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Genes important for survival or reproduction in Varroa destructor identified by RNAi 被引量:3
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作者 Zachary Y.Huang Guowu Bian +1 位作者 zhiyong xi xianbing xie 《Insect Science》 SCIE CAS CSCD 2019年第1期68-75,共8页
The Varroa mite,(Varroa destructor),is the worst threat to honey bee health worldwide.To explore the possibility of using RNA interference to control this pest, we determined the effects of knocking down various genes... The Varroa mite,(Varroa destructor),is the worst threat to honey bee health worldwide.To explore the possibility of using RNA interference to control this pest, we determined the effects of knocking down various genes on Varroa mite survival and reproduction.Double-stranded RNA (dsRNA)of six candidate genes (Da,Pros26S,RpL8, RpL11,RpPO and RpS13)were synthesized and each injected into Varroa mites,then mite survival and reproduction were assessed.Injection of dsRNA for Da (Daughterless)and Pros26S (Gene for proteasome 26S subunit adenosine triphosphatase)caused a significant reduction in mite survival,with 3.57%±1.94% and 30.03%±11.43% mites surviving at 72 h post-inj ection (hpi),respectively.Control mites injected with green fluorescent protein (GFP)-dsRNA showed survival rates of 81.95%±5.03% and 82.36 ±2.81%,respectively. Injections of dsRNA for four other genes (RpL8,RpL11,RpPO and RpS13)did not affect survival significantly,enabling us to assess their effect on Varroa mite reproduction.The number of female offspring per mite was significantly reduced for mites injected with dsRNA of each of these four genes compared to their GFP-dsRNA controls.Knockdown of the target genes was verified by real-time polymerase chain reaction for two genes important for reproduction (RpL8,RpL11)and one gene important for survival (Pros26S). In conclusion,through RNA interference,we have discovered two genes important for mite survival and four genes important for mite reproduction.These genes could be explored as possible targets for the control of Varroa destructor in the future. 展开更多
关键词 APIS mellijera REPRODUCTION RNAI SURVIVAL VARROA destructor
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沃尔巴克氏菌(Wolbachia)结合放射线的应用现场清除白纹伊蚊种群
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作者 xiaoying Zheng Dongjing Zhang +37 位作者 Yongjun Li Cui Yang Yu Wu xiao Liang Yongkang Liang xiaoling Pan Linchao Hu Qiang Sun xiaohua Wang Yingyang Wei Jian Zhu Wei Qian Ziqiang Yan Andrew GParker jeremie r.l.Gilles Kostas Bourtzis Jeremy Bouyer Moxun tang Bo Zheng Jianshe Yu Julian Liu Jiajia Zhuang Zhigang Hu Meichun Zhang Juntao Gong xiaoyue Hong Zhoubing Zhang Lifeng Lin Qiyong Liu zhiyong Hu Zhongdao Wu Luke Anthony Baton Ary AHoffmann zhiyong xi 毛伟(编译) 曾琴(编译) 潘晓玲(编译) 梁国栋(审校) 《中华实验和临床病毒学杂志》 CAS CSCD 2019年第5期494-494,共1页
《自然》杂志近期发表论文介绍中国、美国、国际原子能机构和澳大利亚科学家通过合作于2014—2017年在中国广东省广州市南沙区和番禺区2个江中沙洲岛屿,开展清除白纹伊蚊即登革病毒主要传播蚊虫的现场研究。该研究结合昆虫绝育技术(ster... 《自然》杂志近期发表论文介绍中国、美国、国际原子能机构和澳大利亚科学家通过合作于2014—2017年在中国广东省广州市南沙区和番禺区2个江中沙洲岛屿,开展清除白纹伊蚊即登革病毒主要传播蚊虫的现场研究。该研究结合昆虫绝育技术(sterile insect technique,SIT),通过释放携带沃尔巴克氏菌(Wolbachia)的白纹伊蚊雄蚊,而达到靶向消灭现场野生白纹伊蚊的目的。研究结果显示,此项技术可年平均消灭现场白纹伊蚊83%~94%雌性成蚊和94%蚊卵,在部分区域实现了野生白纹伊蚊种群的灭绝。 展开更多
关键词 白纹伊蚊 国际原子能机构 登革病毒 放射线 沃尔 巴克 应用现场 WOLBACHIA
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