نتایج جستجو برای: anabaena

تعداد نتایج: 1910  

Journal: :Journal of bacteriology 1997
J Elhai A Vepritskiy A M Muro-Pastor E Flores C P Wolk

The efficiency of conjugal transfer of plasmids from Escherichia coli to the cyanobacterium Anabaena sp. strain PCC 7120 was quantitated as a function of the number of restriction sites for the restriction enzymes carried by the recipient. In addition to the previously recognized isoschizomers of AvaI and AvaII, PCC 7120 was found to possess an isoschizomer of AvaIII. Plasmids modified in E. co...

2008
Kevin J. Horn

Three strains of cyanobacteria (Anabaena PCC7120, A. variabilis and Nostoc commune), all belonging to the family Nostocaceae, were found to be capable of modulating the production and chemical composition of extracellular polysaccharides (EPS) in response to carbon and nitrogen availability as well as pH. While the carbohydrate compositions of the glycans produced by the different organisms wer...

Journal: :Journal of bacteriology 2002
Tao Li Xu Huang Ruanbao Zhou Yingfang Liu Bin Li Chris Nomura Jindong Zhao

Superoxide dismutases (Sods) play very important roles in preventing oxidative damages in aerobic organisms. The nitrogen-fixing heterocystous cyanobacterium Anabaena sp. strain PCC 7120 has two Sod-encoding genes: a sodB, encoding a soluble iron-containing Sod (FeSod), and a sodA, encoding a manganese-containing Sod (MnSod). The FeSod was purified and characterized. A recombinant FeSod was als...

Journal: :Plant & cell physiology 1997
N Sato K Maruyama

The RbpA3 protein of Anabaena variabilis contains one RNA-binding domain with a carboxy-terminal glycinerich domain. Levels of two transcripts of the rbpA3 gene were differentially regulated by growth temperature. The RbpA3 protein is related to the RbpC protein within the group of cyanobacterial Rbps.

Journal: :FEMS microbiology letters 2003
Judith A Baker Barrie Entsch David B McKay

The cyanobacterial symbionts in the fern Azolla have generally been ascribed to either the Anabaena or Nostoc genera. By using comparisons of the sequences of the phycocyanin intergenic spacer and a fragment of the 16S rRNA, we found that the cyanobiont from an Azolla belongs to neither of these genera.

Journal: :Nucleic acids research 1978
J G Sutcliffe G M Church

We have determined that the type II restriction enzyme Ava II, isolated from Anabaena variabilis, recognizes and cuts the sequence (formula: see article). The eight Ava II sites of pBR322 have been mapped, as well as a unique site for Ava I.

2015
Dennis J. Nürnberg Vicente Mariscal Jan Bornikoel Mercedes Nieves-Morión Norbert Krauß Antonia Herrero Iris Maldener Enrique Flores Conrad W. Mullineaux

UNLABELLED Many filamentous cyanobacteria produce specialized nitrogen-fixing cells called heterocysts, which are located at semiregular intervals along the filament with about 10 to 20 photosynthetic vegetative cells in between. Nitrogen fixation in these complex multicellular bacteria depends on metabolite exchange between the two cell types, with the heterocysts supplying combined-nitrogen c...

پایان نامه :دانشگاه تربیت معلم - تهران - دانشکده زیست شناسی 1390

افزایش روزافزون آلودگی های نفتی و تاثیرات مخرب آن بر اکوسیستم ها منجر به استفاده از میکروارگانیسم ها از جمله سیانوباکتری ها به منظور تجزیه ی این آلودگی ها شده است. در این پژوهش اثر نفت خام بر پاسخ های فیزیولوژیک سیانوباکتری isc55 anabaena sp. و توانایی این سیانوباکتری در تجزیه زیستی نفت خام بررسی شده است. به منظور انجام سنجش های فیزیولوژیک، پس از انجام مراحل خالص سازی توسط روش پلیت آگار و ازدیا...

2017
Roshan Kumar Koushik Biswas Puneet Kumar Singh Pankaj Kumar Singh Sanniyasi Elumalai Pratyoosh Shukla Sunil Pabbi

BACKGROUND Microalgae grown under different nutrient deficient conditions present a good source of natural lipids with applications for several types of biofuels. The expression of acetyl-CoA carboxylase gene can further provide an insight to the mechanisms leading to enhanced lipid production under such stresses. In this study, two nutrients viz. nitrogen and phosphorus were modulated to see i...

2014
L Botello-Morte MF Fillat

Introduction Prokaryotes must cope with oxidative stress as a result of the normal aerobic metabolism as well as a consequence of exogenous drugs, radiations or even infection-derived host defences. Oxidative stress is responsible for damaging essential cellular structures and biomolecules such as DNA, lipids or proteins. Intriguingly, some transcriptional regulators are capable to sense those ...

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