新型杀虫剂唑氟虫胺对意大利蜜蜂的毒性效应

    The toxic effects of new insecticide isoflualanam on Apis mellifera

    • 摘要: 为评估新型杀虫剂噁唑氟虫胺对蜜蜂的毒性风险,通过室内生物测定研究了95%噁唑氟虫胺原药(TC)及其6种制剂对意大利蜜蜂成蜂和幼虫的毒性,并比较了结构相似的双酰胺类药剂100 g/L溴虫氟苯双酰胺悬浮剂(SC)和97%溴氰虫酰胺TC的毒性。结果表明:95%噁唑氟虫胺TC对蜜蜂成蜂的急性毒性低于100 g/L溴虫氟苯双酰胺SC和97%溴氰虫酰胺TC,毒性降低2.6~100倍;100 g/L噁唑氟虫胺微囊悬浮剂(CS)对蜜蜂成蜂的急性毒性均显著低于其30 g/L乳油(EC)和微乳剂(ME),以聚氨酯为囊材的微囊悬浮剂对蜜蜂成蜂的毒性均低于以聚脲为囊材的,分别是聚脲囊材的3.2~100倍,且存在显著性差异(P < 0.05)。95%噁唑氟虫胺TC对蜜蜂幼虫急性毒性低于100 g/L溴虫氟苯双酰胺SC和97%溴氰虫酰胺TC,95%噁唑氟虫胺TC对幼虫慢性毒性与97%溴氰虫酰胺TC相当,无可见效应剂量(NOED)大于100 g/L溴虫氟苯双酰胺SC;100 g/L噁唑氟虫胺微囊悬浮剂(CS)对蜜蜂幼虫的急性和慢性毒性均显著低于其EC和ME。聚氨酯、聚脲微囊悬浮剂2 µm粒径毒性比50 µm的高出3.4~36倍。但二者对蜜蜂成蜂的急性毒性结果不一致。上述研究结果表明,新型异噁唑啉类杀虫剂噁唑氟虫胺对蜜蜂的安全性整体上优于溴虫氟苯双酰胺和溴氰虫酰胺;通过将噁唑氟虫胺加工成微囊悬浮剂并选择安全性较高的微囊囊壁材料可以进一步提升其对蜜蜂的安全性。

       

      Abstract: The toxicity risk of the new insecticide isoflualanam to Apis mellifera adults and larvae was evaluated in the laboratory using 95% technical material (TC) and its six formulations. Its toxicity was compared with two structurally similar diamide insecticides, broflanilide 100 g/L suspension concentrate (SC) and cyantraniliprole 97% TC. The results of the acute toxicity test on adult honey bees indicated that the acute toxicity of 95% isoflualanam TC was lower than that of broflanilide 100 g/L SC and cyantraniliprole 97% TC, with toxicity reductions by a factor of 2.6 to 100. The acute toxicity of isoflualanam 100 g/L capsule suspension (CS) to adults and larvae of bees was significantly lower than that of 30 g/L emulsifiable concentrate (EC) and microemulsion (ME). The toxicity of polyurethane microcapsule suspension to bee adults was 3.2 to 100 times lower than that of polyurea (P < 0.05). In the larval toxicity assays, the results show that the acute toxicity of isoflualanam 95% TC to larvae was lower than that of broflanilide 100 g/L SC and cyantraniliprole 97% TC. The chronic toxicity of isoflualanam 95% TC to larvae was comparable to that of cyantraniliprole 97% TC, and its no-observed-effect dose (NOED) was higher than that of broflanilide 100 g/L SC. Both the acute and chronic toxicities of isoflualanam 100 g/L CS to larvae are significantly lower than those of its EC and ME formulations. Regarding capsule materials, polyurethane and polyurea CS with a 2 µm particle size exhibited higher toxicity to honeybee larvae than those with a particle size of 50 µm, ranging from 3.4 to 36 times higher. However, no consistent toxicity trend was observed for acute toxicity in adult bees. The results indicate that the novel isoxazoline insecticide, isoflualanam, exhibits a superior safety profile for honeybees compared to broflanilide and cyantraniliprole. The safety of isoflualanam to honeybees can be further improved by formulating it as a microcapsule suspension and selecting a capsule wall material with higher safety.

       

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