Daya Gabung Galur Jagung pada Cekaman Nitrogen Rendah

Ladikta Hubah Aulianta, Juli Santoso, Makhziah Makhziah, I Made Jana Mejaya

Abstract

Reduction of nitrogen in the soil is a problem in corn cultivation that can cause decrease production. The efforts to prevent this problem is to assemble superior maize that is low nitrogen resistance and high production by crossing different corn elders. This study was to analyse the combining ability of five lines (G1, G2, G3, G4 and G5) under normal and low nitrogen conditions used a half diallel cross design using the Griffing’s model I method formula to analyse 10 genotypes. The research design used a split plot design (SPD) with 3 replications, the research location was in the experimental garden of Center for Agricultural Research and Technology in Kebondalem, Mojosari, Mojokerto East Java. The value of the general combining ability (GCA) of the G3 elders significantly affected the weight parameters of the cobs under low nitrogen conditions. The results of the specific combining ability (DGK) on the G7 and G8 crosses had high SCA values on the yield character and weight of 100 seeds under normal conditions and nitrogen stress. Genotype G6 has a high SCA value for cob weight characters.

Keywords

Fertilization; Hybrid; Plant breeding

Full Text:

PDF(ID)

References

Adebayo MA, Menkir A, Blay E, Gracen V, Danquah E, Hearne S. 2014. Genetic analysis of drought tolerance in adapted × exotic crosses of maize inbred lines under managed stress conditions. Euphytica. 196(2):261–270. https://doi.org/10.1007/s10681-013-1029-5.

Amegbor IK, Badu-Apraku B, Annor B. 2017. Combining ability and heterotic patterns of extra-early maturing white maize inbreds with genes from Zea diploperennis under multiple environments. Euphytica. 213(1):1–16. https://doi.org/10.1007/s10681-016-1823-y.

Bhusal TN, Lal GM. 2020. Heterosis, combining ability and their inter-relationship for morphological and quality traits in yellow maize (Zea mays L.) single-crosses across environments. AGRIVITA J Agric Sci. 42(1):174–190. https://doi.org/10.17503/agrivita.v42i1.2089.

Biabani A, Rafii MY, Saleh G, Shabanimofrad M, Latif MA. 2012. Combining ability analysis and evaluation of heterosis in Jatropha curcas L. F1-Hybrids. Aust J Crop Sci. 6(6):1030–1036.

Budiyanti T, Sobir S, Wirnas D, Sunyoto S. 2016. Daya gabung dan aksi gen pada karakter buah dan hasil dari populasi setengah dialel lima genotipe pepaya (Carica papaya L.). J Hortik. 25(4):287–293. https://doi.org/10.21082/jhort.v25n4.2015.p278-293.

Efendi R, M. AT, Azrai M. 2017. Daya gabung inbrida jagung toleran cekaman kekeringan dan nitrogen rendah pada pembentukan varietas hibrida. J Penelit Pertan Tanam Pangan. 1(2):83–96. https://doi.org/10.21082/jpptp.v1n2.2017.p83-96.

El-Shamarka S, Ahmed M, MM E-N. 2015. Heterosis and combining ability for yield and its components through diallel cross analysis in maize (Zea mays L.). Alex J Agric. 60(2):87–94.

Ertiro BT, Beyene Y, Das B, Mugo S, Olsen M, Oikeh S, Juma C, Labuschagne M, Prasanna BM. 2017. Combining ability and testcross performance of drought‐tolerant maize inbred lines under stress and non‐stress environments in Kenya. Lübberstedt T, editor. Plant Breed. 136(2):197–205. https://doi.org/10.1111/pbr.12464.

Fahmi T, Sujitno E. 2015. Keragaan produktivitas varietas jagung pada musim hujan di lahan kering dataran tinggi Kabupaten Bandung, Jawa Barat. In: Prosiding Seminar Nasional Masyarakat Biodiversitas Indonesia; 13 Juni 2015; Bandung, ID. Bandung (ID): Masyarakat Biodiversitas Indonesia. hal. 1674–1677.

Fasahat P, Rajabi A, Rad JM, Derera J. 2016. Principles and Utilization of Combining Ability in Plant Breeding. Biometrics Biostat Int J. 4(1):1–22. https://doi.org/10.15406/bbij.2016.04.00085.

Gautam SC, Chauhan M. 2016. Combining ability of plant height and yield components in indian mustard (Brassica juncea L. Czern Coss.) under salt affected soil using line×tester analysis. J AgriSearch. 3(2):93–100. https://doi.org/10.21921/jas.v3i2.11267.

Harriman JC, Nwammadu CA. 2016. Utilization of dialel analyses for heritability ,GCA and SCA studies in crop improvement. Am Adv J Biol Sci. 2(5):168–174.

