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Effect of Silicon and Nitrogen Nutrition on Pest and Disease Intensity in Rice 被引量:1
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作者 Kasthuri Rajamani Bhupal Raj Gunti +1 位作者 Shashi Vemuri Ramesh Bellamkonda 《Journal of Agricultural Science and Technology(A)》 2013年第7期568-574,共7页
关键词 二氧化硅含量 水稻病虫害 氮素营养 强度 水稻品种 营养管理 生产系统 作物病虫害
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Efficacy of Acaricides alone and in Combination with Propiconozole against Rice Panicle/Sheath Mite, Steneotarsonemus spinki
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作者 Suresh Daravath Shashi Bhushan Vemuri N.Ramagopal varma Ramesh Bellamkonda 《Journal of Agricultural Science and Technology(B)》 2013年第2期107-110,共4页
关键词 杀螨剂 化学品管理 护套 稻穗 功效 螺甲螨酯 粮食产量
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Toxicity of Bacillus thuringiensis Crystal Toxins to Field Populations of Rice Leaf Folder, Cnaphalocrocis medinalis (Guenee) and Establishment of Baseline Susceptibility to Cry1Ab
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作者 Ramesh Babu Veegala Shashi Vemuri +2 位作者 Chintalapati Padmavathy Muthugounder Mohan Sena Balachandran 《Journal of Agricultural Science and Technology(A)》 2013年第8期617-621,共5页
关键词 CRY1AB杀虫蛋白 苏云金芽孢杆菌 稻纵卷叶螟 晶体毒素 基线估计 田间种群 毒性 易感性
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Qualitative and Quantitative Changes in Biochemical Constituents in the Rice Plant Treated with Different Xenobiotics
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作者 Mangalam Nantha kumar Vemuri Shashibhushan +2 位作者 Vinnakota Jhansi Lakshmi Muthugonder Mohan Bellamkonda Ramesh 《Journal of Agricultural Science and Technology(B)》 2013年第1期17-25,共9页
关键词 化学物质 水稻植株 生化成分 外源性 治疗 游离氨基酸含量 良性前列腺增生 品种组成
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Carboxylesterase and Glutathione-S-Transferase (GST's) Induced Resistance to Bacillus thuringiensis Toxin CrylAb in Rice Leaf Folder, Cnaphalocrocis medinalis (Guenee) Populations
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作者 Veegala Ramesh Babu Vemuri Shashi Bhushan +3 位作者 Chintalapati Padmavathy: Muthugonder Mohan SenaMahendran. Balachandran Bellamkonda Ramesh 《Journal of Agricultural Science and Technology(A)》 2013年第1期53-59,共7页
关键词 谷胱甘肽-S-转移酶 CRY1AB杀虫蛋白 稻纵卷叶螟 羧酸酯酶 杀虫毒素 苏云金芽孢杆菌 GST 诱导抗性
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Residue determination ofβ-cyfluthrin and imidacloprid as mix formulation in/on chickpea(Cicer arietinum)pods and soil and its risk assessment
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作者 Suchi Chawla Paresh G.Shah +3 位作者 Anil R.Patel Hemlatta K.Patel Kiran M.Vaghela Priti P.Solanki 《Food Quality and Safety》 SCIE 2018年第2期75-81,共7页
OBJECTIVES:A field experiment was conducted at Agricultural Research Station for irrigated crops at Thasara,Anand Agricultural University,Anand,to study the dissipation and risk assessment ofβ-cyfluthrin and imidaclo... OBJECTIVES:A field experiment was conducted at Agricultural Research Station for irrigated crops at Thasara,Anand Agricultural University,Anand,to study the dissipation and risk assessment ofβ-cyfluthrin and imidacloprid as combination product in/on chickpea.MATERIALS AND METHODS:Solomon 300 OD comprising 9 per centβ-cyfluthrin and 21 per cent imidacloprid was foliar sprayed at the doses of 18+42g a.i.ha−1(standard dose)and 36+84g a.i.ha−1(double dose).Totally three sprays were made at an interval of 1 week starting from fruiting stage.RESULTS AND DISCUSSIONS:The residues ofβ-cyfluthrin estimated using gas chromatograph with electron capture detector(GC-ECD)showed an initial deposit of 0.16 and 0.27μg g−1 in standard and double doses,respectively.The residues for corresponding doses persisted till 7th and 10th day after application and reached below determination level of 0.01μg g−1 on the 10th and 15th day,respectively.Imidacloprid was estimated using high performance liquid chromatography(HPLC)and showed initial deposits of 1.22 and 2.7μg g−1 in standard and double doses,respectively.Its levels reached below the determination level(0.01μg g−1)on the 15th day in green pods.Statistical analysis of dissipation kinetics showed thatβ-cyfluthrin followed zero-order kinetics in standard dose with half-life of 7.27 days.In double dose,the dissipation kinetics followed first-order kinetics with half-life of 9 days.Imidacloprid followed first-order kinetics in both the doses with half-life of 6.7 and 7.7 days.CONCLUSIONS:A pre-harvest interval(PHI)of 15 days is suggested.Theoretical risk assessment calculated as hazard quotient was less than 1,rendering the use of combination product as safe-provided proper PHI is followed. 展开更多
关键词 CHICKPEA β-cyfluthrin IMIDACLOPRID DISSIPATION dissipation kinetics RESIDUE risk assessment pods.
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