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Expression dynamics of the pea rbcS multigene family and organ distribution of the transcripts.

We have determined the nucleotide sequence of two members (rbcS-3A and -3C) of the pea nuclear gene family encoding the small subunit (rbcS) of ribulose-1,5-bisphosphate carboxylase. Both rbcS-3A and -3C are interrupted by two introns located at the same positions as those of the other three pea rbcS genes. Compared with the other pea rbcS genes the rbcS-3C gene has the most divergent 5'- and 3'-flanking sequences while the rbcS-3A gene has a larger and highly divergent intron 1. All five pea rbcS genes are conserved in their coding regions but show considerable sequence differences in their 3'-untranslated portion. The 3' sequence divergence of the rbcS genes has allowed us to use S1 nuclease mapping procedures to compare their expression levels in different organs and during light induction. All the rbcS genes are differentially expressed in various organs of the pea plants; moreover, specific rbcS transcripts are under-represented in seeds and petals. In leaves there is a 10-fold difference between the highest and lowest specific rbcS transcript levels. By quantitating the distribution of rbcS transcripts during light, phytochrome and blue light induction of immature (etiolated), and mature (green), pea leaves, we show that the genes are differentially activated during leaf development.

Journal Article↗

Mechanisms of the light-dependent induction of cell death in tobacco plants with delayed senescence.

The relationship between leaf senescence and cell death was investigated using tobacco with delayed senescence due to auto-regulated production of cytokinin (SAG12-IPT). Although leaf senescence ultimately results in cell death, the results show that senescence and cell death can be uncoupled: in nutrient-deficient, but not in fertilized SAG12-IPT plants, necrotic lesions were detected in old, but otherwise green leaves. By contrast, wild-type leaves of the same age were yellow, but not necrotic. Chlorophyll fluorescence analysis revealed an over-reduction of the electron transport chain in old SAG12-IPT leaves, in combination with characteristic spatial patterns of minimum fluorescence (F0) quantum efficiency of open photosystem II centres (F(v)/F(m)) and non-photochemical quenching (NPQ), as determined by fluorescence imaging. The same patterns of F0, F(v)/F(m), and NPQ were induced by incubation of leaf discs from nutrient-deficient SAG12-IPT plants under illumination, but not in the dark, indicating that light-dependent reactions were responsible for the cell death. RT-PCR analysis showed that the pathogenesis-related (PR) genes PR-1b and PR-Q were strongly induced in old SAG12-IPT tobacco leaves with necrotic lesions. In addition, the ethylene-synthesis gene ACO was induced before lesions became visible in SAG12-IPT. It is proposed that over-reduction of the electron transport chain in combination with decreased electron consumption due to nutrient-deficiency led to oxidative stress, which, mediated by ethylene formation, can induce PR gene expression and hypersensitive cell death. Probably as a consequence of inefficient nutrient mobilization, flower development was prematurely aborted and reproduction thereby impaired in nutrient-deficient SAG12-IPT plants.

Cell Death↗

Characterization of a rice (Oryza sativa L.) Bowman-Birk proteinase inhibitor: tightly light regulated induction in response to cut, jasmonic acid, ethylene and protein phosphatase 2A inhibitors.

The Bowman-Birk (BB) family of proteinase inhibitors (PI), initially reported from legume seeds, and thereafter also from wounded alfalfa and maize leaves appear to be regulated in similar ways as the extensively characterized PI I and PI II family from dicots. Here, we report a first characterization of the expression profiles of a rice (Oryza sativa L. cv. Nipponbare) BBPI gene, OsBBPI, which is part of a multigene family as demonstrated by genomic Southern hybridization. OsBBPI was found to be rapidly induced in rice seedling leaf in response to cut, exogenous jasmonic acid (JA), and two potent protein phosphatase 2A (PP2A) inhibitors, cantharidin (CN) and endothall (EN), in a light/dark-, time- and dose-dependent manner; this induction was completely inhibited by cycloheximide (CHX), indicating a requirement for de novo protein synthesis in its induction. Surprisingly, dark strongly up regulated cut-, JA-, CN-, and EN-induced OsBBPI expression, with the strongest enhancement observed with JA. A simultaneous application of a serine/threonine protein kinase inhibitor staurosporine (ST) did not affect significantly the JA-, CN-, and EN-induced OsBBPI transcript. Besides JA, it was found that the ethylene generator ethephon (ET) also had an enhancing effect on OsBBPI transcript, suggesting a direct effect of ethylene on OsBBPI expression. However, a simultaneous application of salicylic acid (SA) and abscisic acid (ABA), with JA, respectively, completely blocked OsBBPI gene expression, whereas kinetin (KN) was only partially effective. To the best of our knowledge, complete inhibition of JA-induced OsBBPI expression by SA is the first report in monocots, and with ABA in plants. Taken together, these results suggest that among the phytohormones tested here, JA and ethylene play important role(s) in regulating OsBBPI expression, with an intimate interaction with light signals. Finally, that the induced OsBBPI expression follows a kinase-signaling cascade is implied by the use of PP2A inhibitors.

