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大型藻类与细菌的相互作用:海藻酸钠在石莼(绿藻门)形态发生中的鉴定及作用

Macroalgal-bacterial interactions: identification and role of thallusin in morphogenesis of the seaweed Ulva (Chlorophyta).

作者信息

Alsufyani Taghreed, Califano Gianmaria, Deicke Michael, Grueneberg Jan, Weiss Anne, Engelen Aschwin H, Kwantes Michiel, Mohr Jan Frieder, Ulrich Johann F, Wichard Thomas

机构信息

Institute for Inorganic and Analytical Chemistry, Friedrich Schiller University Jena, Jena, Germany.

Algal Research Laboratory, Chemistry Department, Science Faculty, Taif University, Taif, Saudi Arabia.

出版信息

J Exp Bot. 2020 Jun 11;71(11):3340-3349. doi: 10.1093/jxb/eraa066.

Abstract

Macroalgal microbiomes have core functions related to biofilm formation, growth, and morphogenesis of seaweeds. In particular, the growth and development of the sea lettuce Ulva spp. (Chlorophyta) depend on bacteria releasing morphogenetic compounds. Under axenic conditions, the macroalga Ulva mutabilis develops a callus-like phenotype with cell wall protrusions. However, co-culturing with Roseovarius sp. (MS2) and Maribacter sp. (MS6), which produce various stimulatory chemical mediators, completely recovers morphogenesis. This ecological reconstruction forms a tripartite community which can be further studied for its role in cross-kingdom interactions. Hence, our study sought to identify algal growth- and morphogenesis-promoting factors (AGMPFs) capable of phenocopying the activity of Maribacter spp. We performed bioassay-guided solid-phase extraction in water samples collected from U. mutabilis aquaculture systems. We uncovered novel ecophysiological functions of thallusin, a sesquiterpenoid morphogen, identified for the first time in algal aquaculture. Thallusin, released by Maribacter sp., induced rhizoid and cell wall formation at a concentration of 11 pmol l-1. We demonstrated that gametes acquired the iron complex of thallusin, thereby linking morphogenetic processes with intracellular iron homeostasis. Understanding macroalgae-bacteria interactions permits further elucidation of the evolution of multicellularity and cellular differentiation, and development of new applications in microbiome-mediated aquaculture systems.

摘要

大型藻类微生物群具有与海藻生物膜形成、生长和形态发生相关的核心功能。特别是,石莼属绿藻(绿藻门)的生长和发育依赖于释放形态发生化合物的细菌。在无菌条件下,可变异石莼形成具有细胞壁突起的愈伤组织样表型。然而,与能产生各种刺激化学介质的玫瑰色杆菌属(MS2)和海杆菌属(MS6)共培养,可完全恢复形态发生。这种生态重建形成了一个三方群落,可进一步研究其在跨物种相互作用中的作用。因此,我们的研究旨在鉴定能够模拟海杆菌属活性的藻类生长和形态发生促进因子(AGMPFs)。我们对从可变异石莼养殖系统采集的水样进行了生物测定引导的固相萃取。我们发现了海藻素的新生态生理功能,海藻素是一种倍半萜类形态发生素,首次在藻类养殖中被鉴定。海杆菌属释放的海藻素在浓度为11 pmol l-1时诱导假根和细胞壁形成。我们证明配子获得了海藻素的铁复合物,从而将形态发生过程与细胞内铁稳态联系起来。了解大型藻类与细菌的相互作用有助于进一步阐明多细胞性和细胞分化的进化,并在微生物群介导的水产养殖系统中开发新的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/469a/7289720/afa6546affdc/eraa066f0001.jpg

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