cover
Contact Name
Fatardho Zudri
Contact Email
fatardho@gmail.com
Phone
-
Journal Mail Official
jurnal.agronomi@yahoo.com
Editorial Address
Jl. Meranti, Kampus IPB Dramaga, Bogor 16680
Location
Kota bogor,
Jawa barat
INDONESIA
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy)
ISSN : 20852916     EISSN : 23373652     DOI : -
Aims and Scope Aims Indonesian of Journal Agronomy (Jurnal Agronomi Indonesia), the official journal of the Indonesian Society for Agronomy, publishes primary research paper, review article, policy analysis and research notes and preliminary results in all areas of agronomy. Manuscripts could be written either in English or in Indonesia. Scope Indonesian of Journal Agronomy (Jurnal Agronomi Indonesia) covers agronomy in broad sense including plant production, genetic and plant breeding, plant physiology, plant ecology, plant biotechnology, modeling, seed science and technology and weeds science on food, horticulture, plantation, and forage crops.
Articles 971 Documents
Analisis Kedekatan Hubungan antar Genotipe Pepaya Berdasarkan Karakter Morfologi dan Buah Suketi, Ketty; Poerwanto, Roedhy; Sujiprihati, Sriani; Sobir, ,; Widodo, Winarso D.
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 38 No. 2 (2010): Jurnal Agronomi Indonesia
Publisher : Indonesia Society of Agronomy (PERAGI) and Department of Agronomy and Horticulture, Faculty of Agriculture, IPB University, Bogor, Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (255.631 KB) | DOI: 10.24831/jai.v38i2.1797

Abstract

<!-- /* Font Definitions */ @font-face {font-family:Calibri; panose-1:2 15 5 2 2 2 4 3 2 4; mso-font-charset:0; mso-generic-font-family:swiss; mso-font-pitch:variable; mso-font-signature:-1610611985 1073750139 0 0 159 0;} /* Style Definitions */ p.MsoNormal, li.MsoNormal, div.MsoNormal {mso-style-parent:""; margin-top:0cm; margin-right:0cm; margin-bottom:10.0pt; margin-left:0cm; line-height:115%; mso-pagination:widow-orphan; font-size:11.0pt; font-family:Calibri; mso-fareast-font-family:"Times New Roman"; mso-bidi-font-family:"Times New Roman"; mso-ansi-language:IN; mso-no-proof:yes;} @page Section1 {size:612.0pt 792.0pt; margin:72.0pt 90.0pt 72.0pt 90.0pt; mso-header-margin:36.0pt; mso-footer-margin:36.0pt; mso-paper-source:0;} div.Section1 {page:Section1;} --> A study was conducted to determine the variation and relationships among papaya genotypes based on morphological and fruit characteristics in order to produce high quality papaya fruits. Fruit characterization study is very useful for genotype improvement and genotype classifi cation of papaya. In this study the morphological characters of 36 genotypes were analyzed to determine their phenotypic variabilities. The relationships between genotypes based on all of the morphological and fruit characteristics were tested by subjecting the data to multivariate principal component analysis and to cluster analysis. Based on the dendrogram generated from vegetative and generative characters, the 36 genotypes could be grouped into 11 clusters on a threshold of 1.6 and formed 6 clusters on a threshold of 1.8. The dendrogram was able to explain the close relationship between IPB 5 x IPB 1 and IPB 5 x IPB 4, IPB 2 and IPB 7, IPB 1 and IPB 3 genotype. The scattered diagram of generative variable divided the papaya genotypes into three groups based on fruit sizes i.e small group (IPB 1, IPB 3, IPB 4, IPB 3 x IPB 4, IPB 1 x IPB 9), medium group (IPB 5, IPB 7, IPB 8, IPB 9) and big group (IPB 2, IPB 10). The IPB 1, IPB 3 and IPB 4 were different from IPB 2 in fruit shapes, petal length of male fl owers, infl orescence size and fruit length. The hybrid plants obtained from crossings with IPB 10 were different from the other genotypes in the colours of female-, hermaphrodite-, and male fl ower-lobes. Subsequently the scatter diagrams also revealed that several genotypes i.e. IPB 2 x IPB 6, IPB 1 x IPB 5, IPB 1 x IPB 9, IPB 5 x IPB 1 and IPB 5 x IPB 2 had superior characters ideotype similar to IPB 1, IPB 3 and IPB 8 genotypes. Keywords: Carica papaya, hermaphrodite, female, dendrogram, scatter diagram, ideotype
Regenerasi Embriogenesis Somatik pada Beberapa Klon Kakao Indonesia dari Eksplan Bunga Avivi, Sholeh; Prawoto, Adi; Oetami, Reny Fauziah
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 38 No. 2 (2010): Jurnal Agronomi Indonesia
Publisher : Indonesia Society of Agronomy (PERAGI) and Department of Agronomy and Horticulture, Faculty of Agriculture, IPB University, Bogor, Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (150.211 KB) | DOI: 10.24831/jai.v38i2.1798

