Madhu T N, Saneera E K, Pandian R Thava Prakasha, Sujithra M, Bhavishya A, Nagaraja N R, Elain Apshara S, Josephrajkumar A, Rajesh M K
ICAR-Central Plantation Crops Research Institute.
J Pestic Sci. 2024 Nov 20;49(4):285-291. doi: 10.1584/jpestics.D24-028.
The insecticide susceptibility of Waterhouse (Hemiptera: Miridae) is being evaluated using shoot and glass-vial assay as described by IRAC. However, the reliability of the assay depends on feeding preference and contact toxicity. Hence, the cocoa pod was used as a substrate to test the susceptibility of in comparison with existing methods. The experimental results revealed that the LC value of all of the insecticides was relatively lower in the pod bioassay than the other two methods and exhibited maximum mortality within 6 hr of post-exposure. Among insecticides, fipronil was the most effective molecule followed by lambda-cyhalothrin. , which prefers to feed on a pod due to more tissue turgidity, thus facilitated adequate sap ingestion; whereas, these were limited in shoot and glass-vial bioassays. Therefore, it could be used as a methodology to determine the susceptibility of against a wide range of insecticide molecules.
目前正在按照IRAC所述,采用嫩梢和玻璃瓶试验法评估水屋盲蝽(半翅目:盲蝽科)对杀虫剂的敏感性。然而,该试验的可靠性取决于取食偏好和接触毒性。因此,与现有方法相比,使用可可豆荚作为基质来测试其敏感性。实验结果表明,在豆荚生物测定中,所有杀虫剂的LC值相对低于其他两种方法,并且在接触后6小时内表现出最高死亡率。在杀虫剂中,氟虫腈是最有效的分子,其次是高效氯氟氰菊酯。[该虫]由于豆荚组织更具膨压而更喜欢取食豆荚,从而便于充分摄取汁液;而在嫩梢和玻璃瓶生物测定中则受到限制。因此,它可以用作确定[该虫]对多种杀虫剂分子敏感性的一种方法。