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The occurrence and correction of boron deficiency

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Abstract

Positive responses to B application, which provide clear evidence of B deficiency, have been reported in over 80 countries and on 132 crops over the last 60 years. It is estimated that about 15 million ha are annually treated with B. In a few regions in the world, B deficient soils exist over a wide area, as for example in eastern and southern China. Elsewhere B deficiency is restricted to particular soil types and crops. Acrisols and Podzols and to a much lesser extent Andosols, Luvisols and Ferralsols, appear to be the soil groups most likely to produce B deficient crops. Soil parent material and texture are considered to be the major soil factors associated with the occurrence of B deficiency. For many crops it is the B requirement for successful fertilisation that is of critical importance; even crops with a small B requirement, such as the cereals, can suffer impaired seed set due to B shortage at a critical time. Climate, particularly high light intensity and low temperature are factors that need to be considered in relation to the occurrence of B deficiency. Boron deficiency can be readily prevented and corrected by both soil and foliar applications. Most reliance is placed on refined sodium borates, but crushed ores are used both in the manufacture of boronated fertilisers and on their own. Depending on the ore, its particle size and method of application, B supply may be extended by using an ore which dissolves slowly.

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References

  • Agulhon H 1910a Emploi du bore comme engrais catalytique. C. R. Acad. Sci. 150, 288-291.

    Google Scholar 

  • Agulhon H 1910b Presence and utility of boron in plants. Ann. Inst. Pasteur (Paris) 24, 321-329.

    Google Scholar 

  • Anon. 1935 Boron and plant life. The Fertilizer, Feeding Stuffs and Farm Supplies Journal, Part I, 720-752.

  • Anon. 1936 Boron and plant life. Part I (continued). The Fertilizer, Feeding Stuffs and Farm Supplies Journal, 4-11.

  • Anon. 1958 Borax for frost protection. Horticultural Advertiser, September 1958.

  • Anon. 1977 Boron - its unique role. Fertilizer Solutions (USA), May-June.

  • Anon. 1996 Boron - important for pollen, fertilization and fruit set. Boron in Agric. 16, 1, 1-2.

    Google Scholar 

  • Anspoks P and Liepins J 1987 Mobile forms of boron, copper and molybdenum in Latvian soils. Pochvovedenie 4, 28-40.

    Google Scholar 

  • Archer F C and Hodgson IH 1987 Total and extractable trace element contents of soils in England and Wales. J. Soil Sci. 38, 421-431.

    Google Scholar 

  • Arnon D I and Stout P R 1939 The essentiality of certain elements in minute quantity for plant with special reference to copper. Plant Physiol. 14, 371-375.

    Google Scholar 

  • Askew H O and Monk R J 1953 Boron deficiency and uptake of boron in the hop plant. New Zealand J. Sci. and Technol. 35, 279-300.

    Google Scholar 

  • Askew H O, Chittenden E T and Monk R J 1951 Die-back in raspberries-a boron deficiency ailment. J. Hort. Sci. 26, 268-284.

    Google Scholar 

  • Askew H O, Chittenden E and Thomson R H K 1936 The use of borax in the control of internal cork of apple. New Zealand J. Sci. and Technol. 18, 365-380.

    Google Scholar 

  • Beltram V 1958 Bor als frostschutz (Boron as frost protector). All-gemeine Forstzeitschrift 10, 147-148.

    Google Scholar 

  • Berger K C 1962 Micronutrient deficiencies in the United States. J. Agric. Food Chem. 10, 178-181.

    Google Scholar 

  • Bergmann W and Buechel L 1963 Borax mud - a waste product of borax fertilizer production. Z. Landwirtsch. Versuhs-Untersuchungsw. 9, 297.

    Google Scholar 

  • Bergmann W, Ebeling R, Witter B, Schnorr H, Karlheinz K, Gey S, Runge P, Wahl H and Knabe O 1968 Erster orientierender Uberblick uber die B-, Cu-, Mn-und Mo-Versorgung der Boden der DDR. Albrecht-Thaer-Archiv, 12, 1099-1116.

    Google Scholar 

  • Bingham F T, Page A L, Coleman N T and Flach K 1971 Boron adsorption characteristics of selected amorphous soils from Mexico and Hawaii. Soil Sci. Soc. Am. Proc. 35, 546-550.

