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991.
992.
设计合成了一系列结构新颖的嘧啶联吡唑甲酰胺类化合物5a~5o,其结构均经过1H NM R和MS分析确证。初步生物活性测试结果表明:在有效成分150 g/hm2剂量下苗后茎叶喷雾处理时,化合物(R)-N-[1-(4-氯苯基)乙基]-3-二氟甲基-1-(4,6-二甲氧基嘧啶-2-基)-1H-吡唑-4-甲酰胺(5c)、N-[1-(4-氯苯基)乙基]-1-(4,6-二甲氧基嘧啶-2-基)-N-甲基-3-三氟甲基-1H-吡唑-4-甲酰胺(5i)和N-[1-(4-氯苯基)乙基]-1-(4,6-二甲氧基嘧啶-2-基)-3-三氟甲基-1H-吡唑-4-甲酰胺(5k)对繁缕Stellaria media的抑制率高达90%以上;而同样剂量下苗前土壤喷雾处理时,化合物N-[1-(4-氯苯基)乙基]-3-二氟甲基-1-(4,6-二甲氧基嘧啶-2-基)-1H-吡唑-4-甲酰胺(5b)和5c对繁缕的抑制率达100%。该类结构化合物有望作为除草先导化合物进行开发。 相似文献
993.
为了解茶刺蛾核型多角体病毒(Iragoides fasciata nucleopolyhedrovirus IrfaNPV)的增殖特性、指导茶刺蛾病毒的生产,采用室内活体增殖法,测定了IrfaNPV多角体在茶刺蛾幼虫体内的增殖动态,并设计了工艺流程,进行了大量繁殖生产试验。结果显示,IrfaNPV多角体在虫体内的增殖动态符合Logistic曲线,饲毒后9~12d为病毒快速增殖期。按设计的生产工艺进行病毒大量繁殖生产,虫尸中病毒多角体平均可达8.3×108 PIB/头,茧中病毒多角体含量平均为6.4×108 PIB/头。该工艺可用于今后茶刺蛾病毒的大量生产。 相似文献
994.
本文通过室内贴牌水培法及整株法,快速鉴定并验证了2013年采自湖南省不同地区稻田的50个稗草生物型对二氯喹啉酸的抗药性,试验结果表明:贴牌水培法所用的二氯喹啉酸甄别剂量为80mg/L;稗草死亡率越低,其抗性倍数(resistance factor,RF)越高,其中死亡率为0时,整株法测定的RF值高达896.07~1 209.38;贴牌水培法测定的稗草样本对二氯喹啉酸的ED50远低于整株法,但两种方法得到的不同稗草生物型对二氯喹啉酸的抗性水平趋势高度吻合。笔者认为以贴牌水培法测定的死亡率小于40%的稗草样本对二氯喹啉酸的抗性风险较高,值得深入研究。 相似文献
995.
在江汉平原荆州市分别在植物培养箱和自然条件下模拟高密度养殖水体,利用多参数水质监测仪,采用完全开放式对养殖水体溶氧、水温等要素的变化进行自动连续观测,结合养殖水域中溶解氧动态平衡方程分别计算出水-气界面溶氧速率、水呼吸耗氧速率、草鱼呼吸耗氧率及光合作用产氧量;并对低溶氧条件下草鱼生存时间等进行实验监测。结果显示:鱼塘水呼吸耗氧率1.22~1.83 mg/(L·h);在水体溶氧在1.5 mg/L以上时,草鱼的代谢呼吸耗氧率为78.6~210.0 mg/(L·h);在高密度养殖塘内水呼吸是鱼呼吸耗氧4倍以上。阴到多云天气下光合作用产氧量为3.47~4.33 mg/(L·h),大于鱼呼吸与水呼吸量之和,但阴雨天光合作用产氧量不能维持鱼塘良好的溶氧环境。草鱼在0.1~0.4 mg/L低溶氧环境中有浮头出现,但能存活长达到5天时间。分析还表明:缺氧引起浮头,也造成底层H2S、CH4有毒物质增加,雨水进入鱼池形成水上下层对流,水体上部有毒物质浓度升高是泛塘死鱼的主要原因。 相似文献
996.
997.
998.
