References
Alberti, J., Bakker, E.S., van Klink, R., Olff, H. & Smit, C. (2017).
Herbivore exclusion promotes a more stochastic plant community assembly
in a natural grassland. Ecology , 98, 961–970.
Alberti, J., Canepuccia, A., Pascual, J., Pérez, C. & Iribame, O.
(2011). Joint control by rodent herbivory and nutrient availability of
plant diversity in a salt marsh-salty steppe transition zone. J.
Veg. Sci. , 22, 216–224.
Alberti, J., Casariego, A.M., Daleo, P., Fanjul, E., Silliman, B.,
Bertness, M., et al. (2010). Abiotic stress mediates top-down and
bottom-up control in a Southwestern Atlantic salt marsh.Oecologia , 163, 181–191.
Allan, E., Weisser, W., Weigelt, A., Roscher, C., Fischer, M. &
Hillebrand, H. (2011). More diverse plant communities have higher
functioning over time due to turnover in complementary dominant species.Proc. Natl. Acad. Sci. U. S. A. , 108, 17034–17039.
Anderson, T.M., Griffith, D.M., Grace, J.B., Lind, E.M., Adler, P.B.,
Biederman, L.A., et al. (2018). Herbivory and eutrophication
mediate grassland plant nutrient responses across a global climatic
gradient. Ecology , 99, 822–831.
Arnoldi, J.F., Loreau, M. & Haegeman, B. (2018). The inherent
multidimensionality of temporal variability: How common and rare species
shape stability patterns. bioRxiv .
Arnoldi, J.F., Loreau, M. & Haegeman, B. (2019). The inherent
multidimensionality of temporal variability: how common and rare species
shape stability patterns. Ecol. Lett.
Atwood, T.B., Valentine, S.A., Hammill, E., McCauley, D.J., Madin,
E.M.P., Beard, K.H., et al. (2020). Herbivores at the highest
risk of extinction among mammals, birds, and reptiles. Sci. Adv. ,
6.
Bakker, E.S., Ritchie, M.E., Olff, H., Milchunas, D.G. & Knops,
J.M.H.H. (2006). Herbivore impact on grassland plant diversity depends
on habitat productivity and herbivore size. Ecol. Lett. , 9,
780–788.
Baselga, A. (2017). Partitioning abundance-based multiple-site
dissimilarity into components: balanced variation in abundance and
abundance gradients. Methods Ecol. Evol. , 8, 799–808.
Baselga, A. & Orme, C.D.L. (2012). Betapart: An R package for the study
of beta diversity. Methods Ecol. Evol. , 3, 808–812.
Beck, J.J., Hernández, D.L., Pasari, J.R. & Zavaleta, E.S. (2015).
Grazing maintains native plant diversity and promotes community
stability in an annual grassland. Ecol. Appl. , 25, 1259–1270.
Bengtsson, J., Bullock, J.M., Egoh, B., Everson, C., Everson, T.,
O’Connor, T., et al. (2019). Grasslands-more important for
ecosystem services than you might think. Ecosphere , 10, e02582.
Blüthgen, N., Simons, N.K., Jung, K., Prati, D., Renner, S.C., Boch, S.,et al. (2016). Land use imperils plant and animal community
stability through changes in asynchrony rather than diversity.Nat. Commun. , 7, 1–7.
Borer, E.T., Harpole, W.S., Adler, P.B., Arnillas, C.A., Bugalho, M.N.,
Cadotte, M.W., et al. (2020). Nutrients cause grassland biomass
to outpace herbivory. Nat. Commun. , 11, 1–8.
Borer, E.T., Harpole, W.S., Adler, P.B., Lind, E.M., Orrock, J.L.,
Seabloom, E.W., et al. (2014a). Finding generality in ecology: A
model for globally distributed experiments. Methods Ecol. Evol. ,
5, 65–73.
Borer, E.T., Seabloom, E.W., Gruner, D.S., Harpole, W.S., Hillebrand,
H., Lind, E.M., et al. (2014b). Herbivores and nutrients control
grassland plant diversity via light limitation. Nature , 508,
517–520.
