The biochemistry of environmental heavy metal uptake by plants: implications for the food chain.
暂无分享,去创建一个
[1] D. Arnon,et al. THE ESSENTIALITY OF CERTAIN ELEMENTS IN MINUTE QUANTITY FOR PLANTS WITH SPECIAL REFERENCE TO COPPER. , 1939, Plant physiology.
[2] E. Epstein. Mineral Nutrition of Plants: Principles and Perspectives , 1972 .
[3] K. Mahaffey,et al. Comparative effects of feeding lead acetate and phospholipid-bound lead on blood and tissue lead concentrations in young and adult rats , 1978, Bulletin of environmental contamination and toxicology.
[4] A. Baker. ACCUMULATORS AND EXCLUDERS ?STRATEGIES IN THE RESPONSE OF PLANTS TO HEAVY METALS , 1981 .
[5] C. R. Bagnell,et al. Morphological, pharmacokinetic, and hematological studies of lead-exposed pigeons. , 1982, Environmental research.
[6] R. J. Bartlett,et al. Behavior of Chromium in Soils: VII. Adsorption and Reduction of Hexavalent Forms , 1983 .
[7] M. Zemel,et al. Evidence for synergism between chromium and nicotinic acid in the control of glucose tolerance in elderly humans. , 1987, Metabolism: clinical and experimental.
[8] J. Nriagu,et al. Quantitative assessment of worldwide contamination of air, water and soils by trace metals , 1988, Nature.
[9] Alan J. M. Baker,et al. TERRESTRIAL HIGHER PLANTS WHICH HYPERACCUMULATE METALLIC ELEMENTS. A REVIEW OF THEIR DISTRIBUTION, ECOLOGY AND PHYTOCHEMISTRY , 1989 .
[10] Ronald G. Rada,et al. Recent influxes of metals into Lake Pepin, a natural lake on the Upper Mississippi River , 1990, Archives of environmental contamination and toxicology.
[11] G. Pershagen,et al. Arsenic exposure, smoking, and lung cancer in smelter workers--a case-control study. , 1991, American journal of epidemiology.
[12] Ellen M. Lawler,et al. Effects of chronic exposure to sublethal concentrations of lead acetate on heme synthesis and immune function in red-tailed hawks , 1991, Archives of environmental contamination and toxicology.
[13] L. Kochian,et al. Aluminum effects on calcium fluxes at the root apex of aluminum-tolerant and aluminum-sensitive wheat cultivars. , 1992, Plant physiology.
[14] BIOCHEMICAL VARIATIONS IN OVARIES OF WATER HYACINTH WEEVILS NEOCHETINA EICHHORNIAE (WARNER) EXPOSED TO HEAVY METALS , 1993 .
[15] Miaoying Wang. Ammonium uptake by rice roots , 1994 .
[16] L. Kochian,et al. Ammonium Uptake by Rice Roots (III. Electrophysiology) , 1994, Plant physiology.
[17] M. Gealt,et al. Biodegradation and Bioremediation. , 1996 .
[18] R. Munson,et al. The mercury cycle and fish in the adirondack lakes. , 1994, Environmental science & technology.
[19] S. Dudka,et al. Trace metal contamination of soils and crop plants by the mining and smelting industry in Upper Silesia, South Poland , 1995 .
[20] B. Fowler,et al. Lead-binding proteins in brain tissue of environmentally lead-exposed humans. , 1995, Chemico-biological interactions.
[21] R. Laskowski,et al. Accumulation of Zn, Cu, Pb and Cd in the garden snail (Helix aspersa): implications for predators. , 1996, Environmental pollution.
[22] S. D. Cunningham,et al. Lead phytoextraction: species variation in lead uptake and translocation , 1996 .
[23] S. Dudka,et al. Transfer of cadmium, lead, and zinc from industrially contaminated soil to crop plants: a field study. , 1996, Environmental pollution.