Abstract

<!-- /* Font Definitions */ @font-face {font-family:Calibri; panose-1:2 15 5 2 2 2 4 3 2 4; mso-font-charset:0; mso-generic-font-family:swiss; mso-font-pitch:variable; mso-font-signature:-1610611985 1073750139 0 0 159 0;} /* Style Definitions */ p.MsoNormal, li.MsoNormal, div.MsoNormal {mso-style-parent:""; margin-top:0cm; margin-right:0cm; margin-bottom:10.0pt; margin-left:0cm; line-height:115%; mso-pagination:widow-orphan; font-size:11.0pt; font-family:Calibri; mso-fareast-font-family:"Times New Roman"; mso-bidi-font-family:"Times New Roman"; mso-ansi-language:IN; mso-no-proof:yes;} @page Section1 {size:612.0pt 792.0pt; margin:72.0pt 90.0pt 72.0pt 90.0pt; mso-header-margin:36.0pt; mso-footer-margin:36.0pt; mso-paper-source:0;} div.Section1 {page:Section1;} --> This research was aimed to observe the response of different clones and specifi c organs due to the somatic embryogenesis regeneration. It was arranged in factorial randomized completely design with three replication. The fi rst factor was cocoa clones i.e. ICCRI 01, ICCRI 02, ICCRI 03, ICCRI 04, KW 514, RCC72, and Sca 6. The second factor was fl ower parts i.e. petal, staminode and anther. Every explant was regenerated on initiation, induction, multiplication and rooting media. Almost all treatments showed high response of embryogenic calli which range 89.5 to 100% at initial stage, but different results were found at the following process of somatic embryogenesis. The experiment showed that each clones and each different part of fl ower had different response to somatic embryogenesis. The highest response of the explant number resulted from Sca 6 clone, which produce 35.8% embryo with average number of embryo per explant (1.34) followed by RCC 72 (28.4%, averaged 0.7) ICCRI 03 (24.7%, averaged 1.3) ICCRI 04 (18.6%, averaged 0.6). While ICCRI 02 showed the lowest responsive clone. Especially for ICCRI 01, 55.8% explant was rooted and only 1.3% explant producing embryo. The highest response of somatic embryo was resulted form petal. Keywords: somatic embryogenesis, fl ower explant, Cocoa
Induksi Umbi Mikro Tanaman Daun Dewa (Gynura pseudochina (Lour.) DC) Secara In Vitro dengan Perlakuan Sukrosa dan Daminozide Hartanto, Donny; Aziz, Sandra Arifin; Dinarti, Diny
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 38 No. 2 (2010): Jurnal Agronomi Indonesia
Publisher : Indonesia Society of Agronomy (PERAGI) and Department of Agronomy and Horticulture, Faculty of Agriculture, IPB University, Bogor, Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (215.491 KB) | DOI: 10.24831/jai.v38i2.1799

