Penggunaan Sari Umbi Bawang Merah pada Pembibitan Pepaya

Faryska Nur Ichsan, Djoko Purnomo, Linajanti Darsana

Abstract

People awareness toward nutritious food through the consumption of fruit is rising. Therefore, it needs the increasing of seed availability, either from the planting expansion or cultivation technology development. The productive life of papaya is around 3 years, so the rejuvenate of plant takes relatively quickly. However, the obstacle occurred comes from the adequate life of seed availability and the limitedness of homogeneous seed. Therefore, young seed forced to be used in the field will cause the growth of the plant not in unison. Moreover, it is also not profitable if it is considered from the cultivation of seedlings, since the price of the seed will be cheaper. This research aims to get papaya’s seed which can grow fast and uniformly using growth stimulant substance just like gibberellins that is easy to get and cheap. The experiment studies using concentrations of union juice as the substance to soak the planting material seed of papaya before it is planted. The test of durability and germination speed toward 10 seeds on opaque paper in a petri dish germination medium which the diameter is 11,5 cm. The experiment of seeds growth uses completely randomized design (RAL) in a factor of water treatment, the concentration of union juice is 5, 10, 15, and 20 ml l-1, and 10 ppm gibberellin. Every treatment (experimental unit) consists of 8 seeds planted on the traypot (combination of plastic pots, which each size about: on the surface and high 5,5x5, 5x5,5 cm, pots base 2,5x2,5 cm, an each traypot consists of 32 pots). Thus, there were 8 unit experiments for each traypot, and every single unit of experiments is repeated 3 times. Traypot and petri dish are put beneath the roof in the terrace protected by paranet 65% with 2,5x1,5x2,0 m (length, width, and height) in size. The union juice which is potential is used as the substitute of plant growth regulators gibberellins in papaya seedling. The response of papaya seed toward union juice with 15 ml l-1 concentration is equal to 10 ppm gibberellin, occurred in germination (durability and speed of germination) and the seed growth (the root length, the stem diameter, number of leaves, and biomass weight).

Keywords

Papaya; Seedling; Union shallot juice

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References

Badan Pusat Statistik [BPS)]. 2012. Produksi tomat menurut Provinsi. Badan Pusat Statistik dan direktoral Jendral Hortikultura. Jakarta.

Direktorat Budidaya dan Pasca Panen Sayuran dan Tanaman Obat [DBPST]. 2011. Koordinasi penetapan pola produksi. http://ditsayur. hortikultura.deptan.go.id. Diakses 6 November 2013.

Chow YJ, Lin CH. 1991. p-Hydroxybenzoic acid as the major phenolic germination inhibitor of papaya seed. Seed Sci Technol 19:167-174.Sakya AT, Rahayu M. 2010. Pengaruh pemberian unsur mikro besi (Fe) terhadap kualitas anthurium. Agrosains 12(1): 29–33.

Goldsworthy PR, Fisher NM. 1996. Fisiologi tanaman budidaya tropik. Yogyakarta (ID): Gadjah Mada University Press.

Gardner FP, Pearce RB, Roger LM. 1991. Fisiologi tanaman budidaya. Jakarta (ID): UI Press.

Hartati S. 2000. Penampilan genotip tanaman tomat (Lycopersicum esculentum mill.) hasil mutasi buatan pada kondis stress air dan kondisi optimal. Agric Sci 2(2): 35–42.

Islami T, Utomo WU. 1995. Hubungan tanah, air dan tanaman. Semarang (ID): IKIP Press.

Irianto, Budiyati I, Mapegau. 2011. Pengaruh zat penghambat tumbuh cycocel dalam meningkatkan toleransi bibit manggis pada berbagai tingkat cekaman air. J Agriv 10(3): 300–308.

Khaerana. 2007. Pengaruh cekaman kekeringan dan umur panen terhadap pertumbuhan dan kandungan xanthorrizol tanaman temulawak (Curcuma xanthorrhiza Roxb). Tesis. Program Studi Agronomi Institut Pertanian Bogor.

Kramer. 1969. Plant and soil water relationship, a modem synthesis. New York (NY): Mc GrawHill Co. Ltd.

Lestari E. 2003. Simulasi potensi hasil dan pengaruh cekaman air pada tanaman kentang (Solanum tuberosum l.) di kecamatan Lembang kabupaten Bandung. Skripsi. Institut Pertanian Bogor. MB-IPB. 2010. Export tomat. Program Pasca Sarjana Manajemen dan Bisnis Institut Pertanian Bogor.

Nahar, Gretzmacher. 2002. Effect of water stress on nutrien uptake, yield and quality of tomato (Lycopersicon esculentum Mill.) under subtropical conditions. Die Bodenkultur 53(1): 45–51.

Nonami HY, Utomo Wu, Boyer JS. 1997. Decreased growth induced water potential. Plant Physiol 114: 501- 509.

Palupi ER, Yopi D. 2008. Kajian karakter ketahanan terhadap cekaman kekeringan pada beberapa genotif kelapa sawit (Elaes guineensis Jocq). Bul Agron 36(1): 24-32.

Pervez MA, Ayub CM, Khan HA, Shahid MA, Ashraf I.2009. Effect of drought stress on growth, yield and

Samanhudi. 2010. Pengujian cepat ketahanan tanaman sorgum manis terhadap cekaman kekeringan. Agrosains 12(1): 9-13.

Sitompul SM, Guritno B. 1995. Analisis pertumbuhan tanaman. Yogyakarta (ID): Gadjah Mada University Press.

Solichatun, Endang A, Widya M. 2005. Pengaruh ketersediaan air terhadap pertumbuhan dan kandungan bahan aktif saponin tanaman Ginseng Jawa (Talinum paniculatum Gaertn.). Biofarmasi 3 (2): 47 – 51.

Wahb-Allah MA, Alsadon AA, Ibrahim AA. 2011. Drought tolerance of several tomato genotype under greenhouse condition. World Appl Sci J 15(7): 933-940.

Zgallai H, Steppe K, Lemeur R. 2006. Effect of different level of water stress on leaf water potensial, stomatal resistance, protein and chlorophyll content and certain anti-oxidative enzymes in tomat plants. J Int Plan Biol 48(6): 679-687.