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分别从家蚕5龄幼虫和蛹期不同发育阶段提取雌、雄蚕血液总蛋白质,采用一维电泳-液相色谱-质谱(1DE-LC-MS)技术分析家蚕血液蛋白质的差异性表达及差异蛋白组分。在家蚕血液蛋白质含量与种类方面检测到与性别及发育相关的差异性表达,数据库检索结果共获得96个相匹配的候选蛋白质,剔除冗余部分后鉴定其中的27个蛋白质组分,分别属于13种蛋白质或其亚基。雌、雄蚕之间的差异组分主要出现在分子质量70~100 kD之间,其中芳基贮存蛋白、卵黄蛋白原、抗胰凝乳蛋白酶因子为雌特异性表达组分。30K蛋白家族是家蚕血液中高丰度表达的蛋白组分。这些差异蛋白质的鉴定与功能分析为研究家蚕性别发育调控机制提供了新的信息。 相似文献
95.
将鸡传染性贫血病毒M9905株VP1、VP2基因分别或同时克隆到杆状病毒转移载体pFastBacDUAL中,然后转化到DHIOBAC感受态细胞中与Bacmid杆状病毒穿梭载体进行转座重组,最后将重组子转染Sf9昆虫细胞,得到分别或同时含VP1、VP2基因的重组杆状病毒rBacVP1、rBacVP2及rBacVP1—2。PCR扩增结果证实VP1、VP2基因重组到杆状病毒基因组中;SDS-PAGE电泳分析和间接免疫荧光试验结果表明VP1、VP2基因在重组病毒中得到了表达。 相似文献
96.
Philippe G.A.C. Vanden Bergh Laurent L.M. Zecchinon Thomas Fett Daniel Desmecht 《Veterinary research》2009,40(4)
Actinobacillus pleuropneumoniae, the causative agent of porcine pleuropneumonia, produces Apx toxins that are recognized as major virulence factors. Recently, we showed that ApxIIIA-cytotoxic activity specifically targets Sus scrofa leukocytes. Since both LtxA from Aggregatibacter actinomycetemcomitans (aggressive periodontitis in humans) and LktA from Mannheimia haemolytica (pneumonia in ruminants) share this characteristic, respectively towards human and ruminant leukocytes, and because both use the CD18 subunit to interact with their respective LFA-1, we hypothesized that ApxIIIA was likely to bind porcine CD18 to exercise its deleterious effects on pig leukocytes. A β
2−integrin-deficient ApxIIIA-resistant human erythroleukemic cell line was transfected either with homologous or heterologous CD11a/CD18 heterodimers using a set of plasmids coding for human (ApxIIIA-resistant), bovine (-resistant) and porcine (-susceptible) CD11a and CD18 subunits. Cell preparations that switched from ApxIIIA-resistance to -susceptibility were then sought to identify the LFA-1 subunit involved. The results showed that the ApxIIIA-resistant recipient cell line was rendered susceptible only if the CD18 partner within the LFA-1 heterodimer was that of the pig. It is concluded that porcine CD18 is necessary to mediate A. pleuropneumoniae ApxIIIA toxin-induced leukolysis. 相似文献
97.
