雷雨昊,王殿轩,赵超,徐皓琦,唐培安.大黑粉盗与赤拟谷盗和锈赤扁谷盗对磷化氢的耐受力比较研究[J].中国粮油学报,2024,39(4):9-16
大黑粉盗与赤拟谷盗和锈赤扁谷盗对磷化氢的耐受力比较研究
Tolerance research to phosphineon Cynaeus angustus (Leconte)compared with Tribolium castaneum (Herbst) and Cryptolestes ferrugineus (Stephens)
投稿时间:2023-04-07  修订日期:2023-08-03
DOI:
中文关键词:  大黑粉盗  赤拟谷盗  锈赤扁谷盗  磷化氢  耐受力  比较
英文关键词:Cynaeus angustus  Tribolium castaneum  Cryptolestes ferrugineus  phosphine  tolerant  comparison
基金项目:国家重点研发计划(2017YFC1600800)
作者单位邮编
雷雨昊 河南工业大学粮食和物资储备学院 450001
王殿轩* 河南工业大学粮食和物资储备学院 450001
赵超 河南工业大学粮食和物资储备学院 
徐皓琦 河南工业大学粮食和物资储备学院 
唐培安 江苏省现代粮食流通与安全协同创新中心 
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中文摘要:
      潜在危害的储粮害虫大黑粉盗Cynaeus angustus研究缺乏,掌握其磷化氢耐受力有助于科学治理。采用快速击倒和FAO推荐方法测定了磷化氢对大黑粉盗的KT50值和毒力方程,并与赤拟谷盗Tribolium castaneum和锈赤扁谷盗Cryptolestes ferrugineus进行了比较,测定了100、200、300、400、500 mL/m3磷化氢模拟熏蒸中3种害虫卵、幼虫、蛹和成虫不同时间的死亡率。磷化氢对大黑粉盗、赤拟谷盗和锈赤扁谷盗的KT50值分别为7、127和3 736 min,相应毒力方程斜率值b为3.67、8.28和9.94,相应LC50值为0.008、1.34和5.88 mg/L。害虫不同虫态在100~500 mL/m3浓度下的半数致死时间LT50值于大黑粉盗卵为4~2 h、幼虫4~1 h、蛹4~1 h、成虫3~1 h,于赤拟谷盗为卵12~5 d、幼虫11~5 d、蛹13~7 d、成虫10~4 d,于锈赤扁谷盗为卵28~13 d、幼虫为18~9 d,蛹26~11 d,成虫17~9 d。相应的完全致死时间(LT100)于大黑粉盗卵为21~6 h、幼虫8~3 h、蛹9~6 h、成虫5~3 h,于赤拟谷盗卵为21~18 d、幼虫21~15 d、蛹27~18 d、成虫21~12 d,于锈赤扁谷盗卵为54~30 d、幼虫42~30 d、蛹48~30 d、成虫36~25 d。所测大黑粉盗为磷化氢敏感品系,其各虫态对磷化氢的耐受力为卵>蛹>幼虫>成虫,其耐受力远小于赤拟谷盗和锈赤扁谷盗磷化氢抗性品系。
英文摘要:
      It is lacking of information on management research of larger black flour beetle, Cynaeus angustus, who are developing distribution in stored grain. Knowing the tolerance to phosphine fumigation of this insect is benefit to the scientific management. The median knock-down time (KT50) and the toxicity data of C. angustus was determined by knockdown method and resistance measurement method recommended by FAO. And which was compared with the phosphine-resistant strains of Tribolium castaneum and Cryptolestes ferrugineus correspondingly. The mortality in process and full mortality of eggs, larvae, pupae and adults for all three species were determined when phosphine concentration at 100, 200, 300, 400, and 500 mL/m3. The KT50 values of phosphine were 7, 127 and 3 736 min to C. angustus, T. castaneum, and C. ferrugineus. The slope b values in the toxicity regression equation were 3.67, 8.28, and 9.94, and the LC50 values were 0.008, 1.34, and 5.88 mg/L relatively. The LT50 values of phosphine at 100, 200, 300, 400, and 500 mL/m3 were 4~2 h for egg stage of C. angustus,4~1 h for larvae, 4~1 h for pupae, and 3~1 h for adults. LT50 values were 12~5 d for egg stage of T. castaneum, 11~5 d for the larvae, 13~7 d for the pupae, and 10~4 d for the adults. LT50 values were 28~13 d for egg stage of C. ferrugineus, 18~9 d for the larvae, 26~11 d for the pupae, and 17~9 d for the adults. The complete lethal time (LT100) values were 21~6 h for egg stage of C. angustus, 8~3 h for larvae, 9~6 h for pupae, and 5~3 h for adults. The LT100 values were 21~18 d for egg stage of T. castaneum, 21~15 d for the larvae, 27~18 d for the pupae, and 21~12 d for the adults. The LT100 values were 54~30 for egg stage of C. ferrugineus, 42~30 d for the larvae, 48~30 d for the pupae, and 36~25 d for the adults. The tested C. angustus population is a susceptible strain, and the tolerance arrangement to phosphine of different stages was egg > pupa > larvae > adult. The tolerance to phosphine of C. angustus was significantly low compared with resistant strains of T. castaneum and C. ferrugineus.
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