• Authors:
    • Merrill, S.
    • Tanaka, D.
    • Anderson, R.
  • Source: Agricultural Water Management
  • Volume: 58
  • Issue: 3
  • Year: 2003
  • Summary: The predominate crops grown in the northern Great Plains of the United States are cereal grains, which are well adapted to the region's semiarid climate and short growing season. However, rotations are changing because minimum- and no-till production systems improve precipitation-use-efficiency. Therefore, producers are seeking diversity in crop choices to improve the design of their rotations. Our objective with this study was to examine water relations and agronomic performance of seven broadleaf crops that may be suitable for a semiarid climate. Dry pea ( Pisum sativum L.), dry bean ( Phaseolus vulgaris L.), and sunflower ( Helianthus annuus L.) were the most favorable for this region considering crop yield and water-use-efficiency (WUE). Soybean ( Glycine max L.), crambe ( Crambe abyssinica Hochst), canola ( Brassica rapa L.), and safflower ( Carthamus tinctorius L.) were less successful. Water use for grain production ranged from 23 to 37 cm among crops whereas water-use-efficiency varied three-fold. Soil water extraction patterns differed between sunflower and dry pea, with sunflower extracting more water as well as accessing water deeper in the soil profile. Integrating oilseed and legume crops with cereal grains in a cycle-of-four rotation will aid producers in managing diseases and weeds, as well as improve grain yield due to the rotation effect.
  • Authors:
    • Littlewood, B.
    • Lemerle, D.
    • Lockley, P.
  • Source: Cultivar * herbicide screening: 2002 results
  • Year: 2003
  • Summary: Results are presented of the evaluation of herbicide tolerance (based on yield performance) in wheat, barley, oat, triticale, rape, lupin, field pea, lentil, chickpea and faba bean cultivars and advanced lines grown in Wagga Wagga, New South Wales, Australia, during 2002. Compatibility charts of herbicide * cultivar combinations are included to provide guidelines to farmers on the relative risk of crop damage for various herbicide * cultivar combinations.
  • Authors:
    • Gracia, R.
    • Moret, D.
    • Arrúe, J. L.
    • López, M. V.
  • Source: Soil & Tillage Research
  • Volume: 72
  • Issue: 1
  • Year: 2003
  • Summary: Maintenance of crop residues on the soil surface is considered the most effective method to control wind erosion. In semiarid Aragon (NE Spain), where the risk of wind erosion can be high, the adoption of conservation tillage systems has been encouraged as a fallow management alternative. However, little information concerning the dynamics of residue cover during fallow is available for this area. We report here results on the evolution of barley residues during two fallow periods under conventional tillage (CT), reduced tillage (RT) and no-tillage (NT). The three tillage treatments were compared under both continuous cropping (CC) and cereal-fallow (CF) rotation. The CC system involves a summer fallow period of 5-6 months and the CF rotation a long-fallow of 17-18 months. Effects of specific tillage operations on soil cover are also presented and discussed in relation to wind erosion control during the long-fallow period. Average dry mass of barley residues at harvest was 1395 and 729 kg ha(-1) in the first and second year of the study, respectively. In general, crop residues at harvest were not significantly affected by tillage or cropping system. Primary tillage operations had the major influence on residue incorporation with reduction percentages of residue cover of 90-100% in CT (mouldboard ploughing) and 50-70% in RT (chiselling). During the two long-fallow periods, large clods (4-10 cm diameter) produced by mouldboard ploughing did not fully compensate for the complete burial of residues and the soil surface was insufficiently protected against wind erosion (soil covers
  • Authors:
    • McCaffery, D. W.
    • McRae, F. J.
    • Carpenter, D. J.
  • Year: 2003
  • Summary: This guide should assist in the selection of the most suitable variety for cultivation and aims to assist growers to make better cropping decisions. Information on variety selection, varietal characteristics and reaction to disease, crop injury guide and marketing are supplied for wheat, durum wheat, barley, oats, triticale, cereal rye, rape, chickpeas, faba beans, field pea ( Pisum sativum) and lupins. Additional material includes information on options for control of stored products pests, cereal seed dressings, industry information, and locations of district agronomists.
  • Authors:
    • Dellow, J. J.
    • Francis, R. J.
    • Mullen, C. L.
    • McRae, F. J.
  • Source: Weed control in winter crops 2003
  • Year: 2003
  • Summary: This publication, intended for use by New South Wales Agriculture (New South Wales, Australia), presents some guidelines on chemical weed control in fallows, wheat, barley, oats, rye, triticale, rape, safflower, lentil, linseed, lupin, chickpea, faba bean and field pea. Tabulated data on herbicides, along with application rates suggested for particular weed species, are included.
  • Authors:
    • Jayas, D. S.
    • Visen, N. S.
    • Paliwal, J.
    • White, N. D. G.
