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41.
Li  Yin-M.  Chaney  Rufus  Brewer  Eric  Roseberg  Richard  Angle  J. Scott  Baker  Alan  Reeves  Roger  Nelkin  Jay 《Plant and Soil》2003,249(1):107-115
In recent R&D work, we have made progress in developing a commercial technology using hyperaccumulator plant species to phytoextract nickel (Ni) from contaminated and/or Ni-rich soils. An on-going program is being carried out to develop a genetically improved phytoextraction plant that combines favorable agronomic and Ni accumulation characteristics. Genetically diverse Ni hyperaccumulator species and ecotypes of Alyssum were collected and then evaluated in both greenhouse and field using serpentine and Ni-refinery contaminated soils. Large genetic variation was found in those studies. Mean shoot Ni concentrations in field-grown plants ranged from 4200 to 20400 mg kg–1. We have been studying several soil management practices that may affect the efficiency of Ni phytoextraction. Soil pH is an important factor affecting absorption of metals by plants. An unexpected result of both greenhouse and field experiments was that Ni uptake by two Alyssum species was reduced at lower soil pH and increased at higher soil pH. At higher pH, plant yield was improved also. In soil fertility management studies, we found that N application significantly increased plant biomass, but did not affect plant shoot Ni concentration. These findings indicate that soil management will be important for commercial phytoextraction. A number of field trials have been carried out to study planting methods, population density, weed control practices, harvest schedule and methods, pollination control, and seed processing. Such crop management studies have improved phytoextraction efficiency and provide a tool for farmers to conduct commercial production. We have done some work to develop efficient and cost-effective methods of Ni recovery. Recovery of energy by biomass burning or pyrolysis could help make phytoextraction more cost-effective. The progress made in our recent studies will enable us to apply this technology commercially in the near future.  相似文献   
42.
铅污染现状及其修复机理研究进展   总被引:5,自引:0,他引:5  
介绍了铅污染的现状、修复机理及存在的问题。其中重点阐述了国内在寻找铅的超累积植物的研究进展,国外研究者对铅在植物体内吸收、运输和储存机理方面的研究现状,同时对已发现的与铅污染有关的基因以及转基因技术的应用情况进行了简单介绍,并探讨了提高铅污染修复效率的一些方法。  相似文献   
43.
44.
高通量测序技术及其在微生物学研究中的应用   总被引:18,自引:0,他引:18  
20世纪70年代发明的核酸测序技术为基因组学及其相关学科的发展做出了巨大贡献,本世纪初发展的以Illumina公司的HiSeq 2000,ABI公司的SOLID,和Roche公司的454技术为代表的高通量测序技术又为基因组学的发展注入了新活力.本文在阐述这些技术的基础上,着重讨论了新一代测序技术在微生物领域中的应用.  相似文献   
45.
典型极小种群野生植物保护与恢复技术研究   总被引:2,自引:0,他引:2  
极小种群野生植物是急需优先抢救的国家重点保护濒危植物。目前,有关极小种群野生植物濒危原因及相应解濒技术的研究还非常缺乏,已有的植物种群生态学和保护生物学理论对极小种群植物并不完全适用,迫切需要研发有针对性的科学理论和保育技术。介绍了国家重点研发计划项目"典型极小种群野生植物保护与恢复技术研究(2016YFC0503100)"的研究意义、内容、目标及展望。项目拟针对典型极小种群野生植物开展保护与恢复技术的研究,拟构建极小种群野生植物的种群生态学和保护生物学理论体系,研发极小种群野生植物保护和更新复壮的技术体系,并建立相应的应用技术标准和示范基地,为极小种群野生植物的保护与可持续利用奠定坚实的理论基础和技术支撑。  相似文献   
46.
论述了蛋白质组学与基因组学的关系,蛋白质组学的定义、功能、分类及其三大主要技术.详细评述了蛋白质组学技术在农业科学研究中的应用,如叶绿体蛋白质组,农作物与细菌的共生现象、植物叶绿体蛋白质组,作物抗旱性和雄性不育性等.最后展望了蛋白质组学这一生命科学中最新方法在农业科学中的应用前景.  相似文献   
47.
