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Construction of Plant Virus Expression Vector pClYVV/CP/W and Expression of GFP
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作者 王振东 王晓华 +5 位作者 孟鹏 秦会权 郑新伟 刘芳普 薛立江 张敏 《Agricultural Science & Technology》 CAS 2009年第5期38-41,48,共5页
[ Objective] The study was to report the construction of plant virus expression vector pCIYVV/CP/W and the expression of green fluorescent protein(GFP) with pCIYVV/CP/W, and to develop effective plat virus vector fo... [ Objective] The study was to report the construction of plant virus expression vector pCIYVV/CP/W and the expression of green fluorescent protein(GFP) with pCIYVV/CP/W, and to develop effective plat virus vector for plant bioreactor to produce useful protein. [ Method] A section of multiple cloning sites among NIb/CP genes in pCIYVV genome and deoxyribonucleotide polylinker of cleavage recognition sequence containing viral protease Nla were cloned with infectivity full-length cDNA of clover yellow vein virus (CIYVV), and pCIYVV/CP/W vector was constructed, GFP gene was inserted into pCIyVV/CP/W to construct the pCIYVV/CP/W/GFP vector. The transcription situation of recombinant virus clone was detected by RT-PCR, and targeted gene products expressed by recombinant virus clone were detected with western blot (WB). [Result] The broad bean seedling inoculated with pCIYVV/CP/W/GFP expressed the same symptom as wild type CIYVV, morbidity was of 100%, the result showed that recombinant virus clone pCIYVV/CP/W/GFP didn't suppress, insertion of foreign gene didn't destroy the open reading frame of pCIYVV/CP/W. Foreign gene can keep living in F, progeny virus genorne steadily, recombinant virus clone pCIYVV/CP/W/GFP could steadily express GFP in progeny virus at least.[ Conclusion] The useful plant virus vector was provided for useful protein expressing. 展开更多
关键词 plant virus expression vector pCIYVV/CP/W pCIYVV/CP/W/GFP CONSTRUCTION EXPRESSION
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The molecular mechanism of efficient transmission of plant viruses in variable virus-vector-plant interactions 被引量:4
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作者 Xiaobin Shi Zhuo Zhang +3 位作者 Chi Zhang Xuguo Zhou Deyong Zhang Yong Liu 《Horticultural Plant Journal》 SCIE CSCD 2021年第6期501-508,共8页
Plant viruses are mainly transmitted by insect vectors in the non-persistent,semi-persistent,or persistent modes.In the non-persistent mode,plant viruses are retained in the stylets of their insect vectors.In the semi... Plant viruses are mainly transmitted by insect vectors in the non-persistent,semi-persistent,or persistent modes.In the non-persistent mode,plant viruses are retained in the stylets of their insect vectors.In the semi-persistent mode,plant viruses are carried to vector foreguts or salivary glands,but they cannot spread to salivary glands.In the persistent mode,plant viruses are retained in vector guts and can spread to salivary glands.In the non-persistent and semi-persistent modes,plant viruses are retained for a short time and cannot enter the hemolymph of insect vectors,whereas in the persistent mode,plant viruses are retained for a relatively long time and can be found in the hemolymph.Here,we reviewed recent studies that uncovered molecular mechanisms of how plant viruses manipulate host traits for efficient transmission by insect vectors.Normally,plants that are infected with viruses,regardless of the transmission mode,tend to release more attractive