Effect of pesticide 1-[6-chloro-3-methyl-pyridyl-8-nitro-7-methyl-1 2 3 5 6 7-hexahydro imidazo (1,2a)]-pyridine when responding to a wheat plant's antioxidant defense system.
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H. Liu | Cuilin Cheng | A. Dong | M. Zhang | Weiwei Huang | R. Xu | Y. C. Zhang | Jing Jing | Weihong Lu | Ping Wang | Xin Yang | Haitian Zhao | Jian Wang | Hengnan Zhang | Pan Zou
[1] Kwang-geun Lee,et al. Monitoring and risk assessment of pesticide residues in yuza fruits (Citrus junos Sieb. ex Tanaka) and yuza tea samples produced in Korea. , 2012, Food chemistry.
[2] H. Zhang,et al. Multi-residue method for determination of seven neonicotinoid insecticides in grains using dispersive solid-phase extraction and dispersive liquid-liquid micro-extraction by high performance liquid chromatography. , 2012, Food chemistry.
[3] J. Brunet,et al. Development of biomarkers of exposure to xenobiotics in the honey bee Apis mellifera: application to the systemic insecticide thiamethoxam. , 2012, Ecotoxicology and environmental safety.
[4] H. Pedersen,et al. Bioactivity and chemical composition of blackcurrant (Ribes nigrum) cultivars with and without pesticide treatment. , 2012, Food chemistry.
[5] H. Sytykiewicz,et al. Effect of phenolic acids from black currant, sour cherry and walnut on grain aphid (Sitobion avenae F.) development , 2012 .
[6] Xuemei Li,et al. Growth, photosynthesis and antioxidant responses of endophyte infected and non-infected rice under lead stress conditions. , 2012, Journal of hazardous materials.
[7] Gary C. Jahn,et al. Possible connection between imidacloprid-induced changes in rice gene transcription profiles and susceptibility to the brown plant hopper Nilaparvatalugens Stål (Hemiptera: Delphacidae) , 2012, Pesticide biochemistry and physiology.
[8] A. Kingston-Smith,et al. Involvement of the leaf antioxidant system in the response to soil flooding in two Trifolium genotypes differing in their tolerance to waterlogging. , 2012, Plant science : an international journal of experimental plant biology.
[9] J. Dobránszki,et al. Models and tools for studying drought stress responses in peas. , 2011, Omics : a journal of integrative biology.
[10] S. Prasad,et al. Effect of dimethoate and UV-B irradiation on the response of antioxidant defense systems in cowpea (Vigna unguiculata L.) seedlings , 2011 .
[11] R. Nauen,et al. Overview of the status and global strategy for neonicotinoids. , 2011, Journal of agricultural and food chemistry.
[12] J. Casida,et al. Unique neonicotinoid binding conformations conferring selective receptor interactions. , 2011, Journal of agricultural and food chemistry.
[13] Haiying Yu,et al. Lead accumulation and tolerance characteristics of Athyrium wardii (Hook.) as a potential phytostabilizer. , 2011, Journal of hazardous materials.
[14] Chun Wang,et al. Dispersive Solid-Phase Extraction Clean-up Combined with Dispersive Liquid–Liquid Microextraction for the Determination of Neonicotinoid Insecticides in Vegetable Samples by High-Performance Liquid Chromatography , 2011 .
[15] N. Tuteja,et al. Cadmium stress tolerance in crop plants , 2011, Plant signaling & behavior.
[16] Devanand L. Luthria,et al. Influence of conventional and organic agricultural practices on the phenolic content in eggplant pulp: Plant-to-plant variation , 2010 .
[17] S. Oustan,et al. Oil and Protein Accumulation in Soybean Grains under Salinity Stress , 2010 .
[18] P. Usha Rani,et al. Biochemical and enzymatic changes in rice plants as a mechanism of defense , 2010, Acta Physiologiae Plantarum.
[19] P. Trebše,et al. Hazard identification of imidacloprid to aquatic environment. , 2009, Chemosphere.
[20] Ki-yong Kim,et al. Analysis of antioxidant enzyme activity during germination of alfalfa under salt and drought stresses. , 2009, Plant physiology and biochemistry : PPB.
[21] R. Nauen,et al. In Focus: neonicotinoid insecticides. , 2008, Pest management science.
[22] Hong Yang,et al. Toxic reactivity of wheat (Triticum aestivum) plants to herbicide isoproturon. , 2008, Journal of agricultural and food chemistry.
[23] M. López-Climent,et al. Antioxidant enzymatic activity is linked to waterlogging stress tolerance in citrus. , 2008, Physiologia plantarum.
[24] W. Sang,et al. Activity of Stress-related Antioxidative Enzymes in the Invasive Plant Crofton Weed (Eupatorium adenophorum) , 2007 .
[25] M. Toledano,et al. ROS as signalling molecules: mechanisms that generate specificity in ROS homeostasis , 2007, Nature Reviews Molecular Cell Biology.
