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浮萍基废水处理系统中的微生物种群动态

Microbial Population Dynamics in Lemnaceae (Duckweed)-Based Wastewater Treatment System.

作者信息

Singh Pooja, Jani Kunal, Sharma Shreyansh, Rale Vinay, Souche Yogesh, Prakash Sumit, Jogdeo Prasanna, Patil Yogesh, Dhanorkar Manikprabhu N

机构信息

Symbiosis Centre for Waste Resource Management, Symbiosis International (Deemed University), Lavale, Pune, 412115, India.

National Centre for Microbial Resource, National Centre for Cell Science, Pashan, Pune, India.

出版信息

Curr Microbiol. 2022 Dec 31;80(2):56. doi: 10.1007/s00284-022-03149-0.

Abstract

The dynamic microflora associated within, and in the surrounding aquatic environment, has been found to be responsible for the functional properties of many aquatic plants. The aim of the current work was to evaluate the effectiveness of Lemnaceae-based wastewater treatment system under tropical conditions and investigate the changes in the aquatic microflora upon plant growth. A biological wastewater treatment system was designed and investigated using mixed Lemnaceae culture comprising Lemna minor and Spirodela polyrhiza in a batch mode. A significant reduction in total solids (31.8%), biochemical oxygen demand (93.5%), and chemical oxygen demand (73.2%) was observed after seven days of duckweed growth using a low inoculum. A preliminary study on the change in the microbial population diversity and functionality, in the wastewater before and after treatment, revealed an increase in the denitrifying microflora in wastewater post-Lemnaceae treatment. Dominance of 10 bacterial phyla, contributing for 98.3% of the total bacterial communities, was recorded, and ~ 50.6% loss of diversity post-treatment of wastewater was revealed by the Shannon Index. Among 16 bacterial families showing relative abundance of ≥ 1% in untreated wastewater, Methylobacteriaceae, Pseudomonadaceae, Brucellaceae, Rhodobacteraceae, and Acetobacteraceae prevailed in the water post-treatment by duckweeds. This is a novel work done on the dynamics of aquatic microflora associated with Lemnaceae under tropical Indian conditions. It confirms the application of Lemnaceae-based wastewater treatment system as effective biofilter and calls for further studies on the active involvement of the endophytic and aquatic microflora in the functions of these plant.

摘要

已发现与水生植物内部及其周围水生环境相关的动态微生物群,对许多水生植物的功能特性负责。当前工作的目的是评估热带条件下基于浮萍科植物的废水处理系统的有效性,并研究植物生长后水生微生物群的变化。设计并研究了一种生物废水处理系统,该系统以分批模式使用包含小浮萍和紫萍的混合浮萍科植物培养物。使用低接种量,在浮萍生长七天后,观察到总固体(31.8%)、生化需氧量(93.5%)和化学需氧量(73.2%)显著降低。对处理前后废水中微生物种群多样性和功能变化的初步研究表明,浮萍科植物处理后的废水中反硝化微生物群增加。记录了占细菌群落总数98.3%的10个细菌门的优势地位,香农指数显示废水处理后多样性损失约50.6%。在未经处理的废水中相对丰度≥1%的16个细菌科中,甲基杆菌科、假单胞菌科、布鲁氏菌科、红杆菌科和醋酸杆菌科在浮萍处理后的水中占优势。这是在热带印度条件下对与浮萍科植物相关的水生微生物群动态所做的一项新工作。它证实了基于浮萍科植物的废水处理系统作为有效生物滤池的应用,并呼吁进一步研究内生和水生微生物群在这些植物功能中的积极作用。

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