[24] A O Summers,et al. Mercuric ion reduction and resistance in transgenic Arabidopsis thaliana plants expressing a modified bacterial merA gene. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[25] S. Pirc,et al. Mercury in the Idrijca River sediments as a reflection of mining and smelting activities of the Idrija mercury mine , 1997 .
[26] F. Fodor,et al. Study of interaction of iron and lead during their uptake process in wheat roots by total-reflection X-ray fluorescence spectrometry , 1997 .
[27] M. de la Guardia,et al. Analytical methodologies for chromium speciation in solid matrices: a survey of literature , 1998 .
[28] B. Fowler,et al. High-affinity renal lead-binding proteins in environmentally-exposed humans. , 1998, Chemico-biological interactions.
[29] Zhengwei Xiong. Lead Uptake and Effects on Seed Germination and Plant Growth in a Pb Hyperaccumulator Brassica pekinensis Rupr. , 1998, Bulletin of environmental contamination and toxicology.
[30] C. Hanisch. Where is mercury deposition coming from? , 1998, Environmental science & technology.
[31] A. Milton,et al. Arsenic in the food chains of a revegetated metalliferous mine tailings pond. , 1999, Chemosphere.
[32] G. Bañuelos,et al. Phytoremediation of Contaminated Soil and Water , 1999 .
[33] M. Wierzbicka. Comparison of lead tolerance in Allium cepa with other plant species , 1999 .
[34] D B Menzel,et al. A market basket survey of inorganic arsenic in food. , 1999, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[35] Glenn W. Suter,et al. Ecological risk assessment in a large river‐reservoir: 4. Piscivorous wildlife , 1999 .
[36] Mukherjee,et al. Assessment of atmospheric mercury emissions in Finland , 2000, The Science of the total environment.
[37] M J George,et al. Reduction and coordination of arsenic in Indian mustard. , 2000, Plant physiology.
[38] L. Posthuma,et al. Quantification of Metal Bioavailability for Lettuce (Lactuca sativa L.) in Field Soils , 2000, Archives of environmental contamination and toxicology.
[39] B. Pokorny,et al. Lead, Cadmium, and Zinc in Tissues of Roe Deer ( Capreolus capreolus) near the Lead Smelter in the Koroška Region (Northern Slovenia) , 2000, Bulletin of environmental contamination and toxicology.
[40] I. Raskin,et al. Phytoremediation of toxic metals : using plants to clean up the environment , 2000 .
[41] C. Cobbett. Phytochelatin biosynthesis and function in heavy-metal detoxification. , 2000, Current opinion in plant biology.
[42] Alan J. M. Baker,et al. Metal Hyperaccumulator Plants: A Review of the Ecology and Physiology of a Biological Resource for Phytoremediation of Metal-Polluted Soils , 2000 .
[43] Z. Stasicka,et al. Chromium occurrence in the environment and methods of its speciation. , 2000, Environmental pollution.
[44] C. Cobbett. Phytochelatins and their roles in heavy metal detoxification. , 2000, Plant physiology.
[45] Yong Cai,et al. A fern that hyperaccumulates arsenic , 2001, Nature.
[46] The effect of chromium on the hemoglobin concentration of Limnodrilus hoffmeisteri (Oligochaeta: Tubificidae). , 2001, Ecotoxicology and environmental safety.
[47] P. Riyazuddin,et al. Overview of speciation chemistry of arsenic , 2001 .
[48] J. Caruso,et al. An evaluation of extraction techniques for arsenic species from freeze-dried apple samples. , 2001, The Analyst.
[49] D. Vélez,et al. Arsenic in cooked seafood products: study on the effect of cooking on total and inorganic arsenic contents. , 2001, Journal of agricultural and food chemistry.
[50] H. Nakagawa,et al. Association between total cadmium intake calculated from the cadmium concentration in household rice and mortality among inhabitants of the cadmium-polluted Jinzu River basin of Japan. , 2002, Toxicology letters.
