Stabilization of Oat Leaf Protoplasts through Polyamine-mediated Inhibition of Senescence

scientific article published on 01 October 1977

Stabilization of Oat Leaf Protoplasts through Polyamine-mediated Inhibition of Senescence is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1104/PP.60.4.570
P698PubMed publication ID16660139

P2093author name stringA Altman
A W Galston
R Kaur-Sawhney
P2860cites workProtoplasts from the Avena coleoptileQ33803691
STABILIZATION OF PROTOPLASTS AND SPHEROPLASTS BY SPERMINE AND OTHER POLYAMINES.Q37477417
Ribosomal RNA metabolism in cucumber leaf mesophyll protoplastsQ40580334
Control of Ribonuclease and Acid Phosphatase by Auxin and Abscisic Acid during Senescence of Rhoeo Leaf SectionsQ43470205
Phytohormone induced changes in the nuclear RNA population of plant protoplastsQ68811146
The biochemical role of naturally occurring polyamines in nucleic acid synthesisQ71138264
RNA and protein synthesis in protoplasts isolated from tobacco leavesQ71638391
Acceleration of senescence and of the increase of chromatin-associated nucleases in excised barley leaves by abscisin II and its reversal by kinetinQ72293535
The plasma membrane of Avena coleoptile protoplastsQ83244992
Increased Activity of Chromatin-bound Ribonucleic Acid Polymerase from Soybean Hypocotyl with Spermidine and High Ionic StrengthQ83247241
P433issue4
P304page(s)570-574
P577publication date1977-10-01
P1433published inPlant PhysiologyQ3906288
P1476titleStabilization of Oat Leaf Protoplasts through Polyamine-mediated Inhibition of Senescence
P478volume60

Reverse relations

cites work (P2860)
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Q34296382Colony formation from mesophyll protoplasts of a cereal, oat
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Q83252311Dual Mechanisms in Polyamine-mediated Control of Ribonuclease Activity in Oat Leaf Protoplasts
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Q47938946Effects of Polyamines on Chlorophyll and Protein Content, Photochemical Activity, and Chloroplast Ultrastructure of Barley Leaf Discs during Senescence
Q83257985Effects of exogenous 1,3-diaminopropane and spermidine on senescence of oat leaves : I. Inhibition of protease activity, ethylene production, and chlorophyll loss as related to polyamine content
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