Plug Transplant Technology
暂无分享,去创建一个
[1] D. Cantliffe,et al. Tomato transplant morphology affected by handling and storage , 1991 .
[2] P. Nelson,et al. Timing is Crucial for Plug Seedling Substrate Testing , 1997 .
[3] Naoshi Kondo,et al. Robotics for Plant Production , 1998, Artificial Intelligence Review.
[4] E. Cox,et al. The influence of transplant age and nutrient feeding regime on cauliflower growth and maturity , 1986 .
[5] D. Decoteau,et al. Growth and Subsequent Yield of Tomatoes following End-of-day Light Treatment of Transplants , 1991, HortScience.
[6] Masuyuki Takaichi,et al. Effect of red/far-red photon flux ratio of solar radiation on growth of fruit vegetable seedlings. , 2000 .
[7] I. Widders,et al. Nitrogen and Phosphorus Preconditioning of Small-plug Seedlings Influence Processing Tomato Productivity , 1990 .
[8] L. E. Hinesley,et al. Growth of Containerized Atlantic White Cedar Seedlings as Affected by Container Volume, Substrate, Fertilizer, and Irrigation , 2005 .
[9] P. Stoffella,et al. Vegetable Seedling Root Systems: Morphology, Development, and Importance , 1995 .
[10] Eric B. Bish,et al. Containerized Strawberry Transplants Reduce Establishment-period Water Use and Enhance Early Growth and Flowering Compared with Bare-root Plants , 2006 .
[11] A. Bakken,et al. Morphology and field performance of Brassica transplants propagated under different day and night temperature regimes , 1995 .
[12] Toyoki Kozai,et al. Photosynthetic Photon Flux, Photoperiod, and CO2 Concentration Affect Growth and Morphology of Lettuce Plug Transplants , 1998 .
[13] K. C. Ting,et al. Automation-Culture-Environment Based Systems Analysis of Transplant Production , 1992 .
[14] E. Durner. Winter greenhouse strawberry production using conditioned plug plants , 1999 .
[15] J. Duval,et al. The effect of container size , 1998 .
[16] N. Gruda,et al. Suitability of wood fiber substrate for production of vegetable transplants I. Physical properties of wood fiber substrates , 2004 .
[17] J. Rieck,et al. Height Control of Vegetable Seedlings by Greenhouse Light Manipulation , 2004 .
[18] Chieri Kubota,et al. Low-temperature storage of transplants at the light compensation point: air temperature and light intensity for growth suppression and quality preservation , 1995 .
[19] P. Soundy,et al. Nutrient Requirements for Lettuce Transplants Using a Floatation Irrigation System. I. Phosphorus , 2001 .
[20] M. Orzolek,et al. Tomato Transplant Age: A Review , 1993 .
[21] D. J. Hills,et al. Autoguidance system operated at high speed causes almost no tomato damage , 2004 .
[22] D. Cantliffe,et al. Comparison of Plant Establishment Method, Transplant, or Direct Seeding on Growth and Yield of Bell Pepper , 1993 .
[23] J. Kloepper,et al. Survival and colonization of rhizobacteria in a tomato transplant system. , 2003, Canadian journal of microbiology.
[24] Bernard Gagnon,et al. Effects of several organic fertilizers on growth of greenhouse tomato transplants , 1994, Canadian Journal of Plant Science.
[25] T. Kozai,et al. Effects of ages of plug transplants and planting depths on the growth and yield of sweetpotato , 2006 .
[26] J. P. Barnett,et al. Effect of container type and seedling size on survival and early height growth of Pinus palustris se , 2005 .
[27] G. Bugbee,et al. Response of Potted Plants and Vegetable Seedlings to Chlorinated Water , 1987, HortScience.
[28] L. T. Braz,et al. Production and evaluation of lettuce seedlings and plants in hydroponic floating system , 2003 .
[29] R. Dufault,et al. Nitrogen, Phosphorus, and Potassium Fertility Regimes Affect Tomato Transplant Growth , 1991 .
[30] D. Nesmith. Transplant Age Influences Summer Squash Growth and Yield , 1993 .
[31] Lawrence N. Shaw,et al. Changes Needed to Facilitate Automatic Field Transplanting , 1993 .
[32] M. Koller,et al. A Comparison of Plant and Animal Based Fertiliser for the Production of Organic Vegetable Transplants , 2004 .
[33] C. Kubota,et al. Air Temperature and Illumination During Transportation Affect Quality of Mature Tomato Seedlings , 2006 .
[34] J. Latimer,et al. An Effective System for Brushing Vegetable Transplants for Height Control , 1992 .