    Google Scholar 

  • Blevins D G, Scrivner C L, Reinbott T M and Schon M K 1996 Foliar boron increases berry number and yield of two highbush blueberry cultivars in Missouri. J. Plant Nutr. 19, 99-113.

    Google Scholar 

  • Boron in Agriculture, First Series 1948-1979, published by Borax Consolidated Ltd., London.

  • Boron in Agriculture, Second Series 1980-1989, published by Micronutrient Bureau, Tring, England.

  • Braekke F H 1979 Boron deficiency in forest plantations on peatland in Norway. Meddelesar fra Norsk Institutt for Skogforskning, 35, 3, 213-236.

    Google Scholar 

  • Braekke F H 1983 Micronutrients - prophylactic use and cure of forest growth disturbances. Proc. Int. Workshop on Growth Disturbances of Forest Trees. Finland, October 1982. Commun. Inst. Forest. Fenniae Helsinki 116, 159-169.

    Google Scholar 

  • Brandenburg E 1931 Die Herz-und Trockenfaule der Ruben als Bormangelerscheinung. Phytopath. 3, 499-517.

    Google Scholar 

  • Brown P H and Hu H 1996 Phloem mobility of boron is species dependent: evidence for phloem mobility in sorbitol-rich species. Ann. Bot. 77, 497-505.

    Google Scholar 

  • Cakmak I, Kurz H and Marschner H 1995 Short-term effects of boron, germanium and high light intensity on membrane permeability in boron deficient leaves of sunflower. Physiol. Plant. 95, 11-18.

    Google Scholar 

  • Cooling E N 1967 Frost resistance in Eucalyptus grandis following the application of fertilizer borate. Rhod. Zamb.Mal. Agric. Res. 5, 97-100.

    Google Scholar 

  • Cooling E N and Jones B E 1970 The importance of boron and NPK fertilizers to eucalypts in the southern Province, Zambia. East Afr. Agric. & For. J. - special issue, 36, 185-194.

    Google Scholar 

  • Delgado A, Benlloch M and Fernandez-Escobar R 1994 Mobilization of boron in olive trees during flowering and fruit development. HortScience 29, 616-618.

    Google Scholar 

  • Dennis R W G 1937 A review of developments in the applications of boron in agriculture and horticulture 1935-1937. The Fertilizer, Feeding Stuffs and Farm Supplies Journal, Sept.8&22, Oct.6&20.

  • Dennis R W G 1947/1948 Boron and Plant Life Part VI. Developments in agriculture and horticulture 1943-1946. The Fertilizer, Feeding Stuffs and Farm Supplies Journal, Aug.13&27, Sept.10&24, Oct.8&22, Feb.11&25, Mar.10&24.

  • Dennis R W G and O'Brien D G 1937 Boron in Agriculture. The West of Scotland Agric. Coll. Res. Bull. No. 5, 3-98.

    Google Scholar 

  • Dennis A C and Dennis R W G 1939 Boron and Plant Life Part III. Developments in agriculture and horticulture 1937-1938. The Fertilizer, Feeding Stuffs and Farm Supplies Journal, Feb.8&22, Mar.8&22, Apr.5&19.

  • Dennis A C and Dennis R W G 1940/1941 Boron and Plant Life Part IV. Developments in agriculture and horticulture 1939-1940. The Fertilizer, Feeding Stuffs and Farm Supplies Journal, Nov.13&27, Dec.11 & 24, Jan. 8 & 22, Feb.5 & 19.

  • Dennis A C and Dennis R W G 1943 Boron and Plant Life Part V. Developments in agriculture and horticulture 1940-1942. The Fertilizer, Feeding Stuffs and Farm Supplies Journal, Mar.17&31, Apr.14&28, May 12&26.

  • Elrashidi M A and O'Connor G A 1982 Boron sorption and desorp-tion in soils. Soil Sci. Soc. Am. J. 46, 27-31.

    Google Scholar 

  • Etchevers B J, Merino H R, Vidal P I, Riqueime F E and Llanos R F 1983 Nutritional survey of vineyards in the coastal zone of the VIII region. Agric. Tecnica (Santiago) 43, 13-20.

