Heritabilitas Sifat Ketahanan terhadap Cekaman Alelopati Gulma Teki pada Padi Gogo

https://doi.org/10.22146/jpti.10106

Supriyanta Supriyanta(1*)

(1) Fakultas Pertanian Universitas Gadjah Mada
(*) Corresponding Author

Abstract


Purple nut sedge (Cyperus rotundus L.) is the most difficult weed to control that produces suppressive allelochemicals to germination and early growth of upland rice. This research is aimed to identify responsive variables of upland rice varieties in competing allelopathy of purple nut sedge and estimate their heritability through mean-parents-offspring regression. The research conducted in two stages of experiment. First stage experiment is aimed to identify a critical level of purple nut sedge suppression and estimate of genetic variability among upland rice lines in responding purple nut sedge allelopathy, conducted in Completely Randomized Design with 25 lines and three replications. Experiment consisted of germination testing by tuber purple nut sedge crude extract with six concentration levels of suppression: 0, 5, 10, 15, 20 and 25%, and of competition treatment between upland rice and purple nut sedge with four levels of suppression based on sampled purple nut sedge tuber number: 0, 6, 12 and 24 tubers. Based on first stage experiment, critical level of suppression is identified at 5% of ethanol tuber extract and 6 tubers of purple nut sedge in competition treatment. Second stage experiment is screening of F1 plants and their respective parents at critical level of suppression. Plumulae length could be an effective selection criterion because of its high narrow-sense heritability (h2 = 0.73).


Keywords


upland rice; heritability; purple nut sedge allelopathy

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References

Aliudin, nd. Pengaruh Persaingan Teki Terhadap Produksi Bawang Putih. Balai Penelitian Tanaman Pangan. Malang. 6p.

Ben-Hammouda, M., R.J. Kremer, & H.C. Minor. 1995. Phytotoxicity of Extracts from Sorghum Plant Components on Wheat Seedlings. Crop Sci. 35: 1652─1656.

Cahyo, S.M. 1993. Kajian Saling Tindak Mendong (Heleocharis chaetaria Boeck) dan Tanaman Padi Sawah (Otyza sativa L.). Ilmu Pertanian (3): 663─675.

Chang-Hung, C. 1992. Allelopathy in Relation to Agricultural Productivity in Taiwan: Problems and Aspects, p. 179─ 205. In Rizvi, S.J.H. and Rizvi, V. (eds.) Allelopathy: Basic and Applied Aspects Chapman & Hall, New York.

Courtois, B. & M. Ollofsdotter. 1998. Incorporating the Allelopathy Trait in Upland Rice Breeding Programs, p. 57─ 68. In Olofsdotter, M. (ed.) Allelopathy in Rice. IRRI. Manila. Philippines.

Fuji, Y. 1993. The Allelopathic Effect of Some Rice Varieties. ASPAC. Tech. Bul. 134: 1─6.

Guenzi, W.D., T.M. McCalla & F.A. Norstadt. 1967. Presence and Persistence of Phytotoxic Substances in Wheat, Oat, Corn, and Sorghum Residues. Agron. J. 59: 163─165.

Hallauer, A.R. and J.B. Miranda. 1981. Quantitative Genetics in Maize Breeding. Iowa State University Press, Iowa. 468p.

Hassan, S.M., I.R. Aidy, A.O. Bastawisi & A.E. Draz. 1998. Weed Management Using Allelopathic Rice Varieties in Egypt, p. 27─38. In Olofsdotter, M. (ed.) Allelopathy in Rice. IRRI. Manila. Philippines.

Hegde, R.S. and D.A. Miller. 1990. Allelopathy and Autotoxicity in Alfalfa: Characterization and Effects of Proceeding Crops and Residue Incorporation. Crop Sci. 30: 1255─1259.

Hicks, S.K., C.W. Wendt, J.R Gannaway, & R.B.Baker. 1989. Allelopathy Effects of Wheat Straw on Cotton Germination, Emergence, and Yield. Crop Sci. 29: 1057─1061.

Jacquard, A., 1983. Heritability: One Word in Three Concepts. Biometrics 39: 465 ─ 477.

Macias. F.A., R.M. Oliva, A.M. Simonet & J.C.G. Galindo. 1998. What Are Allelochemicals ? p. 69─80. In Olofsdotter. M. (ed.) Allelopathy in Rice. IRRI. Manila. Philippines.

Mc Whirter, K.S. 1979. Breeding of Cross-Pollinated Crops p. 79─124 in Anonim (ed.) A Course Manual in Plant Breeding. Brisbane, Aus. Vice-Chancellors’ Committee.

Netzly, D.H. & L.G. Butler. 1986. Roots of Sorghum Exude Hydrophobic Droplets Containing Biologically Active Components. Crop Sci. 26: 775─778.

Pederson, G.A. .1986. White Clover Seed Germination in Agar Containing Tall Fescue Leaf Extracts. Crop Sci. 26: 1248─1249.

Phillips, D.A., J. Wery, C.M. Joseph, A.D. Jones & L.R. Teuber. 1995. Release of Flavonoids and Betaines from Seeds of Seven Medicago Species. Crop Sci. 35: 805─808.

Rice, EL. 1984. Allelopathy. Acad. Press Inc. New York. 422p.

Rose, S.J., O.C. Burnside, J.E. Specht & B.A. Swisher. 1984. Competition and Allelopathy Between Soybean and Weeds. Agron. J. 76: 523 ─528.

Sastroutomo, S.S. 1990. Ekologi Gulma. Gramedia Pustaka Utarna, Jakarta. 2l7p.

Singh & Chaudhary. 1979. Biometrical Method in Quantitative Genetic Analysis. Khalyani Publisher. India. 304p.

Yamada, K., T. Anai & K. Hasegawa. 1995. Lepidimoide, An Allelopathic Substance in The Exudates From Germinated Seeds. Phytochemistry 39(5): 1031─1032.



DOI: https://doi.org/10.22146/jpti.10106

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