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1

Istomo, Istomo, and Ida Sufaidah. "Asosiasi Ramin (Gonystylus bancanus (Miq.) Kurz) dengan Jenis Dominan di IUPHHK-HA PT Diamond Raya Timber, Riau." Journal of Tropical Silviculture 11, no. 2 (2020): 56–64. http://dx.doi.org/10.29244/j-siltrop.11.2.56-64.

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Ramin is one of slow growing spesies, have a medium until big measurement, have a silindris stem, high total reach 40-50 m with DBH reach 120 cm. The purpose of this research is to know association between ramin (Gonystylus bancanus (Miq.) Kurz) and dominan species in IUPHHK-HA PT Diamond Raya Timber, Riau. Vegetation analysis used combination method between strip and line compartment method. Result showed that no one of dominan species have association with Gonystylus bancanus in tree and pole level at IUPHHK-HA PT DRT. Although there is no species in pole level that have association with Gon
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2

Rostiwati, Tati, Murniati Murniati, and Hendromono Hendromono. "GROWTH OF RAMIN (Gonystylus bancanus (Miq) Kurz.) PLANTATION ON VARIOUS PEAT SWAMP FORESTS IN INDONESIA." JOURNAL OF FORESTRY 4, no. 2 (2007): 73–81. https://doi.org/10.20886/ijfr.2007.4.2.73-81.

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&nbsp; Ramin (<em>Gonystylus bancanus </em>(Miq) Kurz.) is a trade name of timber produced from a group of <em>Gonystylus </em>species. It is a well-known species because of its high timber quality and value. Ramin natural population has been decreasing sharply since the last two decades due to over exploitation, and nowadays leads to extinction. The objective of&nbsp; this research was to analyze the growth of ramin plantation on various sites. &nbsp;Data were collected from February to April 2005 through field survey on five sites of peat-swamp forest areas in four provinces, Riau, Jambi, We
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3

Decenly, Decenly, Samuel Grenkess Glovanus Simbolon, Siti Sunariyati, Rahayu Opi Anggoro, and Krishna Ananka Reza Guevara. "Effect of IBA Concentration on The Growth of Ramin Cuttings (Gonystylus bancanus (Mig.) Kurz)." Jurnal Biologi Tropis 25, no. 1 (2025): 529–35. https://doi.org/10.29303/jbt.v25i1.8485.

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Анотація:
Ramin (Gonystylus bancanus (Miq) Kurz) is a peat swamp plant with commercial value in both national and international markets. However, the existence of ramin is threatened with extinction, due to the imbalance between regrowth and utilization, making it increasingly difficult to obtain ramin seedlings naturally. One of the efforts to propagate ramin is by cuttings. This study aimed to determine the optimum concentration of IBA (Indole Butyric Acid) growth regulator used in supporting the growth of ramin cuttings. The research method used a Randomized Group Design (RGD) consisting of 4 treatme
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4

Yelnititis, Yelnititis. "PEMBENTUKAN KALUS REMAH DARI EKSPLAN DAUN RAMIN (Gonystylus bancanus (Miq) Kurz.)." JURNAL PEMULIAAN TANAMAN HUTAN 6, no. 3 (2012): 181–94. http://dx.doi.org/10.20886/jpth.2012.6.3.181-194.

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5

Heriyanto, N. M., and R. Garsetiasih. "Ekologi dan Potensi Ramin (Gonystylus bancanus Kurz.) di Kelompok Hutan Sungai Tuan-Sungai Suruk, Kalimantan Barat." Buletin Plasma Nutfah 12, no. 1 (2016): 24. http://dx.doi.org/10.21082/blpn.v12n1.2006.p24-29.

