Cryptogam plant community stability: Warming weakens influences of species richness but enhances effects of evenness

被引:5
作者
Gu, Qian [1 ,2 ]
Yu, Qiang [3 ]
Grogan, Paul [2 ]
机构
[1] Chinese Acad Agr Sci, Inst Agr Resources & Reg Planning, Natl Hulunber Grassland Ecosyst Observat & Res St, Beijing, Peoples R China
[2] Queens Univ, Dept Biol, Kingston, ON, Canada
[3] Beijing Forestry Univ, Sch Grassland Sci, Beijing, Peoples R China
基金
加拿大自然科学与工程研究理事会;
关键词
biodiversity; bryophytes; global warming; lichens; species synchrony; tundra; SIMULATED CLIMATE-CHANGE; TEMPORAL STABILITY; ECOSYSTEM FUNCTION; ARCTIC TUNDRA; DIVERSITY; BIODIVERSITY; RESPONSES; PRODUCTIVITY; NITROGEN; TEMPERATURE;
D O I
10.1002/ecy.3842
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Community stability is a fundamental factor sustaining ecosystem functioning and is affected by species richness and species evenness. The Arctic is warming more rapidly than other biomes, and cryptogam plant species (specifically lichens and bryophytes in this study) are major contributors to tundra biodiversity and productivity. However, to our knowledge, the impacts of warming on cryptogam community stability and the underlying mechanisms have not been investigated. We conducted a 13-year summer warming experiment in mesic birch hummock tundra vegetation near Daring Lake in the continental interior of low Arctic Canada and recorded patterns of cryptogam species abundance in several different growing seasons. Warming decreased the stability of total community abundance, had no effects on species richness, but increased species evenness and species synchrony. Structural equation model analyses indicated that higher species richness was the principal factor associated with the stronger community abundance stability in the control plots and that this effect was driven primarily by a negative correlation with species synchrony. By contrast, higher species evenness was the principal factor associated with the weakened community abundance stability in the warming plots, and this effect was driven primarily by a positive correlation with species synchrony. Our study suggests that climate warming could reduce cryptogam plant community stability in low Arctic tundra and, therefore, decrease important ecosystem services, including carbon storage and food availability to caribou in northern regions.
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页数:12
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共 72 条
  • [1] Bryophyte cover and richness decline after 18 years of experimental warming in alpine Sweden
    Alatalo, Juha M.
    Jagerbrand, Annika K.
    Erfanian, Mohammad Bagher
    Chen, Shengbin
    Sun, Shou-Qin
    Molau, Ulf
    [J]. AOB PLANTS, 2020, 12 (06):
  • [2] Bliss T., 1981, TUNDRA ECOSYSTEMS CO
  • [3] Biodiversity loss and its impact on humanity
    Cardinale, Bradley J.
    Duffy, J. Emmett
    Gonzalez, Andrew
    Hooper, David U.
    Perrings, Charles
    Venail, Patrick
    Narwani, Anita
    Mace, Georgina M.
    Tilman, David
    Wardle, David A.
    Kinzig, Ann P.
    Daily, Gretchen C.
    Loreau, Michel
    Grace, James B.
    Larigauderie, Anne
    Srivastava, Diane S.
    Naeem, Shahid
    [J]. NATURE, 2012, 486 (7401) : 59 - 67
  • [4] Cohen J, 2014, NAT GEOSCI, V7, P627, DOI [10.1038/NGEO2234, 10.1038/ngeo2234]
  • [5] Global change and arctic ecosystems:: is lichen decline a function of increases in vascular plant biomass?
    Cornelissen, JHC
    Callaghan, TV
    Alatalo, JM
    Michelsen, A
    Graglia, E
    Hartley, AE
    Hik, DS
    Hobbie, SE
    Press, MC
    Robinson, CH
    Henry, GHR
    Shaver, GR
    Phoenix, GK
    Jones, DG
    Jonasson, S
    Chapin, FS
    Molau, U
    Neill, C
    Lee, JA
    Melillo, JM
    Sveinbjörnsson, B
    Aerts, R
    [J]. JOURNAL OF ECOLOGY, 2001, 89 (06) : 984 - 994
  • [6] Comparative cryptogam ecology: A review of bryophyte and lichen traits that drive biogeochemistry
    Cornelissen, Johannes H. C.
    Lang, Simone I.
    Soudzilovskaia, Nadejda A.
    During, Heinjo J.
    [J]. ANNALS OF BOTANY, 2007, 99 (05) : 987 - 1001
  • [7] Multiple facets of biodiversity drive the diversity-stability relationship
    Craven, Dylan
    Eisenhauer, Nico
    Pearse, William D.
    Hautier, Yann
    Isbell, Forest
    Roscher, Christiane
    Bahn, Michael
    Beierkuhnlein, Carl
    Boenisch, Gerhard
    Buchmann, Nina
    Byun, Chaeho
    Catford, Jane A.
    Cerabolini, Bruno E. L.
    Cornelissen, J. Hans C.