[26] S. Agarwal. Increased antioxidant activity in Cassia seedlings under UV-B radiation , 2007, Biologia Plantarum.
[27] M. Loureiro,et al. Effects of long-term soil drought on photosynthesis and carbohydrate metabolism in mature robusta coffee (Coffea canephora Pierre var. kouillou) leaves , 2006 .
[28] F. J. Corpas,et al. Reactive Oxygen Species and Reactive Nitrogen Species in Peroxisomes. Production, Scavenging, and Role in Cell Signaling1 , 2006, Plant Physiology.
[29] H. Min,et al. Influence of acetamiprid on soil enzymatic activities and respiration , 2006 .
[30] Danilo Attard Barbini,et al. Application of solid-phase extraction and liquid chromatography-mass spectrometry to the determination of neonicotinoid pesticide residues in fruit and vegetables. , 2006, Journal of chromatography. A.
[31] You-Sheng Wang,et al. Nitric oxide reduces aluminum toxicity by preventing oxidative stress in the roots of Cassia tora L. , 2005, Plant & cell physiology.
[32] C. Foyer,et al. Redox Homeostasis and Antioxidant Signaling: A Metabolic Interface between Stress Perception and Physiological Responses , 2005, The Plant Cell Online.
[33] D. Inzé,et al. Fatty Acid Hydroperoxides and H2O2 in the Execution of Hypersensitive Cell Death in Tobacco Leaves1[w] , 2005, Plant Physiology.
[34] R. Mittler,et al. Reactive oxygen gene network of plants. , 2004, Trends in plant science.
[35] J. Guiamet,et al. Mitochondria are the main target for oxidative damage in leaves of wheat (Triticum aestivum L.). , 2004, Journal of experimental botany.
[36] Hong Yang,et al. Copper-induced stress and antioxidative responses in roots of Brassica juncea L. , 2004 .
[37] L. Johnson,et al. Comparison of kjeldahl and dumas methods for determining protein contents of soybean products , 2003 .
[38] Kazuhiko Akutsu,et al. Determination of acetamiprid, imidacloprid, and nitenpyram residues in vegetables and fruits by high-performance liquid chromatography with diode-array detection. , 2002, Journal of agricultural and food chemistry.
[39] K. Davies,et al. Protein turnover by the proteasome in aging and disease. , 2002, Free radical biology & medicine.
[40] L. M. Sandalio,et al. Cadmium causes the oxidative modification of proteins in pea plants , 2002 .
[41] D. Lawlor,et al. Photosynthetic carbon assimilation and associated metabolism in relation to water deficits in higher plants. , 2002, Plant, cell & environment.
[42] M. Mansour. Nitrogen Containing Compounds and Adaptation of Plants to Salinity Stress , 2000, Biologia Plantarum.
[43] V. Valpuesta,et al. A tomato peroxidase involved in the synthesis of lignin and suberin. , 2000, Plant physiology.
[44] R. Azevedo,et al. Response of antioxidant enzymes to transfer from elevated carbon dioxide to air and ozone fumigation, in the leaves and roots of wild-type and a catalase-deficient mutant of barley , 1998 .
[45] P. Wojtaszek,et al. Mechanisms for the generation of reactive oxygen species in plant defence – a broad perspective , 1997 .
[46] P. Rouxhet,et al. Peroxidatic degradation of azide by catalase and irreversible enzyme inactivation. , 1996, Biochimica et biophysica acta.
[47] Y. Leshem,et al. Stress and Stress Coping in Cultivated Plants , 1994, Springer Netherlands.
[48] Thomas G. Ludwig,et al. The Anthrone Method for the Determination of Carbohydrates in Foods and in Oral Rinsing , 1956, Journal of dental research.
[49] A. Fercha. Some Physiological and Biochemical Effects of NaCl Salinity on Durum Wheat (Triticum durum Desf.) , 2011 .
[50] M. Nasrabadi,et al. Effect Of Chloropyrifos And Malathion On Antioxidant Enzymes In Tomato And Brinjal , 2011 .
[51] A. H. El-Sebae,et al. The role of vitamin C as antioxidant in protection of oxidative stress induced by imidacloprid. , 2010, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[52] R. Mahalingam,et al. Physiological and biochemical responses to acute ozone-induced oxidative stress in Medicago truncatula. , 2007, Plant physiology and biochemistry : PPB.
[53] H. Eun,et al. Application of a commercial immunoassay to the direct determination of insecticide imidacloprid in fruit juices , 2007 .
[54] W. Guan. Effects of Melittin on the Physiological Indices and Defensive Enzymes in Crops , 2006 .
[55] R. S. Ahmed,et al. Pesticide-Induced Oxidative Stress : Perspective and Trends , 2001, Reviews on environmental health.
[56] I. A. Nascimento,et al. Stress protein accumulation as an indicator of impact by the petroleum industry in Todos OS Santos Bay, Brazil , 1998 .