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71.
This review deals with the biology and control of a biting pest species, Simulium posticatum, which has been responsible for a considerable degree of distress to the human population in the vicinity of the River Stour in Dorset. Each phase of the life cycle of the insect is considered in relation to possible control measures. An account is given of how this information has been combined with the use of Bacillus thuringiensis in a successful, precisely targeted attack on the pest. 相似文献
72.
用HPLC检测了苏云金素在鱼塘水和清水中的衰减速率。清水中该物质的半衰期长达433小时;在鱼塘水中苏云素的衰减呈双指数消除模型,开始消除半衰期为2.43-10.68小时,终末消除半衰期为128.57-142.01小时。 相似文献
73.
室内试验,豆天蛾核型多角体病毒感染3龄幼虫的致死中浓度(LC_(50))为1.4×10~(4(?)8)个多角体/毫升。田间试验,喷施1.6×10~7多角体/毫升的病虫尸匀浆液,对豆天蛾幼虫的防治效果在70%左右。豆天蛾核型多角体病毒与苏云金杆菌或银纹夜娥核型多角体病毒混用,防治同时发生的多种大豆害虫的总效果明显提高,虫口下降率可达90%左右。 相似文献
74.
75.
Anakalo Shitandi Aila Oketch Symon Mahungu 《Journal of veterinary science (Suw?n-si, Korea)》2006,7(2):177-180
A Bacillus stearothermophilus var. calidolactis C953 tube test was evaluated for its ability in detecting the residue of selected anticoccidial drugs in poultry, specically sulfamethazine, furazolidone, and amprolium. Various concentrations of each drug were injected into chicken liver and kidney tissues and these tissues were tested to determine the drug detection limits for each drug. The detection limit was defined as the drug concentration at which 95% of the test results were interpreted as positive. The limits of detection in liver tissue were 0.35 µg/ml for furazolidone, 0.70 µg/ml for sulfamethazine and 7.80 µg/ml for amprolium. In kidney tissues, they were 0.30 µg/ml for furazolidone, 0.54 µg/ml for sulfamethazine, and 7.6 µg/ml for amprolium. It was concluded that this tube test could be used to screen for the residue of these three drugs in poultry. 相似文献
76.
通过筛选蜡样芽孢杆菌M 22基因组文库, 得到约3.9 kb的基因组片段。BLAST结果显示:其中包含1条长度为915 bp、编码304个氨基酸的超氧化物歧化酶(SOD)基因, 其与Bacillus thuringiensis和Bacillus anthracis中的sodF基因同源性高达95%。此sodF基因能互补恢复大肠杆菌SOD缺陷型菌株QC871在10 μmol/L paraquat中的生长能力。对重组表达蛋白的抑制实验表明, 此SOD基因为Fe-SOD。利用pET-30b (+)构建表达载体pET-sodF并转化到大肠杆菌BL21(DE3)中, 经IPTG诱导后, SOD融合蛋白表达量显著增加。构建自杀载体p299-8, 同源重组突变蜡样芽孢杆菌M22 sodF基因后, 突变体抗氧化能力未显著降低。 相似文献
77.
应用苏云金杆菌制剂防治棘禾草螟和芦毒蛾都有较好的效果。为了兼治这两种害虫,可在棘禾草螟第一代卵孵化盛期及盛孵末期分别防治一次。每亩喷Bt乳剂200克或150克加敌敌畏50克。 相似文献
78.
The production and partial characterization of bacteriocin‐like substances (BLSs) produced by bacteria isolated from cow manure compost were investigated. Eight BLS producers, which exhibited inhibitory activity against pathogenic bacteria, were isolated from cow manure compost at different stages of the composting process. The pile temperature ranged from 9.1°C to 73.2°C. The BLSs showed thermostability, but the BLS producers were not thermostable except for the H1 producer. Thermophilic Bacillus licheniformis H1 was further characterized. The culture supernatant of B. licheniformis H1 exhibited antagonistic activity against various species of Gram‐positive bacteria such as Listeria monocytogenes ATCC19111 but not against Gram‐negative bacteria except Pseudomonas fluorescens ATCC11251. Inactivation of bacteriocin‐like activity by α‐chymotrypsin, trypsin, and papain was highly significant (P < 0.001). The BLS was found to be stable under a pH range from 3 to 9 and at temperatures up to 75°C for 60 min, but it lost activity after being autoclaved at 121°C for 15 min. The optimum production of BLS by B. licheniformis H1 was obtained at a temperature of 55°C. Sodium dodecyl sulfate – polyacrylamide electrophoresis analysis of concentrated partially purified supernatants collected after resting the bacterial cells at 55°C revealed a bacteriocin‐like protein with a molecular mass of approximately 3.5 kDa. This study is the first report of a BLS from thermophilic B. licheniformis with an animal compost origin. 相似文献
79.
WANG Lei LV Yang ZHANG Yue XIE Jia-qian ZHAO Di YAN Li-qiong MEI Hui-min WANG Lei YI Dan CHEN Hong-bo DING Bin-ying HOU Yong-qing WU Tao 《中国畜牧兽医》2016,43(5):1355-1360
The probiotics tested in the experiment were isolated from the intestinal of weaning piglets.The isolated probiotics and E.coli K88 were inoculated into the culture of intestinal porcine epithelial cell-1 (IPEC-1).The activity of lactate dehydrogenase (LDH) in the supernatant was measured after incubating for 2.5 h.At the same time, the probiotics and E.coli K88 were co-cultured in vitro, the number of E.coli K88 was counted and the probiotics which could be resistant to the E.coli K88 were selected 2.5 h later.The results showed that the Lactobacillus casei and Bacillus coagulans could significantly reduce LDH activity (P<0.05), decrease the damage of E.coli K88; Bacillus coagulans could inhibit the growth of E.coli K88.At the same time, Bacillus coagulans could resist high temperature, acid and bile salt.The results showed that Bacillus coagulans strains had great potential as the application of probiotics strains.The methods could be used as a model of screen probiotics which could inhibit the growth of E.coli K88 in vitro. 相似文献
80.
This study was conducted to investigate the effects of Bacillus subtilis B10 spores on the viability and biological functions of murine macrophage. RAW 264.7 cells were stimulated both with and without B. subtilis B10 spores for 12 h. Then cell viability was determined to evaluate the cytotoxic effect of B. subtilis B10 spores to the cells, and the activities of acid phosphatase (ACP) and lactate dehydrogenase (LDH), the production of nitric oxide (NO) and inducible nitric oxide synthase (iNOS), and the secretion of inflammatory cytokines were measured to analyze the functions of macrophages. The results showed that B. subtilis B10 spores were not harmful to RAW 264.7 cells and they also strongly enhanced the activities of ACP and LDH (P < 0.01), remarkably increased NO and iNOS production (P < 0.01), and significantly stimulated the secretion of pro‐inflammatory cytokines, including tumor necrosis factor‐alpha (TNF‐α), interferon‐gamma (IFN‐γ), interleukin‐1 beta (IL‐1β), IL‐6, IL‐8 and IL‐12 (P < 0.01) while they reduced anti‐inflammatory cytokine IL‐10 (P < 0.01). The outcomes suggest that B. subtilis B10 spores are not only safe for murine macrophages, but also can activate these cells and enhance their immune function. The above findings suggest that B. subtilis B10 spores are potentially probiotic. 相似文献