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Algal volatiles - the overlooked chemical language of aquatic primary producers.藻类挥发物——水生初级生产者被忽视的化学语言。
Biol Rev Camb Philos Soc. 2022 Dec;97(6):2162-2173. doi: 10.1111/brv.12887. Epub 2022 Aug 1.
2
Dynamic patterns of quorum sensing signals in phycospheric microbes during a marine algal bloom.海洋藻类水华期间,附着微生物群体感应信号的动态模式。
Environ Res. 2022 Sep;212(Pt C):113443. doi: 10.1016/j.envres.2022.113443. Epub 2022 May 10.
3
Design and applications of photobioreactors- a review.光生物反应器的设计与应用——综述。
Bioresour Technol. 2022 Apr;349:126858. doi: 10.1016/j.biortech.2022.126858. Epub 2022 Feb 17.
4
Convergent community structure of algal-bacterial consortia and its effects on advanced wastewater treatment and biomass production.藻菌共生体的趋同群落结构及其对高级废水处理和生物质生产的影响。
Sci Rep. 2021 Oct 26;11(1):21118. doi: 10.1038/s41598-021-00517-x.
5
How Do Quorum-Sensing Signals Mediate Algae-Bacteria Interactions?群体感应信号如何介导藻类与细菌的相互作用?
Microorganisms. 2021 Jun 27;9(7):1391. doi: 10.3390/microorganisms9071391.
6
Crop diversity enriches arbuscular mycorrhizal fungal communities in an intensive agricultural landscape.作物多样性丰富了集约化农业景观中的丛枝菌根真菌群落。
New Phytol. 2021 Jul;231(1):447-459. doi: 10.1111/nph.17306. Epub 2021 Apr 2.
7
Contribution of horizontal gene transfer to the functionality of microbial biofilm on a macroalgae.水平基因转移对大型海藻上微生物生物膜功能的贡献。
ISME J. 2021 Mar;15(3):807-817. doi: 10.1038/s41396-020-00815-8. Epub 2021 Feb 8.
8
Synthetic Biology Approaches To Enhance Microalgal Productivity.合成生物学方法提高微藻生产力。
Trends Biotechnol. 2021 Oct;39(10):1019-1036. doi: 10.1016/j.tibtech.2020.12.010. Epub 2021 Feb 1.
9
Advances in the use of microalgal-bacterial consortia for wastewater treatment: Community structures, interactions, economic resource reclamation, and study techniques.微藻-细菌共生体在废水处理中的应用进展:群落结构、相互作用、经济资源回收及研究技术。
Water Environ Res. 2021 Aug;93(8):1217-1230. doi: 10.1002/wer.1496. Epub 2021 Mar 3.
10
Sound perception and its effects in plants and algae.声音感知及其在植物和藻类中的作用。
Plant Signal Behav. 2020 Dec 1;15(12):1828674. doi: 10.1080/15592324.2020.1828674. Epub 2020 Oct 13.

藻类交流、同种和异种:光生物反应器(PBR)中藻际和藻菌共生体的概念。

Algae communication, conspecific and interspecific: the concepts of phycosphere and algal-bacteria consortia in a photobioreactor (PBR).

机构信息

Erasmus University College, Rotterdam, Netherlands.

École des Hautes Études en Sciences Sociales, Paris, France.

出版信息

Plant Signal Behav. 2023 Dec 31;18(1):2148371. doi: 10.1080/15592324.2022.2148371.

DOI:10.1080/15592324.2022.2148371
PMID:36934349
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10026891/
Abstract

Microalgae in the wild often form consortia with other species promoting their own health and resource foraging opportunities. The recent application of microalgae cultivation and deployment in commercial photobioreactors (PBR) so far has focussed on single species of algae, resulting in multi-species consortia being largely unexplored. Reviewing the current status of PBR ecological habitat, this article argues in favor of further investigation into algal communication with conspecifics and interspecifics, including other strains of microalgae and bacteria. These mutualistic species form the 'phycosphere': the microenvironment surrounding microalgal cells, potentiating the production of certain metabolites through biochemical interaction with cohabitating microorganisms. A better understanding of the phycosphere could lead to novel PBR configurations, capable of incorporating algal-microbial consortia, potentially proving more effective than single-species algal systems.

摘要

野生微藻通常与其他物种形成共生体,从而促进自身的健康和资源觅食机会。最近,微藻培养和在商业光生物反应器 (PBR) 中的应用主要集中在单一物种的藻类上,导致多物种共生体在很大程度上未被探索。本文回顾了 PBR 生态生境的现状,主张进一步研究藻类与同种和异种生物的交流,包括其他微藻菌株和细菌。这些互利共生的物种形成了“藻界”:围绕微藻细胞的微环境,通过与共栖微生物的生化相互作用促进某些代谢物的产生。更好地了解藻界可以导致新型 PBR 配置,能够结合藻类-微生物共生体,可能比单一物种藻类系统更有效。