Abstract

<!-- /* Font Definitions */ @font-face {font-family:Calibri; panose-1:2 15 5 2 2 2 4 3 2 4; mso-font-charset:0; mso-generic-font-family:swiss; mso-font-pitch:variable; mso-font-signature:-1610611985 1073750139 0 0 159 0;} /* Style Definitions */ p.MsoNormal, li.MsoNormal, div.MsoNormal {mso-style-parent:""; margin-top:0cm; margin-right:0cm; margin-bottom:10.0pt; margin-left:0cm; line-height:115%; mso-pagination:widow-orphan; font-size:11.0pt; font-family:Calibri; mso-fareast-font-family:"Times New Roman"; mso-bidi-font-family:"Times New Roman"; mso-ansi-language:IN; mso-no-proof:yes;} @page Section1 {size:612.0pt 792.0pt; margin:72.0pt 90.0pt 72.0pt 90.0pt; mso-header-margin:36.0pt; mso-footer-margin:36.0pt; mso-paper-source:0;} div.Section1 {page:Section1;} --> The effects of sucrose and daminozide on in-vitro microtuber formation were evaluated for producing microtubers to supply year round microtubers and to facilitate sterilized explants exchange regionally and internationally. Uninodal stem segment explants were cultured on agar solidifi ed Murashige and Skoog medium supplemented with 3% sucrose, 0.5 mg L-16-benzylaminopurine (BAP), 0.1 mg L-1 &alpha;-naphthaleneacetic acid (NAA) for bud multiplication for 3 months. Three nodals stem segment which already formed three perfect leaves were cultured on agar solidifi ed MS medium, 3% sucrose and 1 mg L-1 NAA for two weeks to induce root formation (until &plusmn; minimum 60% of the explants rooted). The next step was the induction of three nodal stem segments for microtuber formation on agar solidifi ed MS medium supplemented with 5 mg L-1 BAP and two levels of sucrose, four concentrations of daminozide for 10 weeks. Sucrose at 6% resulted in the signifi cantly highest number of microtuber. The daminozide 41.29 mg L-1 stimulated tuberization at base of the stems and reduce number of microtuber formation in stolon. Keywords: daminozide, Gynura pseudochina (L.) DC, in vitro, microtuber, sucrose
Possibility to Reduce Drudgery and Time in Harvesting Individual Ripe Fruits of Jatropha curcas Linn by Whole Bunch Harvesting Silip, Jupikely James; Tambunan, Armansyah H.; Hambali, Erliza; Sutrisno, ,; Surahman, Memen
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 38 No. 2 (2010): Jurnal Agronomi Indonesia
Publisher : Indonesia Society of Agronomy (PERAGI) and Department of Agronomy and Horticulture, Faculty of Agriculture, IPB University, Bogor, Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (190.486 KB) | DOI: 10.24831/jai.v38i2.1800

Abstract

<!-- /* Font Definitions */ @font-face {font-family:Calibri; panose-1:2 15 5 2 2 2 4 3 2 4; mso-font-charset:0; mso-generic-font-family:swiss; mso-font-pitch:variable; mso-font-signature:-1610611985 1073750139 0 0 159 0;} /* Style Definitions */ p.MsoNormal, li.MsoNormal, div.MsoNormal {mso-style-parent:""; margin-top:0cm; margin-right:0cm; margin-bottom:10.0pt; margin-left:0cm; line-height:115%; mso-pagination:widow-orphan; font-size:11.0pt; font-family:Calibri; mso-fareast-font-family:"Times New Roman"; mso-bidi-font-family:"Times New Roman"; mso-ansi-language:IN; mso-no-proof:yes;} @page Section1 {size:612.0pt 792.0pt; margin:72.0pt 90.0pt 72.0pt 90.0pt; mso-header-margin:36.0pt; mso-footer-margin:36.0pt; mso-paper-source:0;} div.Section1 {page:Section1;} --> A study was conducted to determine Jatropha fruits ripening uniformity on its tree and bunches characteristics. To get more information about its ripening off, the tree characteristics a respiration pattern was determined. The data were collected on fi ve trees for each ten selected accessions (n=50) for fruit ripening uniformity on its trees study and fi fteen bunches for each seven selected accessions (n=105) for fruits bunches ripening uniformity study at two jatropha pilot projects at Sabah state of Malaysia at the end of March 2009 when the trees were exactly one year old. This study confi rmed that heterogeneous ripening occured in all jatropha accessions and within individual jatropha bunches. Respiration tests confi rmed that jatropha is a climacteric fruit. The results showed an upsurge in CO2 production at the end of ripening and at the beginning of senescence. This study has revealed indications of the possibility to harvest jatropha fruit in bunches rather than harvesting individual ripe fruit, which could potentially improve harvest effi ciency by reducing harvesting time and drudgery. Keywords: ripening, respiration rate, post-harvest, climacteric
Pengelompokan Genotipe Jarak Pagar Berdasarkan Ketahanannya terhadap Kekeringan pada Fase Pembibitan di Lahan Pasir Pantai Parwata, I Gusti Made Arya; Indradewa, Didik; Yudono, Prapto; Kertonegoro, Bambang Djadmo
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 38 No. 2 (2010): Jurnal Agronomi Indonesia
Publisher : Indonesia Society of Agronomy (PERAGI) and Department of Agronomy and Horticulture, Faculty of Agriculture, IPB University, Bogor, Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (249.724 KB) | DOI: 10.24831/jai.v38i2.1801