Abscisic Acid↗

Induction of light hydrocarbon nephropathy by p-dichlorobenzene.

In order to clarify the etiology of a dose-related increase in the incidence of tubular cell adenocarcinomas of the kidney in male rats, the nephrotoxicity of p-dichlorobenzene (p-DCB) was investigated in a subchronic study. Groups of ten male and ten female Fischer 344 rats were dosed by gavage with 0 (controls), 75, 150, 300 or 600 mg p-DCB/kg/day in corn oil. Half of the animals were sacrificed after 4 weeks and the remainder after 13 weeks. Increased urinary LDH and epithelial cell excretion and exacerbation of hyaline droplet accumulation in the cytoplasm of renal cortical cells were observed in male rats over the entire dose range investigated. Tubular single cell necrosis, dilated tubules with granular cast formation in the outer zone of the medulla, were evident in male rats after 4 and 13 weeks of treatment with doses of 150-600 mg/kg/day. In female rats there was no indication of a nephrotoxic action of p-DCB. The effects on the kidney, both in their morphological characteristics and the fact that they occur exclusively in male animals, correspond to the light hydrocarbon nephropathy observed as a result of short-term treatment with a number of aliphatic and cyclic hydrocarbons. The development of cortical renal tumors seems to be associated with this kind of kidney damage which is unique to male rats. The literature on this subject generally regards these renal effects as not predictive for man.

Acetylglucosaminidase↗

Increased basal REM sleep but no difference in dark induction or light suppression of REM sleep in flinders rats with cholinergic supersensitivity.

Increased cholinergic sensitivity in the central nervous system has been postulated to account for some of the neuroendocrine abnormalities and sleep disturbances seen in human depressives. The Flinders Sensitive Line (FSL) rats, which exhibit increased sensitivity to cholinergic agents, have been shown to have REM sleep patterns similar to those seen in depressives, including shorter REM sleep latency and increased daily percentage of REM sleep. We studied the response of FSL and control rats to brief dark pulses administered during the normal light period (which are known to stimulate REM sleep in albino rats) and to brief light pulses during the normal dark period (which suppress REM sleep in albino rats) to determine whether these responses are affected by central cholinergic hypersensitivity. FSL rats showed REM sleep patterns indistinguishable from controls during light or dark pulses, which does not support the primary involvement of cholinergic systems in this mechanism of REM sleep regulation. We also examined REM and non-REM (NREM) sleep patterns in FSL rats and their controls to determine whether they show sleep continuity disturbances or decreased sleep intensity as seen in depression. In agreement with an earlier study, we found that FSL rats had more daily REM sleep and accumulated less NREM sleep between REM bouts than controls. Duration of NREM sleep bouts, total daily NREM sleep time, and EEG amplitude of NREM sleep did not differ between FSL and control rats, suggesting that the cholinergic abnormalities in FSL rats do not produce substantial NREM sleep changes.

Animals↗

Phase-dependent induction by light of rat Clock gene expression in the suprachiasmatic nucleus.

To clarify the role of Clock in the photic signal transduction of rat circadian clock, we cloned and sequenced rat Clock and examined the effect of a single light pulse on the Clock mRNA expression in the suprachiasmatic nucleus (SCN) by in situ hybridization. Rats were exposed to a 30 min light pulse ( approximately 300 lx) at one of six circadian phases in constant darkness (DD), and sacrificed 60 min after the light on. In the rats without light exposure, the mRNA level in the SCN was high at ZT (Zeitgeber time) 6 and low at ZT 18 and 22. Light exposure increased Clock mRNA level in the SCN in phase dependent manner. The mRNA level was significantly increased during the subjective night (ZT10-22). The light had no effect on the mRNA level during the subjective day (ZT2 and 6). The Clock mRNA was also detected in the piriform cortex (PC), and increased by light at ZT14. These results suggest that Clock transcription in the SCN is involved in the photic signal transduction of circadian clock in rats.

ARNTL Transcription Factors↗

Suppression of antibody responses to topically applied antigens by ultraviolet light irradiation. Induction of phototolerance.

C3Hf/HeN or BALB/c mice, exposed to acute ultraviolet (UV) irradiation and skin-sensitized through the irradiated skin site with soluble protein antigens, exhibit humoral tolerance to subsequent systemic challenge with antigen. We have termed this phenomenon "phototolerance" (PT). With the doses of UV radiation used, PT induction is restricted to the irradiated skin site and is observed only if sensitization is performed via the cutaneous route. PT is antigen specific and operates at the afferent level of the immune response. While single PT induction regimens result in transient humoral suppression, multiple inductions before each systemic challenge can maintain the response at low levels. The capacity to induce PT to a variety of soluble protein antigens may have potentially important clinical applications.

Animals↗

Effect of light on growth and sporulation of Aspergillus ornatus.

Aspergillus ornatus produces conidia when grown in continuous light but few, if any, when grown in continuous darkness. A minimum of 3 h of exposure to light is needed for induction. Light inhibits growth, glucose uptake and phosphorylation but does not inhibit the uptake of lysine. A low molecular weight substance produced or accumulating in the light inhibits the phosphorylation of glucose. It is suggested that the inhibition of glucose uptake and phosphorylation precedes conidiation and that conidiation may be the result of starvation caused by this light-induced inhibition.

