铊在真菌亚细胞中的分布特征
Sub-cellular Distribution of Thallium in Fungus
查看参考文献25篇
文摘
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将前期从铊污染区筛选得到的9株高耐受性真菌菌株用于微生物对铊的富集和亚细胞分布实验,采用酶解和差速离心法分离各亚细胞组分,并检测其中铊的质量分数.结果表明,生物富集量随着铊处理浓度上升而降低,其影响趋势与对生物量的影响趋势基本一致,最高可达7 189 mg/kg,最大富集系数为7.19.在亚细胞水平上,铊的富集优先顺序为:细胞质-细胞壁-细胞器.亚细胞水平的区隔化作用是真菌对铊的主要耐受机制,细胞质是赋存铊的主要场所(53.83%~79.45%). |
其他语种文摘
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This paper focused on the sub-cellular distribution of thallium in several different fungus strains. The fungus strains were isolated from the Lanmuchang thallium-mineralised area in southwest Guizhou Province,and were used in the bio-concentration experiments. The sub-cellular supernatants including cytoplasmic,cellwall and cell organelles were seperated by the differential centrifuge after treated with snailase. Results show that the bio-concentration rate of thallium in the nine strains decreases with increasing thallium contents in the culture,the maximum at 7 189 mg /kg and the maximum bioconcentration factor (BCF) at 7. 19. In the sub-cellular supernatants detected by ICP-OES,the majority of thallium (up to 79. 45%) was found in cytoplasmic organelles,and the concentrations of thallium in the order of priority are as follows: cytoplasmic-cellwall-cell organelles. Cytoplasmic supernatant is apparently a major storage site for thallium,which is a possible detoxification of thallium by the fungus. |
来源
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北京工业大学学报
,2013,39(6):941-947 【扩展库】
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关键词
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铊
;
微生物
;
真菌
;
亚细胞
;
分布
;
富集
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地址
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1.
中国科学院地球化学研究所, 环境地球化学国家重点实验室, 贵阳, 550002
2.
贵州省环境科学研究设计院, 贵阳, 550002
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语种
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中文 |
文献类型
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研究性论文 |
ISSN
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0254-0037 |
学科
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地质学 |
基金
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国家自然科学基金资助项目
;
中国科学院知识创新工程重要方向项目
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文献收藏号
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CSCD:4854237
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参考文献 共
25
共2页
|
1.
Anand P. Bioaccumulation of copper by Trichoderma viride.
Bioresource Technology,2006,97(8):1018-1025
|
CSCD被引
9
次
|
|
|
|
2.
Bosecker K. Bioleaching: metal solubilization by microorganisms.
FEMS Microbiology Reviews,1997,20(3/4):591-604
|
CSCD被引
68
次
|
|
|
|
3.
Abou-Shanab R A I. Heavy metal resistance and genotypic analysis of metal resistance genes in gram-positive and gram-negative bacteria present in Ni-rich serpentine soil and in the rhizosphere of Alyssum murale.
Chemosphere,2007,68(2):360-367
|
CSCD被引
21
次
|
|
|
|
4.
荚荣. 真菌(Aspergillus sp.)吸附Cu~(2+)的研究.
中国环境科学,2003(3):263-266
|
CSCD被引
19
次
|
|
|
|
5.
杜爱雪. 高抗铜青霉菌的筛选及其对重金属的吸附.
应用与环境生物学报,2008,14(5):650-653
|
CSCD被引
14
次
|
|
|
|
6.
Aksu Z. Chromium (VI) biosorption by dried Rhizopus arrhizus: effect of salt (NaCl) concentration on equilibrium and kinetic parameters.
Journal of Hazardous Materials,2007,145(1/2):210-220
|
CSCD被引
5
次
|
|
|
|
7.
Dacera D D M. Removal of heavy metals from contaminated sewage sludge using Aspergillus niger fermented raw liquid from pineapple wastes.
Bioresource Technology,2008,99(6):1682-1689
|
CSCD被引
4
次
|
|
|
|
8.
Amiri A. Removal of thallium by combining desferrioxamine and deferiprone chelators in rats.
BioMetals,2007,20(2):159-163
|
CSCD被引
2
次
|
|
|
|
9.
Jacobson A R. The desorption of silver and thallium from soils in the presence of a chelating resin with thiol functional groups.
Water, Air, & Soil Pollution,2005,160(1):41-54
|
CSCD被引
2
次
|
|
|
|
10.
孙嘉龙. 黔西南滥木厂铊矿化区铊污染的微生物效应.
地球与环境,2009,37(1):62-66
|
CSCD被引
7
次
|
|
|
|
11.
Xiao T F. Environmental concerns related to high thallium levels in soils and thallium uptake by plants in southwest Guizhou, China.
The Science of the Total Environment,2004,318(1/3):223-244
|
CSCD被引
26
次
|
|
|
|
12.
Gorma A L F. Selectivity of the Ca~(2 +)-activated and light-dependent K + channels for monovalent cations.
Biophysical Journal,1982,38(3):319-322
|
CSCD被引
1
次
|
|
|
|
13.
龚子同(译).
后生地球化学,1975
|
CSCD被引
7
次
|
|
|
|
14.
Yang X. Molecular mechanisms of heavy metal hyperaccumulation and phytoremediation.
Journal of Trace Elements in Medicine and Biology,2005,18(4):339-353
|
CSCD被引
19
次
|
|
|
|
15.
Hamilton C A. Vacuolar H~+-ATPase, but not mitochondrial F_1 F_o-ATPase, is required for NaCl tolerance in Saccharomyces cerevisiae.
FEMS Microbiology Letters,2002,208(2):227-232
|
CSCD被引
3
次
|
|
|
|
16.
Leblanc M. The phytomining and environmental significance of hyperaccumulation of thallium by Iberis intermedia from southern France.
Economic Geology,1999,94(1):109-113
|
CSCD被引
9
次
|
|
|
|
17.
Wierzbicka M. Highly toxic thallium in plants from the vicinity of Olkusz (Poland).
Ecotoxicology And Environmental Safety,2004,59(1):84-88
|
CSCD被引
5
次
|
|
|
|
18.
何立斌.
甘蓝(Brassica oleracea L.var.capitata L.)吸收富集铊的环境地球化学研究,2008
|
CSCD被引
1
次
|
|
|
|
19.
翟中和.
细胞生物学,2007
|
CSCD被引
9
次
|
|
|
|
20.
Shannon R. Revised effective ionic radii and systematic studies of interatomic distances in halides and chalcogenides.
Acta Crystallographica Section A,1976,32(5):751-767
|
CSCD被引
1228
次
|
|
|
|
|