官方服务:
资源简介:
Identify the functional anaerobes capable of DMAs(V) reduction
应用场景:
创建时间:
2022-09-15
相关数据集
Biotransformations of Arsenic Associated Microbiota in Different Belowground Soil Fauna Guts: a Hidden Hotspot?
The different soil fauna gut feeling on arsenic biotransformation genes
NIAID Data Ecosystem90
Defining a core microbiome and functions of arsenic (As) hyperaccumulator Pteris vittata (Chinese ladder brake)
Remediation of arsenic (As) contaminated sites is an urgent necessity for ecological restoration. Pteris vittate (Chinese ladder brake) is a well-known As hyperaccumulator plant that could thrive in A
NIAID Data Ecosystem50
Aliihoeflea sp. 2WW Genome sequencing and assembly. Aliihoeflea sp. 2WW
Aim of the project is to sequence the genome of the arsenite-oxidizing bacterium Aliihoeflea sp. 2WW in order to study its role in transformation of arsenic.
NIAID Data Ecosystem50
Data_Sheet_1_Arsenite Oxidation by a Newly Isolated Betaproteobacterium Possessing arx Genes and Diversity of the arx Gene Cluster in Bacterial Genomes.PDF
Microbes play essential roles in arsenic transformation in the environment. Microbial arsenite oxidation is catalyzed by either of two distantly related arsenite oxidases, referred to as AIO and ARX.
NIAID Data Ecosystem50
Bacterium capable of converting arsenate to arsenite. Shewanella sp. ANA-3
Shewanella sp. ANA-3. This strain was isolated from an arsenate treated wood pier that was in a brackish estuary (Eel Pond) in Woods Hole, Massachusetts. It is capable of converting As(V) to arsenite
NIAID Data Ecosystem50