volatiles to vectors.However,plant defensive systems are regulated differently by viruses in these three modes.In the non-persistent mode,virus infections significantly induce plant defense responses,which probably trigger vectors(e.g.,winged aphids)to disperse and transmit viruses in a short time.In the semi-persistent mode,virus infections frequently suppress plant defense responses,resulting in an increase of vector population and facilitating viral transmissions during vector outbreaks.In the persistent mode,virus infections reduce plant defense responses and manipulate plant traits to become suitable feeding sites in a relatively long period of time.Understanding the underlying mechanisms of virus–vector–plant interactions will lay a foundation for preventing virus transmission. 展开更多
关键词 plant virus transmission Non-persistent Semi-persistent PERSISTENT
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Activation of peroxymonosulfate by sustainable biomass-based carbon nanotubes for controlling the spread of plant viruses in water environments
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作者 Jian Tang Yujie Wang +2 位作者 JunMa Yujie Chen Ming Chen 《Journal of Environmental Sciences》 2025年第3期99-112,共14页
With the increasing demand for water in hydroponic systems and agricultural irrigation,viral diseases have seriously affected the yield and quality of crops.By removing plant viruses in water environments,virus transm... With the increasing demand for water in hydroponic systems and agricultural irrigation,viral diseases have seriously affected the yield and quality of crops.By removing plant viruses in water environments,virus transmission can be prevented and agricultural production and ecosystems can be protected.But so far,there have been few reports on the removal of plant viruses in water environments.Herein,in this study,easily recyclable biomass-based carbon nanotubes catalysts were synthesized with varying metal activities to activate peroxymonosulfate(PMS).Among them,the magnetic 0.125Fe@NCNTs-1/PMS system showed the best overall removal performance against pepper mild mottle virus,with a 5.9 log_(10)removal within 1 min.Notably,the key reactive species in the 0.125Fe@NCNTs-1/PMS system is^(1)O_(2),which can maintain good removal effect in real water matrices(river water and tap water).Through RNA fragment analyses and label free analysis,it was found that this system could effectively cleave virus particles,destroy viral proteins and expose their genome.The capsid protein of pepper mild mottle virus was effectively decomposed where serine may be the main attacking sites by^(1)O_(2).Long viral RNA fragments(3349 and 1642 nt)were cut into smaller fragments(∼160 nt)and caused their degradation.In summary,this study contributes to controlling the spread of plant viruses in real water environment,which will potentially help protect agricultural production and food safety,and improve the health and sustainability of ecosystems. 展开更多
关键词 Pepper mild mottle virus Removal plant virus spread Biomass-based carbon nanotubes Water environments
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Insect transmission of plant viruses: Multilayered interactions optimize viral propagation 被引量:2
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作者 Beatriz Dader Chrstiane Then +3 位作者 Edwige Berthelot Marie Ducousso James C. K. Ng Martin Drucker 《Insect Science》 SCIE CAS CSCD 2017年第6期929-946,共18页