Cytochrome P450 monooxygenases (CYPs), as an enzyme superfamily, is widely distributed in organisms and plays a vital function in the metabolism of exogenous and endogenous compounds by interacting with its obligatory redox partner, CYP reductase (CPR). A novel CYP gene (CYP9A11) and CPR gene from the agricultural pest insect Spodoptera exigua were cloned and characterized. The complete cDNA sequences of SeCYP9A11 and SeCPR are 1,931 and 3,919 bp in length, respectively, and contain open reading frames of 1,593 and 2,070 nucleotides, respectively. Analysis of the putative protein sequences indicated that SeCYP9A11 contains a heme-binding domain and the unique characteristic sequence (SRFALCE) of the CYP9 family, in addition to a signal peptide and transmembrane segment at the N-terminal. Alignment analysis revealed that SeCYP9A11 shares the highest sequence similarity with CYP9A13 from Mamestra brassicae, which is 66.54%. The putative protein sequence of SeCPR has all of the classical CPR features, such as an N-terminal membrane anchor; three conserved domain flavin adenine dinucleotide (FAD), flavin mononucleotide (FMN), and nicotinamide adenine dinucleotide phosphate (NADPH) domain; and characteristic binding motifs. Phylogenetic analysis revealed that SeCPR shares the highest identity with HaCPR, which is 95.21%. The SeCYP9A11 and SeCPR genes were detected in the midgut, fat body, and cuticle tissues, and throughout all of the developmental stages of S. exigua. The mRNA levels of SeCYP9A11 and SeCPR decreased remarkably after exposure to plant secondary metabolites quercetin and tannin. The results regarding SeCYP9A11 and SeCPR genes in the current study provide foundation for the further study of S. exigua P450 system. 相似文献
999.
J. T. Fu L. Tang W. S. Li K. Wang D. M. Cheng Z. X. Zhang 《Journal of insect science (Online)》2015,15(1)
The red imported fire ant (RIFA) Solenopsis invicta Buren causes severe damage to humans and animals as well as the environment. Chemical treatment is the main strategy of RIFA management, which also is potentially toxic to the environment. Plant essential oils (EOs) are considered as potential substance that can be used to control insects. This study aimed to identify the chemical composition of camphor EO and investigate the insecticidal activity on RIFAs. The chemical composition of the EO was analyzed by gas chromatography/mass spectrometry and gas chromatography with flame ionization detection. Results revealed that 36.61% camphor and 30.05% cineole were the major components. The insecticidal activity of camphor EO was assessed against RIFA workers by conducting two different bioassays: fumigant toxicity and repellence. Fumigant toxicity assay results showed that the lethal dose (LC50) of the EO at 24 h was 1.67 and 4.28 μg/ml for minor and major workers, respectively; knockdown time (KT50) was 10.82 and 14.73 h. At 2.55 μg/ml, the highest average mortality of the ants was 84.89% after 72 h. Camphor EO exhibited fumigant toxicity against minor and major workers as indicated by the effects on attacking, feeding, and climbing behaviors. This EO was also strongly repellent to the two size workers of the colony as observed in their behavior against Tenebrio molitor treated with 5 µl EO. The fumigant toxicity and repellence of camphor EO against RIFA indicated that this substance could be a potential alternative for the development of eco-friendly products used to control pests. 相似文献
1000.
Hao Tang Hui Ge Zhi-Bin Chen Xiong-Ming Luo Feng-Juan Su Yan-Bing Liang Zhen-Yu Li Jing-Guo Wu Qing Yang Li-Jin Zeng Zhong-Fu Ma 《Marine drugs》2015,13(9):5593-5605
Micrometam C is a core of novel marine compound isolated from the mangrove associates Micromelum falcatum. In this study, we investigated the protective effects of micrometam C in inflammation models in the transgenic zebrafish line Tg (corola: eGFP) and RAW264.7 macrophages. We found that micrometam C significantly suppressed the migration of immune cells in tail-cutting-induced inflammation in transgenic zebrafish and reduced lipopolysaccharide (LPS)-induced reactive oxygen species (ROS) in both zebrafish and macrophages. In addition, micrometam C also restored LPS-induced reduction of endogenous antioxidants, such as catalase (CAT), glutathione (GSH) and superoxide dismutase (SOD). The protective effects of micrometam C were in parallel to its inhibition of NADPH oxidase and nuclear factor-kappa-binding (NF-κB) activity. Thus, the present results demonstrate that micrometam C protects against LPS-induced inflammation possibly through its antioxidant property. 相似文献