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高地隙喷雾机驱动轮独立式驱动系统转向控制模型研究 总被引:1,自引:0,他引:1
车辆转弯时的内外轮速平衡问题是车辆驱动轮独立式驱动技术研究的关键问题。根据车辆转弯时轮速不等的现象,以阿克曼转向原理为基础,对车辆转向模型进行简化,运用运动学分析原理研究了内外轮速与转弯时车速及转向角之间的关系;结合车辆动力学原理建立车辆转弯临界模型,分析了车辆安全转弯临界状态,最后设计了实际应用方案。选择在工作原理和安全控制方面较普通的电控差速器更为简单易行,提高了车辆转向性能、简化了车辆结构、降低了成本。此技术运用到农田高地隙喷雾机上可简化其结构、减轻质量,且在农田行走更灵活方便。 相似文献
144.
The experiment was conducted to discuss the difference of binding time of green fluorescent protein B.melitensis M5 (GFP-M5) and B.abortus S19 (GFP-S19) infecting the mouse macrophagocyte (RAW264.7),lysosome,endoplasmic reticulum and golgi body in the initial stage and compare the binding rate of GFP-M5,GFP-S19 with organelle in different timeline,respectively,by confocal laser scanning microscope (CLSM) and flow cytometry.The result showed that GFP-M5 and GFP-S19 were successfully constructed.The intracellular survival ability of Brucella M5,Brucella S19,GFP-M5 and GFP-S19 were not obvisouly affected after infecting RAW264.7.GFP-M5 and GFP-S19 could enter the macrophagocyte in 30 mins,and in 2 h the Brucella could reach lysosome,endoplasmic reticulum and golgi body.In addition,the binding time for two attenuated vaccine did not show differences in 1,2,3 and 4 h.The content of GFP+ cell produced by RAW264.7 infected by GFP-M5 and GFP-S19 did not show significant differences (P>0.05).Therefore,the two strains did not have significant differences in the invasion ability in the initial stage of infecting host cell. 相似文献
145.
XU Wan-yun WANG Hui-min WANG Wen-lun HU Meng-wei YAN Guo LI Jian-hua GAO Jian-feng 《中国畜牧兽医》2016,43(3):568-576
The specific primers were designed according to Ovis aries DRA gene sequence deposited in GenBank and the multiple cloning site of the plasmid pYD1,which was a vector used for protein surface display on Saccharomyces cerevisiae.The gene encoding DRA was amplified by PCR using the genomic RNA of Ovis aries.The 762 bp fragment was cloned and released in GenBank and registration number was KR422362.The PCR product was inserted into the yeast surface display plasmid vector pYD1 by double enzyme digestion.It was indicated that DRA gene was successfully integrated into the genome.Dot mutation was made at both ends of exon 2 in DRA gene for making restriction enzyme cutting site and design the exon 2 specific primers according to mutated Ovis aries DRA gene sequence.Sequenced exon 2 amplification products based on DNA pooling of sheep large sample template was analyzed the polymorphic loci.The polymorphic exon 2 246 bp fragment was obtained by double enzyme digestion and connected to surface display restructuring mutation carriers pYD1-DRA by the same double enzyme digestion,and then we successfully constructed yeast surface display libraries.We transformed it into Saccharomyces cerevisiae EBY100 cell.Yeast monoclone was identified by PCR amplification and sequencing,and we confirmed that DRA gene had been integrated into Saccharomyces cerevisiae genome.After galactose induced,it was detected that DRA gene library had been successfully demonstrated on the yeast cell surface under the fluorescence microscope by immunofluorescence method. 相似文献
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Australian Cattle Dogs with Neuronal Ceroid Lipofuscinosis are Homozygous for a CLN5 Nonsense Mutation Previously Identified in Border Collies 下载免费PDF全文
A. Kolicheski G.S. Johnson D.P. O'Brien T. Mhlanga‐Mutangadura D. Gilliam J. Guo T.D. Anderson‐Sieg R.D. Schnabel J.F. Taylor A. Lebowitz B. Swanson D. Hicks Z.E. Niman F.A. Wininger M.C. Carpentier M.L. Katz 《Journal of veterinary internal medicine / American College of Veterinary Internal Medicine》2016,30(4):1149-1158
148.