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&lt;p&gt;Ecological and potential study of ramin was conducted in September 2002. Sampling plot of 20 meters x 1,000 meters with distance between plots was 1 km with total transect of three. Observation within the transect were on stage of tree, pole, sapling and seedling measured. Predominant species were Gluta renghas, Kingiodendron sp., and Shorea spp. The tree stages of ramin was 1.48 tree/ha, poles stage 33.75 individual/ ha, sapling stage 125 individual/ha, and seedling stage 468.75 individual/ha. Ramin was closely related to Kingiodendron sp., G. renghas, and Mezzettia parviflora. Howev
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6

MUIN, ABDURRANI, and DWI ASTIANI. "Population and vegetation structure of ramin (Gonystylus bancanus) in secondary forests of Ketapang District, West Kalimantan, Indonesia." Biodiversitas Journal of Biological Diversity 19, no. 2 (2018): 478–84. http://dx.doi.org/10.13057/biodiv/d190222.

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Анотація:
Muin A, Astiani D. 2018. Population and vegetation structure of ramin (Gonystylus bancanus) in secondary forests of Ketapang District, West Kalimantan, Indonesia. Biodiversitas 19: 478-484. In the tropical peatland, ramin (Gonystylus bancanus Miq. Kurz) was one of many prominent species that present in peatland forest. The species distribution is mostly in Southeast Asia peatland. The beautiful wood color, pale yellow sometimes grayish with no differentiated sapwood and heartwood with straight interlocked grain, made it become the most wanted tree species from tropical peatland.The exploitatio
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7

Hendromono, Hendromono. "POTENCY OF RAMIN (Gonystylus bancanus Kurtz.) AND OTHER COMMERCIAL SPECIES IN PEAT SWAMP FOREST MANAGED WITH TPTI SILVICULTURAL SYSTEM IN BAGAN, RIAU." Journal of Forestry Research 2, no. 2 (2005): 89–98. https://doi.org/10.20886/ijfr.2005.2.2.89-98.

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Ramin &nbsp;<em>(</em><em>Gonystylus bancanus </em>Kurtz.) &nbsp;is one &nbsp;of &nbsp;the &nbsp;tree &nbsp;species in&nbsp; peat-swamp &nbsp;forest &nbsp;that &nbsp;is endangered due to excessive exploitation. The objective of this research was to assess the potency of rarnin and other commercial tree species in primary and logged over peat-swamp forests at Bagan, Riau. The tree stands were inventoried in primary forest of the 2004 and 2006 Annual Work Plan (RKTs) and in &nbsp;the &nbsp;1997 &nbsp;and &nbsp;2001 &nbsp;RKTs&nbsp; managed&nbsp; with &nbsp;Indonesian &nbsp;Selective Cutting &nbs
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8

Rahmawati, R. "PLANTING OF RAMIN (GONYSTYLUS BANCANUS KURZ) WILDING IN PEAT SWAMP THICKET OF CENTRAL KALIMANTAN." Russian Journal of Agricultural and Socio-Economic Sciences 88, no. 4 (2019): 209–13. http://dx.doi.org/10.18551/rjoas.2019-04.26.

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9

Rostiwati, Tati, Murniati Murniati, and Hendromono Hendromono. "Growth of Ramin (Gonystylus bancanus (Miq) Kurz.) Plantation on Various Peat Swamp Forests in Indonesia." Indonesian Journal of Forestry Research 4, no. 2 (2007): 73–81. http://dx.doi.org/10.20886/ijfr.2007.4.2.73-81.

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10

Hendromono, Hendromono. "Potency of Ramin (Gonystylus bancanus Kurtz.) and Other Commercial Species in Peat Swamp Forest Managed with TPTI Silvicultural System in Bagan, Riau." Indonesian Journal of Forestry Research 2, no. 2 (2005): 89–98. http://dx.doi.org/10.20886/ijfr.2005.2.2.89-98.

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11

Rostiawati, Tati, and Abdurani Muin. "SIFAT TOLERANSI ANAKAN RAMIN (Gonystylus bancanus (Miq.) Kurz) TERHADAP NAUNGAN MELALUl PENDEKATAN KARAKTER MORFOLOGI DAN ANATOMI DAUN." Jurnal Penelitian Hutan dan Konservasi Alam 2, no. 6 (2005): 609–17. http://dx.doi.org/10.20886/jphka.2005.2.6.609-617.