Chalcraft, D.R., Cox, S.B., Clark, C., Cleland, E.E., Suding, K.N.,
Weiher, E., et al. (2008). Scale-dependent responses of plant
biodiversity to nitrogen enrichment. Ecology , 89, 2165–2171.
Chase, J.M., Leibold, M.A., Downing, A.L. & Shurin, J.B. (2000). The
Effects of Productivity, Herbivory, and Plant Species Turnover in
Grassland Food Webs. Ecology , 81, 2485.
Chen, Q., Bakker, J.P., Alberti, J. & Smit, C. (2020). Long-term
management is needed for conserving plant diversity in a Wadden Sea salt
marsh. Biodivers. Conserv. , 29, 2329–2341.
Chen, Q., Howison, R.A., Bakker, J.P., Alberti, J., Kuijper, D.P.J.,
Olff, H., et al. (2019). Small herbivores slow down species loss
up to 22 years but only at early successional stage. J. Ecol. ,
107, 2688–2696.
Collins, S.L. & Smith, M.D. (2006). Scale-dependent interaction of fire
and grazing on community heterogeneity in tallgrass prairie.Ecology , 87, 2058–2067.
Donohue, I., Petchey, O.L., Montoya, J.M., Jackson, A.L., Mcnally, L.,
Viana, M., et al. (2013). On the dimensionality of ecological
stability. Ecol. Lett. , 16, 421–429.
Dornelas, M. (2014). Assemblage Time Series Reveal Biodiversity Change
but Not Systematic Loss. Science (80-. ). , 344, 296–300.
Galloway, J.N., Dentener, F.J., Capone, D.G., Boyer, E.W., Howarth,
R.W., Seitzinger, S.P., et al. (2004). Nitrogen cycles:
Past, present, and future . Biogeochemistry .
Ganjurjav, H., Zhang, Y., Gornish, E.S., Hu, G., Li, Y., Wan, Y.,et al. (2019). Differential resistance and resilience of
functional groups to livestock grazing maintain ecosystem stability in
an alpine steppe on the Qinghai- Tibetan Plateau. J. Environ.
Manage. , 251, 109579.
García-Palacios, P., Gross, N., Gaitán, J. & Maestre, F.T. (2018).
Climate mediates the biodiversity–ecosystem stability relationship
globally. Proc. Natl. Acad. Sci. U. S. A. , 115, 8400–8405.
Gilbert, B., MacDougall, A.S., Kadoya, T., Akasaka, M., Bennett, J.R.,
Lind, E.M., et al. (2020). Climate and local environment
structure asynchrony and the stability of primary production in
grasslands. Glob. Ecol. Biogeogr. , 29, 1177–1188.
Glenn, S.M., Collins, S.L. & Gibson, D.J. (1992). Disturbances in
tallgrass prairie: local and regional effects on community
heterogeneity. Landsc. Ecol. , 7, 243–251.
Grellmann, D. (2002). Plant responses to fertilization and exclusion of
grazers on an arctic tundra heath. Oikos , 98, 190–204.
Grime, J.P. (1998). Benefits of Plant Diversity to Ecosystems:
Immediate, Filter and Founder Effects. J. Ecol. , 86, 902–910.
Grman, E., Lau, J.A., Schoolmaster, D.R. & Gross, K.L. (2010).
Mechanisms contributing to stability in ecosystem function depend on the
environmental context. Ecol. Lett. , 13, 1400–1410.
Halpern, B.S., Borer, E.T., Seabloom, E.W. & Shurin, J.B. (2005).
Predator effects on herbivore and plant stability. Ecol. Lett. ,
8, 189–194.
Hartley, S.E. & Mitchell, R.J. (2005). Manipulation of nutrients and
grazing levels on heather moorland: Changes in Calluna dominance and
consequences for community composition. J. Ecol. , 93, 990–1004.
Hautier, Y., Tilman, D., Isbell, F., Seabloom, E.W., Borer, E.T. &
Reich, P.B. (2015). Supplementary for Anthropogenic environmental
changes affect ecosystem stability via biodiversity. Science (80-.
). , 348, 336–340.