Haydar FMA, Paul NK. 2014. Combining ability analysis for different yield components in maize (Zea Mays L.) inbred lines. Bangladesh J Plant Breed Genet. 27(1):17–23. https://doi.org/10.3329/bjpbg.v27i1.23973.

Kamara MM. 2015. Diallel analysis of some yellow maize inbred line under low and normal nitrogen levels. Int J Plant Breed Genet. 9(2):32–43.

Kanatti A, Rai KN, Radhika K, Govindaraj M. 2016. Tester effect on combining ability and its relationship with line performance per se for grain iron and zinc densities in pearl millet. Crop Sci. 56(2):689–696. https://doi.org/10.2135/cropsci2015.08.0486.

Kebede AZ, Melchinger AE, Cairns JE, Araus JL, Makumbi D, Atlin GN. 2013. Relationship of line per se and testcross performance for grain yield of tropical maize in drought and well-watered trials. Crop Sci. 53(4):1228–1236. https://doi.org/10.2135/cropsci2012.08.0495.

Maazou A-RS, Tu J, Qiu J, Liu Z. 2016. Breeding for drought tolerance in maize (Zea mays L.). Am J Plant Sci. 7(14):1858–1870. https://doi.org/10.4236/ajps.2016.714172.

Niyonzima JP, Nagaraja TE, Lohithaswa HC, Uma MS, Pavan R. 2015. Combining ability study for grain yield and its contributing characters in maize (Zea mays L .). Int J Agron Agric Res. 7(1):61–69.

Noëlle MAH, Richard K, Vernon G, Martin YA, Laouali MN, Liliane TN, Godswill N-N. 2017. Combining ability and gene action of tropical maize (Zea mays L.) inbred lines under low and high nitrogen conditions. J Agric Sci. 9(4):222–235. https://doi.org/10.5539/jas.v9n4p222.

[Pusdatin Kementan] Pusat Data dan Sistem Informasi Pertanian Kementerian Pertanian. 2020. Outlook jagung: Komoditas pertanian subsektor tanaman pangan. Susanti AA, Supriyatna A, editor. Jakarta (ID): Pusdatin Kementerian Pertanian. 78 p.

Rubiyo R, Trikoesoemaningtyas T, Sudarsono S. 2011. Pendugaan daya gabung dan heterosis ketahanan tanaman kakao (Theobroma cacao L.) terhadap penyakit busuk buah (Phytophthora palmivora). J Penelit Tanam Ind. 17(3):124–131. https://doi.org/10.21082/jlittri.v17n3.2011.124-131.

Ruswandi D, Supriatna J, Makkulawu AT, Waluyo B, Marta H, Suryadi E, Ruswandi S. 2014. Determination of combining ability and heterosis of grain yield components for maize mutants based on line×tester analysis. Asian J Crop Sci. 7(1):19–33. https://doi.org/10.3923/ajcs.2015.19.33.

Santoso SB, H.G MY, Faesal F. 2014. Daya gabung inbred jagung pulut untuk pembentukan varietas hibrida. J Penelit Pertan Tanam Pangan. 33(3):155–162. https://doi.org/10.21082/jpptp.v33n3.2014.p155-162.

Saputra HE, Syukur M, Syarifah D, Aisyah I. 2014. Pendugaan daya gabung dan heritabilitas komponen hasil tomat pada persilangan dialel penuh. J Agron Indones. 42(3):203–209.

Setyowidianto EP, Basuki N, Damanhuri D. 2017. Daya gabung dan heterosis galur jagung (Zea mays L.) pada karakter hasil dan komponen hasil. J Agron Indones. 45(2):124–129. https://doi.org/10.24831/jai.v45i2.11650.

Singh RK, Chaudhary BD. 1979. Biometrical methods in quantitative genetic analysis. Ludhiana (IND): Kalyani Publishers.

Sutoro S, Setyowati M. 2015. Daya gabung umum, daya gabung khusus dan keragaan hasil hibrida jagung pada dua tingkat pemupukan N. J Penelit Pertan Tanam Pangan. 34(1):55–59. https://doi.org/10.21082/jpptp.v34n1.2015.p55-59.

Syafrudin N, Azrai M, Suwarti N. 2013. Seleksi genotipe jagung hibrida toleran N rendah. Bul Plasma Nutfah. 19(2):73. https://doi.org/10.21082/blpn.v19n2.2013.p73-80.

Yustiana Y, Syukur M, Sutjahjo SH. 2013. Analisis daya gabung galur-galur jagung tropis di dua lokasi. J Agron Indones. 41(2):105–111.

Refbacks

  • There are currently no refbacks.