PLANT PHYSIOLOGY · 1999 · 130 citations · 11 references
EngineeringBotanyGeneticsPlant Growth RegulatorTransgenic TobaccoPlant DevelopmentPlant Molecular BiologyBiosynthesisBoron Deficiency1Increases TolerancePlant BiologyCell BiologyPlant MetabolismBiologyPlant ToleranceBiotechnologyGenetic EngineeringPlant SpeciesMedicinePlant Physiology
The mobility of elements within plants contributes to a plant species' tolerance of nutrient deficiencies in the soil. The genetic manipulation of within-plant nutrient movement may therefore provide a means to enhance plant growth under conditions of variable soil nutrient availability. In these experiments tobacco (Nicotiana tabacum) was engineered to synthesize sorbitol, and the resultant effect on phloem mobility of boron (B) was determined. In contrast to wild-type tobacco, transgenic tobacco plants containing sorbitol exhibit a marked increase in within-plant B mobility and a resultant increase in plant growth and yield when grown with limited or interrupted soil B supply. Growth of transgenic tobacco could be maintained by reutilization of B present in mature tissues or from B supplied as a foliar application to mature leaves. In contrast, B present in mature leaves of control tobacco lines could not be used to provide the B requirements for new plant growth. 10B-labeling experiments verified that B is phloem mobile in transgenic tobacco but is immobile in control lines. These results demonstrate that the transgenic enhancement of within-plant nutrient mobility is a viable approach to improve plant tolerance of nutrient stress.
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The occurrence and correction of boron deficiency
V. M. Shorrocks · Plant and Soil · 1997 · 779 citations
Chemistry and biology of boron.
W.David Loomis, Robert W. Durst · PubMed · 1992 · 517 citations
Physiological response of plants to low boron
B. Dell, Longbin Huang · Plant and Soil · 1997 · 502 citations
Patrick H. Brown, Barry J. Shelp · Plant and Soil · 1997 · 493 citations