    Google Scholar 

  • FAO/UNESCO 1978 Soil maps of the world 1:5 000 000 Volumes 1-10. UNESCO, Paris.

    Google Scholar 

  • Farrer K 1976 Trace deficiencies in crops. MAFF, ADAS Advisory Paper 17, 1-34.

    Google Scholar 

  • Gembarzewski H 1987 Presence and deficiencies of secondary and trace elements in arable and grassland with high fertilizer use and varying soil conditions in Poland. In The Utilization of Secondary and Trace Elements in Agriculture. Ed. United Nations. pp 55-74. Martinus Nijhoff Publishers, Dordrecht, The Netherlands.

    Google Scholar 

  • Goldberg S and Forster H S 1991 Boron sorption on calcareous soils and reference calcites. Soil Sci. 152, 304-310.

    Google Scholar 

  • Gu M, Jiang Y, Huang H and Peng F 1995 The translocation and distribution of foliar-applied boron during blooming period of apple trees. Acta Agric. Nucleatae Sinica 9, 86-90.

    Google Scholar 

  • Gupta U C 1983 Boron deficiency and toxicity symptoms for several crops as related to tissue boron levels. J. Plant Nutr. 6, 387-395.

    Google Scholar 

  • Gupta U C 1984 Boron nutrition of alfalfa, red clover, and timothy grown on podzol soils of eastern Can. J. Soil Sci. 137, 16-22.

    Google Scholar 

  • Gupta U C and Cutcliffe J A 1975 Boron deficiency in cole crops under field and greenhouse conditions. Commun. Soil Sci. Plant Anal. 6, 181-188.

    Google Scholar 

  • Gupta U C and Cutcliffe J A 1982 Residual effect of boron applied to rutabaga on subsequent cereal crops. Soil Sci. 133, 155-159.

    Google Scholar 

  • Gupta U C and Cutcliffe J A 1984 Effects of applied and residual boron on the nutrition of cabbage and field beans. Canada J. Soil Sci. 64, 571-576.

    Google Scholar 

  • Gupta U C and Cutcliffe J A 1985 Boron nutrition of carrots and table beets grown in a boron deficient soil. Commun. Soil Sci. Plant Anal. 16, 509-516.

    Google Scholar 

  • Gyul'akhmedov A N and Mamedov OK 1984 Boron content in soils of central Burma. Izv. Akad. Nauk. Az. SSR, Ser. Biol. Nauk 1, 49-51.

    Google Scholar 

  • Hanson E J 1991 Movement of boron out of tree fruit leaves. HortScience 26, 271-273.

    Google Scholar 

  • Hanson E J and Breen P J 1985 Effects of fall boron sprays and environmental factors on fruit set and boron accumulation in ”Italian” prune flowers. J. Amer. Soc. Hort. Sci. 110, 389-392.

    Google Scholar 

  • Harder H 1961 Contribution to the geochemistry of boron: III. Boron in metamorphic rocks and in the geochemical cycle. Nachr, Akad. Wiss, Gottingen: II. Math-Physik. Kl., 1, 1-26.

    Google Scholar 

  • Harder H 1970 Boron content of sediments as a tool in facies analysis. Sediment. Geol. 4, 153-175.

    Google Scholar 

  • Hatcher J T, Bower C A and Clark M 1967 Adsorption of boron by soils as influenced by hydroxy aluminium and surface area. Soil Sci. 104, 422-426.

    Google Scholar 

  • Hingston F J 1986 Biochemical cycling of boron in native eucalypt forest of south-western Australia. Aust. For. Res. 16, 73-83.

    Google Scholar 

  • Hobbs J A and Bertramson B R 1949 Boron uptake by plants as influenced by soil moisture. Soil Sci. Soc. Am. Proc. 14, 257- 262.

    Google Scholar 

  • Jin J Y, Martens D C and Zelazny L W 1988 Plant availability of applied and native boron in soils with diverse properties. Plant and Soil 105, 127-132.

    Google Scholar 

  • Katalimov M V and Churbanov V M 1959 Magnesium borate as a boron fertilizer. Zhurn. Khim. 24, 25.

