苯达松,bentazon
1)bentazon苯达松
1.Single column HPLC analysis of bentazon and metabolites;苯达松及其代谢产物的高效液相色谱同柱分析
2.A Two-dimensional Gel Electrophoresis Protocol Suitable for Rice Microsome Proteins and the Analysis of Bentazon Tolerance-Related Proteins in Rice;适用于水稻微粒体蛋白的双向电泳技术及苯达松抗性相关蛋白的初步分析
3.Physiological Research on the Difference of Bentazon Tolerance in Wild Type Rice and Sensitive Lethal Mutants;水稻及其敏感突变体苯达松抗性的生理生化差异研究(英文)
英文短句/例句

1.Fine Mapping and Cloning of the Rice Bentazon Resistance Gene Bel;水稻苯达松抗性基因Bel的精细定位与克隆
2.Fine-scale Mapping of the Bel Gene for Sensitivity to Bentazon in Rice (Oryza Sativa L.);水稻苯达松敏感致死基因bel的精细定位
3.Study on the Analysis of Bentazone and Metaxon in Paicaolv by HPLC;苯达松和2甲4氯复配除草剂的HPLC分析研究
4.EFFECTS OF TEMPERATURE ON BENTAZON INJURE IN RICE SENSITIVE RESTORER LINE温度对水稻敏感恢复系苯达松药效的影响
5.Research and Preparation of the Combined Wettable Powder of 44% Bentazon-Quinclorac;草坪除草剂44%苯达松·二氯喹啉酸可湿性粉剂的研制
6.Studies on the Rice Bentazon Sensitive Lethality Mutant Induced by γ-ray Radiation;伽玛辐射创造水稻苯达松敏感致死突变体的研究
7.Vector Construction and Transformation of the Rice Bentazon and Sulfonylurea Herbicides Resistance Gene Bel;水稻苯达松和磺酰脲类除草剂抗性基因Bel的载体构建与转化
8.Identification of SCAR Markers Linked to the Bentazon Susceptible Lethality Gene and Marker-assisted Selection in Rice;水稻苯达松敏感致死基因的SCAR标记及其辅助育种
9.Genetic Analysis and Molecular Mapping for Bentazon Susceptible Lethality Traits in Norin 8m;农林8号m苯达松敏感致死性的遗传分析及其基因定位
10.Cloning and Sequence of RAPD Marker Linked to the Bentazon Susceptible Lethality Gene in Rice;水稻苯达松敏感致死基因的RAPD标记的克隆及测序
11.Analysis of Residues of Bentazon in Mixed-planting Seed Production Plots of New Hybrid Rice Combination Hunzhi 1杂交水稻新组合混制1号制种田苯达松残留分析
12.Photodegradation of Phenol and Aniline in the Water of the Second Songhua River第二松花江水中苯酚和苯胺的光降解规律
13.Studies on Biodegradation of Nitrobenzene with Microorganism from Songhua River;松花江底泥微生物降解硝基苯的研究
14.Research on the Effect of Nitrobenzene Pollution to the Plankton in Songhua River;硝基苯污染对松花江浮游生物影响的研究
15.Generalize the History and Present State of Benist Temple in Songpan Zhangla Area in the North-west Sichuan;川西北松潘漳腊地区苯教寺院历史与现状概述
16.Synthesis and property study of rosin modified terephthalic unsaturated polyester松香改性对苯型不饱和聚酯树脂的合成及性能
17.Synthesis and Characterization of N-(Substituted phenyl)maleopimarimideN-(取代苯基)马来海松酸酰亚胺的合成及表征
18.Experimental Study on Efficacy of Oxibendazole and Pre-liposomal Albendazole Against Echinoccosis Granulosis Cyst in Mice;氧苯达唑和阿苯达唑脂质体前体抗小鼠细粒棘球蚴药效观察
相关短句/例句

