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
Growth and Production of Amorphophallus paeoniifolius Dennst. Nicolson from Different Corm Weights Santosa, Edi; Sugiyama, Nobuo
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 35 No. 2 (2007): 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 (54.976 KB) | DOI: 10.24831/jai.v35i2.1315

Abstract

The effect of different seed corm weight on the growth and production of elephant foot yams (Amorphophallus paeonifolius Dennst. Nicolson) were studied. Two forms of corm with same weight were prepared, i.e., whole corm and vertically sectioned by 1/2. The fresh mass of each whole corm and corm section was the same. Six different corm weights were compared, i.e., 50, 100, 200, 500, 1000 and 2000 g. Growth and development of  elephant foot yam were determined by corm weigth, large seed corm produced larger leaf and fresh mass of daughter corms. On the contrary, number of leaf decreased with increasing seed corm weight. Plants from whole seed corms emerged earlier and they were larger than those from the sectioned corms, irrespective of weight. Plants from small sized whole corm emerged earlier than the larger ones. Dissecting the main bud caused the development of lateral buds, resulted in a delay of leaf emergence. The lower yield obtained by the use of sections might be related to the late emergence leading to shorter vegetative period in the field. In the cultivation, it is recommended to use whole seed corms of 100 or 200 g.   Key words :  Elephant foot yams, tuber crop, Araceae, corm weight, tuberization rate
Pola Topografi Pewarnaan Tetrazolium sebagai Tolok Ukur Viabilitas dan Vigor Benih Kedelai (Glycine max L.Merr.) untuk Pendugaan Pertumbuhan Tanaman di Lapangan Dina, ,; Widajati, Eny; Wirawan, Baran; Ilyas, Satriyas
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 35 No. 2 (2007): 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 (59.639 KB) | DOI: 10.24831/jai.v35i2.1316

Abstract

Topographical tetrazolium (TZ) pattern to determine viability, vigor and field stand on soybean seeds cv. Burangrang was studied.  Laboratory test for standard germination, vigor index, speed of germination, accelerated aging, seedling growth rate and field performances were performed on five lots (A,B,C,D,E) of soybean seeds.  The viability and vigor categories of each pattern were determined by Root Mean Square (RMS), regression, and correlation analysis.  Ten topographical patterns were recognized. The laboratory test results and field performances were compared with topographical pattern. Combination of patterns 1,2,3,4 (embryonic axis and cotyledon completely and/or gradually stained) selected as viable category as it gave the least RMS value, the highest determination (R2) and correlation (r) coefficient with standard germination (RMS=6,46; R2=0,37; r=0,61). Combination of patterns 1,2,3 (embryonic axis and cotyledon completely stained) selected as vigor category as it gave the least RMS value, the highest R2and r with relative speed of germination (RMS=7,96; R2=0,44; r=0,66), vigor index (RMS=6,66; R2=0,36; r=0,6), field emergence (R2=0,79; r=0,89) and field stand (R2=0,65; r=0,80). The combination of patterns 1,2,3 is recommended for estimating field emergence and field stand.   Key words :  Tetrazolium, topographical pattern, viability, vigor, accelerated aging, field stand, soybean seed.
Karakter Morfo-Fisiologi Daun, Penciri Adaptasi Kedelai terhadap Intensitas Cahaya Rendah Kisman, ,; Khumaida, Nurul; Trikoesoemaningtyas, ,; Sobir, ,; Sopandie, Didy
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 35 No. 2 (2007): 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 (56.917 KB) | DOI: 10.24831/jai.v35i2.1317

