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首页> 外文期刊>Bulletin of Entomological Research >Temperature-dependent development of Helicoverpa armigera (Hübner) (Lepidoptera: Noctuidae) and its larval parasitoid, Habrobracon hebetor (Say) (Hymenoptera: Braconidae): implications for species interactions
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Temperature-dependent development of Helicoverpa armigera (Hübner) (Lepidoptera: Noctuidae) and its larval parasitoid, Habrobracon hebetor (Say) (Hymenoptera: Braconidae): implications for species interactions

机译:Helicoverpa Armigera(Hübnera)(鳞翅目)(Lepidoptera:Noctuidae)及其Larval Parasitoid,Hebrobracon Hebetor(Hymenoptera:Braconidae)的温度依赖性发育(Sationala:Braconidae):对物种相互作用的影响

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Habrobracon hebetor (Say) is a parasitoid of various Lepidoptera including Helicoverpa armigera (Hübner), a key pest of different crops and vegetables. The development of both H. armigera and H. hebetor were simultaneously evaluated against a wide range of constant temperatures (10, 15, 17.5, 20, 25, 27.5, 30, 35, 37.5 and 40 °C). Helicoverpa armigera completed its development from egg to adult within a temperature range of 17.5–37.5 °C and H. hebetor completed its life cycle from egg to adult within a temperature range of 15–40 °C. Based on the Ikemoto and Takai model the developmental threshold (To) and thermal constant (K) to complete the immature stages, of H. armigera were calculated as 11.6 °C and 513.6 DD, respectively, and 13 °C and 148 DD, respectively, for H. hebetor. Analytis/Briere-2 and Analytis/Briere-1 were adjudged the best non-linear models for prediction of phenology of H. armigera and H. hebetor, respectively and enabled estimation of the optimum (Topt) and maximum temperature (Tmax) for development with values of 34.8, 38.7, 36.3, and 43 °C for host and the parasitoid, respectively. Parasitisation by H. hebetor was maximal at 25 °C but occurred even at 40 °C. This study suggests although high temperature is limiting to insects, our estimates of the upper thermal limits for both species are higher than previously estimated. Some biological control of H. armigera by H. hebetor may persist in tropical areas, even with increasing temperatures due to climate change.
机译:Habrobracon Hebetor(例如)是各种鳞翅目的寄生虫,包括Helicoverpa Armigera(Hübner),不同作物和蔬菜的关键虫害。同时针对恒定温度(10,15,17.5,20,25,27.5,30,35,37.5和40°C的恒定温度同时评估H. Armigera和H.Habeter的开发。 Helicoverpa Armigera在17.5-37.5°C和H的温度范围内完成其从鸡蛋到成人的发展。Hebetor在15-40°C的温度范围内完成了从鸡蛋到成人的生命周期。基于Ikemoto和Takai模型的发育阈值(至)和热常数(k),分别计算为11.6°C和513.6dd,分别为11.6°C和513.6dd,分别为13°C和148 dd ,为H. Hebetor。分析分析/ Briere-2和分析/ Briere-1分别判断了H. Armigera和H. Hebetor的候选的最佳非线性模型,并使Hebetor的验证能够估计最佳(FOPT)和最高温度(TMAX)进行开发对于34.8,38.7,36.3和43℃的值,分别用于宿主和寄生素。 H. Hebetor的已腐烂剂在25°C时最大化,但即使在40°C下也会发生。本研究表明,尽管高温对昆虫限制,但我们对两个物种的上热限值的估计高于先前估计。 H. Hebetor H. Armigera的一些生物控制可能在热带地区持续存在,即使由于气候变化而增加的温度。

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