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Digestive function of lysozyme in synanthropic acaridid mites enables utilization of bacteria as a food source

机译:溶菌酶在拟南芥螨中的消化功能使细菌可以用作食物来源

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The activity of lysozyme, the enzyme that hydrolyzes peptidoglycan in G bacterial cell walls, was detected in whole mite extracts (WME) and in spent growth medium extracts (SGME) of 14 species of synanthropic mites (Acari: Acaridida). The adaptation of lysozyme for digestive activity and bacteriophagy was based on: (i) high lysozyme activity in SGME, and (ii) the correlation of maximum lysozyme activity at acidic pH values, corresponding to pH in the ventriculus and caeca. We show that the digestion of fluorescein-labeled Micrococcus lysodeikticus cells began in ventriculus and continued during the passage of a food bolus through the gut. The fluorescein was absorbed by midgut cells and penetrated to parenchymal tissues. Eight species showed a higher rate of population growth on a M. lysodeikticus diet than on a control diet. The lysozyme activity in SGME was positively correlated to the standardized rate (r s) of population growth, although no correlation was found between r s and lysozyme activity in WME. The lysozyme activity in WME was negatively correlated to that in SGME. The highest activity of digestive lysozyme was found in Lepidoglyphus destructor, Chortoglyphus arcuatus and Dermatophagoides farinae. All of these findings indicate that lysozyme in acaridid mites possesses both defensive and digestive functions. The enzymatic properties of mite lysozyme are similar to those of the lysozymes present in the ruminant stomach and in the insect midgut.
机译:在全螨提取物(WME)和14种同龄螨(Acari:螨)的废生长培养基提取物(SGME)中检测到了溶菌酶的活性,该酶水解G细菌细胞壁中的肽聚糖。溶菌酶对消化活性和噬菌体的适应性基于:(i)SGME中的高溶菌酶活性,以及​​(ii)在酸性pH值(对应于心室和盲肠的pH)下最大溶菌酶活性的相关性。我们表明,荧光素标记的微球菌lysodeikticus细胞的消化开始于心室,并在食物团通过肠道的过程中持续进行。荧光素被中肠细胞吸收并渗透到实质组织。溶血支原体饮食比对照饮食有八个物种的种群生长速率更高。 SGME中的溶菌酶活性与人口增长的标准化速率(r s)正相关,尽管在WME中r s与溶菌酶活性之间没有相关性。 WME中的溶菌酶活性与SGME中的负相关。在Lepidoglyphus破坏物,Chortoglyphus arcuatus和Dermatophagoides farinae中发现了最高的消化溶菌酶活性。所有这些发现表明螨类螨中的溶菌酶具有防御和消化功能。螨溶菌酶的酶学性质与反刍动物胃和昆虫中肠中存在的溶菌酶的酶性质相似。

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