Aerobic methane production by phytoplankton as an important methane source of aquatic ecosystems: Reconsidering the global methane budget

被引:4
|
作者
Mao, Yufeng [1 ,2 ,3 ]
Lin, Tong
Li, Hong
He, Ruixu [1 ,2 ]
Ye, Kailai [1 ,2 ]
Yu, Weiwei [2 ]
He, Qiang [1 ,4 ]
机构
[1] Chongqing Univ, Key Lab Ecoenvironm Three Gorges Reg, Minist Educ, Chongqing 400044, Peoples R China
[2] Chongqing Jiaotong Univ, Key Lab Hydraul & Waterway Engn, Minist Educ, Chongqing 400074, Peoples R China
[3] Lingzhi Environm Protect Co Ltd, Wuxi 214200, Peoples R China
[4] 174 Shazheng St, Chongqing 400044, Peoples R China
关键词
Methane; Aerobic; Phytoplankton; Aquatic ecosystems; Mechanisms; Factors; UV-B RADIATION; TIME-SERIES STATION; NITROGEN-FIXATION; HEAT-STRESS; SURFACE-WATER; PHOTOSYNTHETIC PIGMENTS; PHOSPHONATE UTILIZATION; TEMPERATURE-DEPENDENCE; TRICHODESMIUM IMS101; MARINE-PHYTOPLANKTON;
D O I
10.1016/j.scitotenv.2023.167864
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Biological methane, a major source of global methane budget, is traditionally thought to be produced in anaerobic environments. However, the recent reports about methane supersaturation occurring in oxygenated water layer, termed as "methane paradox", have challenged this prevailing paradigm. Significantly, growing evidence has indicated that phytoplankton including prokaryotic cyanobacteria and eukaryotic algae are capable of generating methane under aerobic conditions. In this regard, a systematic review of aerobic methane pro-duction by phytoplankton is expected to arouse the public attention, contributing to the understanding of methane paradox. Here, we comprehensively summarize the widespread phenomena of methane supersaturation in oxic layers. The remarkable correlation relationships between methane concentration and several key in-dicators (depth, chlorophyll a level and organic sulfide concentration) indicate the significance of phytoplankton in in-situ methane accumulation. Subsequently, four mechanisms of aerobic methane production by phyto-plankton are illustrated in detail, including photosynthesis-driven metabolism, reactive oxygen species (ROS)-driven demethylation of methyl donors, methanogenesis catalyzed by nitrogenase and demethylation of phos-phonates catalyzed by C-P lyase. The first two pathways occur in various phytoplankton, while the latter two have been specially discovered in cyanobacteria. Additionally, the effects of four crucial factors on aerobic methane production by phytoplankton are also discussed, including phytoplankton species, light, temperature and crucial nutrients. Finally, the measures to control global methane emissions from phytoplankton, the precise intracellular mechanisms of methane production and a more complete global methane budget model are defi-nitely required in the future research on methane production by phytoplankton. This review would provide guidance for future studies of aerobic methane production by phytoplankton and emphasize the potential contribution of aquatic ecosystems to global methane budget.
引用
收藏
页数:18
相关论文
共 50 条
  • [21] GLOBAL PRODUCTION OF METHANE BY TERMITES
    RASMUSSEN, RA
    KHALIL, MAK
    [J]. NATURE, 1983, 301 (5902) : 700 - 702
  • [22] GLOBAL METHANE PRODUCTION BY TERMITES
    ZIMMERMAN, PR
    WESTBERG, C
    DARLINGTON, J
    [J]. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1987, 193 : 83 - GEOC
  • [23] Dimethylated Sulfur, Methane and Aerobic Methane Production in the Yellow Sea and Bohai Sea
    Zhang, Yan
    Tan, Dan-Dan
    He, Zhen
    Yu, Juan
    Yang, Gui-Peng
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 2023, 128 (08)
  • [24] New directions: GEM - Geologic emissions of methane, the missing source in the atmospheric methane budget
    Etiope, G
    [J]. ATMOSPHERIC ENVIRONMENT, 2004, 38 (19) : 3099 - 3100
  • [25] Regional trends and drivers of the global methane budget
    Stavert, Ann R.
    Saunois, Marielle
    Canadell, Josep G.
    Poulter, Benjamin
    Jackson, Robert B.
    Regnier, Pierre
    Lauerwald, Ronny
    Raymond, Peter A.
    Allen, George H.
    Patra, Prabir K.
    Bergamaschi, Peter
    Bousquet, Phillipe
    Chandra, Naveen
    Ciais, Philippe
    Gustafson, Adrian
    Ishizawa, Misa
    Ito, Akihiko
    Kleinen, Thomas
    Maksyutov, Shamil
    McNorton, Joe
    Melton, Joe R.