[35] S. Newman,et al. The effect of the Trichoderma harzianum strains on the growth of tomato seedlings , 2004 .
[36] T. Hartz,et al. Composted Green Waste as a Container Medium Amendment for the Production of Ornamental Plants , 1997 .
[37] J. Biernbaum,et al. Irrigation Requirements, Root-medium pH, and Nutrient Concentrations of Easter Lilies Grown in Five Peat-based Media with and without an Evaporation Barrier , 1994 .
[38] D. Leskovar,et al. Onion growth and yield are influenced by transplant tray cell size and age , 1999 .
[39] V. Russo. Organic Vegetable Transplant Production , 2005 .
[40] J. Maas,et al. Recent Advances in Strawberry Plug Transplant Technology , 2002 .
[41] J. Cornell,et al. Coir as an Alternative to Peat in Media for Tomato Transplant Production , 2002 .
[42] R. Rikala,et al. Influence of different nursery container media on rooting of Scots pine and silver birch seedlings after transplanting , 1998, New Forests.
[43] D. Haase,et al. Field Performance of Three Stock Sizes of Douglas-fir Container Seedlings Grown with Slow-release Fertilizer in the Nursery Growing Medium , 2004, New Forests.
[44] J. Latimer,et al. The effect of mechanical stress on transplant growth and subsequent yield of four cultivars of cucumber , 1991 .
[45] Changhoo Chun,et al. CLOSED SYSTEMS WITH LAMPS FOR COMMERCIAL PRODUCTION OF TRANSPLANTS USING MINIMAL RESOURCES , 2004 .
[46] J. Kuehny,et al. Plug Source and Growth Retardants Affect Finish Size of Bedding Plants , 2001 .
[47] A. Gosselin,et al. Effect of Supplementary Lighting on Transplant Growth and Yield of Greenhouse Tomato , 1987, HortScience.
[48] William R. Argo. Root Medium Chemical Properties , 1998 .
[49] C. J. Graham,et al. Cell size and pretransplant nutritional conditioning influence growth and yield of transplanted 'Jubilee' watermelon. , 2000 .
[50] J. Latimer. Mechanical conditioning for control of growth and quality of vegetable transplants , 1991 .
[51] F. A. Langton,et al. Brushing pansy (Viola tricolor L.) transplants : a flexible, effective method for controlling plant size , 1997 .
[52] P. Soundy,et al. Management of Nitrogen and Irrigation in Lettuce Transplant Production affects Transplant Root and Shoot Development and Subsequent Crop Yields , 2005 .
[53] Eric B. Bish,et al. Temperature Conditioning and Container Size Affect Early Season Fruit Yield of Strawberry Plug Plants in a Winter, Annual Hill Production System , 2002 .
[54] P. Soundy,et al. Vegetable transplant nutrient and water management. , 2000 .
[55] D. Waterer,et al. Uptake, Movement, Activity, and Persistence of an Abscisic Acid Analog (8′ Acetylene ABA Methyl Ester) in Marigold and Tomato , 2005, Journal of Plant Growth Regulation.
[56] J. Metzger,et al. Impact of Vermicompost on Vegetable Transplant Quality , 2005 .
[57] Eric B. Bish,et al. DEVELOPMENT OF CONTAINERIZED STRAWBERRY TRANSPLANTS FOR FLORIDA'S WINTER PRODUCTION SYSTEM , 1997 .
[58] J. Latimer,et al. Root Cell Volume in the Planter Flat Affects Watermelon Seedling Development and Fruit Yield , 1995 .
[59] F. Fornes,et al. Physical properties of various coconut coir dusts compared to peat , 2005 .
[60] Ward Simonton,et al. Issues in Robotic System Design for Transplant Production Systems , 1992 .
[61] C. Marr,et al. Holding Tomato Transplants in Plug Trays , 1990 .
[62] Roy E. Young,et al. Growth responses of chrysanthemum and bell pepper transplants to photoselective plastic films , 2000 .
[63] R. Dufault. Vegetable transplant nutrition , 1998 .
[64] L. Weston,et al. Effect of Root Container Size and Location of Production on Growth and Yield of Tomato Transplants , 1986, Journal of the American Society for Horticultural Science.
[65] N. Tremblay,et al. Growth, Nutrient Status, and Yield of Celery Seedlings in Response to Urea Fertilization , 1989, HortScience.
[66] D. Cantliffe,et al. Pepper Seedling Growth Response to Drought Stress and Exogenous Abscisic Acid , 1992 .
[67] M. Cavigelli,et al. Suitability of Composts as Potting Media for Production of Organic Vegetable Transplants , 2005 .
