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Lack of surface-associated microorganisms in a mixed species community of freshwater Unionidae

机译:淡水金龟科的混合物种群落中缺乏与表面相关的微生物

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To determine whether unionids contain surface-attached endosymbiotic bacteria, ciliates, or fungi, we used scanning electron microscopy to examine the epithelial surface of various organs within the digestive system and mantle cavity of temperate river and lake unionids on a seasonal basis. We also cultured material removed from the lumen of these same organs and from the mantle cavity to detect cellobiose-, cellulose- and chitin- degrading microbes. No true endosymbiotic fauna were observed attached to the surface of the digestive or mantle tissues of any species of unionid. Microbial growth on cellulose or chitin bacteriological media varied by season and habitat, but not by unionid species or source of the isolate. Lake unionids did not containmicrobes capable of digesting cellulose or chitin, whereas unionids from the river site did in March and August, but not in December. Since these cultured cellulose and chitin-degrading bacteria were never found attached to any unionid tissues, they appeared to be transient forms, not true endosymbionts. Microbes capable of digesting cellobiose were found in every unionid collected in all seasons and habitats, but again, no microbes were directly observed attached to unionid tissues. If unionids, likemost other invertebrates, lack digestive enzymes required to initiate primary bond breakage, then the lack of cellulolytic and chitinolytic endosymbionts would affect the ability to utilize cellulose or chitin foods. Thus, in captivity dry feeds based oncorn, soybeans, or nauplii should be pre-digested to ensure maximum absorption of nutrients by unionids. The lack of cellulolytic or chitinolytic endosymbionts should not affect relocation success, though the seasonal role of transient microbes in unionid nutrition requires further investigation.
机译:为了确定工会体是否包含表面附着的内共生细菌,纤毛虫或真菌,我们使用扫描电子显微镜按季节检查温带河流和湖泊工会体的消化系统和地幔腔内各种器官的上皮表面。我们还培养了从这些相同器官的内腔和套腔中去除的物质,以检测降解纤维二糖,纤维素和甲壳质的微生物。没有观察到真正的共生动物区系附着在任何物种的消化或地幔组织表面。纤维素或甲壳质细菌培养基上的微生物生长随季节和栖息地而变化,但不取决于菌丝种类或分离物来源。湖中的工会体不包含能够消化纤维素或几丁质的微生物,而河岸地区的工会体则在3月和8月,但在12月没有。由于从未发现这些培养的​​纤维素和几丁质降解细菌附着于任何工会组织,因此它们似乎是瞬时形式,而不是真正的共生菌。在所有季节和栖息地收集到的每个活菌中都发现了能够消化纤维二糖的微生物,但同样,没有直接观察到附着在活菌组织上的微生物。如果像大多数其他无脊椎动物一样,工会动物缺乏引发初级键断裂所需的消化酶,那么缺乏纤维素分解酶和几丁质分解内共生体将影响利用纤维素或几丁质食品的能力。因此,在人工饲养中,应预先消化以玉米,大豆或无节幼体为基础的干饲料,以确保工会体最大程度地吸收养分。尽管瞬态微生物在工会营养中的季节性作用尚待进一步研究,但缺乏纤维素分解酶或壳多糖分解内共生菌不应影响迁移成功。

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