By serving as vectors of transmission, insects play a key role in the infection cycle of many plant viruses. Viruses use sophisticated transmission strategies to overcome the spatial barrier separating plants and the ... By serving as vectors of transmission, insects play a key role in the infection cycle of many plant viruses. Viruses use sophisticated transmission strategies to overcome the spatial barrier separating plants and the impediment imposed by the plant cell wall. Interactions among insect vectors, viruses, and host plants mediate transmission by integrating all organizational levels, from molecules to populations. Best-examined on the molecular scale are two basic transmission modes wherein virus-vector interactions have been well characterized. Whereas association of virus particles with specific sites in the vector's mouthparts or in alimentary tract regions immediately posterior to them is required for noncirculative transmission, the cycle of particles through the vector body is necessary for circulative transmission. Virus transmission is also determined by interactions that are associated with changes in vector feeding behaviors and with alterations in plant host's morphology and/or metabolism that favor the attraction or deterrence of vectors. A recent concept in virus-host-vector interactions proposes that when vectors land on infected plants, vector elicitors and effectors "inform" the plants of the confluence of interacting entities and trigger signaling pathways and plant defenses. Simultaneously, the plant responses may also influence virus acquisition and inoculation by vectors. Over- all, a picture is emerging where transmission depends on multilayered virus-vector-host interactions that define the route of a virus through the vector, and on the manipulation of the host and the vector. These interactions guarantee virus propagation until one or more of the interactants undergo changes through evolution or are halted by environmental interventions. 展开更多
关键词 ARBOvirus DEFENSE host plant insect vector INTERACTIONS plant virus transmission
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HEMIPTERAN-TRANSMITTED PLANT VIRUSES: RESEARCH PROGRESS AND CONTROL STRATEGIES 被引量:2
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作者 Haijian HUANG Junmin LI +1 位作者 Chuanxi ZHANG Jianping CHEN 《Frontiers of Agricultural Science and Engineering》 2022年第1期98-109,共12页
About 80% of plant viruses are transmitted by specific insect vectors, especiallyhemipterans with piercing-sucking mouthparts. Many virus-transmitting insectsare also important crop pests that cause considerable losse... About 80% of plant viruses are transmitted by specific insect vectors, especiallyhemipterans with piercing-sucking mouthparts. Many virus-transmitting insectsare also important crop pests that cause considerable losses in crop production.This review summarizes the latest research findings on the interactions betweenplant viruses and insect vectors and analyzes the key factors affecting insecttransmission of plant viruses from the perspectives of insect immunity, insectfeeding, and insect symbiotic microorganisms. Additionally, by referring to thelatest applications for blocking the transmission of animal viruses, potentialcontrol strategies to prevent the transmission of insect-vectored plant virusesusing RNAi technology, gene editing technology, and CRISPR/Cas9 + gene-driventechnology are discussed. 展开更多
关键词 control strategies FEEDING IMMUNITY insect vector MICROORGANISM plant virus