  • Source: Biosystems Engineering
  • Volume: 85
  • Issue: 1
  • Year: 2003
  • Summary: Algorithms were written to extract a total of 230 features (51 morphological, 123 colour, and 56 textural) from the high-resolution images of kernels of five grain types [barley, Canada Western Amber Durum (CWAD) wheat, Canada Western Red Spring (CWRS) wheat, oats, and rye] and five broad categories of dockage constituents [broken wheat kernels, chaff, buckwheat, wheat spikelets (one to three wheat kernels inside husk), and canola (rapeseed with low erucic acid content in the oil and low glucosinolate content in the meal)]. Different feature models, viz. morphological, colour, texture, and a combination of the three, were tested for their classification performances using a neural network classifier. Kernels and dockage particles with well-defined characteristics (e.g. CWRS wheat, buckwheat, and canola) showed near-perfect classification whereas particles with irregular and undefined features (e.g. chaff and wheat spikelets) were classified with accuracies of around 90%. The similarities in shape and size of some of the particles of chaff and wheat spikelets with the kernels of barley and oats affected the classification accuracies of the latter, adversely. (C) 2003 Silsoe Research Institute. All rights reserved. Published by Elsevier Science Ltd.
  • Authors:
    • Allen, S. E.
    • Desmarchelier, J. M.
    • Ren, Y. L.
    • Weller, G. L.
  • Source: Technical report (CSIRO (Australia). Division of Entomology), no. 93.
  • Issue: 93
  • Year: 2003
  • Summary: The efficacy of ethyl formate (EF) against insect pests on barley, oat and rape grains was evaluated. EF at 90 g/t was applied as a solution of ethyl formate in water (4%, w/w) and sprayed onto rape and oat grains during inloading. For barley, EF solution was sprayed into the inloading chute. Intergranular concentrations of EF declined rapidly after fumigation. Residue levels in commodities declined to the control (untreated) level within 4 weeks at grain temperatures of approximately 20C without forced aeration. Air samples were taken at head height at various distances downwind from the base of the silos during fumigation and outloading. The levels of EF measured were
  • Authors:
    • Ostergard, H.
    • Pedersen, S.
    • Kjellsson, G.
    • Holm, P. B.
    • Gylling, M.
    • Buus, M.
    • Boelt, B.
    • Andersen, S. B.
    • Tolstrup, K.
    • Mikkelsen, S. A.
  • Source: DIAS Report, Plant Production
  • Issue: 94
  • Year: 2003
  • Summary: The paper focuses on the possible sources of dispersal (cross pollination, seed dispersal, vegetative dispersal, dispersal by farming machinery, dispersal during handling and transport) from genetically modified crop production to conventional and organic production, the extent of dispersal and the need for control measures, and the possible control measures for ensuring the co-existence of genetically modified production with conventional and organic production systems. Specific sections are provided on the crops currently genetically modified in Denmark or likely to be within the next few years (oilseed rape, maize, beet, potatoes, barley, wheat, triticale, oats, rye, forage and amenity grasses, grassland legumes, field peas, faba beans and lupins, and vegetable seeds). Brief discussions on the legislation, seed production, monitoring and analytical methods used, and measures to ensure crop purity (such as reducing pollen dispersal, reducing seed dispersal, adopting cultural methods reducing pollen and seed dispersal) are also presented.
  • Authors:
    • Soon, Y. K.
    • O'Donovan, J. T.
    • Drabble, J. C.
    • Darwent, A. L.
    • Milis, P. F.
    • Clayton, G. W.
    • Rice, W. A.
  • Source: Canadian Journal of Plant Science
  • Volume: 83
  • Issue: 1
  • Year: 2003
  • Summary: A study was conducted on the Agriculture and Agri-Food Canada Research Farm, Beaverlodge, Alberta, to compare nine cropping systems in relation to productivity and wild oat (Avena fatua L.) control. The nine cropping systems consisted of three crop rotations and three levels of banded N fertilizer. Each cropping system had its own regime of tillage and weed control. One of the rotations consisted of mechanical fallow, along with canola (Brassica rapa L.), barley (Hordeum vulgare L.) and wheat (Trificum aestivum L.), while the other two rotations consisted of the same annual crops, but with either flax (Linum usitatissimum L.) or red clover (Trifolium pratense L.) plowdown with partial fallow substituted for mechanical fallow. The three rates of banded N fertilizer were 0, 75 and 150% of recommended, based on soil tests and provincial recommendations. From 1991 to 1994, cropping systems with mechanical fallow and fall tillage after annual crops produced 24% higher total seed yields than cropping systems with no fall tillage after annual crops and either continuous annual crops or red clover plowdown. Increasing the rate of banded N fertilizer from 0 to 75% of recommended increased total crop seed yields but a further increase from 75 to 150% had no significant effect. Although cropping systems with mechanical fallow had an advantage over other cropping systems, the effect of crop sequencing and yearly weather conditions on total crop seed yields was greater than the effect of cropping systems. Wild oat populations varied greatly with year, but the ease of management was greater in cropping systems with the mechanical fallow than in other cropping systems. Wild oat density increased when diclofop or difenzoquat performed inadequately or when poor red clover establishment allowed populations to increase. Reductions in wild oat populations appeared to be largely due to the consistent effectiveness of sethoxydim.
  • Authors:
    • Sabirov, A. M.
    • Gareev, R. G.
  • Source: Kormoproizvodstvo
  • Issue: 1
  • Year: 2003
  • Summary: In studies in the Kazan' region of Russia in 1995-99, the optimal rate of sowing barley as a cover crop for spring rape was found to be 2.5 million germinated seeds/ha (50% sowing rate), while for oats the sowing rate ranged between 50 and 75%. At these rates, the germination of spring rape was no less than 86%, with survival no less than 68%.