    Google Scholar 

  • Kiviniemi KJ 1946 Observations on the use of lime, its requirements and effects in Finland during this century. Manuscript in Finnish 73 p. Dept. of Agric. Chem. and Phys., Vantaa, Finland.

    Google Scholar 

  • Kubota J, Berger J C and Truog E 1948 Boron movement in soils. Soil Sci. Soc. Am. Proc. 13, 130-134.

    Google Scholar 

  • Kurki M 1982 On the fertility of Finnish tilled fields in the light of investigations of soil fertility carried out in the years 1955-1980. Suomen Peltojen Viljavuudesta III, ISBN 951-993399-0-3.

  • Liu Zheng, Zhu Qi-Qing and Tong Li-Hua 1980 Boron deficient soils and their distribution in China. Acta Ped. Sin. 17, 228-239.

    Google Scholar 

  • Liu Zheng, Zhu Qi-Qing and Tong Li-Hua 1982a On the status of microelements in soils and their role in crop production of China. Int. Conf. Chem and World Food Supplies, Manila, Philippines Dec. 1982.

  • Liu Zheng, Zhu Qi-Qing and Tong Li-Hua 1983 Microelements in the main soils in China. Soil Sci. 135, 40-46.

    Google Scholar 

  • Liu Zheng, Zhu Qi-Qing and Tong Li-Hua 1989 Regularities of content and distribution of boron in soils. Acta Ped. Sin. 26, 353-361.

    Google Scholar 

  • Liu Zheng, Zhu Qi-Qing, Tong Li-Hua, Xu Jung-Xiang and Yen Chu-Liang 1982b Geographical distribution of trace elements-deficient soils in China. Acta Ped. Sin. 19, 209-223.

    Google Scholar 

  • Lombin G 1985 Micronutrient soil tests for the semi-arid savannah of Nigeria: boron and molybdenum. Soil Sci. Plant Nutr. (Tokyo) 31, 1-11.

    Google Scholar 

  • Lopes A S 1984 Solos sob “cerrado”: Caracteristicas, propriedades e manejo. Piracicaba: Associacao Brasileira para Psquisa da Potasse e do Fosfato.

  • Lora R S 1978 Respuesta de los cultivos de clima frio a la aplicacion de micronutrientos. Memorias del V coloquio de suelos. Suelos Ecuatoriales. Soc. Colombiana de la Ciencia del Suelo 9, 183- 191.

    Google Scholar 

  • Maze P 1915 Determination des elements mineraux rares necessaires au developpement du mais. C.R. Acad. Sci. 160, 211-214.

    Google Scholar 

  • Merrien A 1993 Diagnostic parcellaire sur une culture de tournesol. Perspectives Agricoles 179, 80-84.

    Google Scholar 

  • Micronutrient News and Information 1990-1996. Publisher: Micronutrient Bureau, Tring, England.

  • Milovankic M, Keserovic Z and Vasiljevic Z 1990 Studies on some chemicals used for prevention of frost damage to fertile buds and flowers of fruit crops. Yugoslovensko Vocarstvo 24, 4, 21-27.

    Google Scholar 

  • Moller G 1983 Variation of boron concentration in pine needles from trees growing on mineral soil in Sweden and response to nitrogen fertilization. In Proc. Int. Workshop on Growth Disturbances of Forest Trees. Finland, October 1982. Commun. Inst. Forest. Fenniae Helsinki 116, 111-115.

    Google Scholar 

  • Mortvedt J 1991 Micronutrient fertilizer technology. In Micronutrients in Agriculture, 2nd ed. Eds. J Mortvedt, F R Cox, L M Shuman and R M Welch. pp 523-548. Soil Sci. Soc. of America Book Series No. 4, Madison, WI, USA.

  • Muller F B and McSweeney G 1976 Toxicity of borates to turnips. New Zealand J. Exp. Agric. 4, 451-455.

    Google Scholar 

  • Noppakoonwong R N, Bell RW, Dell B and Loneragan J F 1993 An effect of shade on the boron requirement for leaf blade elongation in black gram (Vigna mungo L. Hepper). In Plant Nutrition - from Genetic Engineering to Field Practice. Ed. N J Barrow. pp 413- 416. Kluwer Academic Publishers, Dordrecht, the Netherlands.