[68] N. Tremblay,et al. Growth and Nutrient Status of Celery Seedlings in Response to Nitrogen Fertilization and NO3:NH4 Ratio , 1989, HortScience.
[69] Eric B. Bish,et al. Fruiting Responses and Economics of Containerized and Bare-root Strawberry Transplants Established with Different Irrigation Methods , 2006 .
[70] Eric B. Bish,et al. A System for Producing Large Quantities of Greenhouse-grown Strawberry Plantlets for Plug Production , 2001 .
[71] D. Cantliffe,et al. GROWTH AND YIELD OF TOMATO PLANTS IN RESPONSE TO AGE OF TRANSPLANTS , 1991 .
[72] Analyses and optimization of long distance transportation conditions for high quality tomato seedlings , 2004 .
[73] R. Rikala,et al. Effect of Peat-based Container Media on Establishment of Scots Pine, Norway Spruce and Silver Birch Seedlings after Transplanting in Contrasting Water Conditions , 2000 .
[74] D. Nesmith. Transplant age has little influence on yield of muskmelon (Cucumis melo L.) , 1994 .
[75] D. Waterer,et al. Evaluation of Abscisic Acid Analogs as Holding Agents for Bedding Plant Seedlings , 2006 .
[76] N. Tremblay,et al. Effects of CO2 Enrichment, Nitrogen and Phosphorus Fertilization on Growth and Yield of Celery Transplants , 1987, HortScience.
[77] Pekka Helenius,et al. Effect of preplanting drought on survival, growth and xylem water potential of actively growing Picea abies container seedlings , 2005 .
[78] L. Weston,et al. EFFECT OF ROOT CELL SIZE AND TRANSPLANT AGE ON COLE CROP YIELDS , 1991 .
[79] N. Gruda,et al. Suitability of wood fiber substrates for production of vegetable transplants II.: The effect of wood fiber substrates and their volume weights on the growth of tomato transplants , 2004 .
[80] D. Marsh,et al. Influence of Container Type and Cell Size on Cabbage Transplant Development and Field Performance , 1988, HortScience.
[81] B. Zandstra,et al. Transplant Age and N and P Nutrition Effects on Growth and Yield of Tomatoes , 1989, HortScience.
[82] B. Behe,et al. Composted Poultry Litter as Potting Media does not Affect Transplant Nitrogen Content or Final Crop Yield , 1997 .
[83] Daniel J. Cantliffe,et al. Transplant Production Systems Influence Growth and Yield of Fresh-market Tomatoes , 1994 .
[84] John A. Cornell,et al. Nitrogen Fertilization of Florida-grown Tomato Transplants: Seasonal Variation in Greenhouse and Field Performance , 1998 .
[85] D. Leskovar,et al. Root Dynamics of Muskmelon Transplants as Affected by Nursery Irrigation , 2002 .
[86] M. Ozores-Hampton,et al. Yard Trimming-Biosolids Compost: Possible Alternative to Sphagnum Peat Moss in Tomato Transplant Production , 1999 .
[87] D. Cantliffe. Pre- and Postharvest Practices for Improved Vegetable Transplant Quality , 1993 .
[88] Joyce G. Latimer,et al. Brushing Influences Transplant Growth and Subsequent Yield of Four Cultivars of Tomato and Their Hybrid Lines , 1992 .
[89] J. Latimer. Container Size and Shape Influence Growth and Landscape Performance of Marigold Seedlings , 1991 .
[90] D. Leskovar. Root and Shoot Modification by Irrigation , 1998 .
[91] K. Ohyama,et al. Potential Use of a 24-Hour Photoperiod (Continuous Light) with Alternating Air Temperature for Production of Tomato Plug Transplants in a Closed System , 2005 .
[92] S. Nicola,et al. Increasing Cell Size and Reducing Medium Compression Enhance Lettuce Transplant Quality and Field Production , 1996 .
[93] J. Jifon,et al. Gas Exchange, Water Status, and Growth of Pepper Seedlings Exposed to Transient Water Deficit Stress are Differentially Altered by Antitranspirants , 2007 .
[94] D. Cantliffe. Seed Germination for Transplants , 1998 .
[95] T. Kozai,et al. Manipulation of photoperiod and light intensity in low-temperature storage of eggplant plug seedlings , 2002 .
[96] M. Raviv,et al. The use of compost as a peat substitute for organic vegetable transplants production , 1998 .
[97] A. Uragami,et al. Physiological responses of cabbage plug seedlings to water stress during low-temperature storage in darkness , 2004 .