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首页> 外文期刊>Applied and Environmental Microbiology >Acetic Acid Bacterial Biota of the Pink Sugar Cane Mealybug, Saccharococcus sacchari, and Its Environs
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Acetic Acid Bacterial Biota of the Pink Sugar Cane Mealybug, Saccharococcus sacchari, and Its Environs

机译:粉红甘蔗粉虱,糖球菌及其周围环境的乙酸细菌菌群

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Saccharococcus sacchari is the primary colonizer of the developing “sterile” tissue between the leaf sheath and stem of sugar cane. The honeydew secreted by the mealybugs is acidic (about pH 3) and supports an atypical epiphytic microbiota dominated by acetobacter-like bacteria and acidophilic yeast species. However, Erwinia and Leuconostoc species predominate within the leaf sheath pocket region when the mealybugs die out. The unidentified acetobacters were readily isolated from S. sacchari throughout its life cycle and from other genera of mealybugs on sugar cane and various other plants, both above and below ground. No other insect present on sugar cane was a significant vector of acetic acid bacteria. The major factors restricting microbial diversity within the environs of mealybugs were considered to be yeast activity along with bacterial production of acetic acid, ketogluconic acids, and gamma-pyrones, in association with their lowering of pH. The microbial products may aid in suppressing the attack by the parasitic mold Aspergillus parasiticus on mealybugs but could act as attractants for the predatory fruit fly Cacoxenus perspicax.
机译:糖球菌是在叶鞘和甘蔗茎之间发育的“无菌”组织的主要定居者。粉虱分泌的蜜露是酸性的(约pH 3),并支持以类杆菌属细菌和嗜酸酵母菌为主的非典型附生菌群。然而,当粉虱灭绝时,欧文氏菌属和亮粉虾属种在叶鞘袋区域内占优势。在整个生命周期中,很容易从糖链球菌中分离出未鉴定的醋杆菌,并从地上和地下的甘蔗和其他植物上分离出粉虱的其他属。甘蔗上没有其他昆虫是乙酸细菌的重要载体。限制粉虱环境中微生物多样性的主要因素被认为是酵母的活性以及细菌的乙酸,酮葡萄糖酸和γ-吡喃酮的产生,以及它们的pH值降低。微生物产物可帮助抑制寄生性霉菌寄生于粉虱的侵袭,但可作为捕食性果蝇Cacoxenus perspicax的引诱剂。

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