Hautier, Y., Zhang, P., Loreau, M., Wilcox, K.R., Seabloom, E.W., Borer,
E.T., et al. (2020). General destabilizing effects of
eutrophication on grassland productivity at multiple spatial scales.Nat. Commun. , 11, 1–9.
Hillebrand, H., Gruner, D.S., Borer, E.T., Bracken, M.E.S., Cleland,
E.E., Elser, J.J., et al. (2007). Consumer versus resource
control of producer diversity depends on ecosystem type and producer
community structure. Proc. Natl. Acad. Sci. , 104, 10904–9.
Hillebrand, H. & Kunze, C. (2020). Meta-analysis on pulse disturbances
reveals differences in functional and compositional recovery across
ecosystems. Ecol. Lett.
Hillebrand, H., Langenheder, S., Lebret, K., Lindström, E., Östman, Ö.
& Striebel, M. (2018). Decomposing multiple dimensions of stability in
global change experiments. Ecol. Lett. , 21, 21–30.
Hodapp, D., Borer, E.T., Harpole, W.S., Lind, E.M., Seabloom, E.W.,
Adler, P.B., et al. (2018). Spatial heterogeneity in species
composition constrains plant community responses to herbivory and
fertilisation. Ecol. Lett. , 21, 1364–1371.
Howison, R.A., Olff, H., Van De Koppel, J. & Smit, C. (2017).
Biotically driven vegetation mosaics in grazing ecosystems: the battle
between bioturbation and biocompaction. Ecol. Monogr. , 87,
363–378.
Koerner, S.E., Avolio, M.L., La Pierre, K.J., Wilcox, K.R., Smith, M.D.
& Collins, S.L. (2016). Nutrient additions cause divergence of
tallgrass prairie plant communities resulting in loss of ecosystem
stability. J. Ecol. , 104, 1478–1487.
Koerner, S.E., Smith, M.D., Burkepile, D.E., Hanan, N.P., Avolio, M.L.,
Collins, S.L., et al. (2018). Change in dominance determines
herbivore effects on plant biodiversity. Nat. Ecol. Evol. , 2,
1925–1932.
Lefcheck, J.S. (2016). piecewiseSEM: Piecewise structural equation
modelling in r for ecology, evolution, and systematics. Methods
Ecol. Evol. , 7, 573–579.
Liu, J., Li, X., Ma, Q., Zhang, X., Chen, Y., Isbell, F., et al.(2019). Nitrogen addition reduced ecosystem stability regardless of its
impacts on plant diversity. J. Ecol. , 107, 2427–2435.
Liu, J., Yang, X., Ghanizadeh, H., Guo, Q., Fan, Y., Zhang, B., et
al. (2021). Long-term enclosure can benefit grassland community
stability on the loess plateau of China. Sustainability , 13,
1–19.
Milchunas, D.G. & Lauenroth, W.. W. (1993). Quantitative Effects of
Grazing on Vegetation and Soils Over a Global Range of Environments.Ecol. Monogr. , 63, 327–366.
Moran, M.D. & Scheidler, A.R. (2002). Effects of nutrients and
predators on an old-field food chain: Interactions of top-down and
bottom-up processes. Oikos , 98, 116–124.
Pinheiro, J., Bates, D., DebRoy, S., Sarkar, D. & Team, R.-C. (2017).
nlme: Linear and Nonlinear Mixed Effects Models. R Packag. version
3.1-131 .
Polley, H.W., Wilsey, B.J. & Derner, J.D. (2007). Dominant species
constrain effects of species diversity on temporal variability in
biomass production of tallgrass prairie. Oikos , 116, 2044–2052.
Post, E. (2013). Erosion of community diversity and stability by
herbivore removal under warming. Proc. R. Soc. B , 280, 20122722.
Proulx, M. & Mazumder, A. (1998). Reversal of grazing impact on plant
species richness in nutrient-poor vs. nutrient-rich ecosystems.Ecology , 79, 2581–2592.
Qin, J., Ren, H., Han, G., Zhang, J., Browning, D., Willms, W., et
al. (2019). Grazing reduces the temporal stability of temperate
grasslands in northern China. Flora Morphol. Distrib. Funct. Ecol.
Plants , 259, 151450.