[51] M. Toussaint,et al. Transfer and effects of cadmium in an experimental food chain involving the snail Helix aspersa and the predatory carabid beetle Chrysocarabus splendens. , 2002, Chemosphere.
[52] Enzo Lombi,et al. Phytoremediation of metals, metalloids, and radionuclides , 2002 .
[53] M. Hawkesford,et al. Influence of Iron Status on Cadmium and Zinc Uptake by Different Ecotypes of the Hyperaccumulator Thlaspi caerulescens 1 , 2002, Plant Physiology.
[54] H. Biester,et al. Binding and mobility of mercury in soils contaminated by emissions from chlor-alkali plants. , 2002, The Science of the total environment.
[55] A. Meharg,et al. Arsenic uptake and metabolism in arsenic resistant and nonresistant plant species , 2002 .
[56] D. Krabbenhoft,et al. Mercury and methylmercury contamination related to artisanal gold mining, Suriname , 2002 .
[57] Andrea Raab,et al. Mechanisms of Arsenic Hyperaccumulation in Pteris vittata. Uptake Kinetics, Interactions with Phosphate, and Arsenic Speciation1 , 2002, Plant Physiology.
[58] S. Sahi,et al. Characterization of a lead hyperaccumulator shrub, Sesbania drummondii. , 2002, Environmental science & technology.
[59] I. Ramos,et al. Cadmium uptake and subcellular distribution in plants of Lactuca sp. Cd-Mn interaction , 2002 .
[60] T. Hung,et al. Daily intake of TBT, Cu, Zn, Cd and As for fishermen in Taiwan. , 2002, The Science of the total environment.
[61] M. Cebrián,et al. Arsenic levels in cooked food and assessment of adult dietary intake of arsenic in the Region Lagunera, Mexico. , 2002, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[62] Michael S. Johnson,et al. Lead within ecosystems on metalliferous mine tailings in Wales and Ireland. , 2002, The Science of the total environment.
[63] M. Schuhmacher,et al. Intake of lead and cadmium from edible vegetables cultivated in Tarragona Province, Spain , 2003 .
[64] I. Hwang,et al. Functional Expression of a Bacterial Heavy Metal Transporter in Arabidopsis Enhances Resistance to and Decreases Uptake of Heavy Metals1[w] , 2003, Plant Physiology.
[65] C. Chatterjee,et al. Excess chromium alters uptake and translocation of certain nutrients in citrullus. , 2003, Chemosphere.
[66] R. Cornelis,et al. A survey of arsenic species in Chinese seafood. , 2003, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[67] R. Meagher,et al. Toward detoxifying mercury‐polluted aquatic sediments with rice genetically engineered for mercury resistance , 2003, Environmental toxicology and chemistry.
[68] R. C. Martín-Doimeadios,et al. Distribution of mercury in the aquatic environment at Almadén, Spain. , 2003 .
[69] M. Formoso,et al. Mercury contamination in Lavras do Sul, south Brazil: a legacy from past and recent gold mining. , 2003, The Science of the total environment.
[70] J. Arunachalam,et al. Study of mercury pollution near a thermometer factory using lichens and mosses. , 2003, Environmental pollution.
[71] B. D. Smith,et al. Accumulation and Soluble Binding of Cadmium, Copper, and Zinc in the Polychaete Hediste diversicolor from Coastal Sites with Different Trace Metal Bioavailabilities , 2003, Archives of environmental contamination and toxicology.
[72] C. Sharma,et al. Chromium interference in iron nutrition and water relations of cabbage , 2003 .
[73] R. Meagher,et al. Expression of mercuric ion reductase in Eastern cottonwood (Populus deltoides) confers mercuric ion reduction and resistance. , 2003, Plant biotechnology journal.
[74] T. Lundborg,et al. Phytochelatin and cadmium accumulation in wheat , 2003 .
[75] E. Gurzău,et al. Lessons from case studies of metals: investigating exposure, bioavailability, and risk. , 2003, Ecotoxicology and environmental safety.
