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|a (TOE)ost10168282
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|a (TOE)10168282
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|a TOE
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|a E 1.99:doe/er/13693--t1
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|a E 1.99:doe/er/13693--t1
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|a doe/er/13693--t1
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|a Cell signalling and phospholipid metabolism. Final report
|h [electronic resource]
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|a Washington, D.C. :
|b United States. Department of Energy. ;
|a Oak Ridge, Tenn. :
|b distributed by the Office of Scientific and Technical Information, U.S. Department of Energy,
|c 1990.
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|a 25 p. :
|b digital, PDF file.
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|a text
|b txt
|2 rdacontent.
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|a computer
|b c
|2 rdamedia.
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|a online resource
|b cr
|2 rdacarrier.
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|a Published through SciTech Connect.
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|a 12/31/1990.
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|a "doe/er/13693--t1"
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|a "DE92018482"
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|a Boss, W.F.
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|a Final;
|b 01/01/1987 - 12/31/1990.
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|a These studies explored whether phosphoinositide (PI) has a role in plants analogous to its role in animal cells. Although no parallel activity of PI in signal transduction was found in plant cells, activity of inositol phospholipid kinase was found to be modulated by light and by cell wall degrading enzymes. These studies indicate a major role for inositol phospholipids in plant growth and development as membrane effectors but not as a source of second messengers.
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|b FG05-87ER13693.
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|a Phospholipids.
|2 local.
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|a Biological Functions.
|2 local.
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|a Phosphotransferases.
|2 local.
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|a Biochemical Reaction Kinetics.
|2 local.
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|a Progress Report.
|2 local.
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|a Plant Cells.
|2 local.
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|a Autoradiography.
|2 local.
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|a Tritium Compounds.
|2 local.
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650 |
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|a Phosphorus 32.
|2 local.
|
650 |
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|a Basic Biological Sciences.
|2 edbsc.
|
710 |
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|a North Carolina State University.
|b Department of Botany.
|4 res.
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|a United States.
|b Department of Energy.
|4 spn.
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|a United States.
|b Department of Energy.
|b Office of Scientific and Technical Information.
|4 dst.
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|u http://www.osti.gov/servlets/purl/10168282/
|z Online Access
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907 |
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|a .b59769178
|b 03-06-23
|c 05-26-10
|
998 |
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|a web
|b 05-26-10
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|p Can circulate
|a University of Colorado Boulder
|b Online
|c Online
|d Online
|e E 1.99:doe/er/13693--t1
|h Superintendent of Documents classification
|i web
|n 1
|