Amino Acids↗

Rubisco small subunit, chlorophyll a/b-binding protein and sucrose:fructan-6-fructosyl transferase gene expression and sugar status in single barley leaf cells in situ. Cell type specificity and induction by light.

We describe a highly efficient two-step single-cell reverse transcriptase-polymerase chain reaction technique for analyzing gene expression at the single-cell level. Good reproducibility and a linear dose response indicated that the technique has high specificity and sensitivity for detection and quantification of rare RNA. Actin could be used as an internal standard. The expression of message for Rubisco small subunit (RbcS), chlorophyll a/b-binding protein (Cab), sucrose (Suc):fructan-6-fructosyl transferase (6-SFT), and Actin were measured in individual photosynthetic cells of the barley (Hordeum vulgare) leaf. Only Actin was found in the non-photosynthetic epidermal cells. Cab, RbcS, and 6-SFT genes were expressed at a low level in mesophyll and parenchymatous bundle sheath (BS) cells when sampled from plants held in dark for 40 h. Expression increased considerably after illumination. The amount of 6-SFT, Cab, and RbcS transcript increased more in mesophyll cells than in the parenchymatous BS cells. The difference may be caused by different chloroplast structure and posttranscriptional control in mesophyll and BS cells. When similar single-cell samples were assayed for Suc, glucose, and fructan, there was high correlation between 6-SFT gene expression and Suc and glucose concentrations. This is consistent with Suc concentration being the trigger for transcription. Together with earlier demonstrations that the mesophyll cells have a higher sugar threshold for fructan polymerization, our data may indicate separate control of transcription and enzyme activity. Values for the sugar concentrations of the individual cell types are reported.

Carbohydrate Metabolism↗

Messenger RNA-controlled Increase of Phenylalanine Ammonia-Lyase Activity in Parsley: Light-Independent Induction by Dilution of Cell Suspension Cultures into Water.

A specific antiserum, raised against purified phenylalanine ammonialyase from irradiated cell suspension cultures of parsley (Petroselinum hortense Hoffm.), was used to compare the enzyme species induced either by dilution or by irradiation of the cell suspensions, to investigate the effect of dilution on the rate of synthesis of the enzyme protein in vivo, and to analyze the changes in specific activity of polyribosomal mRNA for the enzyme subunits in vitro. The mRNA activity in vitro was measured by translation of the polyribosomal RNA in a rabbit reticulocyte lysate.The results of immunodiffusion assays indicated that dilution and irradiation of the cell suspensions induced immunologically identical molecular species of phenylalanine ammonia-lyase. Dilution resulted in a large but short term increase in the rate of synthesis of the enzyme. Highest rates of synthesis were reached after 5 to 6 hours, and were followed by a rapid decline. The curves obtained for the changes in the rate of enzyme synthesis, both in vivo and in vitro, coincided with the curve for changes in the rate of appearance of catalytically active enzyme, as calculated from the observed changes in enzyme activity. These results suggested that the changes in enzyme activity were caused by corresponding changes in the amount of enzyme-specific polyribosomal mRNA.The dilution of cell cultures had no significant effect on the total rate of incorporation of radioactivity into protein in vivo or on the general template activity of the polyribosomal RNA in vitro throughout at least 25 hours.

Journal Article↗

Phase shifting the retinal circadian clock: xPer2 mRNA induction by light and dopamine.

A circadian clock is located in the retinal photoreceptors of the African clawed frog Xenopus laevis. These photoreceptor clocks are thought to govern a wide variety of output rhythms, including melatonin release and gene expression. Both light and dopamine phase shift the retinal clock in a phase-dependent manner. Two homologs of the Drosophila period gene have been cloned in Xenopus, and one of these (xPer2) is acutely regulated by light. Light and dopamine induce xPer2 mRNA in a similar manner. In addition, the increase of xPer2 mRNA in response to light and dopamine is the same at all times of day tested. In contrast, xPer1 mRNA exhibits circadian oscillations but is relatively insensitive to phase-shifting treatments of light or dopamine. Our data suggest that xPer2 functions as the molecular link between the light/dark cycle and the circadian clock.

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben↗

Selective induction of light chain synthesis in cultures of blood lymphocytes from patients with IgG myelomatosis.

In the present study evidence is provided that neoplastic B cells from the blood from four of 24 patients with myelomatosis were activated selectively with polyclonal B cell mitogens. In three of these patients the activated cells produced light chains without heavy chains; of these, two patients had IgGK paraproteins and one had free lambda light chain disease. The ratio of kappa-expressing to lambda-expressing B cells in the initial blood B cell preparations was within the range for healthy controls for all four patients where neoplastic B cells were selectively activated. It is concluded that in some patients with myelomatosis the neoplastic clone is a mosaic of: (1) cells capable of synthesizing both light and heavy chains with (2) cells producing light chains only.

Adult↗