The interplay between microbial communities and soil properties
In recent years, there has been considerable progress in determining the soil properties that
influence the structure of the soil microbiome. By contrast, the effects of microorganisms on …
influence the structure of the soil microbiome. By contrast, the effects of microorganisms on …
Relationship between plant roots, rhizosphere microorganisms, and nitrogen and its special focus on rice
Q Xiong, J Hu, H Wei, H Zhang, J Zhu - Agriculture, 2021 - mdpi.com
Fertilization is an important practical measure in agricultural production. As an important
nutrient element of plants, nitrogen (N) has a significant impact on the plant productivity and …
nutrient element of plants, nitrogen (N) has a significant impact on the plant productivity and …
Humic substances as electron acceptors for anaerobic oxidation of methane driven by ANME-2d
Humic substances (humics) are ubiquitous in terrestrial and aquatic environments where
they can serve as electron acceptors for anaerobic oxidation of organic compounds …
they can serve as electron acceptors for anaerobic oxidation of organic compounds …
Roles and opportunities for microbial anaerobic oxidation of methane in natural and engineered systems
Reduction in methane emissions to the Earth's atmosphere is a critical strategy for tackling
climate change. It is well established that anaerobic oxidation of methane (AOM) associated …
climate change. It is well established that anaerobic oxidation of methane (AOM) associated …
Simultaneous nitrate and sulfate dependent anaerobic oxidation of methane linking carbon, nitrogen and sulfur cycles
ANaerobic MEthanotrophic (ANME) archaea are critical microorganisms mitigating methane
emission from anoxic zones. In previous studies, sulfate-dependent anaerobic oxidation of …
emission from anoxic zones. In previous studies, sulfate-dependent anaerobic oxidation of …
Active pathways of anaerobic methane oxidation across contrasting riverbeds
Anaerobic oxidation of methane (AOM) reduces methane emissions from marine
ecosystems but we know little about AOM in rivers, whose role in the global carbon cycle is …
ecosystems but we know little about AOM in rivers, whose role in the global carbon cycle is …
Microbial dynamics and activity of denitrifying anaerobic methane oxidizers in China's estuarine and coastal wetlands
Y Niu, Y Zheng, L Hou, D Gao, F Chen, C Pei… - Science of the Total …, 2022 - Elsevier
Estuarine and coastal wetlands, which act as large sources of methane (CH 4) and undergo
substantial loading of anthropogenic nitrogen (N), provide ideal conditions for denitrifying …
substantial loading of anthropogenic nitrogen (N), provide ideal conditions for denitrifying …
Nitrogen input promotes denitrifying methanotrophs' abundance and contribution to methane emission reduction in coastal wetland and paddy soil
Denitrifying anaerobic methane oxidation (DAMO) microorganisms, using nitrate/nitrite to
oxidize methane, have been proved to be an important microbial methane sink in natural …
oxidize methane, have been proved to be an important microbial methane sink in natural …
[HTML][HTML] Niche differentiation of denitrifying anaerobic methane oxidizing bacteria and archaea leads to effective methane filtration in a Tibetan alpine wetland
F Xie, A Ma, H Zhou, Y Liang, J Yin, K Ma… - Environment …, 2020 - Elsevier
Denitrifying anaerobic methane oxidation (DAMO) is a vital methane sink in wetlands.
However, the interactions and niche partitioning of DAMO bacteria and archaea in …
However, the interactions and niche partitioning of DAMO bacteria and archaea in …
Denitrifying anaerobic methane oxidation in intertidal marsh soils: Occurrence and environmental significance
Y Zheng, L Hou, F Chen, J Zhou, M Liu, G Yin, J Gao… - Geoderma, 2020 - Elsevier
Denitrifying anaerobic methane oxidation (DAMO), consisting of nitrite-dependent DAMO
(nitrite-DAMO) and nitrate-dependent DAMO (nitrate-DAMO), has recently been discovered …
(nitrite-DAMO) and nitrate-dependent DAMO (nitrate-DAMO), has recently been discovered …