Abstract

The main objective of this study was to identify the leaf morpho-physiological characters as markers for adaptation of soybean to low light intensity. The field experiment was conducted using split plot design with 3 replications. First factor was soybean genotype consisted of shade tolerant genotypes (Ceneng, Pangrango) and sensitive genotypes (Godek, Slamet). Second factor was low light intensity consisted of: L0 = control (under full sun light), L1 = 5 days under 50% shading (exposed after 21 days after planting/DAP), L2 = 5 days under dark condition (exposed after 21 DAP), L3 = 3 days 50% shading + 5 days sun light (exposed after 18 DAP), dan L4 = 3 days 50% shading + 3 days sun light + 5 day dark conditions (exposed after 15 DAP). The 50% shading was made artificially using black plastic paranet with 50% light transmitted. Results of this study showed that under the conditions of low light intensity, leaf morpho-physiological characters of soybean that could be used as markers for adaptation were leaf area, specific leaf weight, and chlorophyll content. Leaves of shade tolerant genotypes were wider and thinner and also contained higher chlorophyll especially for chlorophyll b than that of shade sensitive genotypes under low light intensity.   Key words :  Low light intensity, tolerant genotype, leaf area, chlorophyll, specific leaf weight
Ketahanan 22 Genotipe Cabai (Capsicum spp.) terhadap Phytophthora capsici Leonian dan Keragaman Genetiknya Yunianti, Rahmi; Sastrosumarjo, Sarsidi; Sujiprihati, Sriani; Surahman, Memen; Hidayat, Sri Hendrastuti
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 35 No. 2 (2007): 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 (302.865 KB) | DOI: 10.24831/jai.v35i2.1318

Abstract

Laboratory and field experiments were carried out to analyze genetic diversity of 22 pepper genotypes (Capsicum spp.) and their resistance to Phytophthora capsici Leonian. Resistance screening was performed in plastic flats 72 cells. Inoculation was done on 28-day old pepper plant soon after watering by pipeting 5 ml of inoculum (105 zoospore/ml) at the base of each plant. P. capsici  isolate used in this experiment was TG01, identified as race 3 based on AVRDC differential pepper lines (PI 188478, PBC 602, PBC 137 and Early Calwonder).  The evaluation of pepper genotypes characteristic was conducted in the field.  Principle Component Analysis, Clustering Analysis and Biplot Analysis were used to analyze genetic diversity based on 37 characters. Result of resistance evaluation showed that two genotypes (C4 and C13) were identified as resistant, 7 genotypes (C2, C3, C5, C8, C10, C15, and C20) as slightly resistant, 6 genotypes (C7, C9, C17, C19, C21 and C27) as slightly susceptible, and 7 genotypes (C1, C11, C18, C28, C48, C64, and C65) as susceptible.  Based on genetic diversity analyzed, all genotypes could be divided into 4 clusters.  Cluster I consisted of 18 genotypes i.e. C1, C2, C3, C4, C5, C7, C8, C9, C10, C13, C14, C15, C17, C18, C19, C28, C64, and C65. Cluster II consisted of only 1 genotype i.e. C48.  Cluster III consisted of 2 genotypes (C20 and C21) which were characterized by the colour of corolla, corolla spot, and filament. Cluster IV consisted of 1 genotype (C27) which was characterized by fruit cross-sectional corrugation.   Key words :  Capsicum, resistance, Phytophthora capsici, genetic diversity, clustering.
Pewarisan Ketahanan Cabai (Capsicum annuum L.) terhadap Antraknosa yang Disebabkan oleh Colletotrichum acutatum Syukur, Muhamad; Sujiprihati, Sriani; Koswara, Jajah; Widodo, ,
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 35 No. 2 (2007): 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 (50.734 KB) | DOI: 10.24831/jai.v35i2.1319

