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Control of leaf and chloroplast development by the Arabidopsis gene pale cress.

R S Reiter, S A Coomber, T M Bourett, G E Bartley, P A Scolnik
R S Reiter
Du Pont Central Research, Wilmington, Delaware 19880-0402.
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S A Coomber
Du Pont Central Research, Wilmington, Delaware 19880-0402.
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T M Bourett
Du Pont Central Research, Wilmington, Delaware 19880-0402.
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G E Bartley
Du Pont Central Research, Wilmington, Delaware 19880-0402.
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P A Scolnik
Du Pont Central Research, Wilmington, Delaware 19880-0402.
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Published September 1994. DOI: https://doi.org/10.1105/tpc.6.9.1253

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  • Copyright © 1994 by American Society of Plant Biologists

Abstract

Leaf plastids of the Arabidopsis pale cress (pac) mutant do not develop beyond the initial stages of differentiation from proplastids or etioplasts and contain only low levels of chlorophylls and carotenoids. Early in development, the epidermis and mesophyll of pac leaves resemble those of wild-type plants. In later stages, mutant leaves have enlarged intercellular spaces, and the palisade layer of the mesophyll can no longer be distinguished. To study the molecular basis of this phenotype, we cloned PAC and determined that this gene is regulated by light and has the capacity to encode an acidic, predominantly alpha-helical protein. The PAC gene appears to be a novel component of a light-induced regulatory network that controls the development of leaves and chloroplasts.

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Control of leaf and chloroplast development by the Arabidopsis gene pale cress.
R S Reiter, S A Coomber, T M Bourett, G E Bartley, P A Scolnik
The Plant Cell Sep 1994, 6 (9) 1253-1264; DOI: 10.1105/tpc.6.9.1253

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Control of leaf and chloroplast development by the Arabidopsis gene pale cress.
R S Reiter, S A Coomber, T M Bourett, G E Bartley, P A Scolnik
The Plant Cell Sep 1994, 6 (9) 1253-1264; DOI: 10.1105/tpc.6.9.1253
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The Plant Cell
Vol. 6, Issue 9
Sep 1994
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