Date Log
Talinum paniculatum (Jacq) Gaertn (Java ginseng) production using Vesicular-Arbuscular Mycorrhizal
Corresponding Author(s) : Sulistiono Sulistiono
International Journal of Applied Biology,
Vol. 1 No. 2 (2017): International Journal of Applied Biology
Abstract
- Abbott, L.K., Robson, A.D., Jasper, D.A. & Gazey, C. 1992. What is the Role VAM Hyphae in Soil? In: Read DJ, Lewis DH, Fitter AH, Alexander IJ (eds). Mycorrhizas in Ecosystems. CAB International, UK: Oxford, pp 37-41.
- Al-Karaki, G.N & Al-Raddad, A. 1997. Effects of Arbuscular Mycorrhizal Fungi and Drought Stress on Growth and Nutrient Uptake of Two Wheat Genotypes Differing in Drought Resistance. Mycorrhiza, 7:83–88.
- Al-Karaki, G.N. 1998. Benefit, Cost and Water-Use Efficiency of Arbuscular Mycorrhizal Durum Wheat Grown under Drought Stress. Mycorrhiza, 8:41–45.
- Al-Karaki, G.N, McMichael, B, & Zak J. 2004. Field Response of Wheat to Arbuscular Mycorrhizal Fungi and Drought Stress. Mycorrhiza, 14:263–269.
- Berta, G., Trotta, A., Fusconi, A., Hooker, J.A., Munro, M., Atkinson, D., Giovannetti, M., Morini, S., Fortuna, P., Tisserant, B., Gianinazzi-Pearson, F. & Gianinazzi, S. 1995. Arbuscular Mycorrhizal Induced Changes to plant Growth and Root System Morphology in Prunus cerasifera. Tree Physiology, 15:281-293.
- Dearnaley, J. 2007. Further Advances in Orchid Mycorrhizal Research. Mycorrhiza, 17(6):475-486
- Gazey, C., Abbott, L.K. & Robson, A.D. 2004. Indigenous and Introduced Arbuscular Mycorrhizal Fungi Contribute to Plant Growth in Two Agricultural Soils from South-Western Australia. Mycorrhiza, 14:355–362.
- Hu, X.Y., Neill, S.J., Cai, W.M. & Tang, Z.C. 2003. Activation of Plasma Membrane NADPH Oxidase and Generation of H2O2 Mediate the Induction of PAL Activity and Saponin Synthesis by Endogenous Elicitor in Suspension-Cultured Cells of Panax Ginseng. Acta Botanica Sinica, 45(12):1434-1441.
- Lakitan, B. 2007. Dasar-Dasar Fisiologi Tumbuhan. Jakarta: PT Raja Grafindo Persada.
- Michelsen, A. & Rosendahl, R. 1990. The Effect of VA Mycorrhizal Fungi, Phosphorus and Drought Stress on the Growth of Acacia nilotica and Leucaena leucocephala Seedlings. Plant and Soil, 124:7-13.
- Nurhayati. 2010. Pengaruh waktu pemberian mikoriza vesicular arbuskula terhadap pertumbuhan tomat. J Agrivigor, 9:280-284.
- Rahmi, Eriani, K. & Widyasari, 2011. Potency of Java Ginseng (Talinum paniculatumGaertn.) Root Extract on Quality and Viability of Mice Sperm. Jurnal natural, 11:7-10.
- Rianto, F., Hadi, S., Machmud, M. & Fakuara, Y. 2005. Application of Glomus sp. for the Control Bacterial on Tomato. Biotrop special publication. [Vol, No dan Hal ?]
- Ruiz-Lozano, J.M., Azcon, R. & Gomez, R. 1995. Effects of Arbuscular-Mycorrhizal Glomus Species on Drought Tolerance: Physiological and Nutritional Plant Responses. Applied And Environmental Microbiology, 61(2):456–460.
- Santoso, A.M. 2012. Pengaruh Elisitor Ekstrak Saccharomyces cerevisiae dan CuSO4 terhadap Biomassa, Profil Protein, dan Kadar Saponin Kalus Talinum paniculatum (Jacq) Gaertn. Dissertation, UniversitasAirlangga.