Abstract

Anthracnose is one of the most destructive disease of pepper in Indonesia. Colletotrichum gloeosporioides and C. acutatum have been reported to be predominant species in pepper fields of Asian countries including Indonesia. Inheritance of resistance to anthracnose caused by C. acutatum was studied in Capsicum annuum populations derived from a cross between resistant line 'C-15' and  susceptible line 'C-2'. Twenty green pepper fruits from each plant were inoculated with PYK 04 isolate.  This experiment showed that there was no maternal effect based on t-test of F1 and F1R.  Segregation of resistance and susceptibility in the F2 fitted a normal distrubution, indicated that resistance was controlled by polygenic genes. Eight effective factors were responsible for anthracnose resistance. The degree of dominance was partially recessive. Gene effects for resistance to anthracnose were additive and dominance. Additive variance was larger than dominance variance. Broad-sense heritability values were high but narrow-sense heritability values were medium. Selection for resistance to C. acutatum on pepper breeding programme should be conducted on later generation.   Key words :  Inheritance, anthracnose, resistance, pepper, Colletotrichum acutatum
Application of Deep Sea Water (DSW) for Nutrient Supplement in Hydroponics Cultivation of Tomato : Effect of supplemented DSW at Different EC Levels on Fruit Properties Chadirin, Yudi; Matsuoka, Takahisa; Suhardiyanto, Herry; Susila, Anas D.
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 35 No. 2 (2007): 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 (1062.763 KB) | DOI: 10.24831/jai.v35i2.1320

Abstract

Deep sea water (DSW) has the potential characteristics for nutrient supplement in hydroponics cultivation. This experiment was carried out to evaluate the application of DSW as a nutrient supplement for tomato cultivation in hydroponics system. Tomatoes were grown on 4 beds in nutrient film technique (NFT) system circulated with 1.5 dS m-1(control), 10 dS m-1 15 dS m-1 and 20 dS m-1 of nutrient solution, respectively.  DSW was supplemented into nutrient solution of control to obtain high EC level. Fresh weight of fruits decreased varied from 10-20% by increasing DSW concentration in nutrient solution, but the effect of the treatment was not found on size of 3rd truss fruits.  The density of fruits increased as the DSW concentration increased in nutrient solution. Tomato stiffness of treated plants had almost the same value among EC levels although different among 3 trusses.  Fruit quality parameters increased by increasing the DSW concentration in nutrient solution. Treated plants circulated with EC 20 dS m-1 supplemented nutrient solution for 2 weeks produced tomatoes with highest soluble solids, 8.0% Brix or increased 30% of control (1st truss).  However there were no significant effect on fruits of 2nd and 3rd trusses.  DSW could be used as nutrient supplement for hydroponics cultivation of tomato.     Key words :   Deep sea water, fruit quality, electrical conductivity, tomato
Pertumbuhan Bibit Tanaman Manggis (Garcinia mangostana L.) Setelah Inokulasi dengan Berbagai Galur Agrobacterium rhizogenes1 Lizawati, ,; Poerwanto, Roedhy; Sobir, ,; Rusmana, Iman; Ermayanti, Tri Muji
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 35 No. 2 (2007): 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 (367.098 KB) | DOI: 10.24831/jai.v35i2.1321

Abstract

Growth of mangosteen essentially depends on its root system.  Therefore, it needs technology to obtain stringer mangosteen root system.  The use of Agrobacterium rhizogenes bacterium is an alternative.  The objectives of this experiment were : 1) to find the effective strain of A. rhizogenes bacterium for inoculation of mangosteen seedling root, 2) to find the best inoculation method for inducing mangosteen seedling root.  The materials used in this experiment were ; mangosteen fruit and A. rhizogenes collection from Puslit Biotechnology LIPI Cibinong-Bogor.  The experiment was arranged in completely randomized design with two factorial treatments.  The first factor : 11 strains A. rhizogenes (ATCC-15834, ATCC-8196, R-1000, 07-20001, A4, A4-J, 509, 510, 511, MAFF 01-1724, and control), the second factor : 2 inoculation methods (cutting and dipping).  The results showed that A. rhizogenes  of ATCC-15834, 509, 07-20001, A4, and R-1000 increased stem diameter, plant height, leaf number, lateral and tertiary root number, better than ATCC-8196, MAFF 01-1724, 510, 511, A4-J, and control.  Cutting root method of inoculation resulted in higher live plant percentage compared to dipping root method.   Key words :  Agrobacterium rhizogenes, Garcinia mangostana, inoculation
Pengaruh Cara Tanam dan Penggunaan Varietas terhadap Produktivitas Wijen (Sesamum indicum L.) Budi, Luluk Sulistiyo
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 35 No. 2 (2007): 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 (51.113 KB) | DOI: 10.24831/jai.v35i2.1322

