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首页> 外文期刊>Applied and Environmental Microbiology >Microbial colonization of injured cactus tissue (Stenocereus gummosus) and its relationship to the ecology of cactophilic Drosophila mojavensis.
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Microbial colonization of injured cactus tissue (Stenocereus gummosus) and its relationship to the ecology of cactophilic Drosophila mojavensis.

机译:受伤的仙人掌组织(Stenocereus gummosus)的微生物定植及其与嗜温果蝇莫扎韦氏菌生态学的关系。

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Necrotic tissue of agria cactus (Stenocereus gummosus) serves as a feeding and breeding substrate for Drosophila mojavensis. This fly species is one of the four endemic Drosophila species in the Sonoran Desert. Freeze injuries were created in arms of agria cactus in Mexico to study the events of microbial colonization. Facultative anaerobic bacteria were the first microbes to be detected, and the exclusion of large arthropods by covering the injuries with netting did not affect bacterial colonization. Yeast growth lagged behind bacterial growth by 2 days, and excluding arthropods delayed the detection of yeasts by an additional 2 days. Thus, insects (such as Drosophila species) and other arthropods do play a role in the colonization of agria rots by yeasts. All injuries were attractive to D. mojavensis within 5 days, and these flies were shown to be carrying significant densities of both bacteria and yeasts. Analysis of the volatile compounds present in the developing rots over time indicated that the volatile pattern is dynamic. Ethanol and acetic acid were the two volatile substances most likely responsible for the initial attraction of the injuries for Drosophila species.
机译:仙人掌的坏死组织(Stenocereus gummosus)是果蝇的饲料和繁殖基质。这种蝇类是索诺兰沙漠中四种特有的果蝇物种之一。为了研究微生物定殖的事件,墨西哥的农业仙人掌的手臂被冻伤。兼性厌氧细菌是第一个被检测到的微生物,通过用网罩覆盖伤口来排除大型节肢动物并不影响细菌定殖。酵母菌的生长落后细菌繁殖2天,而节肢动物除外,使酵母菌的检测又延迟了2天。因此,昆虫(如果蝇属)和其他节肢动物确实在酵母菌对农业腐烂的定植中起作用。 5天之内,所有伤害均对莫氏疟原虫具有吸引力,并且这些果蝇被证明携带细菌和酵母的显着密度。随着时间的流逝,存在于发育中的腐烂物中的挥发性化合物的分析表明,挥发性模式是动态的。乙醇和乙酸是最有可能造成果蝇种伤害的最初诱因的两种挥发性物质。

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