    Mueller, Jurek
    Niwa, Yosuke
    Peng, Shushi
    Riley, William J.
    Segers, Arjo
    Tian, Hanqin
    Tsuruta, Aki
    Yin, Yi
    Zhang, Zhen
    Zheng, Bo
    Zhuang, Qianlai
    [J]. GLOBAL CHANGE BIOLOGY, 2022, 28 (01) : 182 - 200
  • [26] The Global Methane Budget 2000-2017
    Saunois, Marielle
    Stavert, Ann R.
    Poulter, Ben
    Bousquet, Philippe
    Canadell, Josep G.
    Jackson, Robert B.
    Raymond, Peter A.
    Dlugokencky, Edward J.
    Houweling, Sander
    Patra, Prabir K.
    Ciais, Philippe
    Arora, Vivek K.
    Bastviken, David
    Bergamaschi, Peter
    Blake, Donald R.
    Brailsford, Gordon
    Bruhwiler, Lori
    Carlson, Kimberly M.
    Carrol, Mark
    Castaldi, Simona
    Chandra, Naveen
    Crevoisier, Cyril
    Crill, Patrick M.
    Covey, Kristofer
    Curry, Charles L.
    Etiope, Giuseppe
    Frankenberg, Christian
    Gedney, Nicola
    Hegglin, Michaela, I
    Hoglund-Isaksson, Lena
    Hugelius, Gustaf
    Ishizawa, Misa
    Ito, Akihiko
    Janssens-Maenhout, Greet
    Jensen, Katherine M.
    Joos, Fortunat
    Kleinen, Thomas
    Krummel, Paul B.
    Langenfelds, Ray L.
    Laruelle, Goulven G.
    Liu, Licheng
    Machida, Toshinobu
    Maksyutov, Shamil
    McDonald, Kyle C.
    McNorton, Joe
    Miller, Paul A.
    Melton, Joe R.
    Morino, Isamu
    Muller, Jurek
    Murguia-Flores, Fabiola
    [J]. EARTH SYSTEM SCIENCE DATA, 2020, 12 (03) : 1561 - 1623
  • [27] The global methane budget 2000-2012
    Saunois, Marielle
    Bousquet, Philippe
    Poulter, Ben
    Peregon, Anna
    Ciais, Philippe
    Canadell, Josep G.
    Dlugokencky, Edward J.
    Etiope, Giuseppe
    Bastviken, David
    Houweling, Sander
    Janssens-Maenhout, Greet
    Tubiello, Francesco N.
    Castaldi, Simona
    Jackson, Robert B.
    Alexe, Mihai
    Arora, Vivek K.
    Beerling, David J.
    Bergamaschi, Peter
    Blake, Donald R.
    Brailsford, Gordon
    Brovkin, Victor
    Bruhwiler, Lori
    Crevoisier, Cyril
    Crill, Patrick
    Covey, Kristofer
    Curry, Charles
    Frankenberg, Christian
    Gedney, Nicola
    Hoeglund-Isaksson, Lena
    Ishizawa, Misa
    Ito, Akihiko
    Joos, Fortunat
    Kim, Heon-Sook
    Kleinen, Thomas
    Krummel, Paul
    Lamarque, Jean-Francois
    Langenfelds, Ray
    Locatelli, Robin
    Machida, Toshinobu
    Maksyutov, Shamil
    McDonald, Kyle C.
    Marshall, Julia
    Melton, Joe R.
    Morino, Isamu
    Naik, Vaishali
    O'Doherty, Simon
    Parmentier, Frans-Jan W.
    Patra, Prabir K.
    Peng, Changhui
    Peng, Shushi
    [J]. EARTH SYSTEM SCIENCE DATA, 2016, 8 (02) : 697 - 751
  • [28] Global atmospheric methane: budget, changes and dangers
    Dlugokencky, Edward J.
    Nisbet, Euan G.
    Fisher, Rebecca
    Lowry, David
    [J]. PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 2011, 369 (1943): : 2058 - 2072
  • [29] Methane bubbling from northern lakes: present and future contributions to the global methane budget
    Walter, Katey M.
    Smith, Laurence C.
    Chapin, F. Stuart, III
    [J]. PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 2007, 365 (1856): : 1657 - 1676
  • [30] Constraining global methane emissions and uptake by ecosystems
    Spahni, R.
    Wania, R.
    Neef, L.
    van Weele, M.
    Pison, I.
    Bousquet, P.
    Frankenberg, C.
    Foster, P. N.
    Joos, F.
    Prentice, I. C.
    van Velthoven, P.
    [J]. BIOGEOSCIENCES, 2011, 8 (06) : 1643 - 1665