http://mutillidae.purbalinggakab.go.id/app/ https://informatika.nusaputra.ac.id/lib/ slot gacor https://sipenmaru-polkeslu.cloud/sgacor/ https://inspektorat.batubarakab.go.id/adminsample/image/
jp1131 https://login-bobabet.com/ https://sugoi168daftar.com/ https://login-domino76.com/ https://sipenmaru-polkeslu.cloud/daftar_admin/ https://pascasarjana.uts.ac.id/plugins/sugoi168/ https://library.president.ac.id/event/jp-gacor/ https://biropemotda.riau.go.id/menus/1131-gacor/ https://keuangan.usbypkp.ac.id/mmo/boba/ https://informatika.nusaputra.ac.id/wp-includes/1131/
https://informatika.nusaputra.ac.id/hk/
https://informatika.nusaputra.ac.id/sbo/
https://csirt.riau.go.id/gcr/
https://upg.poltekkesdepkes-sby.ac.id/wp-content/trb/
https://lms.poltekbangsby.ac.id/moon/
Konsentrasi dan waktu aplikasi K2SO4 pada produksi benih kentang (solanum tuberosum l.) G0 | Dianawati | Kultivasi

Konsentrasi dan waktu aplikasi K2SO4 pada produksi benih kentang (solanum tuberosum l.) G0

Meksy Dianawati

Abstract


Abstract. Potassium (K) is very important nutrition for potato tuberization, which can be obtained from K2SO4 fertilizer. The high growth of potato crop on hydroponic cultivation needs to be balanced with the use of K fertilizer with various rate and time of application. This study aimed to increase the production of potato seed G0 with various rates and application time of K2SO4. The study was carried out in a plastic house in Lembang, West Bandung, West Java from June to September 2015. The study used a randomized block design with two treatment factors and five replications. The first treatment factor was the rate of K2SO4, ie 0.5; 1; 1.5; and 2 ppm. The second was the application time of K2SO4, ie 1; 2; and 1 and 2 months after planting (MAP). Data were analyzed by F test and continued with Duncan, ortogonal polinomial, and correlation test at 95% confidence level. The results showed that interaction between rate and application time of K2SO4 to plant height, number of large-tubers, number of small-tubers, and total number of tubers, and tuber weight per plant. Increased rate of K2SO4 on 1 MAP did not affect total number of tubers and number of small-tubers. Application of K2SO4 twice at 1 and 2 MAP required low rate of 0.5 ppm K2SO4 to obtain the highest of total number of tubers and number of small-tubers.

 

Keywords : potato, seed, rate, time application, K2SO4

Penelitian ini bertujuan untuk meningkatkan produksi benih kentang G0 dengan berbagai konsentrasi dan waktu aplikasi K2SO4. Penelitian dilaksanakan di rumah plastik di Lembang, Bandung Barat, Jawa Barat mulai Juni sampai September 2015. Penelitian menggunakan rancangan acak kelompok dengan dua faktor perlakuan dan lima ulangan. Faktor perlakuan pertama adalah konsentrasi K2SO4, yaitu 0,5; 1; 1,5; dan 2 ppm. Faktor perlakuan kedua adalah waktu aplikasi K2SO4, yaitu 1 bulan; 2 bulan; 1 dan 2 bulan setelah tanam (BST). Data dianalisis dengan uji F dan dilanjutkan dengan uji Duncan, uji polinomial ortogonal,  dan uji korelasi pada taraf kepercayaan 95%. Hasil penelitian menunjukkan bahwa terjadi interaksi antara konsentrasi dan waktu aplikasi K2SO4 terhadap tinggi tanaman, jumlah umbi ukuran besar, jumlah umbi ukuran kecil, total jumlah umbi, bobot umbi per tanaman, dan bobot per umbi. Jumlah umbi total terbanyak terdapat pada perlakuan konsentrasi K2SO4 terendah yaitu 0,5 ppm yang diberikan satu kali pada umur 2 BST. Peningkatan konsentrasi K2SO4 pada aplikasi umur 1 BST tidak mempengaruhi total jumlah umbi, jumlah umbi ukuran kecil, dan bobot per umbi. Aplikasi K2SO4 dua kali pada umur 1 dan 2 BST memerlukan konsentrasi yang rendah yaitu 0,5 ppm untuk mendapatkan total jumlah umbi, jumlah umbi kecil, dan bobot per umbi terbesar.


References


Asandhi, A.A. dan R. Rosliani. 2005. Respons kentang olahan Klon 095 terhadap pemupukan nitrogen dan kalium. J. Hort. 15(3):184-191,

Ayyub, C.M., M.A. Pervez, S. Ali, Amanan, N. Akhtar, I. Ashraf, and M.A. Shahid. 2011. Growth and yield response of potato crop to different sources of potash. IJAVMS 5 (3) : 283-288

Azima, N. S., A. Nuraini, Sumadi dan J. S. Hamdani. 2017. Respons pertumbuhan dan hasil benih kentang G0 di dataran medium terhadap waktu dan cara aplikasi paklo-butrazol. J. Kultivasi. 16 (2): 313-319

Davenport, J.R. 2000. Potassium and specific gra-vity of potato tubers. Better Crops. 84:1- 4.

Dianawati, M. 2013. Produksi Umbi Mini Kentang Secara Aeroponik Melalui Induksi Pengumbian. Disertasi : IPB Bogor .

___________, S. Ilyas, G.A. Wattimena, dan A.D. Susila. 2013. Produksi umbi mini kentang secara aeroponik melalui penentuan dosis optimum pupuk daun nitrogen. J. Hort. 23(1):47-55

Penggunaan limbah organik biogas sebagai media tanam pada produksi benih kentang (Solanum tuberosum L.) G1. Makalah disampaikan pada Seminar Nasional Temu Teknologi IPTEKs. Faperta UGM, 13 September 2014.

