Łopieńska-Biernat E, Żółtowska K, Zaobidna E A, Dmitryjuk M, Bąk B
1Department of Biochemistry, Faculty of Biology and Biotechnology, University Warmia and Mazury in Olsztyn, Oczapowskiego 1A, 10-719 Olsztyn, Poland.
2Department of Apiculture, Faculty of Animal Bioengineering, University Warmia and Mazury in Olsztyn, Słoneczna 48, 10-957 Olsztyn, Poland.
Insectes Soc. 2018;65(4):571-580. doi: 10.1007/s00040-018-0648-1. Epub 2018 Jul 13.
Glycogen and trehalose are important sources of energy in insects. The expression of genes encoding the key metabolic enzymes-glycogen synthase (GS), glycogen phosphorylase (GP), trehalose-6-phosphate synthase (TPS-1), soluble trehalase (Tre-1) and membrane-bound trehalase (Tre-2)-was analyzed in 12 developmental stages of worker brood. The content of GS and GP proteins, TPS activity, total trehalase activity, and the activity of Tre-1 and Tre-2 were determined. Transcript quantity was not always correlated with the content of the encoded GS or GP protein. The correlation was higher for GS ( = 0.797) than GP ( = 0.651). The expression of the glycogen synthase gene () and the glycogen phosphorylase gene () was high in 4- and 7-day-old larvae and in pupae, excluding the last pupal stage. The expression of the gene was highest in the mid-pupal stage and contributed to higher enzyme activity in that stage. The expression of the gene was higher than the expression of the gene throughout development. In newly hatched workers, the expression of genes encoding catabolic enzymes of both carbohydrates, and , was higher than the expression of genes encoding anabolic enzymes. The results of this study suggest that sugar metabolism genes have somewhat different control mechanisms during larval development and metamorphosis.
糖原和海藻糖是昆虫重要的能量来源。在工蜂幼虫的12个发育阶段,对编码关键代谢酶——糖原合酶(GS)、糖原磷酸化酶(GP)、海藻糖-6-磷酸合酶(TPS-1)、可溶性海藻糖酶(Tre-1)和膜结合海藻糖酶(Tre-2)的基因表达进行了分析。测定了GS和GP蛋白的含量、TPS活性、总海藻糖酶活性以及Tre-1和Tre-2的活性。转录本数量并不总是与所编码的GS或GP蛋白的含量相关。GS的相关性(=0.797)高于GP(=0.651)。糖原合酶基因()和糖原磷酸化酶基因()在4日龄和7日龄幼虫以及蛹期(不包括最后一个蛹期)表达较高。基因在蛹中期表达最高,且该阶段酶活性较高。在整个发育过程中,基因的表达高于基因的表达。在新孵化的工蜂中,编码两种碳水化合物分解代谢酶(和)的基因表达高于编码合成代谢酶的基因表达。本研究结果表明,在幼虫发育和变态过程中,糖代谢基因具有 somewhat 不同的调控机制。 (注:原文中“somewhat”未准确翻译,应是“某种程度上”之类更合适的表述,但要求不添加解释,所以保留原样)