- Santoso, A.M., Amin, M., Sumitro, S.B. & Lukiati, B. 2016. LCMS Determination of Java Ginseng (Talinum paiculatum) Ginsenoside. Proceeding of Second International Biology Conference: Institut Teknologi Sepuluh Nopember Surabaya.
- Saroni N., Astuti Y. & Adjirni. 1999. Pengaruh Infus Akar Somjawa (Talinum paniculatum) terhadap Jumlah dan Motilitas Spermatozoa pada Mencit. Warta Tumbuhan Obat Indonesia, 5:13-14.
- Setiadi, Y. 1989. Pemanfaatan Mikroorganisme dalam Kehutanan. Departemen Pendidikan dan Kebudayaan Direktorat Jenderal Pendidikan Tinggi. Pusat Antar Universitas Bioteknologi IPB, Bogor, Indonesia.
- Sikes, B.A. 2010. When do Arbuscular Mycorrhizal Fungi Protect Plant Roots from Pathogens. Plant Signaling & Behavior, 5(6):763-765.
- Simanungkalit, R.D.M. 1997. Effectiveness of 10 species of Arbuskular Mycorrhizal Fungi Isolated from West Java and Lampung on Maize and Soybean. In: Jenie UA (ed) Indonesian Biotechnology Conference 1997: Proceeding of the Indonesian Biotechnology Consortium, IUC Biotechnology IPB, Bogor, Indonesia. pp 267-274.
- Stewart, L.I., Hamel, C., Hogue, R. & Moutoglis, P. 2005. Response of Strawberry to Inoculation with Arbuscular Mycorrhizal Fungi under very High Soil Phosphorus Conditions. Mycorrhiza, 15:612–619.
- Sumastuti, R. 1999. Efek Anti Radang Infus Daun dan Akar Somjawa (T. paniculatum) pada Tikus Putih in vitro. Warta Tumbuhan Obat Indonesia, 5:15-17.
- Winarni, D. 2009. Potensi Androgenic Akar Ginseng Jawa (Talinum paniculatum Gaertn.) pada Kondisi Testosterone Rendah. Dissertation: Airlangga University.
- Yadav. K., Singh, N. & Aggarwal, A. 2012. Arbuscular Mycorrhizal Technology for the Growth Enhancement of Micropropagated Spilanthes acmella Murr. Plant Protect. Sci., 48(1):31–36.
References
Abbott, L.K., Robson, A.D., Jasper, D.A. & Gazey, C. 1992. What is the Role VAM Hyphae in Soil? In: Read DJ, Lewis DH, Fitter AH, Alexander IJ (eds). Mycorrhizas in Ecosystems. CAB International, UK: Oxford, pp 37-41.
Al-Karaki, G.N & Al-Raddad, A. 1997. Effects of Arbuscular Mycorrhizal Fungi and Drought Stress on Growth and Nutrient Uptake of Two Wheat Genotypes Differing in Drought Resistance. Mycorrhiza, 7:83–88.
Al-Karaki, G.N. 1998. Benefit, Cost and Water-Use Efficiency of Arbuscular Mycorrhizal Durum Wheat Grown under Drought Stress. Mycorrhiza, 8:41–45.
Al-Karaki, G.N, McMichael, B, & Zak J. 2004. Field Response of Wheat to Arbuscular Mycorrhizal Fungi and Drought Stress. Mycorrhiza, 14:263–269.
Berta, G., Trotta, A., Fusconi, A., Hooker, J.A., Munro, M., Atkinson, D., Giovannetti, M., Morini, S., Fortuna, P., Tisserant, B., Gianinazzi-Pearson, F. & Gianinazzi, S. 1995. Arbuscular Mycorrhizal Induced Changes to plant Growth and Root System Morphology in Prunus cerasifera. Tree Physiology, 15:281-293.
Dearnaley, J. 2007. Further Advances in Orchid Mycorrhizal Research. Mycorrhiza, 17(6):475-486
Gazey, C., Abbott, L.K. & Robson, A.D. 2004. Indigenous and Introduced Arbuscular Mycorrhizal Fungi Contribute to Plant Growth in Two Agricultural Soils from South-Western Australia. Mycorrhiza, 14:355–362.
