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飞行燃料与神经肽对嫩枝枯萎虫(Holopterna alata,半翅目,缘蝽科)中燃料动员的控制

Flight fuel and neuropeptidergic control of fuel mobilisation in the twig wilter, Holopterna alata (Hemiptera, Coreidae).

作者信息

Gäde Gerd, Auerswald Lutz, Marco Heather G

机构信息

Zoology Department, University of Cape Town, ZA-7701 Rondebosch, South Africa.

出版信息

J Insect Physiol. 2006 Nov-Dec;52(11-12):1171-81. doi: 10.1016/j.jinsphys.2006.08.005. Epub 2006 Sep 22.

Abstract

The corpus cardiacum of the twig wilter Holopterna alata contains a factor that elicits increases in the concentration of lipids in the haemolymph of twig wilters and migratory locusts and causes hypertrehalosaemia in American cockroaches. A hyperlipaemic neuropeptide was isolated from corpora cardiaca of H. alata in a single high-performance liquid chromatography step. The primary sequence of this peptide was assigned by matrix-assisted laser desorption/ionisation time-of-flight mass spectrometry, biological assay and co-elution with the synthetic peptide. The adipokinetic peptide of H. alata is an octapeptide with the sequence pGlu-Leu-Asn-Phe-Ser-Thr-Gly-Trp amide denoted Schgr-AKH-II which was sequenced previously from the corpora cardiaca of a number of Caelifera, Ensifera and some Hymenoptera. A dose of 1pmol of synthetic Schgr-AKH-II causes a pronounced hyperlipaemic effect in the twig wilter. Physiological experiments with the twig wilter reveal that during flight periods of 3 min, the normally low carbohydrate concentration in the haemolymph is significantly diminished, whereas the lipid concentration stays constant in most cases. During a subsequent rest period of 60 min after a 3 min flight episode, however, the concentration of lipids in the haemolymph increases substantially and significantly, indicating that lipids, too, are a major fuel during flight of twig wilters. This is corroborated by the activation of the enzyme triacylglycerol (TAG) lipase in the fat body, but not in the flight muscles, by injection of 5 pmol of synthetic Schgr-AKH-II, the endogenous adipokinetic hormone that is thought to be released during flight. Moreover, in the thorax there is a significant decrease in the concentration of glycogen and lipids measured after flight plus 60 min of rest compared to non-flown twig wilters, whereas no significant changes were monitored for these substrates stored in the abdomen. When the change in lipid class composition was analysed during flight plus 60 min of rest, TAG which comprised the major class in all compartments analysed (thorax, abdomen, haemolymph) was significantly reduced in abdomen and thorax, and diacylglycerol was significantly increased in all three compartments. From all the data collected, it is concluded that lipids are the major fuel class for flight in H. alata and that the contribution of carbohydrates is minimal.

摘要

细枝枯萎蛾(Holopterna alata)的心侧体含有一种因子,能使细枝枯萎蛾和飞蝗血淋巴中的脂质浓度升高,并导致美洲蟑螂出现高海藻糖血症。在一次高效液相色谱步骤中,从细枝枯萎蛾的心侧体中分离出一种高脂血症神经肽。通过基质辅助激光解吸/电离飞行时间质谱、生物测定以及与合成肽的共洗脱,确定了该肽的一级序列。细枝枯萎蛾的脂肪动素肽是一种八肽,序列为pGlu-Leu-Asn-Phe-Ser-Thr-Gly-Trp酰胺,记为Schgr-AKH-II,此前已从一些蝗亚目、螽亚目和一些膜翅目的心侧体中测序得到。1皮摩尔的合成Schgr-AKH-II剂量会在细枝枯萎蛾中引起明显的高脂血症效应。对细枝枯萎蛾进行的生理学实验表明,在3分钟的飞行期间,血淋巴中通常较低的碳水化合物浓度会显著降低,而脂质浓度在大多数情况下保持不变。然而,在3分钟飞行阶段后的60分钟后续休息期间,血淋巴中的脂质浓度会大幅且显著增加,这表明脂质也是细枝枯萎蛾飞行期间的主要燃料。通过注射5皮摩尔合成Schgr-AKH-II(被认为在飞行期间释放的内源性脂肪动素)激活脂肪体中的三酰甘油(TAG)脂肪酶,但不激活飞行肌肉中的该酶,这一点得到了证实。此外,与未飞行的细枝枯萎蛾相比,在飞行加60分钟休息后测量的胸部糖原和脂质浓度显著降低,而腹部储存的这些底物没有监测到显著变化。当在飞行加60分钟休息期间分析脂质类别组成的变化时,在所有分析的隔室(胸部、腹部、血淋巴)中占主要类别的TAG在腹部和胸部显著减少,但甘油二酯在所有三个隔室中均显著增加。根据收集到的所有数据得出结论:脂质是细枝枯萎蛾飞行的主要燃料类别,而碳水化合物的贡献最小。

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