    Google Scholar 

  • Odunze A C, Chude V O and Adeoye K B 1992 Physicochemical properties and management of alfisols in the Nigerian savanna. In Integrated land use for tropical agriculture. Proc. second international symposium, Queensland, Brisbane, Australia. Module 2, 12.1-12.8.

    Google Scholar 

  • Ouellette G J 1958 Persistence of borax in sandy soils. Can. J. Soil Sci. 38, 77-84.

    Google Scholar 

  • Park C S and Park N J 1966 Studies on the available boron content of soils in the upland crop area in Korea. Ann. Res. Report, Office of Rural Development 9, 1, 163-174.

    Google Scholar 

  • Peterson L A and Newman R C 1976 Influence of soil pH on the availability of added boron. Soil Sci. Soc. Am. Proc. 40, 280-282.

    Google Scholar 

  • Picchioni G A, Weinbaum S A and Brown P H 1995 Retention and the kinetics of uptake and export of foliage-applied, labelled boron by apple, pear, prune and sweet cherry leaves. J. Amer. Soc. Hort. Sci. 120, 28-35.

    Google Scholar 

  • Pieve J V 1959 Content of forms of trace elements that are available to plants in the soils of the USSR. World Congress of Agric. Res. FAO Rome, 1270-1272.

  • Polyak A M and Boronkova M E 1958 Production of boron fertilizers from datolite from the Far East. Zhurn. Khim. 22, 25.

    Google Scholar 

  • Rawson H M 1996 Hypothesis for why sterility occurs in wheat in Asia. In Sterility in wheat in subtropical Asia: extent, causes and solutions. Eds. H M Rawson and K D Subedi. Proc. workshop 18- 21 Sept, Lumle Agric. Res. Cent., Pokhara Nepal. pp 132-134. ACIAR Proc. No. 72.

  • Rawson H M and Subedi K D (Eds) 1996 Sterility in wheat in subtropical Asia: extent, causes and solutions. Proc. workshop 18-21 Sept, Lumle Agric. Res. Cent., Pokhara Nepal. ACIAR Proc. No. 72.

  • Rerkasem B 1996 A general survey of the incidence of wheat sterility. In Sterility in wheat in subtropical Asia: extent, causes and solutions. Eds. H M Rawson and K D Subedi. 1996 Proc. workshop 18-21 Sept, Lumle Agric. Res. Cent., Pokhara Nepal. pp 8-12. ACIAR Proc. No. 72.

  • Rigg T, Askew H O and Chittenden E 1937 Brown-heart of swedes and turnips in Nelson district: a boron deficiency ailment. New Zealand J. Sci. Tech. 18, 750-755.

    Google Scholar 

  • Rodriguez J S and Tomic M T Y 1984 Micronutrient availability in andosols and ultisols of Los Lagos region. Cienc. Invest. Agrar. 11, 3, 169-178.

    Google Scholar 

  • Ryu K S, Kim K R and Kim R S 1986 Studies on the cause and control of non-sprouting in the mulberry fields of Kyiungpook province. Han'guk Chamsa Hakhoechi 28, 2, 1-8.

    Google Scholar 

  • Sakal R and Singh AP 1995 Boron research and agricultural prodcu-tion. In Micronutrient Research and Agricultural Production. Ed. H L S Tandon. pp 1-31. Fetilizer Development and Consultation Organization, New Delhi, India.

    Google Scholar 

  • Savage C G and Broadfoot H 1937 Internal cork of apples, soil dressings of borax give excellent results. Agric. Gaz. N.S.W. 48, 387-390 and 447-452.

    Google Scholar 

  • Schalscha E B, Bingham F T, Galindo G G and Galvan H P 1973 Boron adsorption by volcanic ash soils in southern Chile. Soil Sci. 116, 2, 70-76.

    Google Scholar 

  • Sherrell C G 1983 Comparison of materials of different solubility as sources of boron for plants. New Zealand J. Exp. Agric. 11, 325-329.

    Google Scholar 

  • Schlatter J E and Gerding V 1985 Boron deficiency in Pinus radiata plantations in Chile 1. Distribution and origin. Bosque 6, 24-31.

