نتایج جستجو برای: pseudomonas fluorescens

تعداد نتایج: 53242  

2014
Alexandre Jousset Joerg Schuldes Christoph Keel Monika Maurhofer Rolf Daniel Stefan Scheu Andrea Thuermer

We report the complete genome sequence of the free-living bacterium Pseudomonas protegens (formerly Pseudomonas fluorescens) CHA0, a model organism used in plant-microbe interactions, biological control of phytopathogens, and bacterial genetics.

Journal: :Zeitschrift fur Naturforschung. C, Journal of biosciences 2008
Sandra Matthijs Herbert Budzikiewicz Mathias Schäfer Bernard Wathelet Pierre Cornelis

From a pyoverdin-negative mutant of Pseudomonas fluorescens AF76 a new lipopeptidic siderophore (ornicorrugatin) could be isolated. It is structurally related to the siderophore of Pseudomonas corrugata differing in the replacement of one Dab unit by Orn.

Journal: :Journal of bacteriology 1978
M Mergeay A Boyen C Legrain N Glansdorff

Escherichia coli argE and argH gene products were detected in Pseudomonas fluorescens argH122 carrying the E. coli F110 plasmid.

Journal: :International Journal of Enviornment and Climate Change 2023

The present experiment was conducted in the Department of Fruit Science, College Horticulture and Forestry, Pasighat, Arunachal Pradesh, during year 2021-2022. trial laid out using two factorial RBD replicated thrice. Assam lemon trees were pruned at 25% (P1), 50% (P2) from top apex soil drenching with Pseudomonas fluorescens @ 90g/plant (B1), Trichoderma (B2), Azotobacter 15g/plant (B3) a comb...

Journal: :Journal of bacteriology 1983
L H Bopp A M Chakrabarty H L Ehrlich

Chromate resistance of Pseudomonas fluorescens LB300, isolated from chromium-contaminated sediment in the upper Hudson River, was found to be plasmid specified. Loss of the plasmid (pLHB1) by spontaneous segregation or mitomycin C curing resulted in a simultaneous loss of chromate resistance. Subsequent transformation of such strains with purified pLHB1 plasmid DNA resulted in a simultaneous re...

Journal: :Proceedings. Biological sciences 2016
Jiaqi Tan Matthew R Slattery Xian Yang Lin Jiang

Understanding ecological mechanisms regulating the evolution of biodiversity is of much interest to ecologists and evolutionary biologists. Adaptive radiation constitutes an important evolutionary process that generates biodiversity. Competition has long been thought to influence adaptive radiation, but the directionality of its effect and associated mechanisms remain ambiguous. Here, we report...

Journal: :Applied microbiology 1970
L B Tabatabai H W Walker

A new apparatus was developed for measuring changes in E(h), pH, and cell numbers. With this apparatus, the relationships of these parameters were studied at initial E(h) levels of 200 and 40 mv (pH 7.0), by using Clostridium perfringens and Pseudomonas fluorescens. One of the strains of C. perfringens grew more luxuriantly at the higher E(h), in the presence of small quantities of oxygen, than...

Journal: :The American naturalist 2005
Rowan D H Barrett R Craig MacLean Graham Bell

In complex environments that contain several substitutable resources, lineages may become specialized to consume only one or a few of them. Here we investigate the importance of environmental complexity in determining the evolution of niche width over approximately 900 generations in a chemically defined experimental system. We propagated 120 replicate lines of the bacterium Pseudomonas fluores...

ژورنال: :بیماریهای گیاهی 2011
ارغوان کمالی مسعود احمد زاده کیوان بهبودی

در این تحقیق تشکیل بیوفیلم در تعدادی از استرین های pseudomonas fluorescens به صورت غیر مستقیم توسط ارزیابی سلول های باکتریایی رنگ شده توسط کریستال ویوله بررسی و با هم مقایسه گردید. استرینpseudomonas fluorescens utpf98  به دلیل توانایی فراوان در تشکیل بیوفیلم انتخاب شد. سپس مراحل تشکیل بیوفیلم( شامل اتصال برگشت پذیر و برگشت ناپذیر به سطح، تشکیل میکروکلنی و تشکیل ماکروکلنی همراه با تولید اگزوپلی ...

Journal: :Applied microbiology 1974
L F Jones E T Thomas J D Stinnett G L Gilardi J J Farmer

Only the fluorescent pseudomonads, Pseudomonas aeruginosa, P. putida, and P. fluorescens, were sensitive to pyocins produced from P. aeruginosa.

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