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Plant Physiology 65:249-253 (1980)
© 1980 American Society of Plant Biologists

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Characteristics and Development of Leucine Transport Activity in the Scutellum of Germinating Barley Grain 1

Tuomas Sopanen2, Marjukka Uuskallio and Seija Nyman

Juhani Mikola

Biotechnical Laboratory, Technical Research Centre of Finland, P. O. Box 192, SF-00121 Helsinki 12, Finland, Department of Biology, University of Jyväskylä, 40100 Jyväskylä 10, Finland

Scutella separated from grains of Himalaya barley after germination for 3 days rapidly took up L-leucine from aerated incubation media; with 1 millimolar leucine the rate varied between 4 and 14 micromoles per gram per hour and the pH optimum was at 3.5 to 5, both depending on buffer composition and prewashing time. The rate of the uptake increased with increasing concentration of leucine in a complex manner, which could be interpreted as multiphasic kinetics with apparent Km values of 3.4 and 15.5 millimolar below and above 3 millimolar leucine, respectively. The uptake took place against a concentration difference (highest estimated ratio 270: 1) and was strongly inhibited by dinitrophenol. Uptake was apparently due to active transport requiring metabolic energy.

The development of the uptake activity during germination was studied using Pirkka barley. A low activity was present in the scutella of ungerminated grains. It began to increase after 6 hours imbibition, and the increase was biphasic, the major changes occurring during days 0 to 3 and 4 to 6. The total increase was about 20-fold.

The regulation of the development was studied by allowing separated embryos to germinate on agar gel. The increase of uptake activity was strongly inhibited by inhibitors of RNA or protein synthesis. Increase did not require the presence of the embryo proper, and was not affected by gibberellic or abscisic acid. Removal of the endosperm greatly accelerated the increase of uptake activity, and the presence of 5 or 20 millimolar glutamine counteracted the removal of the endosperm. The results suggest that the availability of glutamine or amino acids in general in the endosperm may regulate the development or the activity of the transport system.


2 Research Assistant of the National Council for Sciences.

1 This work was supported by grants from the National Council for Sciences.




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