[76] K. Yoshida,et al. Effects of Cysteine on the Cytotoxicity of Arsenic Compounds , 2003, Archives of environmental contamination and toxicology.
[77] Lars Jarup,et al. Hazards of heavy metal contamination. , 2003 .
[78] J. Peralta-Videa,et al. Uptake and reduction of Cr(VI) to Cr(III) by mesquite (Prosopis spp.): chromate-plant interaction in hydroponics and solid media studied using XAS. , 2003, Environmental science & technology.
[79] A. Zayed,et al. Chromium in the environment: factors affecting biological remediation , 2003, Plant and Soil.
[80] A. Kabata-Pendias,et al. Soil-plant transfer of trace elements—an environmental issue , 2004 .
[81] P. G. Reeves,et al. An improved understanding of soil Cd risk to humans and low cost methods to phytoextract Cd from contaminated soils to prevent soil Cd risks , 2004, Biometals.
[82] J. Gardea-Torresdey,et al. Chemical speciation and cellular deposition of lead in Sesbania drummondii , 2004, Environmental toxicology and chemistry.
[83] L. K. Shpigun,et al. Distribution and Toxic Effects of Cadmium and Lead on Maize Roots , 2004, Russian Journal of Plant Physiology.
[84] Jose R Peralta-Videa,et al. Cadmium uptake and translocation in tumbleweed (Salsola kali), a potential Cd-hyperaccumulator desert plant species: ICP/OES and XAS studies. , 2004, Chemosphere.
[85] J. Morel,et al. Measurement of Pb2+, Cu2+ and Cd2+ binding with mucilage exudates from maize (Zea mays L.) roots , 1986, Biology and Fertility of Soils.
[86] Michael C Henson,et al. Endocrine Disruption by Cadmium, a Common Environmental Toxicant with Paradoxical Effects on Reproduction , 2004, Experimental biology and medicine.
[87] M. Ramsey,et al. Heterogeneity of cadmium concentration in soil as a source of uncertainty in plant uptake and its implications for human health risk assessment. , 2004, The Science of the total environment.
[88] G. Zerbi,et al. Phytoextraction of heavy metals by canola (Brassica napus) and radish (Raphanus sativus) grown on multicontaminated soil. , 2004, Environmental pollution.
[89] I. Finkemeier,et al. Cadmium toxicity to barley (Hordeum vulgare) as affected by varying Fe nutritional status , 2004 .
[90] Arsenic Bioaccumulation by Beetles in an Arsenic-Rich Region , 2004, Bulletin of environmental contamination and toxicology.
[91] Effects of Chelate Application Time on the Phytoextraction of Lead-Contaminated Soils , 2004, Bulletin of environmental contamination and toxicology.
[92] B. Sridhar,et al. Phytoavailability and toxicity of trivalent and hexavalent chromium to Brassica juncea , 2004 .
[93] J. Arocena,et al. Uptake, Distribution, and Speciation of Chromium in Brassica Juncea , 2005, International journal of phytoremediation.
[94] D. Antosiewicz. Study of calcium-dependent lead-tolerance on plants differing in their level of Ca-deficiency tolerance. , 2005, Environmental pollution.
[95] J. Peralta-Videa,et al. Differential Uptake and Transport of Trivalent and Hexavalent Chromium by Tumbleweed (Salsola kali) , 2005, Archives of environmental contamination and toxicology.
[96] J. Peralta-Videa,et al. Production of low-molecular weight thiols as a response to cadmium uptake by tumbleweed (Salsola kali). , 2005, Plant physiology and biochemistry : PPB.
[97] F. Ghanati,et al. Effects of Aluminum on the Growth of Tea Plant and Activation of Antioxidant System , 2005, Plant and Soil.
[98] Pallavi Sharma,et al. Lead toxicity in plants , 2005 .
[99] P. Badot,et al. Assessment of whole effluent toxicity on aquatic snails: Bioaccumulation of Cr, Zn, and Fe, and individual effects in bioassays , 2005, Environmental toxicology and chemistry.