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12

Yelnititis, Yelnititis. "EMBENTUKAN EMBRIO SOMATIK DARI EKSPLAN DAUN RAMIN, SPESIES TANAMAN LANGKA." Jurnal Pemuliaan Tanaman Hutan 15, no. 2 (2021): 129–35. http://dx.doi.org/10.20886/jpth.2021.15.2.129-135.

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Анотація:
Ramin (Gonystylus bancanus (Miq.) Kurz) is one of the most valuable timbers in Indonesia and the most over-exploited woody species, on the other hand,the success in propagation techniques are still limited. This species has been listed in Appendix II of CITES since 2004as the number of trees and populations continuouslydecline. Tissue culture has been explored for mass propagation, however, this technique still facesthechallenge, mainly in shoot elongation regenerated from single node explants. The purpose of these experiments is to selectthe best auxin (2,4-D, picloram,dan dicamba) and the be
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13

Yulita, K. S., and H. H. Rahmat. "Population genetic structure and diversity of a critically endangared Ramin [Gonystylus bancanus Miq.(Kurz), Thymelaeaceae] from Kalimantan and Sumatra based on Sequence Random Amplified Polymorphism." IOP Conference Series: Earth and Environmental Science 308 (September 4, 2019): 012067. http://dx.doi.org/10.1088/1755-1315/308/1/012067.

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14

Fitri, Tia, Eny Dwi Pujawati, and Damaris Payung. "PENGARUH PEMBERIAN ROOTONE F TERHADAP PERTUMBUHAN STEK RAMIN (Gonystylus bancanus)." Jurnal Sylva Scienteae 4, no. 1 (2021): 174. http://dx.doi.org/10.20527/jss.v4i1.3105.

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The aims of this research is to know the effect of giving Rootone F to the growth of Ramin cuttings (Gonystylus bancanus), knowing the dose of Rootone F which can provide the best growth response in Ramin (Gonystylus bancanus) shoots cuttings. This research was conducted in the greenhouse of the nursery research and development environment and Forestry (BP2LHK) Banjarbaru. The implementation of this study took 4 months. The design used in this study used RAL with 4 treatments with 80 units of trial. Administration of Rootone F on cuttings is by way of pasta. Result of the research obtained by
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15

Karni, Fauzi, Dina Naemah, and Sulaiman Bakri. "IDENTIFIKASI KERUSAKAN TEGAKAN RAMIN (Gonystylus bancanus) DI PUNGGUALAS TAMAN NASIOANAL SEBANGAU KALIMANTAN TENGAH." Jurnal Sylva Scienteae 4, no. 3 (2021): 561. http://dx.doi.org/10.20527/jss.v4i3.3758.

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The purpose of this study was to determine the damage to ramin (Gonystylus bancanus) stands in Punggualas Sebangau National Park, Central Kalimantan. The research location was determined by purposive sampling on the transect line at Punggualas. This observation is carried out by exploring the transect line that has been determined so that the data in the form of ramin stands can be found and the damage is observed in stages, then the coordinates of the ramin point are taken using GPS. In this observation, 22 ramin stands were found in which the most damage occurred in the leaves of ramin, name
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16

Wardani, Marfuah, Tajudin Edy Komara, and N. M. Heriyanto. "SEBARAN DAN POTENSI GONYSTYLUS NON BANCANUS DI SUMATERA DAN KALIMANTAN." Buletin Plasma Nutfah 22, no. 1 (2018): 55. http://dx.doi.org/10.21082/blpn.v22n1.2016.p55-66.

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&lt;p&gt;Kelompok jenis &lt;em&gt;Gonystylus&lt;/em&gt; non &lt;em&gt;bancanus&lt;/em&gt; termasuk dalam kelompok kayu komersial ramin, yang saat ini telah banyak dieksploitasi, sehingga diperlukan adanya upaya budidaya dan konservasi. Dalam rangka menunjang upaya tersebut, telah dilakukan penelitian yang bertujuan untuk mengetahui sebaran dan potensi &lt;em&gt;Gonystylus&lt;/em&gt; non &lt;em&gt;bancanus&lt;/em&gt; di empat lokasi (Sumatera Barat, Bengkulu, Kalimantan Tengah dan Kalimantan Barat) pada bulan Mei sampai bulan Nopember 2015. Pengumpulan data menggunakan plot bujur sangkar ukuran
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17

Samsuri, Samsuri, I. Nengah Surati Jaya, Tien Lastini, and Edwin Setia Purnama. "Estimation Model of Ramin (Gonystylus bancanus) Standing Stock in Peat Swamp Forest: Case Study in Sumatra and Kalimantan." Journal of Sylva Indonesiana 1, no. 1 (2018): 6–15. http://dx.doi.org/10.32734/jsi.v1i1.422.