    Craine, Joseph M.
    De Luca, Enrica
    Ebeling, Anne
    Griffin, John N.
    Hector, Andy
    Hines, Jes
    Jentsch, Anke
    Kattge, Jens
    Kreyling, Juergen
    Lanta, Vojtech
    Lemoine, Nathan
    Meyer, Sebastian T.
    Minden, Vanessa
    Onipchenko, Vladimir
    Polley, H. Wayne
    Reich, Peter B.
    van Ruijven, Jasper
    Schamp, Brandon
    Smith, Melinda D.
    Soudzilovskaia, Nadejda A.
    Tilman, David
    Weigelt, Alexandra
    Wilsey, Brian
    Manning, Peter
    [J]. NATURE ECOLOGY & EVOLUTION, 2018, 2 (10): : 1579 - 1587
  • [8] Plot-scale evidence of tundra vegetation change and links to recent summer warming
    Elmendorf, Sarah C.
    Henry, Gregory H. R.
    Hollister, Robert D.
    Bjork, Robert G.
    Boulanger-Lapointe, Noemie
    Cooper, Elisabeth J.
    Cornelissen, Johannes H. C.
    Day, Thomas A.
    Dorrepaal, Ellen
    Elumeeva, Tatiana G.
    Gill, Mike
    Gould, William A.
    Harte, John
    Hik, David S.
    Hofgaard, Annika
    Johnson, David R.
    Johnstone, Jill F.
    Jonsdottir, Ingibjorg Svala
    Jorgenson, Janet C.
    Klanderud, Kari
    Klein, Julia A.
    Koh, Saewan
    Kudo, Gaku
    Lara, Mark
    Levesque, Esther
    Magnusson, Borgthor
    May, Jeremy L.
    Mercado-Diaz, Joel A.
    Michelsen, Anders
    Molau, Ulf
    Myers-Smith, Isla H.
    Oberbauer, Steven F.
    Onipchenko, Vladimir G.
    Rixen, Christian
    Schmidt, Niels Martin
    Shaver, Gaius R.
    Spasojevic, Marko J.
    Porhallsdottir, Pora Ellen
    Tolvanen, Anne
    Troxler, Tiffany
    Tweedie, Craig E.
    Villareal, Sandra
    Wahren, Carl-Henrik
    Walker, Xanthe
    Webber, Patrick J.
    Welker, Jeffrey M.
    Wipf, Sonja
    [J]. NATURE CLIMATE CHANGE, 2012, 2 (06) : 453 - 457
  • [9] Global assessment of experimental climate warming on tundra vegetation: heterogeneity over space and time
    Elmendorf, Sarah C.
    Henry, Gregory H. R.
    Hollister, Robert D.
    Bjork, Robert G.
    Bjorkman, Anne D.
    Callaghan, Terry V.
    Collier, Laura Siegwart
    Cooper, Elisabeth J.
    Cornelissen, Johannes H. C.
    Day, Thomas A.
    Fosaa, Anna Maria
    Gould, William A.
    Gretarsdottir, Jarngerdur
    Harte, John
    Hermanutz, Luise
    Hik, David S.
    Hofgaard, Annika
    Jarrad, Frith
    Jonsdottir, Ingibjorg Svala
    Keuper, Frida
    Klanderud, Kari
    Klein, Julia A.
    Koh, Saewan
    Kudo, Gaku
    Lang, Simone I.
    Loewen, Val
    May, Jeremy L.
    Mercado, Joel
    Michelsen, Anders
    Molau, Ulf
    Myers-Smith, Isla H.
    Oberbauer, Steven F.
    Pieper, Sara
    Post, Eric
    Rixen, Christian
    Robinson, Clare H.
    Schmidt, Niels Martin
    Shaver, Gaius R.
    Stenstrom, Anna
    Tolvanen, Anne
    Totland, Orjan
    Troxler, Tiffany
    Wahren, Carl-Henrik
    Webber, Patrick J.
    Welker, Jeffery M.
    Wookey, Philip A.
    [J]. ECOLOGY LETTERS, 2012, 15 (02) : 164 - 175
  • [10] Climate and local environment structure asynchrony and the stability of primary production in grasslands
    Gilbert, Benjamin
    MacDougall, Andrew S.
    Kadoya, Taku
    Akasaka, Munemitsu
    Bennett, Joseph R.
    Lind, Eric M.
    Flores-Moreno, Habacuc
    Firn, Jennifer
    Hautier, Yann
    Borer, Elizabeth T.
    Seabloom, Eric W.
    Adler, Peter B.
    Cleland, Elsa E.
    Grace, James B.
    Harpole, William Stanley
    Esch, Ellen H.
    Moore, Joslin L.
    Knops, Johannes
    McCulley, Rebecca
    Mortensen, Brent
    Bakker, Jonathan
    Fay, Philip A.
    [J]. GLOBAL ECOLOGY AND BIOGEOGRAPHY, 2020, 29 (07): : 1177 - 1188