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微藻-细菌共生体揭示了促进微藻生长的明显生理变化。

Microalgal-bacterial consortia unveil distinct physiological changes to facilitate growth of microalgae.

机构信息

Global Centre for Environmental Remediation (GCER), Faculty of Science, The University of Newcastle, ATC Building, Callaghan, NSW 2308, Australia.

Cooperative Research Centre for Contamination Assessment and Remediation of Environment (CRC CARE), The University of Newcastle, ATC Building, Callaghan, NSW 2308, Australia.

出版信息

FEMS Microbiol Ecol. 2021 Mar 8;97(3). doi: 10.1093/femsec/fiab012.

Abstract

Physiological changes that drive the microalgal-bacterial consortia are poorly understood so far. In the present novel study, we initially assessed five morphologically distinct microalgae for their ability in establishing consortia in Bold's basal medium with a bacterial strain, Variovorax paradoxus IS1, all isolated from wastewaters. Tetradesmus obliquus IS2 and Coelastrella sp. IS3 were further selected for gaining insights into physiological changes, including those of metabolomes in consortia involving V. paradoxus IS1. The distinct parameters investigated were pigments (chlorophyll a, b, and carotenoids), reactive oxygen species (ROS), lipids and metabolites that are implicated in major metabolic pathways. There was a significant increase (>1.2-fold) in pigments, viz., chlorophyll a, b and carotenoids, decrease in ROS and an enhanced lipid yield (>2-fold) in consortia than in individual cultures. In addition, the differential regulation of cellular metabolites such as sugars, amino acids, organic acids and phytohormones was distinct among the two microalgal-bacterial consortia. Our results thus indicate that the selected microalgal strains, T. obliquus IS2 and Coelastrella sp. IS3, developed efficient consortia with V. paradoxus IS1 by effecting the required physiological changes, including metabolomics. Such microalgal-bacterial consortia could largely be used in wastewater treatment and for production of value-added metabolites.

摘要

迄今为止,驱动微藻-细菌共生体的生理变化还知之甚少。在本研究中,我们最初评估了 5 种形态不同的微藻与从废水中分离的细菌菌株 Variovorax paradoxus IS1 在 Bold 基础培养基中建立共生体的能力。然后选择 Tetradesmus obliquus IS2 和 Coelastrella sp. IS3 来深入了解生理变化,包括涉及 V. paradoxus IS1 的共生体中的代谢组学变化。研究中考察了不同的参数,包括色素(叶绿素 a、b 和类胡萝卜素)、活性氧物种(ROS)、脂质和涉及主要代谢途径的代谢物。与单独培养物相比,共生体中的色素(叶绿素 a、b 和类胡萝卜素)显著增加(>1.2 倍),ROS 减少,脂质产量提高(>2 倍)。此外,两种微藻-细菌共生体中的细胞代谢物(如糖、氨基酸、有机酸和植物激素)的差异调节也不同。因此,我们的研究结果表明,所选的微藻菌株 Tetradesmus obliquus IS2 和 Coelastrella sp. IS3 通过影响所需的生理变化,包括代谢组学,与 V. paradoxus IS1 形成了有效的共生体。这种微藻-细菌共生体可以广泛应用于废水处理和生产有价值的代谢物。

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