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Matoh T (2000) Boron in plant nutrition and cell wall development. In:Ae N, Arihara J, Okada
K, Srinivasan A (eds) Plant nutrient acquisition: New perspectives, Springer-Verlag, Tokyo,
Japan, pp 227-250
Matoh T, Kobayashi M (1998) Boron and calcium, essential inorganic constituents of pectic poly-
saccharides in higher plant cell walls. J Plant Res 111:179-190
Mertens J, Van Laer L, Salaets P, Smolders E (2011) Phytotoxic doses of boron in contrasting soils
depend on soil water content. Plant Soil 342:73-82
Mikkelsen RL, Haghnia GH, Page AL, Bingham FT (1988) The influence of selenium, salinity,
and boron on alfalfa tissue composition and yield. J Environ Q 17:85-88
Miwa K, Takano J, Omori H, Seki M, Shinozaki K, Fujiwara T (2007) Plants tolerant of high boron
levels. Science 318:1417
Nable RO (1988) Resistance to boron toxicity amongst several barley and wheat cultivars: a pre-
liminary examination of the resistance mechanism. Plant Soil 112:45-52
Nable RO, Cartwright B, Lance RC (1990a) Genotypic differences in boron accumulation in bar-
ley: Relative susceptibilities to boron deficiency and toxicity. In: N. El Bassam NEI, Dambroth
M, Loughman B (eds) Genetic Aspects of Plant Mineral Nutrition. Kluwer Academic Publish-
ers, Dordrecht,: 243-251
Nable RO, Paull JG, Cartwright B (1990b) Problems associated with the use of foliar analysis for
diagnosing boron toxicity in barley. PlantSoil 128:225-232
Nable RO, Banuelos GS, Paull JG (1997) Boron toxicity. Plant Soil 198:181-198
Nuttall JG, Armstrong RD, Connor DJ (2006) Early growth of wheat is more sensitive to salinity
than boron at levels encountered in alkaline soils of south-eastern Australia. Austr J Exp Agri
46:1507-1514
Ochiai K, Uemura S, Shimizu A, Okumoto Y, Matoh T (2008) Boron toxicity in rice (Oryzasati-
vaL.). I. Quantitative trait locus (QTL) analysis of tolerance to boron toxicity. Theoret Appl
Genet 117:125-133
Ochiai K, Shimizu A, Okumoto Y, Fujiwara T, Matoh T (2011) Suppression of a NAC-like tran-
scription factor gene improves boron-toxicity tolerance in rice (Oryzasativa L.). Plant Physiol-
ogy (in press)
Oertli JJ, Kohl HC (1961) Some considerations about the tolerance of various plant species to
excessive supplies of boron. Soil Sci 92:243-347
Paull JG, Cartwright B, Rathjen A (1988) Responses of wheat and barley genotypes to toxic con-
centrations of soil boron. Euphytica 39:137-144
Power PP, Woods WG (1997) The chemistry of boron and its speciation in plants. Plant Soil
193:1-13
Raven JA (1980) Short- and long-distance transport of boric acid in plants. New Phytol 84:231-249
Ravikovitch S, Margolin M, Navroth J (1961) Microelements in soils of Israel. Soil Sci 92:85-89
Reid R (2007) Identification of boron transporter genes likely to be responsible for tolerance to
boron toxicity in wheat and barley. Plant Cell Physiol 48:1673-1678
Reid RJ, Hayes JE, Post A, Stangoulis JCR, Graham RD (2004) A critical analysis of the causes of
boron toxicity in plants. Plant Cell Environ 27:1405-1414
Reid R, Fitzpatrick K (2009) Influence of leaf tolerance mechanisms and rain on boron toxicity in
barley and wheat. Plant Physiol 151:413-420
Roldán M, Belver A, Rodríguez-Rosales P, Ferrol N, Donaire JP (1992) In vivo and in vitro ef-
fects of boron on the plasma membrane proton pump of sunflower roots. Physiol Plantarum
84:49-54
Ryan J, Singh M, Yau SK (1998) Spatial variability of soluble boron in Syrian soils. Soil Tillage
Res 45:407-417
Tsadilas CD (1997) Soil contamination with boron due to irrigation with treated municipal waste
water. In: Bell RW, Rerkasem B (eds) Boron in soils and plants. Kluwer, Dordrecht, pp 265-270
Schnurbusch T, Hayes J, Hrmova M, Baumann U, Ramesh SA, Tyerman SD, Langridge P, Sutton
T (2010) Boron toxicity tolerance in barley through reduced expression of the multifunctional
aquaporin HvNIP2;1. Plant Physiol 153:1706-1715
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