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Global importance of large-diameter trees
ArticleAbstract: Aim: To examine the contribution of large-diameter trees to biomass, stand structure, and species riPalabras claves:forest biomass, forest structure, large-diameter trees, latitudinal gradient, resource inequality, Smithsonian ForestGEOAutores:Allen D., Alonso A., Anderson-Teixeira K.J., Andrade A.S., Baltzer J.L., Becker K.M.L., Blomdahl E.M., Bourg N.A., Bunyavejchewin S., Burslem D.F.R.P., Cansler C.A., Cao K., Cao M., Cárdenas López D., Chang L.W., Chao K.J., Chao W.C., Chiang J.M., Chu C., Chuyong G.B., Clay K., Condit R.S., Cordell S., Dattaraja H.S., Davies S.J., Duque A., Ewango C.E.N., Fischer G.A., Fletcher C.D., Freund J.A., Furniss T.J., Germain S.J., Giardina C.P., Gilbert G.S., Hao Z., Hart T.B., Hau B.C.H., He F., Hector A., Howe R.W., Hsieh C.F., Hu Y.H., Hubbell S.P., Inman-Narahari F.M., Itoh A., Janík D., Johnson D.J., Kassim A.R., Kenfack D., Korte L., Kral K., Larson A.J., Li Y.D., Lin Y.C., Liu S., Lum S.K.Y., Lutz J.A., Ma K., Makana J.R., Malhi Y., Mcmahon S.M., McShea W.J., Memiaghe H.R., Mi X., Morecroft M.D., Musili P.M., Myers J.A., Novotny V., Oliveira A.A., Ong P.S., Orwig D.A., Ostertag R., Parker G.G., Patankar R., Phillips R.P., Renato Valencia, Reynolds G., Sack L., Song G.Z.M., Su S.H., Sukumar R., Sun I.F., Suresh H.S., Swanson M.E., Tan S., Thomas D.W., Thompson J., Uriarte M., Vicentini A., Vrška T., Wang X., Weiblen G.D., Wolf A.T., Wu S.H., Xu H., Yamakura T., Yap S.L., Zimmerman J.K.Fuentes:scopusPatterns of nitrogen-fixing tree abundance in forests across Asia and America
ArticleAbstract: Symbiotic nitrogen (N)-fixing trees can provide large quantities of new N to ecosystems, but only ifPalabras claves:Forest, Legume, Nitrogen fixation, nutrient limitation, Smithsonian ForestGEO, symbiosisAutores:Abu Salim K., Allen D., Alvarez M., Bourg N.A., Brockelman W.Y., Bunyavejchewin S., Butt N., Cao M., Chanthorn W., Chao W.C., Chisholm R.A., Clay K., Condit R.S., Cordell S., da Silva J.B., Dattaraja H.S., Davies S.J., de Andrade A.S., den Ouden J., Drescher M., Fletcher C.D., Fung T., Giardina C.P., Gunatilleke I.A.U.N., Hau B.C.H., He F., Howe R.W., Hsieh C.F., Hubbell S.P., Inman-Narahari F.M., Jansen P.A., Johnson D.J., Kassim A.R., Kong L.S., Kral K., Ku C.C., Lai J., Larson A.J., Li X., Li Y.D., Lin L., Lin Y.C., Liu S., Lum S.K.Y., Lutz J.A., Ma K., Malhi Y., Mcmahon S.M., McShea W.J., Menge D.N.L., Mi X., Morecroft M.D., Myers J.A., Nathalang A., Novotny V., Oliveira A.A., Ong P.S., Orwig D.A., Ostertag R., Parker G.G., Phillips R.P., Renato Valencia, Sack L., Sang W., Savitri Gunatilleke C.V., Shen G., Shringi A., Shue J., Su S.H., Sukumar R., Sun I.F., Suresh H.S., Tan S., Thomas S.C., Toko P.S., Vallejo M.I., Vicentini A., Vrška T., Wang B., Wang X., Weiblen G.D., Wolf A.T., Xu H., Yap S.L., Zhu L.Fuentes:googlescopus