Hu, X.Y., Neill, S.J., Cai, W.M. & Tang, Z.C. 2003. Activation of Plasma Membrane NADPH Oxidase and Generation of H2O2 Mediate the Induction of PAL Activity and Saponin Synthesis by Endogenous Elicitor in Suspension-Cultured Cells of Panax Ginseng. Acta Botanica Sinica, 45(12):1434-1441.
Lakitan, B. 2007. Dasar-Dasar Fisiologi Tumbuhan. Jakarta: PT Raja Grafindo Persada.
Michelsen, A. & Rosendahl, R. 1990. The Effect of VA Mycorrhizal Fungi, Phosphorus and Drought Stress on the Growth of Acacia nilotica and Leucaena leucocephala Seedlings. Plant and Soil, 124:7-13.
Nurhayati. 2010. Pengaruh waktu pemberian mikoriza vesicular arbuskula terhadap pertumbuhan tomat. J Agrivigor, 9:280-284.
Rahmi, Eriani, K. & Widyasari, 2011. Potency of Java Ginseng (Talinum paniculatumGaertn.) Root Extract on Quality and Viability of Mice Sperm. Jurnal natural, 11:7-10.
Rianto, F., Hadi, S., Machmud, M. & Fakuara, Y. 2005. Application of Glomus sp. for the Control Bacterial on Tomato. Biotrop special publication. [Vol, No dan Hal ?]
Ruiz-Lozano, J.M., Azcon, R. & Gomez, R. 1995. Effects of Arbuscular-Mycorrhizal Glomus Species on Drought Tolerance: Physiological and Nutritional Plant Responses. Applied And Environmental Microbiology, 61(2):456–460.
Santoso, A.M. 2012. Pengaruh Elisitor Ekstrak Saccharomyces cerevisiae dan CuSO4 terhadap Biomassa, Profil Protein, dan Kadar Saponin Kalus Talinum paniculatum (Jacq) Gaertn. Dissertation, UniversitasAirlangga.
Santoso, A.M., Amin, M., Sumitro, S.B. & Lukiati, B. 2016. LCMS Determination of Java Ginseng (Talinum paiculatum) Ginsenoside. Proceeding of Second International Biology Conference: Institut Teknologi Sepuluh Nopember Surabaya.
Saroni N., Astuti Y. & Adjirni. 1999. Pengaruh Infus Akar Somjawa (Talinum paniculatum) terhadap Jumlah dan Motilitas Spermatozoa pada Mencit. Warta Tumbuhan Obat Indonesia, 5:13-14.
Setiadi, Y. 1989. Pemanfaatan Mikroorganisme dalam Kehutanan. Departemen Pendidikan dan Kebudayaan Direktorat Jenderal Pendidikan Tinggi. Pusat Antar Universitas Bioteknologi IPB, Bogor, Indonesia.
Sikes, B.A. 2010. When do Arbuscular Mycorrhizal Fungi Protect Plant Roots from Pathogens. Plant Signaling & Behavior, 5(6):763-765.
Simanungkalit, R.D.M. 1997. Effectiveness of 10 species of Arbuskular Mycorrhizal Fungi Isolated from West Java and Lampung on Maize and Soybean. In: Jenie UA (ed) Indonesian Biotechnology Conference 1997: Proceeding of the Indonesian Biotechnology Consortium, IUC Biotechnology IPB, Bogor, Indonesia. pp 267-274.
Stewart, L.I., Hamel, C., Hogue, R. & Moutoglis, P. 2005. Response of Strawberry to Inoculation with Arbuscular Mycorrhizal Fungi under very High Soil Phosphorus Conditions. Mycorrhiza, 15:612–619.
Sumastuti, R. 1999. Efek Anti Radang Infus Daun dan Akar Somjawa (T. paniculatum) pada Tikus Putih in vitro. Warta Tumbuhan Obat Indonesia, 5:15-17.
Winarni, D. 2009. Potensi Androgenic Akar Ginseng Jawa (Talinum paniculatum Gaertn.) pada Kondisi Testosterone Rendah. Dissertation: Airlangga University.
Yadav. K., Singh, N. & Aggarwal, A. 2012. Arbuscular Mycorrhizal Technology for the Growth Enhancement of Micropropagated Spilanthes acmella Murr. Plant Protect. Sci., 48(1):31–36.