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Bioinspired optical antennas: gold plant viruses
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作者 SoonGweon Hong Mi Yeon Lee +1 位作者 Andrew O Jackson Luke P Lee 《Light(Science & Applications)》 SCIE EI CAS CSCD 2015年第1期447-453,共7页
The ability to capture the chemical signatures of biomolecules(i.e.,electron-transfer dynamics)in living cells will provide an entirely new perspective on biology and medicine.This can be accomplished using nanoscale ... The ability to capture the chemical signatures of biomolecules(i.e.,electron-transfer dynamics)in living cells will provide an entirely new perspective on biology and medicine.This can be accomplished using nanoscale optical antennas that can collect,resonate and focus light from outside the cell and emit molecular spectra.Here,we describe biologically inspired nanoscale optical antennas that utilize the unique topologies of plant viruses(and thus,are called gold plant viruses)for molecular fingerprint detection.Our electromagnetic calculations for these gold viruses indicate that capsid morphologies permit high amplification of optical scattering energy compared to a smooth nanosphere.From experimental measurements of various gold viruses based on four different plant viruses,we observe highly enhanced optical cross-sections and the modulation of the resonance wavelength depending on the viral morphology.Additionally,in label-free molecular imaging,we successfully obtain higher sensitivity(by a factor of up to 10^(6))than can be achieved using similar-sized nanospheres.By virtue of the inherent functionalities of capsids and the plasmonic characteristics of the gold layer,a gold virus-based antenna will enable cellular targeting,imaging and drug delivery. 展开更多
关键词 molecular sensor NANOPHOTONICS optical antenna optical spectroscopy plant virus PLASMONICS plasmonic resonant energy transfer(PRET) surface enhanced Raman scattering(SERS)
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Perspectives on plant virus diseases in a climate change scenario of elevated temperatures
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作者 Wei‑An Tsai Christopher A.Brosnan +1 位作者 Neena Mitter Ralf G.Dietzgen 《Stress Biology》 2022年第1期223-248,共26页
Global food production is at risk from many abiotic and biotic stresses and can be affected by multiple stresses simultaneously.Virus diseases damage cultivated plants and decrease the marketable quality of produce.Im... Global food production is at risk from many abiotic and biotic stresses and can be affected by multiple stresses simultaneously.Virus diseases damage cultivated plants and decrease the marketable quality of produce.Importantly,the progression of virus diseases is strongly affected by changing climate conditions.Among climate-changing vari-ables,temperature increase is viewed as an important factor that affects virus epidemics,which may in turn require more efficient disease management.In this review,we discuss the effect of elevated temperature on virus epidem-ics at both macro-and micro-climatic levels.This includes the temperature effects on virus spread both within and between host plants.Furthermore,we focus on the involvement of molecular mechanisms associated with tempera-ture effects on plant defence to viruses in both susceptible and resistant plants.Considering various mechanisms proposed in different pathosystems,we also offer a view of the possible opportunities provided by RNA-based technologies for virus control at