首页> 外文期刊>Physiological Entomology >Discontinuous gas exchange patterns of beet armyworm pupae, Spodoptera exigua (Lepidoptera: Noctuidae): effects of Bacillus thuringiensis Cry1C toxin, pupal age and temperature.
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Discontinuous gas exchange patterns of beet armyworm pupae, Spodoptera exigua (Lepidoptera: Noctuidae): effects of Bacillus thuringiensis Cry1C toxin, pupal age and temperature.

机译:甜菜夜蛾p(鳞翅目:夜蛾科)的不连续气体交换模式:苏云金芽孢杆菌Cry1C毒素,p年龄和温度的影响。

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摘要

Changes in the discontinuous gas exchange cycle of pupal beet armyworm, Spodoptera exigua (Hubner) (Lepidoptera: Noctuidae), exposed or not to Cry1C Bacillus thuringiensis toxin, are examined against developmental age (1-7 days) and at different temperatures (10-25 degrees C) using flow through respirometry. Both exposed and nonexposed pupae exhibit discontinuous gas exchange, but only at 10 degrees C; the frequency of cyclic release of CO2 increases with increasing temperatures. The three phases of the discontinuous gas exchange cycle are distinct for both treatment groups. However, the duration of each phase is significantly greater for pupae exposed previously to toxin. The closed phase is 40+or-14% longer, the flutter phase 23+or-19% longer, and the open phase is 28+or-12% longer when pupae were exposed to toxin. Respiratory water loss is 4.5+or-1.3% for toxin exposed pupae and 2.1+or-2.4% for unexposed pupae. Furthermore, the exposed pupae have significantly greater cuticular permeability (26.01+or-1.9 micro g cm-2 h-1 mmHg-1) than the nonexposed pupae (9.64+or-0.9 micro g cm-2 h-1 mmHg-1). However, in both strains, cuticular transpiration (>93%) far exceeds respiratory transpiration. Overall, total water loss is significantly greater in pupae whose larvae are exposed to toxin compared with pupae from nontreated larvae. Toxin exposed pupae have a mean cycle duration of 60+or-2.5 min whereas that of nonexposed pupae is 42+or-1.8 min. VCO2 (ml g-1 h-1) of the open phase is greater earlier in pupal life followed by a minimum at mid-pupal stage and an increase at late-pupal development in both treatment groups. Combining all 7 days, closed, flutter and open phase VCO2 (ml g-1 h-1), pupae exposed to toxin produce significantly more CO2 during each phase. On average, toxin exposed pupae produce 52+or-12, 43+or-10 and 15+or-37% more CO2 than the untreated pupae during the closed, flutter and open phases, respectively. Therefore, the present study reinforces the need to use insects of similar developmental age in studies of insect respiration patterns and energy metabolism..
机译:在发育年龄(1-7天)和不同温度(10-10℃)下,检查了未暴露于Cry1C苏云金芽孢杆菌毒素的小甜菜夜蛾夜蛾(间夜蛾)(鳞翅目:夜蛾科)的不连续气体交换周期的变化。 25摄氏度),使用通过呼吸测定法的流量。暴露的和未暴露的p都表现出不连续的气体交换,但仅在10摄氏度时;随着温度的升高,二氧化碳的循环释放频率增加。对于两个治疗组,不连续气体交换循环的三个阶段是不同的。但是,对于以前暴露于毒素的p,每个阶段的持续时间都明显更长。当p接触毒素时,封闭相的时间长40+或-14%,扑动相的时间长23+或-19%,开放相的时间长28+或-12%。暴露于毒素的up的呼吸失水为4.5+或-1.3%,未暴露的p的呼吸失水为2.1+或-2.4%。此外,暴露的p具有比未暴露的up(9.64+或-0.9 micro g cm-2 h-1 mmHg-1)显着更大的表皮渗透性(26.01+或-1.9 microg cm-2 h-1 mmHg-1)。 。但是,在这两种菌株中,表皮蒸腾作用(> 93%)都远远超过了呼吸蒸腾作用。总体而言,与未处理幼虫的p相比,幼虫接触毒素的p的总失水量明显更大。接触毒素的xin的平均循环持续时间为60+或-2.5分钟,而未接触毒素的p的平均循环持续时间为42 +或-1.8分钟。在两个治疗组中,开放期的VCO2(ml g-1 h-1)在p寿命中更早,随后在pu中期阶段最小,而在late后期发育时增加。封闭,扑动和开放相的VCO2(ml g-1 h-1)共7天,暴露于毒素的p在每个相中都会产生更多的CO2。平均而言,在封闭,颤动和开放阶段,暴露于毒素的p比未处理的up分别产生52+或12、43+或10和15+或-37%的CO2。因此,本研究加强了在昆虫呼吸模式和能量代谢研究中使用发育年龄相近的昆虫的需要。

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