Abstract

Extension of jatropha planting on coastal sandy soil is an effort to look for an alternatif area to other soil types, this experiment is one of a series experiment aiming to classify jatropha based on their drought resistance, and to determine watering interval causing drought stress. The experiment was arranged using Split Plot Design with watering interval (once in 1, 3, 5, 7, and 9 day (s)) as main plot, and jatropha genotypes (IP-1A, IP-1M, IP-1P, IP-2A, IP-2M, IP-2P, Unggul Lokal (NTB), Gundul and Daun Kuning) as sub plot. The seeds of genotypes were planted in black polybag with coastal sandy soil media. The parameters observed were plant height, stem diameter, number of leaf, leaf width and plant dry weight, and the data collected were analyzed using Analysis of Variance, DMRT, Regrression and Cluster Analysis. The result showed that IP-1A, IP-2M, Gundul and IP-1M are the resistant genotypes, whereas Unggul Lokal, Daun Kuning, IP-2A and IP-2P are the susceptible genotypes. Once in one and three day (s) are optimum watering intervals, and once in nine days is a watering interval causing drought stress. Keywords : jatropha, drought, watering, coastal sandy soil
Uji Inokulasi dan Respon Ketahanan 38 Genotipe To mat terhadap Clavibacter michiganensis subsp. michiganensis Zainal, Aprizal; Anwar, Aswaldi; Ilyas, Satriyas; Sudarsono, ,; Giyanto, ,
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 39 No. 2 (2011): Jurnal Agronomi Indonesia
Publisher : Indonesia Society of Agronomy (PERAGI) and Department of Agronomy and Horticulture, Faculty of Agriculture, IPB University, Bogor, Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (181.368 KB) | DOI: 10.24831/jai.v39i2.4664

Abstract

Identifi kasi ketahanan genotipe adalah langkah awal dalam pengembangan kultivar tahan terhadap serangan patogen. Tujuan penelitian ini adalah (i) mendapatkan cara inokulasi dengan jumlah dan konsentrasi inokulum Cmm yang efektif untuk mengevaluasi ketahanan tomat terhadap Cmm di rumah kaca, (ii)  mendeterminasi reaksi ketahanan berbagai genotipe tomat akibat inokulasi Cmm. Percobaan ini menggunakan 38 genotipe tomat yang terdiri dari 7 genotipe tomat lokal, 15 genotipe tomat komersial, dan 16 genotipe koleksi Pusat Studi Pemuliaan Tanaman IPB Bogor (PSPT/IPB). Agen penyebab penyakit yang digunakan adalah 6 isolat Cmm hasil percobaan sebelumnya. Cara inokulasi Cmm yang efektif terhadap tomat cv. Marta (sangat rentan),  uji reaksi ketahanan berbagai genotipe tomat terhadap Cmm telah dilakukan di rumah kaca.  Kesimpulan dari penelitian ini adalah (i) inokulasi dengan menyuntikkan inokulum Cmm 5 µl konsentrasi 106 cfu/ml pada beberapa tempat di ketiak daun (daun pertama, daun tengah dan pucuk) merupakan cara yang paling efektif mengevaluasi ketahanan tomat terhadap Cmm, (ii) berbagai genotipe tomat yang diuji belum ada yang tahan teradap Cmm, genotipe tomat lokal ada yang agak rentan dan agak tahan.Kata kunci: kultivar tahan, suspensi bakteri, tomat
Pengembangan Kultur Mikrospora pada Varietas Padi Ladang Lokal Asal Kendari Suaib, ,; Arma, Makmur Jaya
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 40 No. 2 (2012): Jurnal Agronomi Indonesia
Publisher : Indonesia Society of Agronomy (PERAGI) and Department of Agronomy and Horticulture, Faculty of Agriculture, IPB University, Bogor, Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (309.681 KB) | DOI: 10.24831/jai.v40i2.6356

