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231.
YP Chen MQ Zou C Qi MX Xie DN Wang YF Wang Q Xue JF Li Y Chen 《Biosensors & bioelectronics》2013,39(1):112-117
A rapid, sensitive, and simple immunosensor was developed for the detection of Kanamycin (KM) in milk. This immunosensor is based on magnetic relaxation switch (MRS) assay and biotin-streptavidin system (B-SA system). The target analyte (KM) competed with those on the surface of the superparamagnetic iron oxide (SPIO) nanoparticles and hence affected the formation of SPIO aggregates. The dispersed and aggregated states of SPIO can modulate the spin-spin relaxation time (T(2)) of the neighboring water molecule. T(2) was then changed as an effect of the target analyte. The B-SA system was used to amplify the SPIO binding, thus enhance the sensitivity. The detection working was 1.5 to 25.2ngmL(-1) and limit of detection (LOD) was determined to be 0.1ngmL(-1). The LOD of the immunosensor decreased tenfold, and its analysis time (45min) was much shorter than that of enzyme-linked immunosorbent assay (6h to 8h). The average recoveries of the KM at various spiking levels ranged from 80.2% to 85.6% with a relative standard deviation (RSD) below 4.0%. The results showed that the MRS immunosensor was a promising platform for the determination of small molecular residues because of its high sensitivity, specificity, homogeneity, and speed. 相似文献
232.
Jinyou Zhang Xupeng Cao Yanjuan Xin Song Xue Wei Zhang 《World journal of microbiology & biotechnology》2013,29(10):1791-1799
2-haloacid dehalogenases are enzymes that are capable of degrading 2-haloacid compounds. These enzymes are produced by bacteria, but so far they have only been purified and characterized from terrestrial bacteria. The present study describes the purification and characterization of 2-haloacid dehalogenase from the marine bacterium Pseudomonas stutzeri DEH130. P. Stutzeri DEH130 contained two kinds of 2-haloacid dehalogenase (designated as Dehalogenase I and Dehalogenase II) as detected in the crude cell extract after ammonium sulfate fractionation. Both enzymes appeared to exhibit stereo-specificity with respect to substrate. Dehalogenase I was a 109.9-kDa enzyme that preferentially utilized D-2-chloropropropionate and had optimum activity at pH 7.5. Dehalogenase II, which preferentially utilized L-2-chloropropionate, was further purified by ion-exchange chromatography and gel filtration. Purified Dehalogenase II appeared to be a dimeric enzyme with a subunit of 26.0-kDa. It had maximum activity at pH 10.0 and a temperature of 40 °C. Its activity was not inhibited by DTT and EDTA, but strongly inhibited by Cu2+, Zn2+, and Co2+. The K m and V max for L-2-chloropropionate were 0.3 mM and 23.8 μmol/min/mg, respectively. Its substrate specificity was limited to short chain mono-substituted 2-halocarboxylic acids, with no activity detected toward fluoropropionate and monoiodoacetate. This is the first report on the purification and characterization of 2-haloacid dehalogenase from a marine bacterium. 相似文献
233.
Aiming at discovering effective biocontrol agents (BCAs) against grey mold on tomato caused by Botrytis cinerea Pers., we selected 819 bacterial isolates from the surface as well as the interior of the roots, stems, and leaves of tomato plants grown in B. cinerea-infested fields. In a dual-culture assay, 116 isolates (14.16%) showed antagonism against B. cinerea and fewer ones against five additional tomato-associated fungal pathogens – Pythium ultimum, Phytophthora capsici, Fusarium oxysporum f. sp. lycopersici, Sclerotinia sclerotiorum and Ralstonia solanacearum. Thirty-one isolates with antagonism to B. cinerea and at least one of the five additional pathogens were assessed for their efficacy in controlling grey mold on tomato in a greenhouse test. Thirteen of them attained the efficacy over 50% and were subjected to the second greenhouse test, in which 12 isolates consistently accomplished the biocontrol efficacy over 50%, with isolates ABc28 and ABc22 achieving the efficacy of 66.71% and 64.90%, respectively. Under greenhouse conditions, the above two as well as isolates ABc2, ABc11 and ABc17 increased tomato biomass by more than 20% in comparison with the control. The 12 antagonistic isolates accomplishing the biocontrol efficacy over 50% in both greenhouse tests were considered potential BCAs against grey mold, which were identified as Pseudomonas spp., Pantoea spp., Bacillus spp. and Chryseobacterium spp. Ten of them were found to produce at least one of the three hydrolytic enzymes (protease, cellulase and chitinase) and/or siderophore, which might be involved in their mechanisms of suppressing the disease. Based on the origin of these 12 strains, the leaf tissue, especially the leaf interior, of tomato plants grown in a B. cinerea-infested field appears to be a good source of potential BCAs against grey mold. 相似文献
234.
