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植物病毒--致病机制与病害调控(精)
0.00     定价 ¥ 198.00
图书来源: 浙江图书馆(由浙江新华配书)
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  • 配送范围:
    浙江省内
  • ISBN:
    9787533566005
  • 作      者:
    作者:谢联辉//吴祖建//魏太云|责编:刘宜学//谢娟梅
  • 出 版 社 :
    福建科学技术出版社
  • 出版日期:
    2022-04-01
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内容介绍
本书汇集了福建农林大学植物病毒研究所2009年以来有关植物病毒研究的部分论文。内容为第一部分植物的病毒侵染与致病机制,这部分着重研究了我国较为重要的几种水稻病毒编码蛋白的功能特性,以及病毒在植物寄主和昆虫介体内侵染过程中的调控与致病机制。第二部分病毒遗传与进化分析,这部分着重分析了马铃薯Y病毒、水稻条纹病毒等几种植物病毒在我国的遗传多样性与群体结构特征,对病毒分子变异与病害流行的驱动因素作了比较深入的分析和探讨。另外,发现了不同病毒分离物间存在重组以及共侵染同株寄主植物的现象。第三部分病毒检测(鉴定)与流行调控,这部分通过症状观察、生物学鉴定、分子检测、血清学检测、电镜观察等手段监测和鉴定了我国几种植物病毒病的发生情况和致病性特征。另外,从田间观测数据以及生态学角度总结了植物病毒以及其他病原物引起的病害发生与流行的特征,从可持续性植物病害防控的角度作了深入探讨和建议。第四部分寄主抗性与天然产物等的科研成果,这部分围绕“抗、避、除、治”的植物病毒防控四字原则中的抗性和治疗这两个方面内容,深入研究植物自身的抗性基因对于病毒病的防控,同时探索利用自然界中可诱导植物抗性以及对植物病毒侵染具有不同程度抑制作用的天然产物。这种抗病毒方式有较广阔的应用前景。在此基础上,通过对不同作物品种进行抗性评价,对兼具高产量、高品质和高抗性的优良品种筛选进行了初步探索。
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目录
Ⅰ 病毒侵染与致病机制
水稻条纹病毒与水稻互作中的生长素调控
Pc4, a putative movement protein of Rice stripe virus, interacts with a type I DnaJ protein and a small Hsp of rice
水稻条纹病毒胁迫下灰飞虱基因的差异表达
水稻条纹病毒NS3蛋白与水稻3-磷酸甘油醛脱氢酶(GAPDH)间的互作
水稻矮缩病毒对3种内源激素含量及代谢相关基因转录水平的影响
Rice ragged stunt virus segment S6-encoded nonstructural protein Pns6 complements cell-to
cell movement of Tobacco mosaic virus-based chimeric virus
Identification of Pns6, a putative movement protein of RRSV, as a silencing suppressor
水稻条纹病毒外壳蛋白叶绿体离体跨膜运输研究
水稻条纹病毒胁迫下的水稻蛋白质组学
p2 of Rice stripe virus (RSV) interacts with OsSGS3 and is a silencing suppressor
Movement Protein Pns6 of Rice dwarf phytoreovirus Has Both ATPase and RNA Binding Activities
The P7-1 protein of southern rice black-streaked dwarf virus, a fijivirus, induces the formation of
tubular structures in insect cells
Identification of Pns12 as the second silencing suppressor of Rice gall dwarf virus
The early secretory pathway and an actin-myosin VIII motility system are required for
plasmodesmatal localization of the NSvc4 protein of Rice stripe virus
Tubular structure induced by a plant virus facilitates viral spread in its vector insect
Assembly of the viroplasm by viral non-structural protein Pns10 is essential for persistent infection
of rice ragged stunt virus in its insect vector
Development of an insect vector cell culture and RNA interference system to investigate the
functional role of fijivirus replication protein
NSvc4和CP蛋白与水稻条纹病毒的致病相关
Identification and characterization of the interaction between viroplasm-associated proteins from
two different plant-infecting reoviruses and eEF-1A of rice
水稻黑条矮缩病毒在灰飞虱消化系统的侵染和扩散过程
干扰水稻瘤矮病毒(RGDV)非结构蛋白(Pns12)的表达抑制病毒在介体昆虫培养细胞内的复制
Transcriptome profiling confirmed correlations between symptoms and transcriptional changes
in RDV infected rice and revealed nucleolus as a possible target of RDV manipulation
Infection route of rice grassy stunt virus a tenuivirus in the body of its brown planthopper vector
Nilaparvata lugens (Hemiptera: Delphacidae) after ingestion of virus
干扰水稻矮缩病毒(RDV)非结构蛋白Pns11的表达可抑制病毒在介体黑尾叶蝉内的复制
水稻矮缩病毒非结构蛋白Pns6在病毒复制中的功能
Nonstructural protein Pns4 of rice dwarf virus is essential for viral infection in its insect vector
Nonstructural protein Pns12 of rice dwarf virus is a principal regulator for viral replication and
infection in its insect vector
Interaction between non-structural protein Pns10 of rice dwarf virus and cytoplasmic actin of
leafhoppers is correlated with insect vector specificity
Rice stripe tenuivirus p2 may recruit or manipulate nucleolar functions through an interaction
with fibrillarin to promote virus systemic movement
Assembly of viroplasms by viral nonstructural protein Pns9 is essential for persistent infection of
rice gall dwarf virus in its insect vector
Characterisation of siRNAs derived from new isolates of bamboo mosaic virus and their
associated satellites in infected ma bamboo (Dendrocalamus latiflorus)
Translation initiation factor eIF4E and eIFiso4E are both required for peanut stripe virus infection
in peanut (Arachis hypogaea L
Rice stripe virus NS3 protein regulates primary miRNA processing through association with the
miRNA biogenesis factor OsDRB1 and facilitates virus infection in rice
Cleavage of the Babuvirus movement protein B4 into functional peptides capable of host factor
conjugation is required for virulence
Co-opting the fermentation pathway for tombusvirus replication: Compartmentalization of cellular
metabolic pathways for rapid ATP generation
An engineered mutant of a host phospholipid synthesis gene inhibits
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