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Multiple sampling technique was applied to estimate ramin (Gonystylus bancanus) standing stock in peat swamp forest by combining imagery analysis (phase I) and field measurement (phase II). The objectives of this research were to obtain (1) estimation model of stand volume, (2) estimation model of G. bancanus standing stock, and (3) volume of standing stock of G. bancanus in Sumatera and Kalimantan peat swamp forests. The research was conducted in peat swamp forest of Sumatera and Kalimantan Island. ALOS AVNIR image interpretation was completed to obtain crown density and used as independent v
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18

Insiana Putri, Asri, Toni Herawan, Prastyono Prastyono, and Liliek Haryjanto. "PENGARUH TEKNIK STERILISASI EXPLAN TERHADAP TINGKAT PEROLEHAN KULTUR JARINGAN AKSENIK RAMIN (Gonystylus bancanus)." JURNAL PEMULIAAN TANAMAN HUTAN 11, no. 2 (2017): 131–38. http://dx.doi.org/10.20886/jpth.2017.11.2.131-138.

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19

Setiarno, Suzet Rotua Tanya Nababan, Nisfiatul Hidayat, Johanna Maria Rotinsulu, and Ajun Junaedi. "Ekostruktur Vegetasi di Sekitar Ramin (Gonystylus bancanus) pada Kawasan Laboratorium Alam Lahan Gambut Universitas Palangka Raya." HUTAN TROPIKA 19, no. 2 (2024): 213–21. https://doi.org/10.36873/jht.v19i2.16780.

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Penelitian ini bertujuan untuk menganalisis komposisi dan struktur vegetasi di sekitar tumbuhan Ramin (Gonystylus bancanus) pada kawasan Laboratorium Alam Lahan Gambut Universitas Palangka Raya. Pengumpulan data vegetasi dilakukan dengan teknik plot kuadrat, yang penempatan plotnya dilakukan secara purposive systematic sampling. Data yang diperoleh dalam plot penelitian ini dianalisis dengan menggunakan Microshoft Excel dalam konteks Indeks Nilai Penting (INP), indeks dominansi jenis, indeks diversitas, dan indeks kemerataan. Pada penelitian ini ditemukan sebanyak 47 jenis tumbuhan yang dikate
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20

UTAMI, NING WIKAN. "Seed germination and seedling growth of ramin (Gonystylus bancanus Miq.) on various growing media." Biodiversitas, Journal of Biological Diversity 7, no. 3 (2006): 264–68. http://dx.doi.org/10.13057/biodiv/d070314.

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21

Elfis, Elfis, Prima Wahyu Titisari, Sepita Ferazona, et al. "Penerapan Teknologi Tepat Guna Paludikultur Endemik Lokal pada Kelompok Tani Tunas Jaya." COMSEP: Jurnal Pengabdian Kepada Masyarakat 3, no. 3 (2022): 308–15. http://dx.doi.org/10.54951/comsep.v3i3.315.

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Paludiculture is one of the agroforestry models to responsible peatland management that preserves ecosystem services while also accumulating carbon. Paludiculture products can provide food, feed, fiber, and fuel, as well as industrial raw materials. The goal of this community service activity is to create canal blocking and applied nucleation demonstration plots to increase the diversity of local endemic paludiculture plant species. The community involved is Kelompok Tani Tunas Jaya (KTTJ) Parit II Village, Sungai Apit District, Siak Regency. The results of the activity in the form of making 2
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22

SMULDERS, M. J. M., W. P. C. VAN ‘T WESTENDE, B. DIWAY, G. D. ESSELINK, P. J. VAN DER MEER, and W. J. M. KOOPMAN. "Development of microsatellite markers in Gonystylus bancanus (Ramin) useful for tracing and tracking of wood of this protected species." Molecular Ecology Resources 8, no. 1 (2008): 168–71. http://dx.doi.org/10.1111/j.1471-8286.2007.01914.x.