为明确草栖钝绥螨Amblyseius herbicolus对二斑叶螨Tetranychus urticae的控制潜能,在温度分别为19、22、25、28和31℃、相对湿度均为(85±5)%、光周期均为16 L∶8 D条件下测定草栖钝绥螨对二斑叶螨各螨态的捕食偏好性、捕食功能反应及自身干扰反应。结果表明,草栖钝绥螨对二斑叶螨幼螨和第1若螨具有嗜食性,对其捕食选择系数分别为2.22和1.27,均大于1.00,对二斑叶螨卵、第2若螨和雌成螨捕食选择系数分别为0.61、0.68和0.22,均小于1.00。在不同温度条件下,草栖钝绥螨对二斑叶螨各螨态的捕食功能反应均符合HollingⅡ型;在19~31℃范围内,草栖钝绥螨对二斑叶螨各螨态的瞬时攻击率、最大日捕食量和捕食能力均随着温度升高呈先升高后降低的趋势,在28℃时达到最大值;而草栖钝绥螨对二斑叶螨各螨态的处理时间随着温度升高呈先缩短后延迟的趋势,在28℃下处理时间最短。在相同温度下,草栖钝绥螨对二斑叶螨卵、幼螨和第1若螨的捕食作用较强。在有限的捕食空间和二斑叶螨密度固定的条件下,草栖钝绥螨单头捕食量和捕食作用率随其自身密度的增加而逐渐下降,说... 相似文献
149.
为明确广东省稻菜轮作区中牛筋草对10种常用除草剂的抗性水平及抗性分子机制,采用整株生物测定法测定广东省稻菜轮作区内8个牛筋草种群P1~P8对草甘膦、草铵膦和乙酰辅酶A羧化酶(acetyl-CoA carboxylase,ACCase)抑制剂类等10种除草剂的抗性水平,并进一步分析P1和P8种群相关靶标酶基因5-烯醇丙酮酰莽草酸-3-磷酸合酶(5-enolpyruvyl-shikimate-3-phosphate synthase,EPSPS)、谷氨酰胺合成酶(glutamine synthetase,GS)和ACCase的部分功能区序列特征。结果显示,牛筋草P1~P8种群对草甘膦抗性指数为敏感种群的5.9倍~17.7倍,其中P8种群对草甘膦的抗性水平最高;8个种群对草铵膦也产生了不同程度的抗性,抗性指数为敏感种群的2.3倍~14.2倍,其中P1种群抗性最高。牛筋草P1和P8种群均对ACCase抑制剂类除草剂精喹禾灵、氰氟草酯和噁唑酰草胺产生了交互抗性;P1种群ACCase基因在第2 041位氨基酸处发生突变,该突变在牛筋草种群中首次发现;而P8种群ACCase基因则在第2 027位氨基... 相似文献
150.
Yuanbo Li Peng Zhang Mingshu Li Noman Shakoor Muhammad Adeel Pingfan Zhou Manlin Guo Yaqi Jiang Weichen Zhao BenZhen Lou Yukui Rui 《Pest management science》2023,79(1):21-36
Nanotechnology is a young branch of the discipline generated by nanomaterials. Its development has greatly contributed to technological progress and product innovation in the field of agriculture. The antimicrobial properties of nanoparticles (NPs) can be used to develop nanopesticides for plant protection. Plant diseases caused by bacterial and fungal infestations are the main types of crop diseases. Once infected, they will seriously threaten crop growth, reduce yield and quality, and affect food safety, posing a health risk to humans. We reviewed the application of metal-based nanoparticles in inhibiting plant pathogenic bacteria and fungi, and discuss the antibacterial mechanisms of metal-based nanoparticles from two aspects: the direct interaction between nanoparticles and pathogens, and the indirect effects of inducing plant resilience to disease. © 2022 Society of Chemical Industry. 相似文献