Pengendalian Serangan Ganoderma spp. (60-80%) pada Tanaman Sengon sebagai Pelindung Tanaman Kopi dan Kakao

Authors

  • Elis Nina Herliyana
  • Darmono Taniwiryono
  • Hayati Minarsih
  • Muhammad Alam Firmansyah
  • Benyamin Dendang

Keywords:

Genetic variation, sengon, natural agents, Trichoderma

Abstract

Information about genetic variation of Ganoderma spp. As a couse of rot disease on plantation crops is necessary for consideration in efforts to protect crops. Exploration of the use of biological agents, especially Trichoderma spp., for the control of Ganoderma on forestry crops is still limited to laboratory testing. Its effectiveness to control Trichoderma spp. To protect plants in the nursery sengon being carried out, as well as to deternime its role in improving plant growth.

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Author Biographies

  • Elis Nina Herliyana
    Departemen Silvikultur, Fakultas Kehutan, Institut Pertanian Bogor, Kampus IPB Darmaga, Bogor 16680
  • Darmono Taniwiryono
    Balai Penelitian Bioteknologi Perkebunan Indonesia
  • Hayati Minarsih
    Balai Penelitian Bioteknologi Perkebunan Indonesia
  • Muhammad Alam Firmansyah
    Departemen Silvikultur, Fakultas Kehutan, Institut Pertanian Bogor, Kampus IPB Darmaga, Bogor 16680
  • Benyamin Dendang
    Mahasisiwa Pascasarjana Departemen Silvikultur, Fakultas Kehutan, Institut Pertanian Bogor

References

Achmad, S. Hadi, S. Harran, E. Gumbira Sa’id, B. Satiawihardja, M. Kosim Kardin. 2009. Pengendalian Hayati Penyakit Lodoh Pada Semai Pinus Merkusii : Potensi Antagonistik In Vitro Trichoderma harzianum DAN Trichoderma pseudokoningii. Jurnal Litbang Tanaman. Bardakci F. 2001. Random amplified polymorphic DNA (RAPD) markers. Turk J Biol 25: 185-196.

Bustamam M, Moeljopawiro S. 1998. Pemanfaatan teknologi sidikjari DNA di bidang pertanian. Zuriat 9 (2): 77-90.

Hseu RS, HH Wang, HF Wang and JM Moncalvo. 1996. Differentiation and grouping of isolates of the Ganoderma lucidum complex by random amplified polymorphic DNA-PCR compared with grouping on the basis of internal transcribed spacer sequences Appl. Environ. Microbiol, 1354-1363, Vol 62, No. 4.

Kevin Bassett and Russell N. Peters, 2003. Ganoderma: a significant root pathogen). Arborilogical services Inc. Publication. http://www.arborilogical.com/articles/Ganoderma.htm

Kumar et al., 2001. Estimation of genetic diversity of commercial mango (Mangifera indica L.) cultivars using RAPD markers. J. Hortic. Sci. Biotechnol. 76: 529–533.

Rohlf FJ. 1998. NTSYSpc: Numerical Taxonomy and Multivariate Analysis System, User Guide. New York: Applied Biostatistics Inc.

Ross, E.W. and C.S. Hodges, Jr. 1981. Control of Heterobasidion annosum colonization in mechanically sheared slash pine stumps treated with Peniophora gigantea. Asheville, NC: U.S. Department of Agriculture Southeast For. Expt. Stn. Res. Paper SE-229.

Solomon, J.D.; Leininger, T.D.; Wilson, A.D.; Anderson, R.L.; Thompson, L.C.; McCracken, F.I. 1993. Ash pests: A guide to major insects, diseases, air pollution injury and chemical injury. Gen. Tech. Rep. SO-96. New Orleans, LA: U.S. Department of Agriculture, Forest Service, Southern Forest Experiment Station. 45 p.

Orozco-Castillo et al., 1994. Detection of genetic diversity and selective gene in coffea using RAPD markers. Theor. Appl. Genet. 87: 332-339.

Weeden, C.R., A. M. Shelton, and M. P. Hoffman. Biological Control: A Guide to Natural Enemies in North America. http://www.nysaes.cornell. edu/ ent/biocontrol/ accessed (date)

Widyastuti SM. 2007. Peran Trichoderma spp. dalam Revitalisasi Kehutanan di Indonesia. Yogyakarta: Gadjah Mada University Press, 255 p.

Williams et al., 1990. DNA polymorphism amplified by arbritary primers are useful as genetic markers. Nucleic Acid Res. 18: 6531-6535.

Yap IV, Nelson RJ. 1996. WinBoot: A Program for Performing Bootstrap Analysis of Binary Data to Determine The Confidence Limits of UPGMA-based dendograms. International Rice Research Institute Manila.

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How to Cite

Herliyana, E.N. (2011) “Pengendalian Serangan Ganoderma spp. (60-80%) pada Tanaman Sengon sebagai Pelindung Tanaman Kopi dan Kakao”, Jurnal Ilmu Pertanian Indonesia, 16(1), pp. 14–27. Available at: https://journal.ipb.ac.id/JIPI/article/view/6584 (Accessed: 24 December 2025).