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细菌促进肠道病毒感染及其机制研究进展 被引量:3
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作者 徐超 杨晓炼 +1 位作者 乐敏 朱书 《浙江大学学报(农业与生命科学版)》 CAS CSCD 北大核心 2018年第2期140-148,共9页
近年来随着对肠道菌群研究的不断深入,人们对肠道菌群在人类及动物健康中的重要作用有了更清晰的认识。然而,目前的研究主要集中在营养代谢性疾病、慢性病、自身免疫病等方面,对肠道菌群在传染性疾病,特别是病毒病中的作用关注甚少。直... 近年来随着对肠道菌群研究的不断深入,人们对肠道菌群在人类及动物健康中的重要作用有了更清晰的认识。然而,目前的研究主要集中在营养代谢性疾病、慢性病、自身免疫病等方面,对肠道菌群在传染性疾病,特别是病毒病中的作用关注甚少。直到最近,学术界才开始对菌群与肠道病毒之间的相互作用展开系统性研究。随着相关研究的推进,肠道细菌在病毒入侵、病毒致病性及机体抗病毒免疫等方面的作用初现端倪,但其机制并未得到全面揭示。本文对近年来在细菌和肠道病毒互作方面具有高影响力的研究工作,特别是肠道病毒利用细菌促进其体内入侵的相关机制进行了综述。总体而言,细菌促进病毒体内感染的机制分为2类:一类是提高病毒粒子稳定性及促进病毒在宿主靶细胞上的黏附作用,即通过提高病毒感染效率促进感染的直接机制;另一类是改变宿主抗病毒免疫反应的倾向性,即通过抑制宿主免疫反应促进感染的间接机制。对病毒利用肠道细菌促进体内感染的相关机制进行讨论,有助于深入理解病毒的致病机制,揭示病毒与肠道细菌相互作用的普遍规律,解析肠道病毒逃逸宿主黏膜免疫的分子机制,为新型肠道病毒疫苗及相关疫苗佐剂的研发和抗病毒治疗新方法的提出提供全新的视角和科学依据。 展开更多
关键词 肠道菌群 肠道病毒 病毒-细菌互作 体内感染 免疫调节
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Alternaria toxin-induced resistance in rose plants against rose aphid(Macrosiphum rosivorum): effect of tenuazonic acid 被引量:2
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作者 Fa-zhong YANG Bin YANG +1 位作者 Bei-bei LI Chun XIAO 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2015年第4期264-274,共11页
Many different types of toxins are produced by the fungus, Alternaria alternata (Fr.) Keissler. Little is known, however, regarding the influence of these toxins on insects. In this study, we investigated the toxin-... Many different types of toxins are produced by the fungus, Alternaria alternata (Fr.) Keissler. Little is known, however, regarding the influence of these toxins on insects. In this study, we investigated the toxin-induced inhibitory effects of the toxin produced by A. alternata on the rose aphid, Macrosiphum rosivorum, when the toxin was applied to leaves of the rose, Rosa chinensis. The results demonstrated that the purified crude toxin was non-harmful to rose plants and rose aphids, but had an intensive inhibitory effect on the multiplication of aphids. The inhibitory index against rose aphids reached 87.99% when rose plants were sprayed with the toxin solution at a low concentration. Further results from bioassays with aphids and high performance liquid chromatography (HPLC) analyses demon- strated that tenuazonic acid (TEA) was one of the most important resistance-related active components in the crude toxin. The content of TeA was 0.1199% in the crude toxin under the HPLC method. Similar to the crude toxin, the inhibitory index of pure TeA reached 83.60% 15 d after the rose plants were sprayed with pure TeA solution at the lower concentration of 0.060 IJg/ml, while the contents of residual TeA on the surface and in the inner portion of the rose plants were only 0.04 and 0.00 ng/g fresh weight of TeA-treated rose twigs, respectively, 7 d after the treatment. Our results show that TeA, an active component in the A. alternata toxin, can induce the indirect plant-mediated re- sponses in rose plants to intensively enhance the plant's resistances against rose aphids, and the results are very helpful to understand the plant-mediated interaction between fungi and insects on their shared host plants. 展开更多
关键词 TOXIN Induced resistance Fungus-plant-insect system Plant-mediated interaction Tenuazonic acid Alternaria altemata Macrosiphum rosivorum
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