Jianjie Xue Jingang Hou Yongan Zhang Yuzhu Wang Chunyan Wang Zhen Wang Yunbo Wang Changkeun Sung 《Journal of Phytopathology》2013,161(5):353-358
Esteya vermicola is the first recorded endoparasitic fungus of the pinewood nematode, Bursaphelenchus xylophilus, which is the causal agent for the pine wilt disease. Culture on modified agar media with herbal extraction (0.5%) was found to be able to induce resistance to UV radiation, heat and drought conditions in Esteya vermicola. Herba Houttuyniae, Tatraxacum officinale and Scutellaria baicalensis Georgi exhibited the highest improvement on environmental competence of Esteya vermicola at all the tested time points under the stress conditions. In addition, improved quality and effective viability of Esteya vermicola were observed amended with the three herbal extractions in culture media. Enhanced stress resistance was associated with herbal metabolites. These findings provided a green, feasible, economical method for developing an open‐field spay application of fungal biocontrol agents against pine wilt disease. 相似文献
235.
Tim-1分子表达在T细胞和调节性B细胞表面,具有促进Th2应答的作用。为探讨Tim-1分子在抗疟疾免疫应答中的作用,利用致死型约氏疟原虫(Plasmodium yoelii)感染鼠疟模型研究了Tim-1分子表达与小鼠感染结局和免疫应答模式的关系。结果显示,BALB/c小鼠对P.yoelii易感,在感染后6~7 d全部死亡,感染后第3、5天脾内细胞因子IFN-γmRNA水平明显低于对P.yoelii抵抗的DBA2小鼠,而脾IL-10 mRNA水平显著高于DBA2小鼠。BALB/c小鼠脾内Tim-1+T、B细胞百分比在感染后第3、5天显著升高,而DBA2小鼠感染前后脾内Tim-1+T、B细胞百分比没有显著变化。结果提示,Tim-1分子参与抗P.yoelii免疫应答的调节,可能与易感鼠产生高水平Th2型细胞因子有关。 相似文献
236.
237.
Jianhua Xu Fujun Luo Zhen Zhang Lei Xue Xin-Sheng Wu Hsueh-Cheng Chiang Wonchul Shin Ling-Gang Wu 《Cell reports》2013,3(5):1414-1421
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238.
Chunyan Chen Tian Shen Fei Tian Ping Lin Qingtian Li Zelin Cui Yajuan Zhang Min Xue Jing Ye Xiaokui Guo YuhuaZhou 《Acta biochimica et biophysica Sinica》2013,(12):1039-1048
Community-acquired pneumonia (CAP) is a major concern in hospitals and the bacterial community of which has not been systemically discussed yet. Sputum from patients in the acute stages is a kind of accessible sample reflecting its fea- tures. In our study, we analyzed 45 sputum samples from 45 patients with CAP. Eighteen sputum samples from healthy people were chosen as the controls. Pyrosequencing of the 16s rDNA V3 hypervariable regions of aH the bacteria con- tained in the sputum was used as a culture-independent method to disclose the community constitution. Also, our published data for hospital-acquired pneumonia (HAP) in sputum was used for comparison. By pyrosequencing, 〉90,000 DNA reads were detected. After being analyzed by tools in the Ribosomal Database Project, the reads were clas- sified into five main phyla and 〉100 genera. At the phyla level, the reads' distribution of CAP is similar to that of healthy people and at genera level, the occurrence of each genus possesses their feature in three categories. Genera such as Streptococcus and Neisseria showed stability in their percentages, indicating that such genera are rarely affected by exogenous bacteria or antibiotics. The role of other genera such as Moraxella and Rothia in CAP should be emphasized. According to our analysis, the bacterial communities of CAP are with slight change when compared with those of healthy people, but have a large gap between HAP. Meanwhile, Rothia might be an important endogenous pneumonia-causing factor. 相似文献
239.
240.
QIU Yang WANG ZhaoWei LIU YongXiang QI Nan SI Jie XIANG Xue XIA XiaoLing HU YuanYang ZHOU Xi 《中国科学:生命科学英文版》2013,56(8):711-714
Insects are a group of arthropods and the largest group of animals on Earth,with over one million species described to date.Like other life forms,insects suffer from viruses that cause disease and death.Viruses that are pathogenic to beneficial insects cause dramatic economic losses on agriculture.In contrast,viruses that are pathogenic to insect pests can be exploited as attractive biological control agents.All of these factors have led to an explosion in the amount of research into insect viruses in recent years,generating impressive quantities of information on the molecular and cellular biology of these viruses.Due to the wide variety of insect viruses,a better understanding of these viruses will expand our overall knowledge of their virology.Here,we review studies of several newly discovered RNA insect viruses in China. 相似文献