Paolo Borghetti Roberta Saleri Eugenio Mocchegiani Attilio Corradi Paolo Martelli 《Veterinary immunology and immunopathology》2009,130(3-4):141-162
The Central Nervous (CNS) and Immune Systems (IS) are the two major adaptive systems which respond rapidly to numerous challenges that are able to compromise health. The defensive response strictly linking innate to acquired immunity, works continuously to limit pathogen invasion and damage. The efficiency of the innate response is crucial for survival and for an optimum priming of acquired immunity. During infection, the immune response is modulated by an integrated neuro-immune network which potentiates innate immunity, controls potential harmful effects and also addresses metabolic and nutritional modifications supporting immune function. In the last decade much knowledge has been gained on the molecular signals that orchestrate this integrated adaptive response, with focus on the systemic mediators which have a crucial role in driving and controlling an efficient protective response. These mediators are also able to signal alterations and control pathway dysfunctions which may be involved in the persistence and/or overexpression of inflammation that may lead to tissue damage and to a negative metabolic impact, causing retarded growth.This review aims to describe some important signalling pathways which drive bidirectional communication between the Immune and Nervous Systems during infection. Particular emphasis is placed on pro-inflammatory cytokines, immunomodulator hormones such as Glucocorticoids (GCs), Growth hormone (GH), Insulin-like Growth Factor-1 (IGF-1), and Leptin, as well as nutritional factors such as Zinc (Zn).Finally, the review includes up-to-date information on this neuroimmune cross-talk in domestic animals. Data in domestic animal species are still limited, but there are several exciting areas of research, like the potential interaction pathways between mediators (i.e. cytokine-HPA regulation, IL-6-GCS-Zn, cytokines-GH/IGF-1, IL-6-GH-Leptin and thymus activity) that are or could be promising topics of future research in veterinary medicine. 相似文献
98.
Callose and β‐1,3‐glucanase inhibit Phytophthora cinnamomi in a resistant avocado rootstock 下载免费PDF全文
N. van den Berg J. B. Christie T. A. S. Aveling J. Engelbrecht 《Plant pathology》2018,67(5):1150-1160
Phytophthora root rot (PRR) of avocado, caused by Phytophthora cinnamomi, is a significant threat to sustainable production wherever the crop is grown. Resistant rootstocks in combination with phosphite applications are the most effective options for managing this disease. Recently, the mechanisms underpinning PRR resistance have been investigated by the avocado community. Here, biochemical assays and confocal and scanning electron microscopy were used to investigate early defence responses in PRR resistant and ‐susceptible avocado rootstocks. Zoospore germination and subsequent hyphal growth for the pathogen were significantly inhibited on the surface of resistant avocado roots. When penetration occurred in the resistant R0.06 rootstock, callose was deposited in the epidermal cells, parenchyma and cortex of roots. In addition, β‐1,3‐glucanase was released early (6 h post‐inoculation, hpi) in response to the pathogen, followed by a significant increase in catalase by 24 hpi. In contrast, susceptible R0.12 roots responded only with the deposition of lignin and phenolic compounds incapable of impeding pathogen colonization. In this study, PRR resistance was attributed to a timely multilayered response to infection by P. cinnamomi. 相似文献
99.
以273头中国荷斯坦牛为研究对象,利用CRS—PCR、PCR—SSCP及DNA测序技术检测了GlyCAM1基因外显子3、内含子3的遗传多态性。结果表明:GlyCAM1基因分别在外显子3和内含子3的第2081(A/C)、2417(C/T)位存在突变,2个位点的等位基因频率A/B分别为0.7525,0.2475和0.9046,0.0954;经菇。适合性检验,中国荷斯坦牛内含子3的突变达到Hardy—Weinberg平衡状态(P〉0.05),但其外显子3的突变未达到Hardy—Weinberg平衡状态(P〈0.05)。 相似文献
100.
通过对多种鸡球虫和松鼠球虫18SrRNA和28SrRNA进行序列比对分析,在18SrRNA 3′端和28SrRNA 5′端保守区设计艾美耳属通用引物,以斯氏艾美耳球虫洛阳分离株LY卵囊基因组DNA为模板首次成功克隆到斯氏艾美耳球虫完整的ITS1-5.8SrRNA-ITS2序列,其大小为1 178bp,其中ITS1序列长度为423bp,5.8SrRNA为155bp,ITS2为600bp,斯氏艾美耳球虫LY株ITS1/2序列高度变异,与鸡球虫、啮齿动物球虫的序列相似性低于60%。然后在斯氏艾美耳球虫ITS1/2序列超变区设计种特异引物,建立了灵敏、特异的PCR检测方法。本研究结果将为兔球虫强致病种的临床诊断和揭示兔球虫种群遗传特征提供有效的分子工具。 相似文献