___________. dan G.A. Wattimena. 2015. Potensi teknologi aeroponik dalam mendukung swasembada benih kentang nasional. Prosiding Seminar Nasional PERHORTI 2014. Malang, 5-7 November 2014. 260-266

Gomez, K.A. dan A.A. Gomez. 1995. Prosedur Statistika untuk Penelitian Pertanian. UI Press. Jakarta. 698p

Grewal, J.S. and S. P. Trehan . 1993. Phosphorus and Potassium Nutrition of Potato. K.L. Chadha and J.S. Grwal (Eds) In Advances in Horticulture – Vol.

– Potato. Malhotra Publishing House, New Delhi. Pp. 261-297.

Gunadi, N. 2007. Penggunaan pupuk kalium sulfat sebagai alternatif sumber pupuk ka-lium pada tanaman kentang. J. Hort. 17(1):52-60

___________. 2009. Response of potato to potas-sium fertilizer sources and application methods in andisols of West Java. Indonesian J. Agric. Scie. 10(2) : 65-72

Harris, P.M. 1978. Mineral Nutrition. PM Harris (Eds) In The Potato Crop: The Scientific Basis for Improvement. Chapman and Hall. London. 196-244p.

Marschner, H. 1995. Marschner’s Mineral Nutri-tion of Higher Plants, 3rd Edn London: Academic Press.

Perrenoud, S. 1993. Fertilizing for Higher Yield Potato. IPI Bull. No. 8. 2nd Ed. Int’l Potash Institute, Berne, Switzerland.

Roy, S.K., S.P. Trehan, and R.C. Sharma . 2000. Long Term Nutrient Management in Potato-Sunflower-Rice System for Sustainable Productivity. International Conference on Managing Natural Resources, New Delhi. February, 14-18.

Sarkar, S., and R.C. Sharma , 2010. High K+ does not affect potato (Solanum tuberosum L.) tuber induction, but repress its development in vitro. In vitro Cell Dev Biol. 46: 569-577.

Singh, V.N., and S.P. Singh . 1996. Influence of split application of K on qualitative attributes of potatoes. J of Indian Potato Association 23: 72-74.

Struik, P.C., and S.G. Wiersema.1999. Seed Potato Technology. Wageningen Press. Pp.383

Sud, K.C., K.D. Kokate, J.S. Grewal, R.C. Sharma , and H. Nand. 1994. On farm influence of K on potato yield and K uptake in Shimla hills. Fertilizer News 39(5): 53-60

Taiz, L., and E. Zeiger. 1997. Plant Physiology. The Benjamin/Cummings Publis Co. Inc. 559p.

Wibowo, C., K. Wijaya, G.H. Sumartono, and E. Pawelzik. 2014. Effect of potassium level on quality traits of indonesian potato tubers. Asia Pacific J. Sust. Agric. Food and Energy. 2: 11-16.

Zelelew, D.Z., S. La, T.T. Kidane, and B.M. Ghebreslassie. 2016. Effect of potassium levels on growth and productivity of potato varieties. Amer. J. Pl. Scie. 7:1629-1638




DOI: https://doi.org/10.24198/kultivasi.v17i1.15499

Refbacks

  • There are currently no refbacks.




Jurnal Kultivasi Indexed by:

       width=    

 

 

Creative Commons License
This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.


View Jurnal Kultivasi Stat
http://mutillidae.purbalinggakab.go.id/app/ https://informatika.nusaputra.ac.id/lib/ slot gacor https://sipenmaru-polkeslu.cloud/sgacor/ https://inspektorat.batubarakab.go.id/adminsample/image/
jp1131 https://login-bobabet.com/ https://sugoi168daftar.com/ https://login-domino76.com/ https://sipenmaru-polkeslu.cloud/daftar_admin/ https://pascasarjana.uts.ac.id/plugins/sugoi168/ https://library.president.ac.id/event/jp-gacor/ https://biropemotda.riau.go.id/menus/1131-gacor/ https://keuangan.usbypkp.ac.id/mmo/boba/ https://informatika.nusaputra.ac.id/wp-includes/1131/
https://informatika.nusaputra.ac.id/hk/
https://informatika.nusaputra.ac.id/sbo/
https://csirt.riau.go.id/gcr/
https://upg.poltekkesdepkes-sby.ac.id/wp-content/trb/
https://lms.poltekbangsby.ac.id/moon/
http://mutillidae.purbalinggakab.go.id/app/ https://informatika.nusaputra.ac.id/lib/ slot gacor https://sipenmaru-polkeslu.cloud/sgacor/ https://inspektorat.batubarakab.go.id/adminsample/image/
jp1131 https://login-bobabet.com/ https://sugoi168daftar.com/ https://login-domino76.com/ https://sipenmaru-polkeslu.cloud/daftar_admin/ https://pascasarjana.uts.ac.id/plugins/sugoi168/ https://library.president.ac.id/event/jp-gacor/ https://biropemotda.riau.go.id/menus/1131-gacor/ https://keuangan.usbypkp.ac.id/mmo/boba/ https://informatika.nusaputra.ac.id/wp-includes/1131/
https://informatika.nusaputra.ac.id/hk/
https://informatika.nusaputra.ac.id/sbo/
https://csirt.riau.go.id/gcr/
https://upg.poltekkesdepkes-sby.ac.id/wp-content/trb/
https://lms.poltekbangsby.ac.id/moon/