[100] N. Marmiroli,et al. Evidence of the involvement of plant ligno-cellulosic structure in the sequestration of Pb: an X-ray spectroscopy-based analysis. , 2005, Environmental pollution.
[101] Staffan Skerfving,et al. Cadmium in food production systems: a health risk for sensitive population groups. , 2005 .
[102] J. Peralta-Videa,et al. PHYTOREMEDIATION OF HEAVY METALS AND STUDY OF THE METAL COORDINATION BY X-RAY ABSORPTION SPECTROSCOPY , 2005 .
[103] R. Meagher,et al. Strategies for the engineered phytoremediation of toxic element pollution: mercury and arsenic , 2005, Journal of Industrial Microbiology and Biotechnology.
[104] Carlos Cervantes,et al. Chromium toxicity in plants. , 2005, Environment international.
[105] Alexander van Geen,et al. Modification of Risk of Arsenic-Induced Skin Lesions by Sunlight Exposure, Smoking, and Occupational Exposures in Bangladesh , 2006, Epidemiology.
[106] C. Lan,et al. Cadmium in soil–rice system and health risk associated with the use of untreated mining wastewater for irrigation in Lechang, China , 2006 .
[107] Nandita Singh,et al. Arsenic speciation, and arsenic and phosphate distribution in arsenic hyperaccumulator Pteris vittata L. and non-hyperaccumulator Pteris ensiformis L. , 2006, Environmental pollution.
[108] Jiangan Yuan,et al. Cadmium accumulation in different rice cultivars and screening for pollution-safe cultivars of rice. , 2006, The Science of the total environment.
[109] D. Chakraborti,et al. Arsenic burden of cooked rice: Traditional and modern methods. , 2006, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[110] Xianzhong Feng,et al. Transgenic Spartina alterniflora for phytoremediation , 2006, Environmental geochemistry and health.
[111] P. Badot,et al. Transfer of Cd, Cu, Ni, Pb, and Zn in a soil‐plant‐invertebrate food chain: A microcosm study , 2006, Environmental toxicology and chemistry.
[112] Om Parkash Dhankher,et al. Hyperaccumulation of arsenic in the shoots of Arabidopsis silenced for arsenate reductase (ACR2). , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[113] Max Costa,et al. Toxicity and Carcinogenicity of Chromium Compounds in Humans , 2006 .
[114] A. Heikens. Arsenic contamination of irrigation water, soil and crops in Bangladesh: risk implications for sustainable agriculture and food safety in Asia , 2006 .
[115] J. Peralta-Videa,et al. Biochemical and spectroscopic studies of the response of Convolvulus arvensis L. to chromium(III) and chromium(VI) stress , 2006, Environmental toxicology and chemistry.
[116] Chang Eun Lee,et al. Expression of yeast transcriptional activator MSN1 promotes accumulation of chromium and sulfur by enhancing sulfate transporter level in plants , 2006, FEBS letters.
[117] M. Simon,et al. Determination of soluble toxic arsenic species in alga samples by microwave-assisted extraction and high performance liquid chromatography-hydride generation-inductively coupled plasma-atomic emission spectroscopy , 2006 .
[118] B. Forde,et al. Expression and transport characterisation of the wheat low-affinity cation transporter (LCT1) in the methylotrophic yeast Pichia pastoris. , 2006, Biochemical and biophysical research communications.
[119] Xinbin Feng,et al. A preliminary study on mercury contamination to the environment from artisanal zinc smelting using indigenous methods in Hezhang County, Guizhou, China: Part 2. Mercury contaminations to soil and crop. , 2006, The Science of the total environment.
[120] J. Peralta-Videa,et al. Gibberellic acid, kinetin, and the mixture indole-3-acetic acid-kinetin assisted with EDTA-induced lead hyperaccumnulation in alfalfa plants. , 2007, Environmental science & technology.