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23

van Hoeflaken, J., M. Demies, and P. J. van der Meer. "Historical data guides restoration of degraded peat swamp forests in Southeast Asia." IOP Conference Series: Earth and Environmental Science 914, no. 1 (2021): 012044. http://dx.doi.org/10.1088/1755-1315/914/1/012044.

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Abstract Peat swamp forests in Southeast Asia are under heavy pressure. Deforestation, forest degradation, wildfires, and drainage have damaged or destroyed substantial areas of the once extensive peat swamp forest formations. Several efforts are underway to rehabilitate degraded peat forests areas in order to restore some of the valuable ecosystem services these forested areas once provided. However, these efforts often result in (mixed)-plantations that only partly resemble the original peat forests. Information about these peat swamp forests’ complex origin and ecology is needed to improve
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24

Bastoni, Bastoni, Raissa Anjani, and Andika Imanullah. "Revegetation of Tropical Peat Swamp Forest of Former Fires Using Local Tree Species in South Sumatra (Indonesia)." Jurnal Lahan Suboptimal : Journal of Suboptimal Lands 12, no. 2 (2023): 209–18. http://dx.doi.org/10.36706/jlso.12.2.2023.645.

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Revegetation of tropical peat swamp forests (PSF) from former fires with local tree species has strategic value for the recovery of PSF, which has been largely lost and severely degraded by logging, conversion, drainage, and repetitive fires. The PSF recovery will be followed by increased forest cover, CO2 sequestration, O2 production, and peat ecosystem biodiversity. The method of revegetation that guarantees successful planting is still very lacking and has not been widely publicized. The study aimed to analyze the growth of revegetated plants on PSF of former fires. It used a field experime
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25

"Gonystylus bancanus (ramin)." CABI Compendium CABI Compendium (January 7, 2022). http://dx.doi.org/10.1079/cabicompendium.25729.

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"Gonystylus bancanus (ramin)." PlantwisePlus Knowledge Bank Species Pages (January 7, 2022). http://dx.doi.org/10.1079/pwkb.species.25729.

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27

Ismail, P., A. Latiff, I. Faridah Hanum, and I. Shamsudin. "Phenology of Gonystylus bancanus IN PAHANG, Peninsular Malaysia." Journal of Tropical Forest Science, June 12, 2011. https://doi.org/10.5281/zenodo.13450035.

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Анотація:
(Uploaded by Plazi for the Bat Literature Project) Ismail P, Nizam MS, Latiff A, Faridah Hanum I &amp; Shamsudin I. 2011. Phenology of Gonystylus bancanus in Pahang, Peninsular Malaysia. A study on the phenology of Gonystylus bancanus (ramin melawis) was conducted in Pekan Forest Reserve, Pahang, Peninsular Malaysia, which covers areas of virgin and logged-over forests. Observations revealed that the flowering of G. bancanus was supra-annual. The smallest G. bancanus tree to flower was 29 cm in diameter at breast height (dbh) and was located in a logged-over site. Most trees that flowered had
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Ismail, P., A. Latiff, I. Faridah Hanum, and I. Shamsudin. "Phenology of Gonystylus bancanus IN PAHANG, Peninsular Malaysia." Journal of Tropical Forest Science, June 7, 2011. https://doi.org/10.5281/zenodo.13450035.

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Анотація:
(Uploaded by Plazi for the Bat Literature Project) Ismail P, Nizam MS, Latiff A, Faridah Hanum I &amp; Shamsudin I. 2011. Phenology of Gonystylus bancanus in Pahang, Peninsular Malaysia. A study on the phenology of Gonystylus bancanus (ramin melawis) was conducted in Pekan Forest Reserve, Pahang, Peninsular Malaysia, which covers areas of virgin and logged-over forests. Observations revealed that the flowering of G. bancanus was supra-annual. The smallest G. bancanus tree to flower was 29 cm in diameter at breast height (dbh) and was located in a logged-over site. Most trees that flowered had
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29

Ismail, P., A. Latiff, I. Faridah Hanum, and I. Shamsudin. "Phenology of Gonystylus bancanus IN PAHANG, Peninsular Malaysia." Journal of Tropical Forest Science, July 3, 2011. https://doi.org/10.5281/zenodo.13450035.