elevated temperatures.Recently,the potential of these technologies for topical field applications has been strengthened through a combination of genetically modified(GM)-free delivery nanoplat-forms.This approach represents a promising and important climate-resilient substitute to conventional strategies for managing plant virus diseases under global warming scenarios.In this context,we discuss the knowledge gaps in the research of temperature effects on plant-virus interactions and limitations of RNA-based emerging technologies,which should be addressed in future studies. 展开更多
关键词 Elevated temperatures virus epidemics plant virus control RNA-based approaches Nanoparticles
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Sugarcane Transcript Profiling Assessed by cDNA-AFLP Analysis during the Interaction with Sugarcane Mosaic Virus 被引量:1
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作者 Cibele N.F.Medeiros Marcos C.Goncalves +5 位作者 Ricardo Harakava Silvana Creste Paula M.Nóbile Luciana R.Pinto Dilermando Perecin Marcos G.A.Landell 《Advances in Microbiology》 2014年第9期511-520,共10页
Sugarcane mosaic caused by Sugarcane Mosaic Virus (SCMV) is one of the most important virus diseases of sugarcane. In the present study, changes in the transcription profile obtained by cDNA-AFLP analysis were investi... Sugarcane mosaic caused by Sugarcane Mosaic Virus (SCMV) is one of the most important virus diseases of sugarcane. In the present study, changes in the transcription profile obtained by cDNA-AFLP analysis were investigated in two sugarcane varieties contrasting to SCMV resistance, when challenged with a severe virus strain. Healthy plants derived from meristem tip tissue culture were mechanically inoculated under greenhouse controlled conditions and sampled at 24, 48 and 72 hours after inoculation. A total of 392 transcript-derived fragments (TDFs) were verified in the resistant variety against 380 in the susceptible one. The two sugarcane genotypes showed differential behavior in the number of induced and repressed TDFs along the time-course samplings. Ten out of 23 sequenced TDFs (unique from the resistance variety), showed identity with known plant sequences, mostly related to plant defense mechanisms against pathogens. The cDNA-AFLP technique was effective in revealing changes in the transcription profile within and between contrasting varieties when challenged by SCMV. 展开更多
关键词 plant Resistance plant viruses Molecular Markers Candidate Genes CDNA-AFLP SCMV
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An introductory review on the common brown leafhopper(Orosius orientalis):A new soybean pest
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作者 Tianhao Pei Xin Cui +1 位作者 Shusen Shi Yu Gao 《Oil Crop Science》 CSCD 2024年第3期198-203,共6页
Soybean pests are one of the major factors limiting yield improvement.With the expansion of area and changes in cropping patterns,a number of new pests have been identified in the main soybean production areas of Chin... Soybean pests are one of the major factors limiting yield improvement.With the expansion of area and changes in cropping patterns,a number of new pests have been identified in the main soybean production areas of China.The common brown leafhopper,Orosius orientalis,is a new pest associated with soybean stay-green virus that has been discovered on cultivated soybean crop in the Yellow-Huai-hai region of China in recent years.The polyphagous insect has a wide feeding range and infests a variety of important grain and cash crops.This paper presents the basic information,geographical distribution,hosts,damage characteristics,plant virus transmission,occurrence patterns,and prevention and control measures O.orientalis.This review also provides insights into integrated prevention and control of the genus Orosius as an insect vector. 展开更多
