Komposisi dan Struktur Vegetasi pada Tiga Strata Elevasi yang Berbeda di Taman Nasional Kerinci Seblat
DOI:
https://doi.org/10.29407/hayati.v6i1.665Keywords:
Strata elevasi, Struktur komposisi vegetasi, Gunung KerinciAbstract
Penelitian bertujuan membuktikan hipotesis bahwa terdapat perbedaan komposisi dan struktur vegetasi pada berbagai zona elevasi. Analisis vegetasi pada elevasi 1300, 1800 dan 2300 m dpl di Gunung Kerinci secara statistik tidak menunjukkan adanya perbedaan signifikan pada komposisi vegetasi (kekayaan spesies, kerapatan pohon, indeks keragaman Shannon-Wiener) dan struktur vegetasi (diameter dan tinggi pohon).
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Boscutti F, Casolo V, Beraldo P, Braidot E, Zancani M, Rixen C 2018. Shrub growth and plant diversity along an elevation gradient: Evidence of indirect effects of climate on alpine ecosystems. PLoS ONE 13(4): e0196653. https://doi.org/10.1371/journal.pone.0196653
Bowman, E. A. and A. E. Arnold. 2018. Distributions of ectomycorrhizal and foliar endophytic fungal communities associated with Pinus ponderosa along a spatially constrained elevation gradient. American Journal of Botany 105(4): 1– 13. doi:10.1002/ajb2.1072
Grytnes JA, Vetaas OR. 2002. Species richness and altitude: A comparison between null models and interpolated plant species richness along the himalayan altitudinal gradient, Nepal. Am Nat. 159: 294-304. https://doi.org/10.1086/338542 PMID: 18707381
Korner C. 2000. Why are there global gradients in species richness? mountains might hold the answer. Trends Ecol Evol. 2000; 15: 513±514. https://doi.org/10.1016/S0169-5347(00)02004-8
Korner C. 2007. The use of `altitude' in ecological research. Trends Ecol 22: 569-574. https://doi.org/10.1016/j.tree.2007.09.006 PMID: 17988759 Lomolino MV. 2001. Elevation gradients of species-density: historical and prospective views. Glob Ecol Biogeogr.10: 3-13. https://doi.org/10.1046/j.1466-822x.2001.00229.x
Muhirwa F, Maniragaba A & Kaplin BA. 2018. Dung beetle distribution, abundance, and diversity along an elevation gradient in Nyungwe National Park, Rwanda: A preliminary survey. Journal of Entomology and Zoology Studies 6(2): 2637-2640
Pellissier L, Fournier B, Guisan A, Vittoz P. 2010. Plant traits co-vary with altitude in grasslands and forests in the European Alps. Plant Ecol. 211: 351-365. https://doi.org/10.1007/s11258-010-9794-x
Raich JW, Russell AE, Vitousek PM. 2007. Primary productivity and ecosystem development along an elevational gradient on Mauna Loa, Hawai`i. Ecology. 78:707-721. https://doi.org/10.1890/0012-9658
Saitta A, Anslan S, Bahram M, Brocca L, Tedersoo L. 2017. Tree species identity and diversity drive fungal richness and community composition along an elevational gradient in a Mediterranean ecosystem. Mycorrhiza. https://doi.org/10.1007/s00572-017-0806-8
Vasconcelos HL, Maravalhas JB, Feitosa RM, Pacheco R, Neves KC, Andersen AN. 2018 . Neotropical savanna ants show a reversed latitudinal gradient of species richness, with climatic drivers reflecting the forest origin of the fauna. J Biogeogr. 2018;45:248–258. https://doi.org/10.1111/jbi.13113
Ziska LH, Teramura AH, Sullivan JH. 2002. Physiological sensitivity of plants along an elevational gradient to UV-B radiation. Am J Bot.; 79: 863±871. https://doi.org/10.2307/2444995
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