012年第10期2133-2136,共4页
Phytoremediation is an efficient and economic ecological technology. It includes phytostabilization, phytovolatilization, and plant absorption. In the research, status quo and progress of Phytostabilization and plant ... Phytoremediation is an efficient and economic ecological technology. It includes phytostabilization, phytovolatilization, and plant absorption. In the research, status quo and progress of Phytostabilization and plant absorption in soils polluted with heavy metals in metal mines were summarized, including the characteristics and status quo of phytoremediation and selection method of hyperaccumulator. In addition, further research was proposed as well. 展开更多
关键词 Heavy metals Poliuted soils PHYTOREMEDIATION HYPERACCUMULATOR
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Factors Affecting Phytoextraction: A Review 被引量:18
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作者 Vimla SHEORAN Attar Singh SHEORAN Poonam POONIA 《Pedosphere》 SCIE CAS CSCD 2016年第2期148-166,共19页
Hyperaccumulators concentrate trace metals and heavy metals in their shoots when grown in metal-contaminated soils and these trace metal-loaded plants may be removed by harvesting the fields. Studies exploring the ben... Hyperaccumulators concentrate trace metals and heavy metals in their shoots when grown in metal-contaminated soils and these trace metal-loaded plants may be removed by harvesting the fields. Studies exploring the beneficial role of these hyperaccumulators to clean up the environment have led to the development of phytoextraction. The success of phytoextraction depends upon the high biomass of plant species and bioavailability of metals for plant uptake. The phytoavailability of metals is influenced by soil- associated factors, such as pH, redox potential, cation exchange capacity, soil type, and soil texture, and by plant-associated factors, such as root exudates and root rhizosphere processes (microorganisms). Efficiency of phytoextraction can be improved by advanced agronomic practices including soil and crop management by application of genetic engineering to enhance the metal tolerance, shoot translocation, accumulation, and sequestration and by application of chelate treatments to enhance metal bioavailability. Application of microorganisms including bacteria and mycorrhiza may facilitate the phytoextraction application at commercially large scale. 展开更多
关键词 BACTERIA BIOAVAILABILITY chelate treatment genetic engineering heavy metals HYPERACCUMULATOR MYCORRHIZA
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