New Strains of the Deep Branching Streptophyte Streptofilum: Phylogenetic Position, Cell Biological and Ecophysiological Traits, and Description of Streptofilum arcticum sp. nov

IF 4.3 2区 生物学 Q2 MICROBIOLOGY Environmental microbiology Pub Date : 2025-01-08 DOI:10.1111/1462-2920.70033
Karin Glaser, Tatiana Mikhailyuk, Charlotte Permann, Andreas Holzinger, Ulf Karsten
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Abstract

Streptofilum capillatum was recently described and immediately caught scientific attention, because it forms a phylogenetically deep branch in the streptophytes and is characterised by a unique cell coverage composed of piliform scales. Its phylogenetic position and taxonomic rank are still controversial discussed. In the present study, we isolated further strains of Streptofilum from biocrusts in sand dunes and Arctic tundra soil. Molecular and morphological characterisation including transmission electron microscopy confirmed that both new strains belong to Streptofilum. The Arctic strain is described as a new species, Streptofilum arcticum sp. nov., based on molecular differences, a specific sarcinoid morphology and unique ultrastructure with massive cell coverage composed of pili-shaped scales. A comprehensive characterisation of the ecophysiological traits of both new Streptofilum isolates and the original one revealed a broad temperature tolerance, a rapid recovery of photosynthetic performance after desiccation, an efficient photosynthesis at low light and a tolerance to high-light conditions. In addition, Streptofilum could cope with UV irradiation, but only S. capillatum grew under UV exposure. All Streptofilum strains are well-adapted to water-deprived terrestrial habitats such as biocrusts. From this study it can be concluded that already early-branching streptophytes were able to tolerate terrestrial conditions.

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深分枝链霉菌新菌株:系统发育位置、细胞生物学和生态生理特性及北极链霉菌描述。11月
毛细链菌最近被描述并立即引起了科学界的关注,因为它在链状植物中形成了一个系统发育的深分支,其特征是由毛状鳞片组成的独特细胞覆盖。其系统发育位置和分类等级仍有争议。在本研究中,我们从沙丘和北极冻土带土壤的生物结皮中分离出了更多的链霉菌菌株。分子和形态特征,包括透射电镜证实这两个新菌株属于链霉菌。北极菌株被描述为一个新种,基于分子差异,特定的类肌氨酸形态和独特的超微结构,由毛状鳞片组成的大量细胞覆盖。对新分离株和原分离株的生态生理特性进行了全面的表征,发现它们具有广泛的耐温性、干燥后光合性能的快速恢复、低光下的高效光合作用和对高光条件的耐受性。此外,Streptofilum可以应对紫外线照射,但只有S. capillatum在紫外线照射下生长。所有链球菌菌株都能很好地适应缺水的陆地栖息地,如生物外壳。从这项研究可以得出结论,已经早期分支的链生植物能够忍受陆地环境。
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来源期刊
Environmental microbiology
Environmental microbiology 环境科学-微生物学
CiteScore
9.90
自引率
3.90%
发文量
427
审稿时长
2.3 months
期刊介绍: Environmental Microbiology provides a high profile vehicle for publication of the most innovative, original and rigorous research in the field. The scope of the Journal encompasses the diversity of current research on microbial processes in the environment, microbial communities, interactions and evolution and includes, but is not limited to, the following: the structure, activities and communal behaviour of microbial communities microbial community genetics and evolutionary processes microbial symbioses, microbial interactions and interactions with plants, animals and abiotic factors microbes in the tree of life, microbial diversification and evolution population biology and clonal structure microbial metabolic and structural diversity microbial physiology, growth and survival microbes and surfaces, adhesion and biofouling responses to environmental signals and stress factors modelling and theory development pollution microbiology extremophiles and life in extreme and unusual little-explored habitats element cycles and biogeochemical processes, primary and secondary production microbes in a changing world, microbially-influenced global changes evolution and diversity of archaeal and bacterial viruses new technological developments in microbial ecology and evolution, in particular for the study of activities of microbial communities, non-culturable microorganisms and emerging pathogens
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