Department of Biology, Georgia Southern University, 69 Georgia Ave., Statesboro, GA 30460, USA.
J Med Entomol. 2013 Jul;50(4):847-52. doi: 10.1603/me12167.
From egg to adult, all life history stages of house flies associate with septic environments teeming with bacteria. House fly lysozyme was first identified in the larval midgut, where it is used for digestion of microbe-rich meals because of its broad-spectrum activity against gram-positive and gram-negative bacteria as well as fungi. This study aimed to determine the temporal expression of lysozyme in the life history of house flies (from egg through adults) on both the mRNA and protein level, and to determine the tissue-specific expression of lysozyme in adult flies induced by feeding Staphylococcus aureus. From 30-min postoviposition through adulthood, all life history stages of the house fly express lysozyme on the mRNA level. In adult flies, lysozyme is expressed both locally in the alimentary canal and systemically in the fat body. Interestingly, we found that during the normal life history of flies, lysozyme protein was only detected in larval stages and older adults, likely because of ingestion of immune-stimulating levels of bacteria, not experienced during egg, pupa, and teneral adult stages. Constitutive expression on the mRNA level implies that this effector is a primary defense molecule in all stages of the house fly life history, and that a mechanism for posttranscriptional control of mature lysozyme enzyme expression may be present. Lysozyme active enzyme primarily serves both a digestive and defensive function in larval and adult flies, and may be a key player in the ability of Musca domestica L. to thrive in microbe-rich environments.
从卵到成虫,家蝇的所有生活史阶段都与充满细菌的腐败环境有关。家蝇溶菌酶最初在幼虫中肠中被鉴定出来,在那里它被用于消化富含微生物的食物,因为它对革兰氏阳性和革兰氏阴性细菌以及真菌具有广谱活性。本研究旨在确定家蝇生活史(从卵到成虫)中溶菌酶在 mRNA 和蛋白质水平上的时间表达,并确定喂食金黄色葡萄球菌诱导的成年蝇中溶菌酶的组织特异性表达。从产卵后 30 分钟到成虫期,家蝇的所有生活史阶段都在 mRNA 水平上表达溶菌酶。在成年蝇中,溶菌酶在肠道局部和脂肪体中系统性表达。有趣的是,我们发现,在苍蝇的正常生活史中,只有在幼虫期和老年期才能检测到溶菌酶蛋白,这可能是因为摄入了免疫刺激水平的细菌,而在卵、蛹和未成熟成虫期不会经历这种情况。mRNA 水平上的组成型表达意味着这种效应物是家蝇生活史所有阶段的主要防御分子,并且可能存在成熟溶菌酶酶表达的转录后控制机制。溶菌酶活性酶主要在幼虫和成虫蝇中发挥消化和防御功能,可能是家蝇在富含微生物的环境中茁壮成长的关键因素。