Abstract

The three Kendari local upland rice varieties i.e. Paedai Meeto, Pae Ikulaku and Pae Loio were studied for their ability to produce the embryogenic microspore and microspore callus from anther under high temperature stress pretreatments. The pretreatment was conducted by incubating the anther in a B medium at 33 oC in darkness for 0, 2, 4, and 7 days to induce the growth of embryogenic microspores. The formation of microspore calli was obtained by incubating the embryogenic microspores into the MO-19 embryo induction medium. Scoring was conducted on the percentage of: (1) embryogenic microspores, (2) symmetrical binucleat microspores, (3) multinucleate microspores, and (4) microspore calli or embryos. Each replication consisted of three hundred of individual microspores and every treatment was replicated in three times. The mean values of the data were analyzed by variance analysis, and the Fisher LSD mean separation at 0.05 of significance level were applied to judge the best treatments. The result showed that Pae Loio produced the higher frequency of embryogenic microspores after anther pretreatment in B medium for 4 days at 33 oC in darkness compared to other varieties. Culture of embryogenic microspore of Pae Loio in MO-19 medium over 30 days also produced the symmetrical binucleate and multinucleate microspores, and microspore calli at higher frequencies than those of other local varieties.Keywords: anther, calli, embryogenic microspores, high temperature pretreatment, upland rice
The average productivity of upland rice is still relatively low. Therefore, it is necessary to improve agronomic characters related to grain yields, maturity, and their adaptation in dry land. The aims of this research were to evaluate agronomic traits, genetic parameters such as genetic and phenotype variance, heritability and G x E interaction of rice mutant lines derived from gamma irradiation treatment on upland rice. This research was conducted in Situbondo and Madiun, during rain season. T Ishak, ,
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 40 No. 2 (2012): Jurnal Agronomi Indonesia
Publisher : Indonesia Society of Agronomy (PERAGI) and Department of Agronomy and Horticulture, Faculty of Agriculture, IPB University, Bogor, Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24831/jai.v40i2.6357

Abstract

The average productivity of upland rice is still relatively low. Therefore, it is necessary to improve agronomic characters related to grain yields, maturity, and their adaptation in dry land. The aims of this research were to evaluate agronomic traits, genetic parameters such as genetic and phenotype variance, heritability and G x E interaction of rice mutant lines derived from gamma irradiation treatment on upland rice. This research was conducted in Situbondo and Madiun, during rain season. The analysis of variance (ANOVA) showed that DT15/11/KU and 1058/Cty mutant lines have higher yield compared with Situgintung (check variety). The grain yield per hectare from DT15/11/KU and 1058/Cty mutant lines were 7.76 ton ha-1and 7.18 ton ha-1respectively, with 12% of water content. Broad-sense heritability, genetic and phenotypic and environmental variances for agronomical traits such as filled grain per panicle, weight of 1,000 grain, yield per plot and yield per hectare were observed. The results showed that broad-sense heritability for weight of 1,000 grain was 94%, whereas other characters was less than 40%. Phenotypic variance was dominated by genetic variance for weight of 1,000 grain. Further selection for filled grain per panicle, yield per plot and yield per hectare needs to be conducted. G x E interaction and genotype were highly significant, whereas location variance was highly significant for filled grain and weight of 1,000 grains. Keywords: agronomic characters, broad-sense heritability, G x E interaction, genetic variance, upland rice
One of the causes of the low productivity of rice grown on peat soils was the high levels of of toxic phenolic compounds in the soil. Development of tolerant rice varieties is one of strategies to grow rice on peat soils. The aims of this research were to select rice varieties tolerant to peat soils and to study the correlation between the plant phenolic acid content with plant tolerance to peat soil. This research was conducted at the Seed Farm Centre Lubuk Minturun, Padang from February to Jul Haryoko, Widodo; Kasli, ,; Suliansyah, Irfan; Syarif, Auzar; Prasetyo, Teguh Budi
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 40 No. 2 (2012): Jurnal Agronomi Indonesia
Publisher : Indonesia Society of Agronomy (PERAGI) and Department of Agronomy and Horticulture, Faculty of Agriculture, IPB University, Bogor, Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24831/jai.v40i2.6358