[121] J. Zelikoff,et al. Pulmonary Immunotoxic Potentials of Metals Are Governed by Select Physicochemical Properties: Vanadium Agents , 2007, Journal of immunotoxicology.
[122] T. Maki,et al. Arsenic accumulation in duckweed (Spirodela polyrhiza L.): a good option for phytoremediation. , 2007, Chemosphere.
[123] Wen-chang Zhang,et al. Effect and mechanism of cadmium on the progesterone synthesis of ovaries. , 2007, Toxicology.
[124] Z. Somosy,et al. Female Reproductive Toxicology of Cadmium , 2007, Acta biologica Hungarica.
[125] N. Zheng,et al. Health risk of Hg, Pb, Cd, Zn, and Cu to the inhabitants around Huludao Zinc Plant in China via consumption of vegetables. , 2007, The Science of the total environment.
[126] Kazuo T. Suzuki,et al. Impact of arsenic in foodstuffs on the people living in the arsenic-affected areas of West Bengal, India , 2007, Journal of environmental science and health. Part A, Toxic/hazardous substances & environmental engineering.
[127] H. Hosgood,et al. Seafood arsenic: implications for human risk assessment. , 2007, Regulatory toxicology and pharmacology : RTP.
[128] Jianchang Yang,et al. Uptake and translocation of Cd in different rice cultivars and the relation with Cd accumulation in rice grain. , 2007, Journal of hazardous materials.
[129] Laosheng Wu,et al. Assessing long-term environmental risks of trace elements in phosphate fertilizers. , 2007, Ecotoxicology and environmental safety.
[130] Nandita Singh,et al. Arsenic hazards: strategies for tolerance and remediation by plants. , 2007, Trends in biotechnology.
[131] Fei-bo Wu,et al. A Chromium-Tolerant Plant Growing in Cr-Contaminated Land , 2007, International journal of phytoremediation.
[132] R. Scandurra,et al. Cadmium induces mitogenic signaling in breast cancer cell by an ERα-dependent mechanism , 2007, Molecular and Cellular Endocrinology.
[133] J. Peralta-Videa,et al. Examination of arsenic(III) and (V) uptake by the desert plant species mesquite (Prosopis spp.) using X-ray absorption spectroscopy. , 2007, The Science of the total environment.
[134] J. Luong,et al. Analytical Tools for Monitoring Arsenic in the Environment , 2007 .
[135] R. Wenning,et al. Chromium Geochemistry and Bioaccumulation in Sediments from the Lower Hackensack River, New Jersey , 2007, Archives of environmental contamination and toxicology.
[136] John Lewis,et al. Arsenic in seaweed--forms, concentration and dietary exposure. , 2007, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[137] W. Cullen,et al. Arsenic accumulation in bark beetles and forest birds occupying mountain pine beetle infested stands treated with monosodium methanearsonate. , 2007, Environmental science & technology.
[138] N. von Wirén,et al. Iron Acquisition by Phytosiderophores Contributes to Cadmium Tolerance1[OA] , 2007, Plant Physiology.
[139] [Transfer characteristics of mercury, lead, cadmium, zinc and cuprum from soil to vegetable around zinc smelting plant]. , 2007, Huan jing ke xue= Huanjing kexue.
[140] Qixing Zhou,et al. Effects of plant arsenic uptake and heavy metals on arsenic distribution in an arsenic-contaminated soil. , 2007, Environmental pollution.
[141] G. Meijer,et al. The risk of contamination of food with toxic substances present in animal feed , 2007 .
[142] M. Huijbregts,et al. Cadmium bioaccumulation factors for terrestrial species: application of the mechanistic bioaccumulation model OMEGA to explain field data. , 2008, The Science of the total environment.
[143] M. J. Parma,et al. Accumulation and Elimination of Chromium by Freshwater Species Exposed to Spiked Sediments , 2008, Archives of environmental contamination and toxicology.
[144] Á. Carbonell-Barrachina,et al. Arsenic speciation in food and estimation of the dietary intake of inorganic arsenic in a rural village of West Bengal, India. , 2008, Journal of agricultural and food chemistry.
