Kualitas Benih dan Pertumbuhan Bibit Tanaman Iles-Iles (Amorphophallus muelleri Blume) Asal Media Tumbuh Berbeda
Abstract
Most of Amorphophallus muelleri seeds for corm production derives from natural production in the forest. The objective of research was to evaluate seed quality and seedling growth from natural and gibberellin (GA3)-induced flowering, and different growing media in order to develop seed production technology. The experiments were conducted at Leuwikopo Experimental Farm of Bogor Agricultural University, Bogor, Indonesia from August 2016-April 2017. A. muelleri seeds from six culture practices were compared, i.e., mother corms with natural flowering were planted in soil media, soil+rice husk charcoal, and soil+cow manure, and mother corms induced flowering using GA3 (1.000, 1.500, and 2000 ppm) were planted in soil media. Results indicated that berry size, color, seed color and size and seed germination rate were independent of seed production method, i.e., non-induction, GA3 induction, and growing media. Germination rate was >90%, and no abnormal sprouting was found. The highest seedling establishment, represented by full-expand of first leaf, was obtained from seeds of soil+rice husk charcoal media. Seedling from seeds of soil+rice husk charcoal and soil+cow manure media had larger leaves than the other treatments. Present study implies that application of rice husk charcoal or manure in the seed production of A. muelleri is important to obtain high quality seedling.
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References
Alonso-Sande M, Teijeiro-Osorio D, Remuñán-López C, Alonso MJ. 2009. Glucomannan, a promising polysaccharide for biopharmaceutical purposes. European Journal of Pharmaceutics and Biopharmaceutics. 72(2): 453-462. https://doi.org/ 10.1016/j.ejpb.2008.02.005
Barbedo CJ, Da Cruz-Centeno D, Riberio RCLF. 2013. Do recalcitran seeds really exist ? Hoehnea. 40(4): 583-593. https://doi.org/10.1590/S2236-8906201 3000400001
Dewi DFK, Azrianingsih R, Indriyani S. 2015. Struktur embrio porang (Amorphophallus muelleri Blume) dari berbagai variasi ukuran biji. Jurnal Biotropika. 3(3): 146-150.
Hidayah N, Suhartanto MR, Santosa E. 2018. Pertumbuhan dan produksi benih iles-iles (Amorphophallus muelleri Blume) asal teknik budi daya yang berbeda. Buletin Agrohorti. 6(3): 386-392. https://doi.org/10.29244/agrob.6.3.386-392
Hossain MF. 2014. Impact of fertilizers on the seed quality of aromatic rice. Journal of Agricultural Science. 6(6): 3540. https://doi.org/10.5539/ jas.v6n6p35
Inaba K. 1992. Effect of nitrogen content of seed corm on growth and yield of konjak plant (Amorphophallus konjac K. Koch). Japanese Journal of Crop Science. 61(4): 551-554. https://doi.org/10.1626/jcs.61.551
Jansen PMC, Van Der Wilk C, Hetterscheid WLA. 1996. Amorphophallus Blume ex. Decaisne. Pp. 45‒50. In: M. Flach and F. Rumawas (Eds). PROSEA: Plant Resources of South-East Asia. No. 9. Plant Yielding Non-seed Carbohydrates. Leiden (NL): Backhuys Publisher.
Santosa E. 2014. Pengembangan iles-iles sistem tumpangsari untuk meningkatkan kesejahteraan petani dan ketahanan industri pangan nasional. Risalah Kebijakan Pertanian dan Lingkungan. 1(2): 73-79. https://doi.org/10.20957/jkebijakan. v1i2.10288
Santosa E, Wirnas D. 2009. Teknik perbanyakan cepat sumberdaya genetik iles-iles untuk mendukung percepatan komersialisasi secara berkelanjutan. Jurnal Ilmu Pertanian Indonesia. 14(2): 91-96.
Santosa E, Sugiyama N, Hikosaka S, Kawabata S. 2003. Cultivation of Amorphophallus muelleri Blume in timber forests of east Java. Japanese Journal of Tropical Agriculture. 47(3): 190-197.
Santosa E, Sugiyama N, Hikosaka S, Nakata M, Bintoro HMH. 2004. Effect of planting depth on growth and yield of two Amorphophallus species cultivated in Indonesia. Japanese Journal of Tropical Agriculture. 48(4): 240-245.
Santosa E, Sugiyama N, Nakata M, Lee ON, Trikoesoemaningtyas, Sopandie D. 2006. Flower induction in elephant foot yam using gibberellic acid (GA3). Japanese Journal of Tropical Agriculture. 50(2): 82-86.
Santosa E, Lontoh AP, Kurniawati A, Sari M, Sugiyama N. 2016a. Flower development and its implication for seed production on Amorphophallus muelleri Blume (Araceae). Jurnal Hortikultura Indonesia. 7(2): 65-74. https://doi.org/10.29244/jhi.7.2.65-74
Santosa E, Kurniawati A, Sari M, Lontoh AP. 2016b. Agronomic manipulation on flowering iles-iles (Amorphophallus muelleri Blume) to enhance seed production. Jurnal Ilmu Pertanian Indonesia. 21(2): 133-139. https://doi.org/10.18343/jipi.21.2.133
Sari RM. 2018. Pengaruh Dolomit, Kompos, Arang, dan Fosfat Alam Terhadap pH, Aldd, dan Ptersedia pada Podsolik Jasinga. [Skripsi]. Institut Pertanian Bogor. Bogor (ID).
Sudarsono WA, Melati M, Aziz SA. 2013. Pertumbuhan, serapan hara dan hasil kedelai organik melalui aplikasi pupuk kandang sapi. Jurnal Agronomi Indonesia. 41(3): 202-208.
Sugiyama N, Santosa E. 2008. Edible Amorphophallus in Indonesia‒Potential Crops in Agroforestry. Yogyakarta (ID): Gadjah Mada University Press.
Sumarwoto. 2005. Iles-iles (Amorphophallus muelleri Blume): Description and other characteristics. Biodiversitas. 6(3): 185-190. https://doi.org/ 10.13057/biodiv/d060310
Turhadi, Indriyani S. 2015. Uji daya tumbuh porang (Amorphophallus muelleri Blume) dari berbagai variasi potongan biji. Jurnal Biotropika. 3(1): 1-6.
Zhang D, Wang Q, George S. 2010. Mechanism of staggered multiple seedling production from A. bulbifer and A. muelleri and its implication to cultivation in Southeast Asia. Tropical Agriculture and Development. 54(3): 84-90. https://doi.org/ 10.1016/j.carbpol.2004.11.003
Zhang YQ, Xie BJ, Gan X. 2005. Advance in the applications of konjac glucomannan and its derivatives. Carbohydrate Polymers. 60: 27-31.
Zhao JR, Yu L, Srzednicki G, Borompichaichartkul C. 2013. Effects of different concentrations of gibberellin on flower-bud differentiation of Amorphophallus muelleri. Pp 93‒99. In: Proceedings of AFHW 2013. International Symposium on Agri-Foods for Health and Wealth. Golden Tulip Sovereign Hotel, Bangkok (TH): Thailand, 5-8 August 2013.
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