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Impact of Elevated CO2 on Tobacco Caterpillar Spodoptera litura on Peanut Arachis hypogea

机译:二氧化碳浓度升高对花生毛虫斜纹夜蛾对花生花生的影响

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摘要

If the carbon dioxide (CO2) concentration in the atmosphere changes in the future, as predicted, it could influence crops and insect pests. The growth and development of the tobacco caterpillar, Spodoptera litura (Fabricius) (Noctuidae: Lepidoptera), reared on peanut (Arachis hypogea L.) foliage grown under elevated CO2 (550 ppm and 700 ppm) concentrations in open top chambers at Central Research Institute for Dryland Agriculture, Hyderabad, India, were examined in this study. Significantly lower leaf nitrogen, higher carbon, higher relative proportion of carbon to nitrogen and higher polyphenols content expressed in terms of tannic acid equivalents were observed in the peanut foliage grown under elevated CO2 levels. Substantial influence of elevated CO2 on S. litura was noticed, such as longer larval duration, higher larval weights, and increased consumption of peanut foliage by S. litura larvae under elevated CO2 compared with ambient CO2. Relative consumption rate was significantly higher for S. litura larva fed plants grown at 550 and 700 ppm than for larvae fed plants grown at ambient condition. Decreased efficiency of conversion of ingested food, decreased efficiency of conversion of digested food, and decreased relative growth rate of larvae was observed under elevated CO2. The present results indicate that elevated CO2 levels altered the quality of the peanut foliage, resulting in higher consumption, lower digestive efficiency, slower growth, and longer time to pupation (one day more than ambient).
机译:如果如预期的那样,如果将来大气中的二氧化碳浓度发生变化,它将影响农作物和害虫。在中央研究所的开放式顶棚中,在升高的CO2(550 ppm和700 ppm)浓度下生长于花生(Arachis hypogea L.)叶片上的烟草毛毛虫斜纹夜蛾(Fabodius)(Noctuidae:Lepidoptera)的生长和发育。这项研究对印度海得拉巴的旱地农业进行了研究。在CO2浓度升高的条件下生长的花生叶片中,观察到较低的叶氮,较高的碳,较高的碳氮相对比例和较高的以单宁酸当量表示的多酚含量。与环境CO2相比,CO2升高对斜纹夜蛾产生了实质性影响,例如更长的幼虫持续时间,较高的幼虫体重以及在升高的CO2下斜纹夜蛾幼虫的花生叶片消耗量增加。 550和700 ppm的S. litura幼虫摄食植物的相对消耗率比在环境条件下生长的幼虫摄食植物的相对消耗率显着更高。在CO2升高的情况下,观察到消化食品转化效率降低,消化食品转化效率降低和幼虫相对生长速率降低。目前的结果表明,升高的CO2水平改变了花生叶片的质量,导致更高的消耗量,更低的消化效率,更慢的生长和更长的化粪时间(比环境多一天)。

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