关键词 SOYBEAN LEAFHOPPER plant virus Insect vector Orosius orientalis
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污泥厌氧稳定化流程中肠道病毒的去除与归趋
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作者 詹咏 钱康 +5 位作者 陆宇涵 陈江峰 王慧 白建峰 王先恺 董滨 《上海理工大学学报》 CAS CSCD 北大核心 2024年第5期556-566,共11页
根据对典型肠道病毒的生物性研究,选取诺如病毒、腺病毒、轮状病毒作为研究对象,以安徽某污泥厂作为研究地点,污泥厂采用的是离心浓缩-水解-厌氧消化-机械脱水-太阳能干化技术,旨在评估不同污泥处理工艺对这些病毒去除效果的影响。本研... 根据对典型肠道病毒的生物性研究,选取诺如病毒、腺病毒、轮状病毒作为研究对象,以安徽某污泥厂作为研究地点,污泥厂采用的是离心浓缩-水解-厌氧消化-机械脱水-太阳能干化技术,旨在评估不同污泥处理工艺对这些病毒去除效果的影响。本研究利用实时荧光定量PCR技术,对污泥处理各阶段的病毒含量进行定量分析。研究表明,污泥厌氧消化是诺如病毒和腺病毒的去除效率最高的单元,其对数去除率分别为0.68 lg和0.61 lg,太阳能干化单元是轮状病毒的去除效率最高的单元,其对数去除率为0.73 lg。该污泥处理流程对诺如病毒、腺病毒、轮状病毒总量的去除分别达到了98.7%,97.6%,98.4%,但由于进泥中病毒总量较高,最终污泥处置进入环境中含量为1.52×10^(4) copies/g DW,5.17×10^(4) copies/g DW,7.92×10^(3) copies/g DW。 展开更多
关键词 肠道病毒 污泥厂 厌氧消化 去除率
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NLR-mediated antiviral immunity in plants
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作者 Min Zhu Mingfeng Feng Xiaorong Tao 《Journal of Integrative Plant Biology》 2025年第3期786-800,共15页
Plant viruses cause substantial agricultural devastation and economic losses worldwide.Plant nucleotide-binding domain leucine-rich repeat receptors(NLRs)play a pivotal role in detecting viral infection and activating... Plant viruses cause substantial agricultural devastation and economic losses worldwide.Plant nucleotide-binding domain leucine-rich repeat receptors(NLRs)play a pivotal role in detecting viral infection and activating robust immune responses.Recent advances,including the elucidation of the interaction mechanisms between NLRs and pathogen effectors,the discovery of helper NLRs,and the resolution of the ZAR1 resistosome structure,have significantly deepened our understanding of NLR-mediated immune responses,marking a new era in NLR research.In this scenario,significant progress has been made in the study of NLRmediated antiviral immunity.This review comprehensively summarizes the progress made in plant antiviral NLR research over the past decades,with a focus on NLR recognition of viral pathogen effectors,NLR activation and regulation,downstream immune signaling,and the engineering of NLRs. 展开更多
关键词 downstream immune signaling NLR recognition nucleotide-binding domain leucine-rich repeat receptors(NLRs) plant virus viral effectors
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植物遗传转化技术在杂草中的研究进展及展望
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作者 陈玄 黄婷 +2 位作者 王立峰 吴迪 杨浩娜 《杂草学报》 2024年第4期1-10,共10页
为了有效控制恶性杂草,深入剖析恶性杂草的成灾动力学,揭示其抗药性产生的分子机制,并进而探索和开发新型除草剂作用靶标,强化对杂草分子生物学的系统性研究显得尤为迫切。本文聚焦于植物遗传转化技术在杂草中的应用,旨在构建一个全面... 为了有效控制恶性杂草,深入剖析恶性杂草的成灾动力学,揭示其抗药性产生的分子机制,并进而探索和开发新型除草剂作用靶标,强化对杂草分子生物学的系统性研究显得尤为迫切。本文聚焦于植物遗传转化技术在杂草中的应用,旨在构建一个全面高效的杂草遗传转化体系,以深入分析和验证杂草基因功能。研究遗传转化技术的主要方法包括生物介导法和非生物介导法。在生物介导法中,农杆菌介导法操作简单、转化效率高,但同时也存在基因型的差异和转化条件的限制;植物病毒介导法不仅能进行高效的表达和基因组编辑,还能从单一病毒的基因组中产生多个sgRNA,进而达到多目标的基因组编辑效果,但在植物病毒载体的稳定性上存在一些不足之处。在非生物介导转化方法中,基因枪法的应用已经相当成熟,这项技术不受宿主的限制,可以作用的受体细胞范围非常广泛,但是转化效率低,成本也较高。此外,纳米颗粒介导、无组织培养技术,以及利用Bbm/Wus2发育调控因子或REF1再生因子等新兴技术,不仅为简化植物组织培养流程、提高遗传转化效率提供新的思路,而且为建立高效的杂草遗传转化体系提供理论基础和实践指导,为未来杂草的分子生物学研究和遗传改良开辟了新的方向。 展开更多
关键词 杂草 遗传转化 农杆菌 植物病毒 基因枪 新技术