6-hydroxy-bentazon6-OH苯达松
1.A single C18 column reversed phase high performance liquid chromatography (HPLC) method was used toseparate bentazon and its metabolites, 6-hydroxy-bentazon and 8-hydroxy-bentazon.建立了一种苯达松及其代谢产物6-OH苯达松、8-OH苯达松的高效液相色谱分析方法。
3)8-hydroxy-bentazon8-OH苯达松
1.A single C18 column reversed phase high performance liquid chromatography (HPLC) method was used toseparate bentazon and its metabolites, 6-hydroxy-bentazon and 8-hydroxy-bentazon.建立了一种苯达松及其代谢产物6-OH苯达松、8-OH苯达松的高效液相色谱分析方法。
4)Bentazon sensitive苯达松敏感
5)bentazon sensitive lethal苯达松敏感致死
1.As a chemical selection mark,rice bentazon sensitive lethality(bel)gene is controlled by recessive gene.水稻苯达松敏感致死基因(bel)作为一种化学致死标记,由单个隐性核基因控制,创造苯达松敏感致死的恢复系,有可能实现混播制种和机械化收割,有利于提高异交率并实现机械化作业。
6)bentazon susceptible lethality gene苯达松敏感致死基因
1.Identification of SCAR Markers Linked to the Bentazon Susceptible Lethality Gene and Marker-assisted Selection in Rice;水稻苯达松敏感致死基因的SCAR标记及其辅助育种
2.Randomly amplified polymorphic DNA(RAPD) was employed to detect molecular markers linked to the bentazon susceptible lethality gene in rice.用3S Spin DNA Agarose Gel Purification Kit试剂盒将与水稻苯达松敏感致死基因相连锁的RAPD遗传标记S20-420和S316-600回收纯化,连接于pGEM-T载体并克隆测序,得到了S20-420和S316-600的全序列,其长度分别为423 bp6、06 bp。
延伸阅读

苯达松分子式:C10H12N2O3S分子量:240.28CAS号:25057-89-0性质:白色结晶。熔点137-139℃。略微溶于苯,溶于丙酮、氯仿、乙醇。20℃水中的溶解度为0.05%。制备方法:由异丙胺盐酸盐和二氯硫酰反应得到异丙胺磺酰氯,再与邻氨基苯甲酸甲酯缩合,最后闭环而得苯达松。1.异丙胺磺酰氯的合成异丙胺加入冷却的盐酸中,制得异丙胺盐酸盐水溶液,蒸去水分,再在150℃进一步脱净水分。冷却后的异丙胺盐酸盐、乙腈和二氯硫酰加入异丙胺磺酰氯合成釜中,加热回流反应,蒸出乙腈及剩余的二氯硫酰,得异丙胺磺酰氯粗品。操作的工艺条件为:配料比(摩尔比):异丙胺盐酸盐:二氯硫酰:乙腈=1:3:6反应温度和时间:沸腾回流,反应温度高于60℃的时间不少于16h,反应最终温度65-70℃异丙胺磺酰氯含量70%,收率90%以上。2.苯达松合成在甲苯溶剂中,以氨为缚酸剂,异丙胺磺酰氯和邻氨基苯甲酸甲酯缩合生成N-异丙胺磺酰基邻氨基苯甲酸酯,然后加入甲醇纳使之闭环,生成苯达松钠盐、酸化、过滤、干燥,得苯达松成品,缩合投料比(摩尔比):异丙胺磺酰氯:邻氨基苯甲酸甲酯:甲苯=1:0.9:6;缩合反应液pH=5-6.5;缩合温度:50-55℃;反应1h。闭环投料比(摩尔比);异丙胺磺酰氯:甲醇钠=1:2;闭环温度60-65℃,反应30min。苯达松平均总收率54%以上。原药平均有效成分82%以上。原料消耗定额:异丙胺(98%)464kg/t、乙腈(98%)275kg/t、二氯硫酸2475kg/t、邻氨基苯甲酸甲酯(工业品)957kg/t、甲苯443kg/t、甲醇钠(30%)2537kg/t、盐酸(30%)1488kg/t、合成氨(99%)80kg/t。用途:苯松达是1968年德国巴登公司研制成功的内吸传导型除草剂。适用于水稻、三麦、玉米、高梁、大豆、花生、豌豆、苜蓿等多种作物和牧场毒草,对阔叶杂草和莎草科杂草有优异的防治效果。苯达松具有高效、低毒、杀草谱广、无药害、与其他除草剂混用性好等优点,德国、美国、日本等国家已投入生产。