Ren, H., Taube, F., Stein, C., Zhang, Y., Bai, Y. & Hu, S. (2018).
Grazing weakens temporal stabilizing effects of diversity in the
Eurasian steppe. Ecol. Evol. , 8, 231–241.
Ripple, W.J., Newsome, T.M., Wolf, C., Dirzo, R., Everatt, K.T.,
Galetti, M., et al. (2015). Collapse of the world’s largest
herbivores. Sci. Adv. , 1, e1400103.
Saruul, K., Jiangwen, L., Jianming, N., Qing, Z., Xuefeng, Z., Guodong,
H., et al. (2019). Typical steppe ecosystems maintain high
stability by decreasing the connections among recovery, resistance, and
variability under high grazing pressure. Sci. Total Environ. ,
659, 1146–1157.
Seabloom, E.W., Borer, E.T., Buckley, Y.M., Cleland, E.E., Davies, K.F.,
Firn, J., et al. (2015). Plant species origin predicts dominance
and response to nutrient enrichment and herbivores in global grasslands.Nat. Commun. , 6.
Tilman, D., Reich, P.B. & Knops, J.M.H. (2006). Biodiversity and
ecosystem stability in a decade-long grassland experiment.Nature , 441, 629–632.
Valencia, E., de Bello, F., Galland, T., Adler, P.B., Lepš, J.,
E-Vojtkó, A., et al. (2020). Synchrony matters more than species
richness in plant community stability at a global scale. Proc.
Natl. Acad. Sci. , 117, 201920405.
Wang, S., Lamy, T., Hallett, L.M. & Loreau, M. (2019). Stability and
synchrony across ecological hierarchies in heterogeneous
metacommunities: linking theory to data. Ecography (Cop.). , 42,
1200–1211.
Wang, S. & Loreau, M. (2016). Biodiversity and ecosystem stability
across scales in metacommunities. Ecol. Lett. , 19, 510–518.
White, L., O’Connor, N.E., Yang, Q., Emmerson, M.C. & Donohue, I.
(2020). Individual species provide multifaceted contributions to the
stability of ecosystems. Nat. Ecol. Evol. , 4, 1594–1601.
Wilcox, K.R., Tredennick, A.T., Koerner, S.E., Grman, E., Hallett, L.M.,
Avolio, M.L., et al. (2017). Asynchrony among local communities
stabilises ecosystem function of metacommunities. Ecol. Lett. ,
20, 1534–1545.
Worm, B., Lotze, H.K., Hillebrand, H. & Sommer, U. (2002). Consumer
versus resource control of species diversity and ecosystem functioning.Nature , 417, 848–851.
Yang, Z., Guo, H., Zhang, J. & Du, G. (2013). Stochastic and
deterministic processes together determine alpine meadow plant community
composition on the Tibetan Plateau. Oecologia , 171, 495–504.
Zelikova, T.J., Blumenthal, D.M., Williams, D.G., Souza, L., LeCain,
D.R., Morgan, J., et al. (2014). Long-term exposure to elevated
CO2 enhances plant community stability by suppressing dominant plant
species in a mixed-grass prairie. Proc. Natl. Acad. Sci. U. S.
A. , 111, 15456–15461.
Zhang, Y., Feng, J., Loreau, M., He, N., Han, X. & Jiang, L. (2019).
Nitrogen addition does not reduce the role of spatial asynchrony in
stabilising grassland communities. Ecol. Lett. , 22, 563–571.
Zhang, Y., Loreau, M., He, N., Wang, J., Pan, Q., Bai, Y., et al.(2018). Climate variability decreases species richness and community
stability in a temperate grassland. Oecologia , 188, 183–192.
Zhang, Y., Loreau, M., He, N., Zhang, G. & Han, X. (2017). Mowing
exacerbates the loss of ecosystem stability under nitrogen enrichment in
a temperate grassland. Funct. Ecol. , 31, 1637–1646.
Zhang, Y., Loreau, M., Lü, X., He, N., Zhang, G. & Han, X. (2016).
Nitrogen enrichment weakens ecosystem stability through decreased
species asynchrony and population stability in a temperate grassland.Glob. Chang. Biol. , 22, 1445–1455.