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Plant virology in the 21st century in China:Recent advances and future directions 被引量:4
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作者 Jianguo Wu Yongliang Zhang +14 位作者 Fangfang Li Xiaoming Zhang Jian Ye Taiyun Wei Zhenghe Li Xiaorong Tao Feng Cui Xianbing Wang Lili Zhang Fei Yan Shifang Li Yule Liu Dawei Li Xueping Zhou Yi Li 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2024年第3期579-622,共44页
Plant viruses are a group of intracellular pathogens that persistently threaten global food security.Significant advances in plant virology have been achieved by Chinese scientists over the last 20 years,including bas... Plant viruses are a group of intracellular pathogens that persistently threaten global food security.Significant advances in plant virology have been achieved by Chinese scientists over the last 20 years,including basic research and technologies for preventing and controlling plant viral diseases.Here,we review these milestones and advances,including the identification of new crop-infecting viruses,dissection of pathogenic mechanisms of multiple viruses,examination of multilayered interactions among viruses,their host plants,and virus-transmitting arthropod vectors,and in-depth interrogation of plantencoded resistance and susceptibility determinants.Notably,various plant virus-based vectors have also been successfully developed for gene function studies and target gene expression in plants.We also recommend future plant virology studies in China. 展开更多
关键词 China emerging plant viruses plant virology plant resistance/susceptibility to viral infection plant-virus transmission vector interactions plant virus-based vectors viral pathogenesis
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植物病毒病媒介昆虫的传毒特性和机制研究进展 被引量:24
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作者 史晓斌 谢文 张友军 《昆虫学报》 CAS CSCD 北大核心 2012年第7期841-848,共8页
植物病毒病是农作物的"癌症",至今缺少有效的防治方法。目前已知80%的植物病毒病依赖于媒介昆虫传播,而媒介昆虫对植物病毒的传播是一个昆虫、病毒、寄主植物互作的过程,历经获毒、持毒和传毒等多个阶段,昆虫体内一系列病毒... 植物病毒病是农作物的"癌症",至今缺少有效的防治方法。目前已知80%的植物病毒病依赖于媒介昆虫传播,而媒介昆虫对植物病毒的传播是一个昆虫、病毒、寄主植物互作的过程,历经获毒、持毒和传毒等多个阶段,昆虫体内一系列病毒受体或蛋白参与了这个过程。昆虫传播病毒的方式有口针携带式、前肠保留式和体内循环式3类,它们各自对应的持久性为非持久性、半持久性和持久性,不同昆虫获取这3类病毒的获毒时间、在体内存留位置和传毒时间也各不相同。这个过程受到媒介昆虫的性别及龄期、寄主植物、环境条件、昆虫体内共生菌等多种因素的影响。与之相关的蛋白主要有病毒衣壳蛋白(CP)、次要衣壳蛋白(CPm)、GroEL蛋白、辅助因子(HC)和下颚口针蛋白等。近年来对植物病毒基因组的研究也取得了很大的进展,对昆虫传毒机制的研究正受到越来越广泛的关注。本文综述了近年来该领域内的相关研究进展,包括昆虫传播植物病毒的传毒方式、影响传毒效率的因素、传毒机制特别是昆虫体内与病毒传播可能相关的受体等。 展开更多
关键词 植物病毒 媒介昆虫 传毒 病毒受体 分子生物学 共生菌
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闽江流域福州过境段水体病毒污染调查分析 被引量:10
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作者 郑耀通 林奇英 谢联辉 《中国环境监测》 CAS CSCD 北大核心 2004年第5期39-43,共5页
自1998年11月至2000年4月,监测了闽江福州段病毒污染与水质状况。肠道病毒阳性率71 1%,平均病毒浓度5 33pfu L,植物病毒检出率32 2%,阳性率水样平均浓度0 3006枯斑 升,其中三个污染控制断面肠道内病毒阳性检出率及病毒浓度显著高于对照... 自1998年11月至2000年4月,监测了闽江福州段病毒污染与水质状况。肠道病毒阳性率71 1%,平均病毒浓度5 33pfu L,植物病毒检出率32 2%,阳性率水样平均浓度0 3006枯斑 升,其中三个污染控制断面肠道内病毒阳性检出率及病毒浓度显著高于对照和消减断面,揭示闽江福州段水环境病毒污染水平同福州市内河生活污水排放有直接关系,而引水内河冲污工程的实施显然又加剧了闽江水病毒污染的程度,增加了饮用水的卫生微生物学危险性。而水体环境中的植物病毒对农业生产存在着潜在的威胁。 展开更多
关键词 闽江水体 肠道病毒 植物病毒 病毒污染 污染监测
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花椒根腐病的发生发展规律 被引量:10
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作者 朱天辉 陈第文 《四川农业大学学报》 CSCD 1995年第3期288-291,共4页
花椒根腐病的病原菌(Fusariumsolani)的菌丝生长以25-30℃、分生孢子萌发以20-30℃为最适宜,孢子在水滴中才能很好萌发,最适pH为5.6-7.0;病菌以菌丝和分生孢子主要从伤口浸入,主要以菌丝和厚垣孢子在土壤及其病根残体上越冬,一... 花椒根腐病的病原菌(Fusariumsolani)的菌丝生长以25-30℃、分生孢子萌发以20-30℃为最适宜,孢子在水滴中才能很好萌发,最适pH为5.6-7.0;病菌以菌丝和分生孢子主要从伤口浸入,主要以菌丝和厚垣孢子在土壤及其病根残体上越冬,一般4-5月开始侵染发病,6-8月最严重,10月下旬基本停止蔓延,其发病规律呈初发期、盛发期、停止期的单峰曲线。 展开更多
