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飞蝗表皮蛋白Obstructor家族基因的分子特性及基于RNAi的功能分析 被引量:9
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作者 王燕 李大琪 +4 位作者 刘晓健 李涛 马恩波 范仁俊 张建珍 《中国农业科学》 CAS CSCD 北大核心 2015年第1期73-82,共10页
【目的】获得飞蝗(Locusta migratoria)表皮蛋白Obstructor(Obst)家族基因的c DNA序列,并研究其序列特征和m RNA表达特性,探讨其生物学功能,为害虫防治提供新的分子靶标。【方法】采用生物信息学方法搜索飞蝗转录组数据库获得Obst家族基... 【目的】获得飞蝗(Locusta migratoria)表皮蛋白Obstructor(Obst)家族基因的c DNA序列,并研究其序列特征和m RNA表达特性,探讨其生物学功能,为害虫防治提供新的分子靶标。【方法】采用生物信息学方法搜索飞蝗转录组数据库获得Obst家族基因c DNA片段,并进行BLAST分析得到Obst家族基因的c DNA序列;采用RACE技术扩增该家族基因的3′c DNA序列,拼接后获得全长;Signal P在线软件分析蛋白的信号肽,SMART网站预测其功能域,并使用Mega 5.10软件中Neighbor-Joining方法,与黑腹果蝇(Drosophila melanogaster)Obst家族基因和赤拟谷盗(Tribolium castaneum)CPAP3家族基因(Obst家族基因的同源基因)氨基酸序列进行聚类分析;采用real-time quantitative PCR(q PCR)方法检测Lm Obst家族基因在5龄若虫不同组织部位和不同龄期体壁的表达情况,绘制表达图谱;采用RNA干扰(RNAi)技术探讨Lm Obsts对飞蝗发育的影响。【结果】在飞蝗转录组数据库中搜索得到8个Obst家族基因的c DNA片段,通过NCBI进行BLAST分析显示与赤拟谷盗CPAP3、黑腹果蝇Obst高度同源,属于Lm Obst家族基因片段,其中5个是全长序列,3个序列缺失3′端;采用RACE技术获得3′末端c DNA序列;将得到的8个Lm Obst家族基因全长序列进行功能域分析,发现具有Obst家族表皮蛋白的特点,即有1个信号肽与3个几丁质结合域Cht BD2;并与黑腹果蝇、赤拟谷盗同源基因进行进化树的构建,根据进化树分析结果,分别命名为Lm Obst-A1、Lm Obst-A2、Lm Obst-B、Lm Obst-C、Lm Obst-D1、Lm Obst-D2、Lm Obst-E1和Lm Obst-E2。q PCR结果显示Lm Obst-E1和Lm Obst-E2在前肠和后肠高特异性表达,Lm Obst-D1在体壁和前肠高表达,其他Lm Obsts在体壁或外胚层内陷形成的前肠和后肠高表达,在胃盲囊、中肠、马氏管和脂肪体中低表达;Lm Obst家族基因在5龄若虫不同天数体壁的表达趋势比较接近,在5龄前期高表达,中期降到最低,蜕皮前又上升到高水平。采用RNAi技术研究基因的生物学功能,5龄若虫第5天分别注射ds Lm Obst,对照组注射等量ds GFP,48 h后检测沉默效率,发现目的基因表达量显著降低;进一步观察发现,注射ds Lm Obst-E1的5龄若虫80%无蜕皮迹象,在5龄若虫状态下死亡,剩余20%若虫蜕皮延迟1—2 d,并且蜕至成虫后,16 h内全部死亡;其余注射双链的试虫普遍发生蜕皮延迟1—3 d的现象,但未发现其他可见的异常表型。【结论】获得8个飞蝗Lm Obst家族基因,所有Obst家族蛋白功能域保守,均有1个信号肽与3个几丁质结合域Cht BD2;Lm Obsts主要参与飞蝗体壁和前、后肠等外胚层发育来源组织器官的形成。Lm Obst-E1是飞蝗发育所必需的,该基因沉默可导致飞蝗死亡,其他7个Lm Obsts的沉默导致飞蝗发育延迟1-3 d,但无致死效应。 展开更多
关键词 飞蝗 表皮蛋白 Obstructor real-time QUANTITATIVE PCR RNAI
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Obstructor,a Frankliniella occidentalis protein,promotes transmission of tomato spotted wilt orthotospovirus
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作者 Xiaobin Zheng Yanran Wan +6 位作者 Min Tao Jiangjiang Yuan Kun Zhang Jing Wang Youjun Zhang Pei Liang Qingjun Wu 《Insect Science》 SCIE CAS CSCD 2023年第3期741-757,共17页
Tomato spotted wilt orthotospovirus(TSWV)causes substantial economic losses to vegetables and other crops.TSWV is mainly transmitted by thrips in a persistent and proliferative manner,and its most efficient vector is ... Tomato spotted wilt orthotospovirus(TSWV)causes substantial economic losses to vegetables and other crops.TSWV is mainly transmitted by thrips in a persistent and proliferative manner,and its most efficient vector is the western flower thrips,Frankliniella occidentalis(Pergande).In moving from the thrips midgut to the salivary glands in preparation for transmission,the virions must overcome multiple barriers.Although several proteins that interact with TSWV in thrips have been characterized,we hypothesized that additional thrips proteins interact with TSWV and facilitate its transmission.In the current study,67 F occidentalis proteins that interact with GN(a structural glycoprotein)were identified using a split-ubiquitin membrane-based yeast 2-hybrid(MbY2H)system.Three proteins,apolipoprotein-D(ApoD),orai-2-like(Orai),and obstructor-E-like isoform X2(Obst),were selected for further study based on their high abundance and interaction strength;their interactions with Gn were confirmed by MbY2H,yeastβ-galactosidase and luciferase complementation assays.The relative expressions of ApoD and Orai were significantly down-regulated but that of Obst was significantly up-regulated in viruliferous thrips.When interfering with Obst in larval stage,the TSWV acquisition rate in 3 independent experiments was significantly decreased by 26%,40%,and 35%,respectively.In addition,when Obst was silenced in adults,the virus titer was significantly decreased,and the TSWV transmission rate decreased from 66.7%to 31.9%using the leaf disk method and from 86.67%to 43.33%using the living plant method.However,the TSWV acquisition and transmission rates were not affected by interference with the ApoD or Orai gene.The results indicate that Obst may play an important role in TSWV acquisition and transmission in Frankliniella occidentalis. 展开更多
关键词 Frankliniella occidentalis obstructor tomato spotted wilt orthotospovirus TRANSMISSION virus-vector interaction
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