Vol. 26 No. 3 (2026): in Progress
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Effectiveness of Type M1 AMF Inoculum and Host Plant Species on the Growth of Sandalwood (Santalum album Linn.) Seedlings

Authors

Abdonia Finmeta , Davik Eliaser Taneo , Nur Aini Bunyani , Eka Citra.G. Kerihi

DOI:

10.29303/jbt.v26i3.12918

Published:

2026-08-03

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Abstract

The successful establishment of sandalwood (Santalum album L.) in the degraded dry savanna of East Nusa Tenggara, Indonesia, remains limited because young seedlings often fail to adapt to marginal soil conditions and seasonal water scarcity. This study evaluated the effects of Arbuscular Mycorrhizal Fungi (AMF) inoculum (type M1) and different host plant species on the growth of sandalwood seedlings during the nursery stage. The experiment employed a completely randomized split-plot design with two AMF treatments (without AMF and AMF type M1) and four host plant treatments (without host, chili, mung bean, and Leucaena). Growth performance was assessed based on plant height, stem diameter, and leaf number. The results showed that both AMF inoculation and host plant species significantly affected all measured growth parameters. The combination of AMF type M1 and mung bean as the host plant produced the highest growth, with plant height of 14.09 cm, stem diameter of 2.26 mm, and 19.20 leaves per seedling. These findings indicate that the symbiotic association between AMF and an appropriate host plant enhances nutrient and water uptake, thereby supporting seedling growth under nursery conditions. The study demonstrates that integrating AMF type M1 with mung bean as a host plant is a promising strategy to improve sandalwood seedling quality and may contribute to more successful establishment in dryland restoration and reforestation programs.

Keywords:

Arbuscular Micorrhizal Fungi Sandalwood Host plants

References

Barrett, D. R., & Fox, J. E. D. (1994). Early growth and development of sandalwood (Santalum spicatum) in relation to host species. Australian Journal of Botany, 42(1), 83–93.

Begum, N., Qin, C., Ahanger, M. A., Raza, S., Khan, M. I., Ashraf, M., Ahmed, N., & Zhang, L. (2019). Role of arbuscular mycorrhizal fungi in plant growth regulation: Implications in abiotic stress tolerance. Frontiers in Plant Science, 10, 1068. https://doi.org/10.3389/fpls.2019.01068

Birhane, E., Bongers, F., Damtew, A., Tesfay, A., Norgrove, L., & Kuyper, T. W. (2023). Arbuscular mycorrhizal fungi improve nutrient status of Commiphora myrrha seedlings under drought. Journal of Arid Environments, 209, 104877.

Chandrasekaran, M. (2020). A meta-analytical approach on the effects of arbuscular mycorrhizal fungi inoculation on plant growth and nutrient uptake. Agriculture, 10(9), 370. https://doi.org/10.3390/agriculture10090370

Chandrasekaran, M. (2024). The role of arbuscular mycorrhizal fungi in refining plant photosynthesis and water status under drought stress: a meta-analysis. Plant, Soil & Environment, 70(8).

Chen, C. J., Wu, Y., & Wang, G. (2023). Inoculation with arbuscular mycorrhizal fungi improves plant biomass and nitrogen and phosphorus nutrients: a meta-analysis. Available at SSRN 4498871.

Chitarra, W., Maserti, B., Gambino, G., Guerrieri, E., & Balestrini, R. (2020). The role of arbuscular mycorrhizal fungi in plant responses to drought stress. Frontiers in Plant Science, 11, 1130. https://doi.org/10.3389/fpls.2020.01130

Finmeta AW, Mansur I, Wulandari AS.2017. Pemanfaatan Fungi Mikoriza Arbuskula Lokal dan Tanaman Inang Desmodium spp. untuk meningkatkan Pertumbuhan Bibit Cendana (Santalum album Linn.).

George, A., & Ray, J. (2023). Host dependency and nutrient acquisition mechanisms in sandalwood (Santalum album L.). Trees, Forests and People, 12, 100380.

International Union for Conservation of Nature. (2024). The IUCN Red List of Threatened Species: Santalum album. https://www.iucnredlist.org

IUCN. (2024). Santalum album. The IUCN Red List of Threatened Species.

Jones, C. G. (2008). Sandalwood: The precious wood of the tropics. Economic Botany, 62, 1–12.

Moyler, D. A. (1997). Sandalwood oil: A review. Flavour and Fragrance Journal, 12(4), 247–253.

