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Firmicutes dominate the bacterial taxa within sugar-cane processing plants

机译:硬毛菌在甘蔗加工厂中占主导地位

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摘要

Sugar cane processing sites are characterised by high sugar/hemicellulose levels, available moisture and warm conditions, and are relatively unexplored unique microbial environments. The PhyloChip microarray was used to investigate bacterial diversity and community composition in three Australian sugar cane processing plants. These ecosystems were highly complex and dominated by four main Phyla, Firmicutes (the most dominant), followed by Proteobacteria, Bacteroidetes, and Chloroflexi. Significant variation (p < 0.05) in community structure occurred between samples collected from ‘floor dump sediment’, ‘cooling tower water’, and ‘bagasse leachate’. Many bacterial Classes contributed to these differences, however most were of low numerical abundance. Separation in community composition was also linked to Classes of Firmicutes, particularly Bacillales, Lactobacillales and Clostridiales, whose dominance is likely to be linked to their physiology as ‘lactic acid bacteria’, capable of fermenting the sugars present. This process may help displace other bacterial taxa, providing a competitive advantage for Firmicutes bacteria.
机译:甘蔗加工场所的特点是糖/半纤维素含量高,可利用的水分和温暖的条件,并且是相对未开发的独特微生物环境。 PhyloChip芯片用于调查三个澳大利亚甘蔗加工厂的细菌多样性和群落组成。这些生态系统非常复杂,由四个主要的Phyla,Firmicutes(占主导地位),其次是Proteobacteria,Bacteroidetes和Chloroflexi所主导。从“地表沉积物”,“冷却塔水”和“蔗渣浸出液”收集的样本之间,群落结构发生了显着变化(p <0.05)。许多细菌类别导致了这些差异,但是大多数细菌的数值丰度较低。群落组成的分离也与菌类的种类有关,特别是芽孢杆菌,乳杆菌和梭菌,它们的优势很可能与它们的生理学联系在一起,成为“乳酸菌”,能够发酵存在的糖分。此过程可能有助于替代其他细菌类群,从而为Firmicutes细菌提供竞争优势。

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