关键词 发病规律 花椒 腐皮镰孢菌 病害 防治 根腐病
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用小RNA深度测序鉴定广西冬种马铃薯病毒 被引量:10
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作者 宋静静 蒙姣荣 +3 位作者 邹承武 李璞 王志强 陈保善 《中国农业科学》 CAS CSCD 北大核心 2013年第19期4075-4081,共7页
【目的】对广西冬种马铃薯病毒进行鉴定,为无病毒种薯选择和大田防治提供依据。【方法】2012年在马铃薯主要产区采集具有明显病毒病症状的样品,在血清学ELISA检测的基础上,进一步用小RNA深度测序对按症状分类的样品进行混合样本的病毒... 【目的】对广西冬种马铃薯病毒进行鉴定,为无病毒种薯选择和大田防治提供依据。【方法】2012年在马铃薯主要产区采集具有明显病毒病症状的样品,在血清学ELISA检测的基础上,进一步用小RNA深度测序对按症状分类的样品进行混合样本的病毒种类鉴定,再用RT-PCR方法对分组混合样本进行验证。【结果】在109个样本中检测到马铃薯卷叶病毒(Potato leafroll virus,PLRV)、马铃薯A病毒(Potato virus A,PVA)、马铃薯H病毒(Potato virus H,PVH)、马铃薯M病毒(Potato virus M,PVM)、马铃薯S病毒(Potato virus S,PVS)、马铃薯Y病毒(Potato virus Y,PVY)和马铃薯纺锤块茎类病毒(Potato spindle tuber viroid,PSTVd),同时发现PVS有丰富的株系分化。【结论】近年广西冬种马铃薯病毒种类增多,病症多样,亟需加强种薯管理,培育无毒健康种薯。 展开更多
关键词 小RNA高通量测序 广西 冬种马铃薯 病毒病害
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植物病毒的真菌传播及传毒介体油壶菌研究进展 被引量:3
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作者 蒋军喜 蔡祝南 《江西农业大学学报》 CAS CSCD 2003年第3期362-365,共4页
真菌传播植物病毒研究已成为植物病毒学研究的一个重要领域。扼要介绍了 40余年来 ,国内外关于植物病毒的真菌传播及传毒介体油壶菌的研究概况。
关键词 植物病毒 真菌传播 传毒介体 油壶菌
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斑点免疫测定法在植物病毒研究中的应用及技术要点 被引量:12
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作者 钱秀红 周雪平 《生物技术》 CAS CSCD 1994年第4期39-41,共3页
斑点免疫测定法(DIA)能快速、有效地检测出植物组织及种子中的病毒,且灵敏度高,不需特殊设备。本文介绍了DIA的基本方法及步骤,并重点论述了进行DIA测定的技术要点。
关键词 植物病毒 检测 斑点免疫测定
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Coat protein of Chinese wheat mosaic virus upregulates and interacts with cytosolic glyceraldehyde-3-phosphate dehydrogenase,a negative regulator of plant autophagy,to promote virus infection 被引量:6
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作者 Erbo Niu Chaozheng Ye +5 位作者 Wanying Zhao Hideki Kondo Yunfeng Wu Jianping Chen Ida Bagus Andika Liying Sun 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2022年第8期1631-1645,共15页
Autophagy is an intracellular degradation mechanism involved in antiviral defense,but the strategies employed by plant viruses to counteract autophagy-related defense remain unknown for the majority of the viruses.Her... Autophagy is an intracellular degradation mechanism involved in antiviral defense,but the strategies employed by plant viruses to counteract autophagy-related defense remain unknown for the majority of the viruses.Herein,we describe how the Chinese wheat mosaic virus(CWMV,genus Furovirus)interferes with autophagy and enhances its infection in Nicotiana benthamiana.Yeast two-hybrid screening and in vivo/in vitro assays revealed that the 19 k Da coat protein(CP19 K)of CWMV interacts with cytosolic glyceraldehyde-3-phosphate dehydrogenases(GAPCs),negative regulators of autophagy,which bind autophagy-related protein 3(ATG3),a key factor in autophagy.CP19 K also directly interacts with ATG3,possibly leading to the formation of a CP19 K–GAPC–ATG3 complex.CP19 K–GAPC interaction appeared to intensify CP19 K–ATG3 binding.Moreover,CP19 K expression upregulated GAPC gene transcripts and reduced autophagic activities.Accordingly,the silencing of GAPC genes in transgenic N.benthamiana reduced CWMV accumulation,whereas CP19 K overexpression enhanced it.Overall,our results suggest that CWMV CP19 K interferes with autophagy through the promotion and utilization of the GAPC role as a negative regulator of autophagy. 展开更多
关键词 antiviral defense AUTOPHAGY plant virus protein interaction viral coat protein
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