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首页> 外文期刊>The Journal of Experimental Biology >ENERGY SUBSTRATES FOR FLIGHT IN THE BLISTER BEETLE DECAPOTOMA LUNATA (MELOIDAE)
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ENERGY SUBSTRATES FOR FLIGHT IN THE BLISTER BEETLE DECAPOTOMA LUNATA (MELOIDAE)

机译:水泡甲虫十足目(MEL蝶科)的飞行能量基体

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We investigated the substrates for flight in the blister beetle Decapotoma lunata by (a) establishing the patterns of maximum activities of enzymes of various metabolic pathways in the Right muscles, (b) measuring the respiratorg rates of flight muscle mitochondria with various substrates and (c) determining metabolite concentrations in flight muscles and haemolymph during a flight period of up to 17 min and over a rest period of up to 2 h following 10 min of flight. Activities of enzymes involved in proline metabolism (glutamate dehydrogenase, alanine aminotransferase, malic enzyme) were much higher in the blister beetle than in the migratory locust Locusta migratoria, whereas the activity of an enzyme responsible for fatty acid oxidation (beta-hydroxyacyl-CoA dehydrogenase) was much lower. Mitochondria from flight muscles of D. lunata have a much higher capacity to oxidise proline than those from L. migratoria, The glycerophosphate shuttle, however, was equally active in both insects. Whereas lipid levels in the haemolymph did not change significantly during flight, there was a continuous decrease in proline levels from 34.8 to 6.6 mu mol ml(-1) and a simultaneous increase in alanine concentration; carbohydrate levels dropped from 20.1 to 12.2 mg ml(-1). In the thorax (flight muscles), glycogen levels were diminished between 2 and 17 min of flight from 25.9 to 6.7 mu mol glucose equivalents g-l fresh mass, Proline concentration dropped continuously from an initial 49.5 to 10.1 mu mol g(-1) fresh mass, whereas alanine levels rose concomitantly from 2.9 to 17.3 mu mol g(-1) fresh mass. After termination of a 10 min Right, pre-Right levels of proline in the haemolymph and flight muscles were only reestablished after 2 h, In contrast, glycogen levels in the thorax were restored after 1 h, Using the rates of utilisation of substrates during the first 10 min of flight to calculate rates of oxygen consumption during flight, it was shown that overall haemolymph substrates contribute 75 % and those of the flight muscles only 25 %, Although proline is an important substrate for flight in D. lunata, its role is secondary to that of carbohydrates, This type of substrate usage is different from that of the Colorado potato beetle Leptinotarsa decemlineata or the African fruit beetle Pachnoda sinuata, in which carbohydrates are of negligible or only slight importance, respectively. [References: 33]
机译:我们通过(a)建立右肌肉中各种代谢途径的酶的最大活性模式,(b)用各种底物测量飞行肌肉线粒体的呼吸速率和(c)来研究在水疱甲虫Decapotoma lunata中飞行的底物。 )在长达10分钟的飞行过程中,在长达17分钟的飞行过程中以及长达2小时的休息时间内,确定飞行肌肉和血淋巴中代谢产物的浓度。在水疱甲虫中,参与脯氨酸代谢的酶(谷氨酸脱氢酶,丙氨酸氨基转移酶,苹果酸酶)的活性远高于蝗蝗(Locusta migratoria),而负责脂肪酸氧化的酶的活性(β-羟酰基-CoA脱氢酶) )要低得多。褐飞虱飞行肌肉中的线粒体氧化脯氨酸的能力要比偏头痛乳杆菌更高。氧化甘油的穿梭梭在两种昆虫中同样活跃。在飞行过程中,血淋巴中的脂质水平没有显着变化,脯氨酸水平从34.8降至6.6 mol mol ml(-1)持续下降,同时丙氨酸浓度同时增加;碳水化合物水平从20.1降至12.2 mg ml(-1)。在胸部(飞行肌肉)中,糖原水平从25.9升至6.7μmol葡萄糖当量升至2到17分钟之间下降,脯氨酸浓度从最初的49.5 mol降到10.1 mol mol g(-1)连续下降。 ,而丙氨酸的水平从2.9上升到17.3μmol g(-1)新鲜质量。向右停止10分钟后,仅在2小时后恢复血淋巴和飞行肌肉中脯氨酸的右前水平。相反,在1小时后,胸腔中的糖原水平得以恢复。在飞行的前10分钟以计算飞行过程中的氧气消耗率,结果表明,总的血淋巴底物占75%,而飞行肌肉的底物仅占25%。尽管脯氨酸是褐飞虱飞行中的重要底物,但其作用是其次,这种底物的使用方式与科罗拉多马铃薯甲虫Leptinotarsa decemlineata或非洲水果甲虫Pachnoda sinuata的使用方式不同,其中碳水化合物的重要性可忽略不计或仅略为重要。 [参考:33]

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