Yli-Vakkuri, P. Studies on physical root connections between the trees in Scots pine stands in Finland. Acta Fenn. 60, 5–117 (1953).
Google Scholar
Graham, B. F. & Bormann, F. H. Natural root grafts. Bot. Rev. 32, 255–292 (1966).
Google Scholar
Keeley, J. Population variation in root grafting and a hypothesys. Oikos 52, 364–366 (1988).
Google Scholar
Epstein, A. Root graft transmission of tree pathogens. Annu. Rev. Phitopathol. 196, 181–192 (1978).
Google Scholar
Stokes, A. et al. Mechanical resistance of different tree species to rockfall in the French Alps. Plant Soil 278, 107–117 (2005).
Google Scholar
Egerton-Warburton, L. M., Querejeta, J. I. & Allen, M. F. Common mycorrhizal networks provide a potential pathway for the transfer of hydraulically lifted water between plants. J. Exp. Bot. 58, 1473–1483 (2007).
Google Scholar
Deslippe, J. R., Hartmann, M., Grayston, S. J., Simard, S. W. & Mohn, W. W. Stable isotope probing implicates a species of Cortinarius in carbon transfer through ectomycorrhizal fungal mycelial networks in Arctic tundra. N. Phytol. 210, 383–390 (2016).
Google Scholar
Klein, T., Siegwolf, R. T. & Kröner, C. Belowground carbon trade among tall trees in a temperate forest. Science 352, 342–344 (2016).
Google Scholar
Fraser, E. C., Lieffers, V. J. & Landhäusser, S. M. Carbohydrate transfer through root grafts to support shaded trees. Tree Physiol. 26, 1019–1023 (2006).
Google Scholar
Gaspard, D. T. & DesRochers, A. Natural root grafting in hybrid poplar clones. Trees Struct. Funct. 34, 881–890 (2020).
Google Scholar
Quer, E., Baldy, V. & DesRochers, A. Ecological drivers of root grafting in balsam fir natural stands. Forest Ecol. Manag. 475, 118388 (2020).
Google Scholar
Tarroux, E. & DesRochers, A. Effect of natural root grafting on growth response of jack pine (Pinus banksiana; Pinaceae). Am. J. Bot. 98, 967–974 (2011).
Google Scholar
Salomón, R. L., Tarroux, E. & DesRochers, A. Natural root grafting in Picea mariana to cope with spruce budworm outbreaks. Can. J. Forest Res. 46, 1059–1066 (2016).
Google Scholar
Adonsou, K. E., Drobyshev, I., DesRochers, A. & Tremblay, F. Root connections affect radial growth of balsam poplar trees. Trees Struct. Funct. 30, 1775–1783 (2016).
Google Scholar
Vovides, A. G. et al. Change in drivers of mangrove crown displacement along a salinity stress gradient. Funct. Ecol. 32, 2753–2765 (2018).
Google Scholar
McKee, K. L. Root proliferation in decaying roots and old root channels: a nutrient conservation mechanism in oligotrophic mangrove forests? J. Ecol. 89, 876–887 (2001).
Google Scholar
Adonsou, K. E., DesRochers, A. & Tremblay, F. Physiological integration of connected balsam poplar ramets. Tree Physiol. 36, 797–806 (2016).
Google Scholar
Noble, A. E., Rosenstock, T. S., Brown, P. H., Machta, J. & Hastings, A. Spatial patterns of tree yield explained by endogenous forces through a correspondence between the Ising model and ecology. Proc. Natl Acad. Sci. USA 115, 1825–1830 (2018).
Google Scholar
Tarroux, E. & DesRochers, A. Frequency of root grafting in naturally and artificially regenerated stands of Pinus banksiana: influence of site characteristics. Can. J. Forest Res. 40, 861–871 (2010).
Google Scholar
Jelínková, H., Tremblay, F. & DesRochers, A. Molecular and dendrochronological analysis of natural root grafting in Populus tremuloides (Salicaceae). Am. J. Bot. 96, 1500–1505 (2009).