Abstract

One of the causes of the low productivity of rice grown on peat soils was the high levels of of toxic phenolic compounds in the soil. Development of tolerant rice varieties is one of strategies to grow rice on peat soils. The aims of this research were to select rice varieties tolerant to peat soils and to study the correlation between the plant phenolic acid content with plant tolerance to peat soil. This research was conducted at the Seed Farm Centre Lubuk Minturun, Padang from February to July 2009. The research consisted of two experiments i.e. in peat soil and in mineral soil. The experiments used a completely randomized design using 21 varieties of rice as treatments which were replicated four times. The results showed that there were nine rice varieties categorized as tolerant to peat soil. These tolerant varieties showed higher stress tolerance index (STI), demonstrated by a high level of phenolic acids (coumaric, syringic, and ferulic) in the plant tissues. The STI value had positive correlation with the content of plant phenolic acids, thus the level of plant phenolic acids can be used as an indicator to determine tolerant rice varieties in peat soils. Keywords: peat soil, phenolic acids, tolerant rice, STI
Selection method is one of the most important factors in determining the success of pepper breeding programs. Selection method will be effective if it is supported by a complete knowledge of genetic character inheritance. The aim of this research was to investigate the inheritance patterns to quantitative characters using large pepper (P1 (IPB C5)), curly pepper (P2 (IPB C105)), F1, F1R, BCP, BCP2 and F2. The result showed that dichotomous height, days to harvest and weight per fruit characters Arif, Abdullah Bin; Sujiprihati, Sriani; Syukur, Muhamad
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 40 No. 2 (2012): Jurnal Agronomi Indonesia
Publisher : Indonesia Society of Agronomy (PERAGI) and Department of Agronomy and Horticulture, Faculty of Agriculture, IPB University, Bogor, Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24831/jai.v40i2.6359

Abstract

Selection method is one of the most important factors in determining the success of pepper breeding programs. Selection method will be effective if it is supported by a complete knowledge of genetic character inheritance. The aim of this research was to investigate the inheritance patterns to quantitative characters using large pepper (P1 (IPB C5)), curly pepper (P2 (IPB C105)), F1, F1R, BCP, BCP2 and F2. The result showed that dichotomous height, days to harvest and weight per fruit characters were not maternally inherited. The additive-dominant genetic model was the most suitable for dichotomous height character. The additive-dominant with influence of interaction additive-dominant and interaction dominant-dominant genetic model was suitable for days to harvest character. The additive-dominant with influence of interaction additive-additive and interaction dominant-dominant genetic model was suitable for the weight of fruit character. Broad-sense and narrow-sense heritabilities range medium for dichotomous height and weight per fruit characters. Heritability of the days to harvest character was high in a broad-sense but was low in the narrow-sense. Keywords: genetic model, heritability, inheritance

