Phytochrome control of RNA levels in developing pea and mung-bean leaves
- 1 August 1983
- journal article
- research article
- Published by Springer Nature in Planta
- Vol. 158 (6) , 487-500
- https://doi.org/10.1007/bf00397240
Abstract
We have examined phytochrome effects on the abundance of transcripts from several nuclear and chloroplast genes in buds of dark-grown pea seedlings and primary leaves of dark-grown mung-bean seedlings. Probes for nuclear-coded RNAs were selected from a library of cDNA clones and included those corresponding to the small subunit (SS) of ribulosebisphosphate carboxylase and a chlorophyll a/b binding protein (AB). Transcripts from chloroplast genes for RuBP carboxylase large subunit (LS) and a 32,000-dalton photosystem II polypeptide (PII) were assayed with cloned fragments of the chloroplast genome. In addition, we present data on transcripts from a number of other nuclear genes of unknown function, several of which change in abundance during light-induced development. Transcript levels were measured as a proportion of total RNA by a dot blot assay in which RNA from different tissues or stages is fixed to nitrocellulose and hybridized with 32P-labeled probes prepared from cloned DNAs. Several patterns of induction can be seen. For example, although both SS and AB RNAs show positive, red/far-red reversible responses in both pea and mung bean, in pea buds the induction ratio for SS RNA is much higher than that for AB RNA, while just the reverse is true for mung-bean leaves. In addition, treatment with lowfluence red light produces full induction of the pea AB RNA, while SS RNA in the same tissue does not reach a maximum steady-state level until after about 24 h of supplementary high-intensity white light. In pea buds, chloroplast genes (LS, PII) also show clear responses to phytochrome, as measured by the steady-state levels of their RNA products. Chloroplast DNA levels (as a fraction of the total cellular DNA) show the same response pattern, which may indicate that in peas many of the light effects we see are related to a general stimulation of chloroplast development. In mung beans, the levels of plastid DNA and RNA are already quite high in the leaves of 7-d dark-grown seedlings, and light effects are much less pronounced. The results are consistent with the notion that chloroplast development is arrested at a later stage in dark-grown mung-bean leaves than in etiolated pea buds.This publication has 47 references indexed in Scilit:
- Coordinate light‐induction of two mRNAs, encoded in nuclei and chloroplasts, of ribulose 1,5‐bisphosphate carboxylase/oxygenaseFEBS Letters, 1982
- The Protochlorophyllide Holochrome of Barley (Hordeum Vulgare L.)European Journal of Biochemistry, 1981
- White Light Effects on the mRNA for the Light-Harvesting Chlorophyll a/b-Protein in Lemna gibba L. G-3Plant Physiology, 1981
- Ancient repeated sequences in the pea and mung bean genomes and implications for genome evolutionJournal of Molecular Evolution, 1981
- Phytochrome Responses to End-of-Day Irradiations in Light-grown Corn Grown in the Presence and Absence of Sandoz 9789Plant Physiology, 1980
- Light‐Induced Appearance of Polysomal Poly(A)‐Rich Messenger RNA during Greening of Barley PlantsEuropean Journal of Biochemistry, 1980
- Reverse transcription of 25S soybean ribosomal RNA in the absence of exogenous primerBiochemical and Biophysical Research Communications, 1980
- Sequence complexity of polyadenylated ribonucleic acid from soybean suspension culture cellsBiochemistry, 1979
- Ribonucleic acid isolated by cesium chloride centrifugationBiochemistry, 1974
- Events surrounding the early development of Euglena chloroplastsDevelopmental Biology, 1972