[145] T. Iwashita,et al. Characterization of Cd translocation and identification of the Cd form in xylem sap of the Cd-hyperaccumulator Arabidopsis halleri. , 2008, Plant & cell physiology.
[146] S. Doty,et al. Enhancing phytoremediation through the use of transgenics and endophytes. , 2008, The New phytologist.
[147] Yong-guan Zhu,et al. Exposure to inorganic arsenic from rice: a global health issue? , 2008, Environmental pollution.
[148] H. Hasegawa,et al. Arsenic accumulation in rice (Oryza sativa L.): human exposure through food chain. , 2008, Ecotoxicology and environmental safety.
[149] I. Rae. Something in the air: connections between global warming, ozone depletion, POPs and particulates , 2008 .
[150] A. Hartwig,et al. Carcinogenic metal compounds: recent insight into molecular and cellular mechanisms , 2008, Archives of Toxicology.
[151] A. Prescha,et al. Chromium content in selected convenience and fast foods in Poland , 2008 .
[152] Enzo Lombi,et al. Speciation and localization of arsenic in white and brown rice grains. , 2008, Environmental science & technology.
[153] S. Raisuddin,et al. Genotoxic effects of arsenic: prevention by functional food-jaggery. , 2008, Cancer letters.
[154] J. Nóvoa-Muñoz,et al. Mercury accumulation in upland acid forest ecosystems nearby a coal-fired power-plant in southwest Europe (Galicia, NW Spain). , 2008, The Science of the total environment.
[155] Wen-chang Zhang,et al. Cadmium exerts toxic effects on ovarian steroid hormone release in rats. , 2008, Toxicology letters.
[156] T. Roychowdhury. Impact of sedimentary arsenic through irrigated groundwater on soil, plant, crops and human continuum from Bengal delta: special reference to raw and cooked rice. , 2008, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[157] M. Mench,et al. Kinetic and dynamic aspects of soil-plant-snail transfer of cadmium in the field. , 2008, Environmental pollution.
[158] Yong-guan Zhu,et al. Health risks of heavy metals in contaminated soils and food crops irrigated with wastewater in Beijing, China. , 2008, Environmental pollution.
[159] S. McGrath,et al. Transporters of arsenite in rice and their role in arsenic accumulation in rice grain , 2008, Proceedings of the National Academy of Sciences.
[160] N. Chary,et al. Assessing risk of heavy metals from consuming food grown on sewage irrigated soils and food chain transfer. , 2008, Ecotoxicology and environmental safety.
[161] J. Morel,et al. Effect of rhizosphere and plant-related factors on the cadmium uptake by maize (Zea mays L.) , 2008 .
[162] J. Duxbury,et al. Arsenic in rice: I. Estimating normal levels of total arsenic in rice grain. , 2008, Environmental science & technology.
[163] C. L. La Porta,et al. Molecular mechanisms triggered by mercury. , 2008, Toxicology.
[164] Petr Babula,et al. Uncommon heavy metals, metalloids and their plant toxicity: a review , 2008 .
[165] J. Peralta-Videa,et al. Concentration and biotransformation of arsenic by Prosopis sp. grown in soil treated with chelating agents and phytohormones , 2008 .
[166] J. Peralta-Videa,et al. EFFECT OF INDOLE-3-ACETIC ACID, KINETIN, AND ETHYLENEDIAMINETETRAACETIC ACID ON PLANT GROWTH AND UPTAKE AND TRANSLOCATION OF LEAD, MICRONUTRIENTS, AND MACRONUTRIENTS IN ALFALFA PLANTS , 2009, International journal of phytoremediation.
[167] G. Antonious,et al. Mobility of Heavy Metals from Soil into Hot Pepper Fruits: A Field Study , 2009, Bulletin of environmental contamination and toxicology.
[168] D. Pain,et al. Lead in birds , 2011 .