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首页> 外文期刊>Frontiers in Physiology >Enhancing RNAi Efficiency to Decipher the Functional Response of Potential Genes in Bemisia tabaci AsiaII-1 (Gennadius) Through dsRNA Feeding Assays
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Enhancing RNAi Efficiency to Decipher the Functional Response of Potential Genes in Bemisia tabaci AsiaII-1 (Gennadius) Through dsRNA Feeding Assays

机译:通过DSRNA饲养测定,增强RNAi效率解码<斜体> Bemisia tabaci AsiaII-1(Gennadius)中的潜在基因的功能响应

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Whitefly Bemisia tabaci is a global invasive pest that causes substantial losses to agricultural crops worldwide either by direct feeding or vectoring numerous plant viruses. Management with insecticides remains a big challenge due to its rapid resistance development potential as well as the impact of these chemicals on non-target organisms. Thus, in search of alternate and novel pest management strategies RNA interference (RNAi) has come up as potential future tool in this direction. The present study targets nine potential genes (Aquaporin ( AQP ), Calcitonin ( CAL ), CyclophilinB ( CYCP ), Knottin-1 ( k-1 ), Heat shock proteins ( Hsp20 , Hsp40 and Hsp70 ), SWItch/Sucrose Non-fermentable ( SNF7 ) and inhibitor of apoptosis ( IAP ) of whitefly that have been implicated to play a role in various vital physiological functions and virus transmission. The RNAi mediated knockdown efficiency of these genes has been improved through the conjugation of respective target gene dsRNA with CQD (carbon quantum dots) nanoparticles or simultaneous knockdown of dsRNA specific gut nucleases. The studies revealed that feeding of dsRNA (40 μg/ml sucrose diet) of the target gene(s) either conjugated with CQD or along with dsRNA against dsRNase (dsdsRNase) (40 μg/ml sucrose diet) enhanced the RNAi efficiency by 24–89% compared to whiteflies fed with naked dsRNA of the same target gene. The studies provide insights about the functional role of various genes in whitefly, which can possibly be exploited for the management of this pest in the future.
机译:粉虱Bemisia Tabaci是一种全球侵入性害虫,通过直接喂养或植物病毒直接喂养或载体来导致全世界的农作物造成大量损失。由于其快速的抗性发展潜力以及这些化学品对非靶毒性生物的影响,杀虫剂的管理仍然是一个很大的挑战。因此,寻找替代和新的害虫管理策略RNA干扰(RNAi)在这个方向上提出了潜在的未来工具。本研究靶向九个潜在基因(Aquaporin(AQP),降钙素(CAL),Cyclophilinb(Cycp),Choottin-1(K-1),热休克蛋白(Hsp20,Hsp40和Hsp70),开关/蔗糖不发酵(粉虱的SNF7)和胰腺炎凋亡抑制剂(IAP)含有牵连以在各种重要的生理功能和病毒传播中发挥作用。通过将各种靶基因DSRNA与CQD的共轭改善了这些基因的RNAi介导的敲低效率(碳量子点)纳米颗粒或DsRNA特异性肠道核酸酶的同时敲低。揭示了靶基因的饲喂DsRNA(40μg/ ml蔗糖饮食)与CQD缀合或与Dsrnase(DSDSrnase)共轭或与DSRNA一起喂养与含有相同靶基因的裸蝇喂养的粉虱相比,40μg/ ml蔗糖饮食增强了24-89%的效率。该研究提供了关于粉虱各种基因的功能作用的见解在未来的害虫中剥削了LY。

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