Filter by Year

1994 2025


Filter By Issues
All Issue Vol. 53 No. 3 (2025): Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 53 No. 2 (2025): Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 53 No. 1 (2025): Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 52 No. 3 (2024): Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 52 No. 2 (2024): Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 52 No. 1 (2024): Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 51 No. 3 (2023): Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 51 No. 2 (2023): Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 51 No. 1 (2023): Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 50 No. 3 (2022): Jurnal Agronomi Indonesia Vol. 50 No. 2 (2022): Jurnal Agronomi Indonesia Vol. 50 No. 1 (2022): Jurnal Agronomi Indonesia Vol. 49 No. 3 (2021): Jurnal Agronomi Indonesia Vol. 49 No. 2 (2021): Jurnal Agronomi Indonesia Vol. 49 No. 1 (2021): Jurnal Agronomi Indonesia Vol. 48 No. 3 (2020): Jurnal Agronomi Indonesia Vol. 48 No. 2 (2020): Jurnal Agronomi Indonesia Vol. 48 No. 1 (2020): Jurnal Agronomi Indonesia Vol. 47 No. 3 (2019): Jurnal Agronomi Indonesia Vol. 47 No. 2 (2019): Jurnal Agronomi Indonesia Vol. 47 No. 1 (2019): Jurnal Agronomi Indonesia Vol. 46 No. 3 (2018): Jurnal Agronomi Indonesia Vol. 46 No. 2 (2018): Jurnal Agronomi Indonesia Vol. 46 No. 1 (2018): Jurnal Agronomi Indonesia Vol. 45 No. 3 (2017): Jurnal Agronomi Indonesia Vol. 45 No. 2 (2017): Jurnal Agronomi Indonesia Vol. 45 No. 1 (2017): Jurnal Agronomi Indonesia Vol. 44 No. 3 (2016): Jurnal Agronomi Indonesia Vol. 44 No. 2 (2016): Jurnal Agronomi Indonesia Vol. 44 No. 1 (2016): Jurnal Agronomi Indonesia Vol. 43 No. 3 (2015): Jurnal Agronomi Indonesia Vol. 43 No. 2 (2015): Jurnal Agronomi Indonesia Vol. 43 No. 1 (2015): Jurnal Agronomi Indonesia Vol. 42 No. 3 (2014): Jurnal Agronomi Indonesia Vol. 42 No. 2 (2014): Jurnal agronomi indonesia Vol. 42 No. 1 (2014): Jurnal Agronomi Indonesia Vol. 41 No. 3 (2013): Jurnal Agronomi Indonesia Vol. 41 No. 2 (2013): Jurnal Agronomi Indonesia Vol. 41 No. 1 (2013): Jurnal Agronomi Indonesia Vol. 40 No. 3 (2012): Jurnal Agronomi Indonesia Vol. 40 No. 2 (2012): Jurnal Agronomi Indonesia Vol. 40 No. 1 (2012): Jurnal Agronomi Indonesia Vol. 39 No. 3 (2011): Jurnal Agronomi Indonesia Vol. 39 No. 2 (2011): Jurnal Agronomi Indonesia Vol. 39 No. 1 (2011): Jurnal Agronomi Indonesia Vol. 38 No. 3 (2010): Jurnal Agronomi Indonesia Vol. 38 No. 2 (2010): Jurnal Agronomi Indonesia Vol. 38 No. 1 (2010): Jurnal Agronomi Indonesia Vol. 37 No. 3 (2009): Jurnal Agronomi Indonesia Vol. 37 No. 2 (2009): Jurnal Agronomi Indonesia Vol. 37 No. 1 (2009): Jurnal Agronomi Indonesia Vol. 36 No. 3 (2008): Jurnal Agronomi Indonesia Vol. 36 No. 2 (2008): Jurnal Agronomi Indonesia Vol. 36 No. 1 (2008): Jurnal Agronomi Indonesia Vol. 35 No. 3 (2007): Jurnal Agronomi Indonesia Vol. 35 No. 2 (2007): Jurnal Agronomi Indonesia Vol. 35 No. 1 (2007): Jurnal Agronomi Indonesia Vol. 34 No. 3 (2006): Jurnal Agronomi Indonesia Vol. 34 No. 2 (2006): Jurnal Agronomi Indonesia Vol. 34 No. 1 (2006): Jurnal Agronomi Indonesia Vol. 33 No. 3 (2005): Jurnal Agronomi Indonesia Vol. 33 No. 2 (2005): Jurnal Agronomi Indonesia Vol. 33 No. 1 (2005): Jurnal Agronomi Indonesia Vol. 32 No. 3 (2004): Buletin Agronomi Vol. 32 No. 2 (2004): Buletin Agronomi Vol. 32 No. 1 (2004): Buletin Agronomi Vol. 31 No. 3 (2003): Buletin Agronomi Vol. 31 No. 2 (2003): Buletin Agronomi Vol. 31 No. 1 (2003): Buletin Agronomi Vol. 30 No. 3 (2002): Buletin Agronomi Vol. 30 No. 2 (2002): Buletin Agronomi Vol. 30 No. 1 (2002): Buletin Agronomi Vol. 29 No. 3 (2001): Buletin Agronomi Vol. 29 No. 2 (2001): Buletin Agronomi Vol. 29 No. 1 (2001): Buletin Agronomi Vol. 28 No. 3 (2000): Buletin Agronomi Vol. 28 No. 2 (2000): Buletin Agronomi Vol. 28 No. 1 (2000): Buletin Agronomi Vol. 27 No. 3 (1999): Buletin Agronomi Vol. 27 No. 2 (1999): Buletin Agronomi Vol. 27 No. 1 (1999): Buletin Agronomi Vol. 26 No. 3 (1998): Buletin Agronomi Vol. 26 No. 2 (1998): Buletin Agronomi Vol. 26 No. 1 (1998): Buletin Agronomi Vol. 25 No. 3 (1997): Buletin Agronomi Vol. 25 No. 2 (1997): Buletin Agronomi Vol. 25 No. 1 (1997): Buletin Agronomi Vol. 24 No. 1 (1996): Buletin Agronomi Vol. 23 No. 3 (1995): Buletin Agronomi Vol. 23 No. 2 (1995): Buletin Agronomi Vol. 23 No. 1 (1995): Buletin Agronomi Vol. 22 No. 2 (1994): Buletin Agronomi Vol. 22 No. 1 (1994): Buletin Agronomi More Issue