U. S. Department of Agriculture, Agricultural Research Service, Biological Control of Pests Research Unit, 59 Lee Road, Stoneville, MS 38776,
J Insect Physiol. 2012 Mar;58(3):391-6. doi: 10.1016/j.jinsphys.2011.12.014. Epub 2011 Dec 29.
The prospects for development of highly specific pesticides based on double stranded ribonucleic acid have been a recent focus of scientific research. Creative applications have been proposed and demonstrated. However, not all insects are sensitive to double stranded RNA (dsRNA) gene knockdown effects; applications in the order Lepidoptera, for example, have met with varied success. Gene knockdown has been demonstrated in several species in the order Hemiptera. In our laboratory, knockdown experiments relied on microinjection of dsRNA into the hemocoel of the tarnished plant bug, Lygus lineolaris. Subsequent experiments delivering dsRNA to insects by feeding were repeatedly unsuccessful in demonstrating knockdown, and a hypothesis was formulated that the dsRNA was digested and degraded by the insect prior to contact with the insect cells. Exposure of dsRNA to insect saliva, insect salivary glands, and insect hemolymph was compared with commercial RNAase III. The saliva of L. lineolaris was found to rapidly digest double stranded RNA. RNAase inhibitor did not affect the activity but heat treatment slowed enzymatic activity.
基于双链核糖核酸的高特异性杀虫剂的发展前景是最近科学研究的重点。已经提出并证明了创造性的应用。然而,并非所有昆虫对双链 RNA(dsRNA)基因敲低效应都敏感;例如,在鳞翅目昆虫中的应用取得了不同程度的成功。在半翅目昆虫的几个物种中已经证明了基因敲低。在我们的实验室中,dsRNA 的基因敲低实验依赖于将 dsRNA 微注射到变色盲蝽的血腔中。通过喂食将 dsRNA 递送到昆虫的后续实验一再未能证明敲低,并且提出了一个假设,即 dsRNA 在与昆虫细胞接触之前被昆虫消化和降解。将 dsRNA 暴露于昆虫唾液、昆虫唾液腺和昆虫血液与商业 RNAase III 进行了比较。发现变色盲蝽的唾液能迅速消化双链 RNA。RNAase 抑制剂对其活性没有影响,但热处理会减缓酶的活性。