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R Hák

Publications and source records attributed to R Hák.

3 recordsLinked to original sources

Frequent detection of reviraemia in ducks persistently infected with avian leukosis retroviruses.

Ducks intraembryonally infected with avian leukosis viruses of subgroup C (ALV-C) were followed for a long period (up to 6.8 years), and the viraemia and production of virus-neutralizing antibodies were measured. In three independent experiments comprising ducks inoculated with uncloned and/or molecularly cloned ALV-C, we found that after the elimination of primary post-hatching viraemia, reviraemia could be detected in 60-70% of infected animals. Based on the course of viraemia, the individual ducks were assigned to four different groups: Group I (no reviraemia), Group II (one transient reviraemic period), Group III (one persistent reviraemic period), Group IV (fluctuating reviraemia). In comparison to sera from ducks included in Group I and/or II, a significant decrease in neutralizing activity of sera from animals comprised in Group III and/or IV was observed. Two out of four reviraemic viruses were not neutralized by antiserum against ALV-C, instead their infectivity was enhanced. Long-term follow-up of the cell-associated virus revealed that its rescuability by cocultivation with chicken embryo fibroblasts fluctuated in about 50% of animals. In the reviraemic phase of infection, integrated proviruses could be detected by Southern blotting in a majority of tissues examined. Our data document that many features recognized in lentiviruses are valid also for oncoviruses transmitted to heterologous hosts and substantiate further the suitability of ALV-C-infected ducks as a model for studying persistent retroviral infection.

Animals↗

High rate of morphological reversion in tumor cell line H-19 associated with permanent transcriptional suppression of the LTR, v-src, LTR provirus.

The highly malignant line of morphologically transformed H-19 hamster tumor cells that harbor a single LTR, v-src, LTR provirus segregates morphologically flat revertants at the rate of 1.4 to 2.4 x 10(-3)/cell/cycle. Revertants behave like almost nonmalignant cells; they keep the provirus within an unaltered junction DNA fragment. However, the provirus is methylated, permanently transcriptionally silent, and not rescuable. Using the polymerase chain reaction, we have synthesized the whole proviral structure from two revertants and established that the left-hand long terminal repeats assuring transcription remained structurally intact. Moreover, the cloned proviral DNAs from three revertants were shown to produce tumors in chickens. The unusually high reversion rate together with the finding of structural integrity of proviral transcriptional signals in revertants indicate strongly that the reversion has been mediated by cell-regulatory mechanisms.

Animals↗

Decrease of the chlorophyll fluorescence ratio F690/F730 during greening and development of leaves.

Using the two-wavelength chlorophyll fluorometer the fluorescence induction kinetics (Kautsky effect) were measured simultaneously in the 690 nm and 730 nm region for ten common tree species during the greening period (April to July). The chlorophyll-fluorescence ratio F690/F730 (i.e. ratio of fluorescence intensity at the two maxima near 690 and 730 nm) was calculated from the laser-induced induction kinetics (He/Ne-laser 632.8 nm) at the fluorescence maximum and the steady state. The ratio F690/F730 decreases with increasing chlorophyll content of developing leaves. Its dependence on the chlorophyll content can be fairly well expressed by a power function which has a general validity for leaves, pigment extracts and chloroplast suspensions. The ratio F690/F730 is somewhat higher at maximum (fm) than at steady-state fluorescence (fs), but there is a very good correlation between both values. The ratio F690/F730 is a good indicator of the chlorophyll content and can be used as a non-destructive measure of the chlorophyll content of leaves. It also appears to be a suitable fluorescence parameter in the future remote sensing of the physiological state of the vegetation by laser-equipped airborne systems.

Chlorophyll↗