首页> 外文期刊>Indian Journal of Microbiology >Isolation of Indole Utilizing Bacteria Arthrobacter sp and Alcaligenes sp From Livestock Waste
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Isolation of Indole Utilizing Bacteria Arthrobacter sp and Alcaligenes sp From Livestock Waste

机译:从畜禽粪便中分离利用节杆菌细菌和产碱菌的吲哚

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摘要

Indole is an interspecies and interkingdom signaling molecule widespread in different environmental compartment. Although multifaceted roles of indole in different biological systems have been established, little information is available on the microbial utilization of indole in the context of combating odor emissions from different types of waste. The present study was aimed at identifying novel bacteria capable of utilizing indole as the sole carbon and energy source. From the selective enrichment of swine waste and cattle feces, we identified Gram-positive and Gram-negative bacteria belonging to the genera Arthrobacter and Alcaligenes. Bacteria belonging to the genus Alcaligenes showed higher rates of indole utilization than Arthrobacter. Indole at 1.0 mM for growth was completely utilized by Alcaligenes sp. in 16 h. Both strains produced two intermediates, anthranilic acid and isatin, during aerobic indole metabolism. These isolates were also able to grow on several indole derivatives. Interestingly, an adaptive response in terms of a decrease in cell size was observed in both strains in the presence of indole. The present study will help to explain the degradation of indole by different bacteria and also the pathways through which it is catabolized. Furthermore, these novel bacterial isolates could be potentially useful for the in situ attenuation of odorant indole and its derivatives emitted from different types of livestock waste.
机译:吲哚是一种分布在不同环境区室的种间和种间信号分子。尽管已经确定了吲哚在不同生物系统中的多重作用,但是在抵抗不同类型废物产生的气味时,关于吲哚微生物利用的信息很少。本研究旨在鉴定能够利用吲哚作为唯一碳和能源的新型细菌。从猪粪便和牛粪的选择性富集中,我们鉴定出属于节杆菌属和产碱菌属的革兰氏阳性和革兰氏阴性细菌。属于产碱菌属的细菌比节杆菌具有更高的吲哚利用率。 Alcaligenes sp。完全利用了1.0 mM的吲哚进行生长。在16小时内在有氧吲哚代谢过程中,两种菌株均产生了两种中间体,邻氨基苯甲酸和靛红。这些分离株还能够在几种吲哚衍生物上生长。有趣的是,在吲哚存在的两种菌株中都观察到了细胞大小减少的适应性反应。本研究将有助于解释不同细菌对吲哚的降解作用以及其分解代谢的途径。此外,这些新颖的细菌分离株可能潜在地用于原位减弱从不同类型的畜禽粪便中释放出的臭味吲哚及其衍生物。

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