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对经低氧和高二氧化碳抗性筛选的赤拟谷盗品系与未筛选品系之间能量储备的比较。

Comparisons of energy reserves among strains of Tribolium castaneum selected for resistance to hypoxia and hypercarbia, and the unselected strain.

作者信息

Donahaye EJ, Navarro S

机构信息

Department of Stored Products, Agricultural Research Organization, The Volcani Center, P.O.B. 6, Bet Dagan, Israel

出版信息

J Stored Prod Res. 2000 Jul 1;36(3):223-234. doi: 10.1016/s0022-474x(99)00044-2.

Abstract

The quantities of energy reserves and their utilization were examined in adults of three strains of Tribolium castaneum (Herbst) before and during exposure to two modified atmospheres. It was shown that a strain selected for resistance to high carbon dioxide (CO(2)) content (HCC) contained significantly greater triacylglycerol (TG) reserves than a strain selected for resistance to low oxygen (O(2)) concentration (LOC) and an unselected strain. During exposure to HCC (65% CO(2), 20% O(2), balance nitrogen), the major energy sources were TGs, most of which were consumed during exposure; TG utilization by the unselected strain was more rapid than that by the HCC-selected strain. During exposure to LOC (0.5% O(2), 99.5% nitrogen), TGs were also utilized, but to a lesser extent, revealing an indication of more attenuated mobilization of energy reserves. Here, too, TG utilization by the unselected strain was more rapid than by the LOC-selected strain. The function of TGs in enabling the insects to maintain their water balance during exposure was considered.Concentrations of polysaccharides and glucose were low in all strains and although they decreased during exposure to MAs, their contribution to metabolic energy supply during exposure was small.

摘要

在暴露于两种改性气氛之前和期间,对三种赤拟谷盗(Herbst)品系的成虫的能量储备量及其利用情况进行了研究。结果表明,选择用于抵抗高二氧化碳(CO₂)含量(HCC)的品系所含的三酰甘油(TG)储备明显多于选择用于抵抗低氧(O₂)浓度(LOC)的品系和未选择的品系。在暴露于HCC(65% CO₂,20% O₂,其余为氮气)期间,主要能量来源是TG,其中大部分在暴露期间被消耗;未选择的品系对TG的利用比HCC选择品系更快。在暴露于LOC(0.5% O₂,99.5%氮气)期间,TG也被利用,但程度较小,这表明能量储备的动员更为减弱。同样,未选择的品系对TG的利用也比LOC选择品系更快。研究了TG在使昆虫在暴露期间维持水分平衡方面的作用。所有品系中的多糖和葡萄糖浓度都很低,尽管它们在暴露于改性气氛期间有所下降,但它们在暴露期间对代谢能量供应的贡献很小。

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