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在蓝光下进食会损害一些叶附生植物的食欲。

Dining in Blue Light Impairs the Appetite of Some Leaf Epiphytes.

作者信息

Alsanius Beatrix W, Vaas Lea, Gharaie Samareh, Karlsson Maria E, Rosberg Anna Karin, Wohanka Walter, Khalil Sammar, Windstam Sofia

机构信息

Microbial Horticulture Unit, Department of Biosystems and Technology, Swedish University of Agricultural Sciences, Lomma, Sweden.

Fraunhofer IME, Computational Biology, Screening Port, Hamburg, Germany.

出版信息

Front Microbiol. 2021 Oct 18;12:725021. doi: 10.3389/fmicb.2021.725021. eCollection 2021.

Abstract

The phyllosphere is subjected to fluctuating abiotic conditions. This study examined the phenotypic plasticity (PP) of four selected non-phototrophic phyllosphere bacteria [control strain: sp. DR 5-09; , serovar (Bti), and (SG)] regarding their respiration patterns and surfactant activity as affected by light spectrum and nutrient supply. The PP of the strains was examined under four light regimes [darkness (control); monochromatic light-emitting diodes (LED) at 460 nm (blue) and 660 nm (red); continuously polychromatic white LEDs], in the presence of 379 substrates and conditions. Light treatment affected the studied bacterial strains regarding substrate utilization ( strains > SG > Bti). Blue LEDs provoked the most pronounced impact on the phenotypic reaction norms of the strains and Bti. The two Gram-positive strains Bti and SG, respectively, revealed inconsistent biosurfactant formation in all cases. Biosurfactant formation by both strains was supported by most substrates incubated in darkness, and blue LED exposure altered the surface activity profoundly. Blue and white LEDs enhanced biofilm formation in PA in highly utilized C-sources. Putative blue light receptor proteins were found in both strains, showing 91% similarity with the sequence from NCBI accession number WP_064119393. Light quality-nutrient interactions affect biosurfactant activity and biofilm formation of some non-phototrophic phyllosphere bacteria and are, thus, crucial for dynamics of the phyllosphere microbiome.

摘要

叶际环境受到非生物条件的波动影响。本研究考察了四种选定的非光合叶际细菌[对照菌株:sp. DR 5-09;,血清型(Bti)和(SG)]在呼吸模式和表面活性剂活性方面的表型可塑性(PP),这些特性受光谱和养分供应的影响。在379种底物和条件下,于四种光照条件[黑暗(对照);460 nm(蓝色)和660 nm(红色)的单色发光二极管(LED);连续多色白色LED]下检测了菌株的PP。光照处理在底物利用方面影响了所研究的细菌菌株(菌株> SG > Bti)。蓝色LED对菌株和Bti的表型反应规范产生了最显著的影响。两种革兰氏阳性菌株Bti和SG在所有情况下分别显示出不一致的生物表面活性剂形成。黑暗中培养的大多数底物都支持两种菌株形成生物表面活性剂,而蓝色LED照射则深刻改变了表面活性。蓝色和白色LED在高度利用的碳源中增强了PA中的生物膜形成。在两种菌株中都发现了假定的蓝光受体蛋白,与NCBI登录号WP_064119393的序列显示出91%的相似性。光质 - 养分相互作用影响了一些非光合叶际细菌的生物表面活性剂活性和生物膜形成,因此对叶际微生物群落的动态至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f32/8558677/39aafb0bddf9/fmicb-12-725021-g001.jpg

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