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Анотація:
(Uploaded by Plazi for the Bat Literature Project) Ismail P, Nizam MS, Latiff A, Faridah Hanum I &amp; Shamsudin I. 2011. Phenology of Gonystylus bancanus in Pahang, Peninsular Malaysia. A study on the phenology of Gonystylus bancanus (ramin melawis) was conducted in Pekan Forest Reserve, Pahang, Peninsular Malaysia, which covers areas of virgin and logged-over forests. Observations revealed that the flowering of G. bancanus was supra-annual. The smallest G. bancanus tree to flower was 29 cm in diameter at breast height (dbh) and was located in a logged-over site. Most trees that flowered had
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30

Ismail, P., A. Latiff, I. Faridah Hanum, and I. Shamsudin. "Phenology of Gonystylus bancanus IN PAHANG, Peninsular Malaysia." Journal of Tropical Forest Science, July 10, 2011. https://doi.org/10.5281/zenodo.13450035.

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Анотація:
(Uploaded by Plazi for the Bat Literature Project) Ismail P, Nizam MS, Latiff A, Faridah Hanum I &amp; Shamsudin I. 2011. Phenology of Gonystylus bancanus in Pahang, Peninsular Malaysia. A study on the phenology of Gonystylus bancanus (ramin melawis) was conducted in Pekan Forest Reserve, Pahang, Peninsular Malaysia, which covers areas of virgin and logged-over forests. Observations revealed that the flowering of G. bancanus was supra-annual. The smallest G. bancanus tree to flower was 29 cm in diameter at breast height (dbh) and was located in a logged-over site. Most trees that flowered had
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31

Ismail, P., A. Latiff, I. Faridah Hanum, and I. Shamsudin. "Phenology of Gonystylus bancanus IN PAHANG, Peninsular Malaysia." Journal of Tropical Forest Science, July 17, 2011. https://doi.org/10.5281/zenodo.13450035.

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Анотація:
(Uploaded by Plazi for the Bat Literature Project) Ismail P, Nizam MS, Latiff A, Faridah Hanum I &amp; Shamsudin I. 2011. Phenology of Gonystylus bancanus in Pahang, Peninsular Malaysia. A study on the phenology of Gonystylus bancanus (ramin melawis) was conducted in Pekan Forest Reserve, Pahang, Peninsular Malaysia, which covers areas of virgin and logged-over forests. Observations revealed that the flowering of G. bancanus was supra-annual. The smallest G. bancanus tree to flower was 29 cm in diameter at breast height (dbh) and was located in a logged-over site. Most trees that flowered had
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Oktavianawati, Ika, Mardi Santoso, and Sri Fatmawati. "Metabolite profiling of Borneo’s Gonystylus bancanus through comprehensive extraction from various polarity of solvents." Scientific Reports 13, no. 1 (2023). http://dx.doi.org/10.1038/s41598-023-41494-7.

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AbstractGonystylus bancanus wood or ramin wood has been generally known as a source of agarwood (gaharu) bouya, a kind of agarwood inferior type, or under the exported trading name of aetoxylon oil. The massive exploitation of ramin wood is causing this plant's extinction and putting it on Appendix II CITES and IUCN Red List of Threatened Species. To date, no scientific publication concerns the chemical exploration of G. bancanus wood and preserving this germplasm through its metabolite profiling. Therefore, research focused on chemical components profiling of G. bancanus is promised. This res
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"Microhabitat Influence on Growth Distribution Pattern of Ramin (Gonystylus bancanus) in Siak, Riau Province." BIOTROPIA 22, no. 1 (2015). http://dx.doi.org/10.11598/btb.2015.22.1.284.

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