Google Scholar
Bormann, F. H. The structure, function, and ecological significance of root grafts in Pinus strobus L. Ecol. Monogr. 36, 1–26 (1966).
Google Scholar
Callaway, R. M. et al. Positive interactions among alpine plants increase with stress. Nature 417, 844–848 (2002).
Google Scholar
Huxham, M., Berger, U., Skov, M. W. & Sousa, W. P. Kropotkin’s Garden: facilitation in mangrove ecosystems in Interactions in the Marine Benthos (eds. Hawkins, S. J., Bohn, K., Firth, L. B. & Williams, G. A.) 431–447 (Cambridge University Press, 2019)
Ball, M. C. & Farquhar, G. D. Photosynthetic and stomatal responses of the grey mangrove, Avicennia marina, to transient salinity consitions. Plant Physiol. 74, 7–11 (1984).
Google Scholar
Lin, Y., Berger, U., Grimm, V., Huth, F. & Weiner, J. Plant interactions alter the predictions of metabolic scaling theory. PLoS ONE 8, e57612 (2013).
Google Scholar
Osland, M. J., Day, R. H., Larriviere, J. C. & From, A. S. Aboveground allometric models for freeze-affected black mangroves (Avicennia germinans): equations for a climate sensitive mangrove-marsh ecotone. PLoS ONE 9, e99604 (2014).
Google Scholar
Menezes, M., Berger, U. & Worbes, M. Annual growth rings and long-term growth patterns of mangrove trees from the Bragança peninsula, North Brazil. Wetl. Ecol. Manag. 11, 233–242 (2003).
Google Scholar
Delay, E. & Piou, C. Mutual aid: when does resource scarcity favour group cooperation? Ecol. Complex. 40, 100790 (2019).
Google Scholar
Ohtsuki, H., Hauert, C., Lieberman, E. & Nowak, M. A. A simple rule for the evolution of cooperation on graphs and social networks. Nature 441, 502–505 (2006).
Google Scholar
Vovides, A. G., Marín-Castro, B., Barradas, G., Berger, U. & López-Portillo, J. A simple and cost-effective method for cable root detection and extension measurement in estuary wetland forests. Estuar. Coast. Shelf Sci. 183, 117–122 (2016).
Google Scholar
West, P. W. Tree and Forest Measurement. (Springer-Verlag, 2009).
Fraser, E. C., Lieffers, V. J. & Landhäusser, S. M. Age, stand density, and tree size as factors in root and basal grafting of lodgepole pine. Can. J. Bot. 83, 983–988 (2005).
Google Scholar
Bormann, F. H. & Graham, B. F. The occurrence of natural root grafting in eastern White pine, Pinus strobus L., and Its ecological implications. Ecology 40, 677–691 (1959).
Google Scholar
Westoby, M. The place of the self-thinning rule in population dynamics. Am. Nat. 118, 581–587 (2008).
Google Scholar
Wang, Y., Titus, S. J. & LeMay, V. M. Relationships between tree slenderness coefficients and tree or stand characteristics for major species in boreal mixedwood forests. Can. J. Forest Res. 28, 1171–1183 (1998).
MacFarlane, D. W. & Kane, B. Neighbour effects on tree architecture: functional trade-offs balancing crown competitiveness with wind resistance. Funct. Ecol. 31, 1624–1636 (2017).
Google Scholar
Brüchert, F. & Gardiner, B. The effect of wind exposure on the tree aerial architecture and biomechanics of Sitka spruce (Picea sitchensis, Pinaceae). Am. J. Bot. 93, 1512–1521 (2006).
Google Scholar
Graham, B. F. Transfer of dye through natural root grafts of Pinus strobus L. Ecology 41, 56–64 (1960).
Google Scholar
Barabási, A.-L. & Réka, A. Emergence of scaling in random networks. Science 286, 509–513 (1999).
Google Scholar
Allen, B. et al. Evolutionary dynamics on any population structure. Nature 544, 227–230 (2017).
Google Scholar
Gao, J., Barzel, B. & Barabási, A.-L. Universal resilience patterns in complex networks. Nature 536, 238–238 (2016).
