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Soil structure problems in tulip culture


, : Soil structure problems in tulip culture. Acta Horticulturae (21): 338-343

Bulb production is more difficult on silt and clayey soils. Many silt soils undergo slaking and puddling during rainy winters causing bulb mortality or retarded growth. Difficulties also arise with mechanical planting and harvesting on many clayey soils. Physical properties of the soils are closely related to soil texture, lime status, organic matter percentage and drainage. For successful tulip culture the groundwater level in autumn and winter should be >1 m below the soil surface.

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Accession: 000194968

DOI: 10.17660/ActaHortic.1971.23.54

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Related references

Van Der Valk G.G.M.; Van Gils J.B.H.M., 1990: Structure and applications of a production model in tulip bulb culture. Acta Horticulturae (Wageningen) (266): 391-400

Nard, M. le; Chanteloube, F., 1992: In vitro culture of explants excised from growing stems of tulip (Tulipa gesneriana L.): problems related to bud and bulblet formation. Stem disc explants from various tulip cultivars were cultured in the dark at 19-20 degrees C on MS medium supplemented with organic compounds and growth regulators. After about 4 months, explants with adventitious buds were fragmented and subcultu...

Nagao N.; Nishio T.; Kobayashi T., 1988: Fine structure of tulip leaves infected with tulip severe mosaic virus occurring in the netherlands. Electron microscopy of thin sections of tulip leaves (cv. Ivory Floradale), systemically infected with tulip severe mosaic virus, revealed virus particles in the parenchyma cells of vascular bundle and xylem elements. In these cells, masses of vir...

Ikarashi, T.B.ba, A., 1977: Studies on the physiological disorder, so called Ironuke and Kubiore in tulip plants. v. diagnosis of boron deficiency in field tulip by soil testing and plant analysis

Windrich W.A., 1971: Horizontal migration of the tulip m race of stem nematode ditylenchus dipsaci from artificially infected tulip m bulbs planted on a sandy and a heavy clay soil. Acta Horticulturae (Wageningen) 2(23): 263-265

Windrich, W.A., 1971: Horizontal migration of the tulip race of stem nematode Ditylenchus dipsaci (Kuehn) from artificially infected tulip bulbs planted on a sandy and a heavy clay soil. In a field experiment, the lateral spread of infestation from tulip bulbs infested with Ditylenchus dipsaci was compared in a sandy and a clay soil in 3 successive seasons. Infested plants were found at a distance up to 25 cm from the source of in...

Juodkaite, R.; Naujalis, J.R.; Navalinskiene, M.; Samuitiene, M., 2005: Evaluation of tulip (Tulipa L.) decorative capacities and resistance to Tulip breaking potyvirus in the tulip collection of the Botanical Garden of Vilnius University. The tulip collection of the Department of Plant Systematics and Geography of the Botanical Garden of Vilnius University comprises 240 tulip species and cultivars belonging to 15 classification groups. In this study, 206 tulip cultivars, classified...

Custers, J.B.M.; Eikelboom, W.; Bergervoet, J.H.W.; Van-Eijk, J.P., 1992: In ovulo embryo culture of tulip tulipa l. effects of culture conditions on seedling and bulblet formation. Seedling formation and bulblet production from immature ovula of tulip (Tulipa gesneriana L.) were studied. Percentage germination, on a modified Murashige and Skoog (MS) medium, was increased by prolonging the 5.degree.C chilling period, given at...

Lomidze, T.I., 1977: Effect of Botrytis tulipae on the anatomical structure of tulip leaves and stem and on some physiological processes. Pathological changes in the tissues of tulip leaves and stem infected by B. tulipae. Infected tissues became necrotic. The contents of pigments, chlorophyll, carotene and vitamin C in infected leaves decreased markedly. Respiration increased and photosynthesis decreased.

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