نتایج جستجو برای: nostoc calcicola

تعداد نتایج: 1017  

2015
Tânia K. Shishido Anu Humisto Jouni Jokela Liwei Liu Matti Wahlsten Anisha Tamrakar David P. Fewer Perttu Permi Ana P. D. Andreote Marli F. Fiore Kaarina Sivonen

Cyanobacteria are photosynthetic prokaryotes found in a range of environments. They are infamous for the production of toxins, as well as bioactive compounds, which exhibit anticancer, antimicrobial and protease inhibition activities. Cyanobacteria produce a broad range of antifungals belonging to structural classes, such as peptides, polyketides and alkaloids. Here, we tested cyanobacteria fro...

2016
Xiang Gao Haiyan Xu Shuifeng Ye Wenyu Liang

Nostoc flagelliforme, a filamentous nitrogen-fixing cyanobacterium, is widely distributed in arid steppes of the west and northwestern parts of China. However, as a food delicacy this species has been overexploited from 1970 to 2000. Moreover, overgrazing, land reclamation and the removal of medicinal herbs have caused severely reduced vegetation coverage there. In this communication, a badly d...

Journal: :Applied and environmental microbiology 1994
J Ben-Porath J P Zehr

The DNA sequence of a 359-bp fragment of nifH was determined for the heterocystous strains Anabaena sp. strain CA (ATCC 33047), Nostoc muscorum UTEX 1933, a Nostoc sp., Gloeothece sp. strain ATCC 27152, Lyngbya lagerheimii UTEX 1930, and Plectonema boryanum IU 594. Results confirmed that the DNA sequence of the 359-bp segment is sufficiently variable to distinguish cyanobacterial nifH genes fro...

2015
Catalina Zúñiga Diego Leiva Lía Ramírez-Fernández Margarita Carú Rebecca Yahr Julieta Orlando

The lichen genus Peltigera has been mainly revised in the Northern Hemisphere, with most species being recorded in Europe and North America. This study assessed the phylogenetic diversity of the mycobionts and cyanobionts of Peltigera cyanolichens collected in Southern Chile and Antarctica, areas in which lichens are extremely diverse but poorly studied. The operational taxonomic units (OTUs) o...

Journal: :FEMS microbiology ecology 2011
Toshio Sakamoto Keisuke Kumihashi Shinpei Kunita Takuya Masaura Kaori Inoue-Sakamoto Masaaki Yamaguchi

The aquatic cyanobacterium Nostoc verrucosum forms macroscopic colonies, which consist of both cellular filaments and massive extracellular matrix material. In this study, the physiological features of N. verrucosum were investigated and compared with those of the anhydrobiotic cyanobacterium Nostoc commune. Nostoc verrucosum cells were sensitive to desiccation, but tolerant of freeze-thawing t...

Journal: :Acta astronautica 2004
G H Wang G B Li D H Li Y D Liu L R Song G H Tong X M Liu E T Cheng

Using remote sensing technique, we investigated real-time Nostoc sphaeroides Kütz (Cyanobacterium) in Closed System under microgravity by SHENZHOU-2 spacecraft in January 2001. The experiments had 1 g centrifuges in space for control and ground control group experiments were also carried out in the same equipments and under the same controlled condition. The data about the population growth of ...

ژورنال: :مجله گیاهشناسی ایران 2014
ساره سادات کاظمی سید رضا صفوی

ضمن مطالعه گلسنگ های هرباریوم موسسه تحقیقات جنگلها و مراتع کشور (tari)، سه گونه جدید برای کشور از تیره   teloschistaceae zahlbr. تشخیص داده شد. این گونه ها از استانهای گیلان، البرز و مازندران جمع آوری شده اند و عبارتند از: caloplaca irrubescens (arnold) zahlbr. ،caloplaca monacensis(leder.) lettau و xanthoria calcicola oxner.

Journal: :Bioscience, biotechnology, and biochemistry 2006
Makiko Aichi Saori Yoshihara Madoka Yamashita Shin-ichi Maeda Kazuo Nagai Tatsuo Omata

The products of the NpR1527 and NpR1526 genes of the filamentous, diazotrophic, fresh-water cyanobacterium Nostoc punctiforme strain ATCC 29133 were identified as a nitrate transporter (NRT) and nitrate reductase (NR) respectively, by complementation of nitrate assimilation mutants of the cyanobacterium Synechococcus elongatus strain PCC 7942. While other fresh-water cyanobacteria, including S....

2007
Elizabeth A. Barnes Mary E. Power Efi Foufoula-Georgiou Miki Hondzo William E. Dietrich

[1] We propose a methodology for upscaling biomass in a river using a combination of dimensional analysis and hydro-geomorphologic scaling laws. We first demonstrate the use of dimensional analysis for determining local scaling relationships between Nostoc biomass and hydrologic and geomorphic variables. We then combine these relationships with hydraulic geometry and streamflow scaling in order...

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