Peng, Z., Zulfiqar, T., Yang, H., Wang, M., & Zhang, F. (2024). Effect of Arbuscular Mycorrhizal Fungi (AMF) on photosynthetic characteristics of cotton seedlings under saline-alkali stress. Scientific Reports, 14(1), 8633.

Radomiljac, A. M., McComb, J. A., & Pate, J. S. (1998). The effect of container type and host species on the early growth of sandalwood (Santalum album L.) seedlings. Forest Ecology and Management, 113, 97–104.

Radomiljac, A. M., McComb, J. A., & Pate, J. S. (1998). The effect of container type and host species on the early growth of sandalwood (Santalum album L.) seedlings. Forest Ecology and Management, 113, 97–104.

Rahayu, S., Adinugraha, H. A., & Rimbawanto, A. (2019). Conservation and genetic improvement of sandalwood (Santalum album) in Indonesia. Forest Science and Technology, 15(3), 145–153.

Rao, M. N., Paramesh, R., & Srinivasan, V. (2018). Chemistry and pharmacological importance of sandalwood oil. Natural Product Communications, 13(9), 1181–1188.

Rillig, M. C., & Mummey, D. L. (2006). Mycorrhizas and soil structure. New Phytologist, 171(1), 41–53.

Rimbawanto, A., Widyatmoko, A. Y. P. B. C., & Susanto, M. (2017). Conservation and genetic improvement of sandalwood (Santalum album L.) in Indonesia. IOP Conference Series: Earth and Environmental Science, 71, 012012.

Seran, Y. N., Sudarto, Hakim, L., & Arisoesilaningsih, E. (2018). Structural model of sandalwood (Santalum album) regeneration in the forest and community plantation on Timor Island, Indonesia. International Journal of Tropical Drylands, 2(2), 41–47.

Shen, H., Hong, L., Chen, H., & Cui, Y. (2012). Endogenous hormone levels and anatomical characters of haustoria in Santalum album L. seedlings before and after attachment to the host. Plant Biology, 14(4), 638–645.

Smith, S. E., & Read, D. J. (2008). Mycorrhizal symbiosis (3rd ed.). Academic Press.

Smith, S. E., & Read, D. J. (2008). Mycorrhizal symbiosis (3rd ed.). Academic Press.

Srikantaprasad, D., Gowda, A. M., Pushpa, T. N., Thimmegowda, M. N., Umesha, K., Ravikumar, R. L., & Prasanna, K. T. (2022). Identification of suitable host for sandalwood cultivation in Northern dry zone of Karnataka. Industrial Crops and Products, 182, 114874.

Thius, A., Pellondo’u, M. E., & Sinaga, P. S. (2024). Pengaruh beberapa jenis inang terhadap pertumbuhan semai cendana (Santalum album) yang berasal dari dua sumber benih berbeda. Wana Lestari, 6(1), 1–10.

Wang, W., Shi, J., Xie, Q., Jiang, Y., Yu, N., & Wang, E. (2023). Nutrient exchange and regulation in arbuscular mycorrhizal symbiosis. Molecular Plant, 16(2), 255–270.

Zhang, S., Wang, L., Ma, F., & Zhang, X. (2021). Arbuscular mycorrhizal fungi improve plant growth and drought tolerance through physiological regulation. Plant Physiology and Biochemistry, 164, 1–9.

Author Biographies

Abdonia Finmeta, Universitas Persatuan Guru 1945

Author Origin : Indonesia

Davik Eliaser Taneo, Universitas Persatuan Guru 1945 NTT

Author Origin : Indonesia

BIODATA PENULIS

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JORITHA NAISANU

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Naisanu lahir di Kota Kupang pada tahun 1979 dan menyelesaikan program S2 di Universitas Gadjah Mada dengan Jabatan akademik Lektor.

Naisanu saat ini bekerja sebagai salah satu Dosen di Fakultas Pertanian Universitas Persatuan Guru 1945 NTT.

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Nur Aini Bunyani, Universitas Persatuan Guru 1945 NTT

Author Origin : Indonesia

Eka Citra.G. Kerihi, Universitas Persatuan Guru 1945 NTT

Author Origin : Indonesia

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How to Cite

Finmeta, A., Taneo, D. E., Bunyani, N. A., & Kerihi, E. C. (2026). Effectiveness of Type M1 AMF Inoculum and Host Plant Species on the Growth of Sandalwood (Santalum album Linn.) Seedlings. Jurnal Biologi Tropis, 26(3), 1155–1162. https://doi.org/10.29303/jbt.v26i3.12918

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