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Effects of hypoxia/hypercapnia on the metablism of Callosobruchus chinensis (L.) larvae

机译:缺氧/血管腺炎对愈伤组织(L.)幼虫新陈代谢的影响

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Insects that are pests of stored products are highly tolerant to low O-2 levels (hypoxia) and high carbon dioxide levels (hypercapnia) for long periods, but the underlying mechanism remains unclear. In the present study, we investigated the metabolic profiles of Callosobruchus chinensis (L.) larvae held under 2% O-2+18% CO2 (both v/v) for 24, 48, and 96 h using gas chromatography time-of-flight mass spectrometry (GC-TOF-MS), their corresponding control groups under normoxia were also investigated simultaneously. We found that the relative quantity of 91, 24, and 48 metabolites were altered at these three time periods, respectively. The metabolites were principally carbohydrates, organic acids, amino acids, and free fatty acids, 30 of these metabolites with high accuracy of qualitative identification and biological functions were chosen for further analyses. These were intermediates of the citric acid cycle, glycolysis, fatty acid synthesis, and amino acid metabolism. Based on our results, levels of organic acids increased, while levels of amino acids decreased, suggesting that metabolism was shifting from aerobic to anaerobic. Lipid metabolism may be relatively less important; the number of fatty acids exhibiting significant changes in level was quite small. The metabolic profiles changed dynamically over time, with the largest changes evident for 24 h of hypoxia/hypercapnia, followed by 96 h, and only a little change has been shown on 48 has revealed by heatmap and pathway topological analysis. Therefore, we present direct evidence that the metabolism of insect pests of stored products is influenced by complex environmental stressors. (C) 2019 Elsevier Ltd. All rights reserved.
机译:储存产物的昆虫的昆虫对于长时间的低O-2水平(缺氧)和高二氧化碳水平(Hypercapnia)具有高度耐受性,但下面的机制仍不清楚。在本研究中,我们研究了24,48和96小时在2%O-2 + 18%CO 2(V / V)下保持的Callosobruchus Chinensis(L.)幼虫的代谢谱。使用气相色谱时间 - 飞行质谱(GC-TOF-MS),同时研究了常氧的相应对照组。我们发现在这三个时间段分别改变了91,24和48代谢物的相对量。代谢物主要是碳水化合物,有机酸,氨基酸和游离脂肪酸,其中30种代谢物具有高精度的定性鉴定和生物学功能,以进一步分析。这些是柠檬酸循环,糖酵解,脂肪酸合成和氨基酸代谢的中间体。基于我们的结果,有机酸的水平增加,而氨基酸水平降低,表明代谢从有氧血管转移到厌氧。脂质代谢可能相对不太重要;表现出显着变化的水平变化的脂肪酸数量非常小。代谢谱随时间动态变化,具有最大的缺氧/高曲线血症的变化明显,其次是96小时,并仅显示了48次通过热爱和途径拓扑分析显示了一点变化。因此,我们展示了直接证据表明储存产品的昆虫的代谢受到复杂的环境压力源的影响。 (c)2019年elestvier有限公司保留所有权利。

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