日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Isolation of Ultra-Small Opitutaceae-Affiliated Verrucomicrobia from a Methane-Fed Bioreactor

从甲烷进料生物反应器中分离出超小型Opitutaceae相关疣微菌

Danilova, Olga V; Salova, Varvara D; Oshkin, Igor Y; Naumoff, Daniil G; Ivanova, Anastasia A; Suzina, Natalia E; Dedysh, Svetlana N

Advancements in prokaryotic systematics and the role of Bergey's International Society for Microbial Systematicsin addressing challenges in the meta-data era

原核生物系统学的进展以及伯杰氏国际微生物系统学会在应对元数据时代挑战中的作用

Jiao, Jian-Yu; Abdugheni, Rashidin; Zhang, Dao-Feng; Ahmed, Iftikhar; Ali, Mukhtiar; Chuvochina, Maria; Dedysh, Svetlana N; Dong, Xiuzhu; Göker, Markus; Hedlund, Brian P; Hugenholtz, Philip; Jangid, Kamlesh; Liu, Shuang-Jiang; Moore, Edward R B; Narsing Rao, Manik Prabhu; Oren, Aharon; Rossello-Mora, Ramon; Rekadwad, Bhagwan Narayan; Salam, Nimaichand; Shu, Wensheng; Sutcliffe, Iain C; Teo, Wee Fei Aaron; Trujillo, Martha E; Venter, Stephanus N; Whitman, William B; Zhao, Guoping; Li, Wen-Jun

Verrucomicrobia of the Family Chthoniobacteraceae Participate in Xylan Degradation in Boreal Peat Soils

疣微菌门(Verrucomicrobia)的壳杆菌科(Chthoniobacteraceae)参与北方泥炭土中木聚糖的降解

Rakitin, Andrey L; Kulichevskaya, Irina S; Beletsky, Alexey V; Mardanov, Andrey V; Dedysh, Svetlana N; Ravin, Nikolai V

Planctomycetes of the Genus Singulisphaera Possess Chitinolytic Capabilities

Singulisphaera 属浮霉菌具有几丁质分解能力

Anastasia A Ivanova, Daniil G Naumoff, Irina S Kulichevskaya, Andrey L Rakitin, Andrey V Mardanov, Nikolai V Ravin, Svetlana N Dedysh

Corrigendum: Hydrolytic Capabilities as a Key to Environmental Success: Chitinolytic and Cellulolytic Acidobacteria From Acidic Sub-arctic Soils and Boreal Peatlands

更正:水解能力是环境成功的关键:来自亚北极酸性土壤和北方泥炭地的几丁质分解菌和纤维素分解菌

Belova, Svetlana E; Ravin, Nikolai V; Pankratov, Timofey A; Rakitin, Andrey L; Ivanova, Anastasia A; Beletsky, Alexey V; Mardanov, Andrey V; Sinninghe Damsté, Jaap S; Dedysh, Svetlana N

Genome analysis of the candidate phylum MBNT15 bacterium from a boreal peatland predicted its respiratory versatility and dissimilatory iron metabolism

对来自北方泥炭地的候选门MBNT15细菌的基因组分析预测了其呼吸多样性和异化铁代谢能力。

Begmatov, Shahjahon; Beletsky, Alexey V; Dedysh, Svetlana N; Mardanov, Andrey V; Ravin, Nikolai V

Building a Cell House from Cellulose: The Case of the Soil Acidobacterium Acidisarcina polymorpha SBC82(T)

利用纤维素构建细胞屋:以土壤酸杆菌多形酸杆菌 SBC82(T) 为例

Belova, Svetlana E; Naumoff, Daniil G; Suzina, Natalia E; Kovalenko, Vladislav V; Loiko, Nataliya G; Sorokin, Vladimir V; Dedysh, Svetlana N

Highly Distinct Microbial Communities in Elevated Strings and Submerged Flarks in the Boreal Aapa-Type Mire

北方阿帕型沼泽高架条带和水下褶皱中截然不同的微生物群落

Rakitin, Andrey L; Begmatov, Shahjahon; Beletsky, Alexey V; Philippov, Dmitriy A; Kadnikov, Vitaly V; Mardanov, Andrey V; Dedysh, Svetlana N; Ravin, Nikolai V

Rokubacteria in Northern Peatlands: Habitat Preferences and Diversity Patterns

北方泥炭地中的罗库杆菌:生境偏好和多样性模式

Ivanova, Anastasia A; Oshkin, Igor Y; Danilova, Olga V; Philippov, Dmitriy A; Ravin, Nikolai V; Dedysh, Svetlana N

Complete Genome Sequence of Paludibaculum fermentans P105(T), a Facultatively Anaerobic Acidobacterium Capable of Dissimilatory Fe(III) Reduction

兼性厌氧酸杆菌 Paludibaculum fermentans P105(T) 的完整基因组序列,该菌能够进行异化 Fe(III) 还原

Dedysh, Svetlana N; Beletsky, Alexey V; Kulichevskaya, Irina S; Mardanov, Andrey V; Ravin, Nikolai V