    Google Scholar 

  • Shorrocks V M 1989 Boron Deficiency - Its Prevention and Cure. Published by Borax Consolidated Ltd., London.

    Google Scholar 

  • Shorrocks V M 1991 Boron - a global appraisal of the occurrence, diagnosis and correction of boron deficiency. In Proc. Int. Symp. on the Role of Sulphur, Magnesium and Micronutrients in Balanced Plant Nutrition. Ed. S Portch. pp 39-53. Potash and Phosphate Institute, Hong Kong.

    Google Scholar 

  • Sillanpaa M 1982 Micronutrient and the nutrient status of soils-a global study. FAO Soils Bulletin No. 48, FAO, Rome, Italy.

    Google Scholar 

  • Sillanpaa M 1990 Micronutrient assessment at the country level: an international study. FAO Soils Bulletin No. 63, FAO, Rome, Italy.

    Google Scholar 

  • Sillanpaa M and Vlek P L G 1985 Micronutrients and the agroecology of tropical and Mediterranean regions. In Micronutrients in Tropical Food Crop Production, Dev. Plant Soil Sci. 14, 151-167.

    Google Scholar 

  • Sims J R and Bingham F T 1968a Retention of boron by layer silicates, sesquioxides and soil materials: II Sesquioxides. Soil Sci. Soc. Am. Proc. 32, 364-369.

    Google Scholar 

  • Sims J R and Bingham F T 1968b Retention of boron by layer silicates, sesquioxides and soil materials: III Iron-and aluminium-coated layer silicates and soil materials. Soil Sci. Soc. Am. Proc. 32, 369-373.

    Google Scholar 

  • Sobrinho M O C and Freire O 1980 Boron in some soils of the state of Sao Paulo. Availability by chemical methods. Rev. Agric. (Piracicaba, Brazil) 55, 83-105.

    Google Scholar 

  • Stone E L and Will G M 1965 Boron deficiency on Pinus radiata and Pinus pinaster. For. Sci. 11, 425-433.

    Google Scholar 

  • Svagzdys S 1995 Use of boron fertilizers in apple orchards of Lithuania. Acta Hort. 383, 487-490.

    Google Scholar 

  • Tanaka H 1966 Response of Lemna paucicostata to boron as affected by light intensity. Plant and Soil 25, 425-434.

    Google Scholar 

  • Tollenaar H 1970 Boron deficiency in pine plantations in central Chile. Agric. Tecnica (Santiago) 29, 85-88.

    Google Scholar 

  • Veijalainen H 1983 Preliminary results of micronutrient fertilization experiments in disordered Scots Pine stands. Proc. int. workshop on growth disturbances of forest trees. Finland, October 1982. Commun. Inst. Forest. Fenniae Helsinki 116, 153-159.

    Google Scholar 

  • Warington K 1923 The effect of boric acid and borax on the broad bean and certain other plants. Ann. Bot. 37, 457-466.

    Google Scholar 

  • Wear J I and Patterson R M 1962 Effect of soil pH and texture on the availability of water-soluble boron in the soil. Soil Sci. Soc. Am. Proc. 26, 344-346

    Google Scholar 

  • Wikner B 1983 Distribution and mobility of boron in forest ecosystems. Proc. Int. workshop on growth disturbances of forest trees. Finland, October 1982. Commun. Inst. Forest. Fenniae Helsinki 116, 131-141.

    Google Scholar 

  • Wild A and Mazaheri A 1979 Prediction of the leaching rate of boric acid under field conditions. Geoderma 22, 127-36.

    Google Scholar 

  • Will G M 1971 The occurrence and treatment of boron deficiency in New Zealand pine forests. Research Leaflet 32, NZ Forest Service.

  • Wilson C M, Lovvorn R L and Woodhouse W W 1951 Movement and accumulation of water soluble boron within the soil profile. Agron. J. 43, 363-367.

    Google Scholar 

  • Yermiyaho U, Keren R and Chen Y 1988 Boron sorption on composted organic matter. Soil Sci. Soc. Am. Proc. 53, 1309-1313.

    Google Scholar 

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Shorrocks, V.M. The occurrence and correction of boron deficiency. Plant and Soil 193, 121–148 (1997). https://doi.org/10.1023/A:1004216126069

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