Google Scholar
Basnet, K., Scatena, F. N., Likens, G. E. & Lugo, A. E. Ecological consequences of root grafting in Tabonuco (Dacryodes excelsa) trees in the Luquillo Experimental Forest, Puert Rico. Biotropica 25, 28–35 (1993).
Google Scholar
Kropotkin, P. Mutual Aid: a factor of evolution. https://doi.org/10.2307/2140787. (1902).
López-Portillo, J. A., Ewers, F. W. & Angeles, G. Sap salinity effects on xylem conductivity in two mangrove species. Plant Cell Environ. 28, 1285–1292 (2005).
Google Scholar
RAMSAR. La Mancha y El Llano: Ramsar sites information service. https://rsis.ramsar.org/ris/1336?language=en (2004).
Gulfbase. Laguna La Mancha. Harte Research Institute for Gulf of Mexcio Studies. https://www.gulfbase.org/. (2021).
Hernández, C. M. A., Zaragoza, C. G., Iriarte-Vivar, S., Flores-Verdugo, F. J. & Casasola, P. M. Forest structure, productivity and species phenology of mangroves in the La Mancha lagoon in the Atlantic coast of Mexico. Wetl. Ecol. Manag. 19, 273–293 (2011).
Google Scholar
Méndez-Alonzo, R., Hernández-Trejo, H. & López-Portillo, J. A. Salinity constrains size inequality and allometry in two contrasting mangrove habitats in the Gulf of Mexico. J. Trop. Ecol. 28, 171–179 (2012).
Google Scholar
López-Portillo, J. A., Ezcurra, E., Lopez-Portillo, J. & Ezcurra, E. Response of three mangroves to salinity in two Geoforms. Funct. Ecol. 3, 355–361 (1989).
Google Scholar
Vovides, A. G., Berger, U. & López-Portillo-Portillo, J. Data from: Change in drivers of mangrove crown displacement along a salinity stress gradient. https://doi.org/10.5525/gla.researchdata.657. (2018).
Pretzsch, H. Forest dynamics growth and yield. From Measurement to Model vol. 1, (Springer-Verlag, 2009).
McKee, K. L., Mendelssohn, I. A. & Hester, M. W. Reexamination of pore water sulfide concentrations and redox potentials near the aerial roots of Rhizophora mangle and Avicennia germinans. Am. J. Bot. 75, 1352–1359 (1988).
Google Scholar
Myron L Company. ULTRAMETER IITM. Oper. Manual, Ver. Model. 6Pfc 4P. http://www.myronl.com/products/ultrameter_II.htm (2011).
Sommet, N. & Morselli, D. Keep calm and learn multilevel logistic modeling: a simplified three-step procedure using stata, R, Mplus, and SPSS. Int. Rev. Soc. Psychol. 30, 203–218 (2017).
Google Scholar
Barabási, A. L. Scale-free networks: a decade and beyond. Science 325, 412–413 (2009).
Google Scholar
R Core Team. R: A language and environment for statistical computing. (R Foundation for Statistical Computing, 2019).
Bates, D., Mächler, M., Bolker, B. & Walker, S. Fitting linear mixed-effects models using lme4. J. Stat. Softw. 67, 1–45 (2015).
Google Scholar
Hartig, F. DHARMa:residual diagnostics for hierarchical (multi-level /mMixed) regression models. R package version 0.2.7. http://florianhartig.github.io/DHARMa/ (2020).
Wood, S. & Scheipl, F. gamm4:Generalized additive mixed models using ‘mgcv’ and ‘lme4’. https://cran.r-project.org/web/packages/gamm4/index.html (2017).
Csardi, G. & Nepusz, T. The igraphsoftware package for complex network research. InterJournal, Complex Sy, 1965 (2006).
Colin, S. G. Fitting Heavy Tailed Distributions: The poweRlaw Package. J. Stat. Softw. 64, 1–16 (2015).
Wickham, H. ggplot2 Elegant Graphics for Data Analysis (Use R!). https://doi.org/10.1007/978-0-387-98141-3. (2016).
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