Abstract

The important strategy to increase the productivity of sesame is intensification program.  One of the possible technique was  the  planting method and  varieties.  This research aimed at determining the correct  planting method and varieties to reach high sesame production. This study used the factorial randomized block design with three replications.  The first factor was the planting method which consisted of three levels, i.e.; Broadcast, Broadcast in wide furrow, and dibbed planting.  The second factor consisted of nine varieties, namely, one superior variety Sbr1 and eight local varietes i.e Magetan, Madiun, Ponorogo, Ngawi, Nganjuk, Kediri, Bojonegoro, and Blora. The result showed that the combination of dibbed planting with Blora and Madiun resulted the highest yield (1.11 ton/ha), but it was not significantly different with the combination of  dibbed planting  with  superior variety Sbr 1. Ponorogo has the highest oil content and the weight of 1000 seeds.  There were positive correlations between oil content and  the weight of 1000 seeds (0.77), between harvesting age and the weight of 1000 seeds (0.66) and between oil content and the harvesting age (0.61).   Key words :  Planting method, local variety,  sesame,  Sesamum indicum  L.
Pertumbuhan, Serapan Hara dan Kualitas Turfgrass pada Beberapa Dosis Pemberian Pupuk Hayati Mikoriza Guntoro, Dwi; Purwoko, Bambang S.
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 35 No. 2 (2007): 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 (40.528 KB) | DOI: 10.24831/jai.v35i2.1323

Abstract

The objective of the research was to study the effect of mycorrhiza dosage on nutrient uptake, growth and turfgrass quality.  The research was conducted at IPB turfgrass experimental farm, Darmaga, Bogor.  The experiment was arranged in randomized complete block design with four replications.  The treatment consisted of five dosages of mycorrhiza (100, 200, 300, 400, and 500 g per pot).  The result showed that application of mycorrhiza at 300 g per pot increased coverage area and dry weight of clipping, and decreased vertical height, but it did not significantly increase nutrient uptake and quality of turfgrass compared to control.   Key words :  Mycorrhiza, turfgrass, growth, nutrient uptake, quality
Effect of Tree Litter Application on Lowland Rice Yield in Bangladesh Hossain, Kazi Liaquat; Wadud, Mohammad Abdul; Santosa, Edi
Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy) Vol. 35 No. 3 (2007): 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 (43.731 KB) | DOI: 10.24831/jai.v35i3.1324

Abstract

The effect of tree litters on rice yield (cv. BR11) was evaluated in the study. Four kinds of tree litter, i.e., ipil-ipil or lamtoro (Leucaena leucocephala (Lamk) De Witt), sissoo (Dalbergia sissoo), akashmoni (Acacia auriculiformis) and mander (Erythrina orientalis) were incorporated into the soil 15 days before transplanting at rate of 5 ton/ha supplemented with inorganic fertilizers (83 kg N, 48 kg P205­, 42 kg K20, 10 kg S and 3.6 kg Zn/ha). In the control plots only recommended inorganic fertilizer were applied. Results showed that tree litter application had a significantly positive effect on the yield parameters such as plant height, panicle length, tillers per hill, filled grain and index of 1000-grain weight. Grain yield of plots treated with ipil-ipil, sissoo, akashmoni and mander was 5.61, 4.49, 4.95 and 5.36 ton/ha, and the yield increased over control plots 39.6, 11.7, 23.1 and 33.3%, respectively.  It is worthy to note that addition of tree litter to inorganic fertilizer produced significantly higher yield than inorganic fertilizers solely. Among the tree litter, ipil-ipil and mander had the greatest increase in rice yield, while akashmoni was intermediate and sissoo was the least.   Key words: Agroforestry residues, rice, sustainable agriculture and tree-based cropping

Page 7 of 98 | Total Record : 971


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