A Namalwa cell line, KJM-1, which was adapted to serum-free medium is thought to be a good host cell line for recombinant DNA technology. We previously reported the expression of human -interferon (-IFN) in Namalwa KJM-1 (Miyaji, 1989a). The utility of Namalwa KJM-1 for expression of foreign genes was further examined. As a target gene to be expressed, human lymphotoxin (hLT) cDNA was used. It was engineered for expression in Namalwa KJM-1 using a simian virus 40 (SV40)-based expression vector pAGE107 (Miyaji, 1989a). It contains all components necessary for the expression of cDNA in mammalian cells. The expression vector was introduced into Namalwa KJM-1 by electroporation. Among the transformants, clone 7 was further examined for the expression of hLT in serum-free medium. The production level of hLT was augmented with the increase of the cell density. Thus it was further indicated that Namalwa KJM-1 is useful for production of foreign gene products.Abbreviation HEPES 4-(2-hydroxyethyl)-1-piperazineethanesulfonic acid  相似文献   
48.
Phytoremediation is a promising approach for the cleanup of soil contaminated with petroleum hydrocarbons. This study aimed to develop plant-bacterial synergism for the successful remediation of crude oil-contaminated soil. A consortia of three endophytic bacteria was augmented to two grasses, Leptochloa fusca and Brachiaria mutica, grown in oil-contaminated soil (46.8 g oil kg?1 soil) in the vicinity of an oil exploration and production company. Endophytes augmentation improved plant growth, crude oil degradation, and soil health. Maximum oil degradation (80%) was achieved with B. mutica plants augmented with the endophytes and it was significantly (P < 0.05) higher than the use of plants or bacteria individually. Moreover, endophytes showed more persistence, the abundance and expression of alkB gene in the rhizosphere as well as in the endosphere of the tested plants than in unvegetated soil. A positive relationship (r = 0.70) observed between gene expression and crude oil reduction indicates that catabolic gene expression is important for hydrocarbon mineralization. This investigation showed that the use of endophytes with appropriate plant is an effective strategy for the cleanup of oil-contaminated soil under field conditions.  相似文献   
49.
Growth, tolerance and zinc and cadmium hyperaccumulation of Thlaspi caerulescens populations from three metal contaminated soils and three normal soils were compared under controlled conditions. Individuals of six populations were cultivated on five soils with increasing concentrations of zinc (50–25000 μg g−1) and cadmium (1–170 μg g−1). There was no mortality of normal soil populations in the four metal-contaminated soils, but plant growth was reduced to half that of populations from metal-contaminated soils. However, in noncontaminated soil, the growth of individuals from normal soils was greater than that of individuals from metal-contaminated soils. Individuals from normal soils concentrated three times more zinc in the aboveground biomass than those from metal-contaminated soils, but the latter accumulated twice as much cadmium. We conclude that populations of T. caerulescens from both normal and metal-contaminated soils are interesting material for phytoextraction of zinc and cadmium, but to optimize the process of phytoextraction it is necessary to combine the extraction potentials of both type of populations.  相似文献   
50.
滇苦菜(Picris divaricata Vant.)对锌的吸收和富集特性   总被引:3,自引:0,他引:3  
通过野外调查和营养液培养,研究Zn对滇苦菜(Picris divaricata Vant.)生长的影响及其吸收富集Zn的特性.野外调查发现,铅锌矿区土壤Zn全量范围为1724~134973 mg·kg-1,平均为61495 mg·kg-1.滇苦菜地上部Zn含量范围为1214~18339 mg·kg-1,平均为5911 mg·kg-1,且转运系数(S/R)的平均值为2.21,大于1.在营养液培养条件下,当Zn浓度达到80 mg·L-1时,滇苦菜生长开始出现明显的中毒症状,随着Zn处理的增加,植物地上部与根部的生物量呈下降趋势,Zn含量呈上升趋势,且地上部与根部在160 mg·L-1时Zn含量达最高值,分别为12472 mg·kg-1和14026 mg·kg-1,体内Zn富集量也达最高值1518 μg ·株-1,并且整个植株富集的Zn有75%~91%分布在地上部.结果表明滇苦菜具有很强的忍耐、吸收和富集Zn的能力,是我国境内发现的又一种Zn超富集植物.  相似文献   
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