HYDROSTATIC PRESSURE AND TEMPERATURE IN RELATION TO STIMULATION AND CYCLOSIS IN NITELLA FLEXILIS

Nitella flexilis cells are not stimulated to "shock stoppage" of cyclosis by suddenly evacuating the air over the water or on sudden readmission of air, or on suddenly striking a piston in the water-filled chamber in which they are kept with a ball whose energy is 7.6 joules, provided the...

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Published in:Journal of General Physiology
Main Author: Harvey, E. Newton
Format: Article in Journal/Newspaper
Language:English
Published: Rockefeller University Press 1942
Subjects:
Online Access:http://dx.doi.org/10.1085/jgp.25.6.855
http://rupress.org/jgp/article-pdf/25/6/855/1239384/855.pdf
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spelling crrockefelleruni:10.1085/jgp.25.6.855 2024-06-02T08:10:48+00:00 HYDROSTATIC PRESSURE AND TEMPERATURE IN RELATION TO STIMULATION AND CYCLOSIS IN NITELLA FLEXILIS Harvey, E. Newton 1942 http://dx.doi.org/10.1085/jgp.25.6.855 http://rupress.org/jgp/article-pdf/25/6/855/1239384/855.pdf en eng Rockefeller University Press Journal of General Physiology volume 25, issue 6, page 855-863 ISSN 1540-7748 0022-1295 journal-article 1942 crrockefelleruni https://doi.org/10.1085/jgp.25.6.855 2024-05-07T14:15:42Z Nitella flexilis cells are not stimulated to "shock stoppage" of cyclosis by suddenly evacuating the air over the water or on sudden readmission of air, or on suddenly striking a piston in the water-filled chamber in which they are kept with a ball whose energy is 7.6 joules, provided the Nitella cell is not moved by currents against the side of the chamber. Sudden increases in hydrostatic pressure from zero to 1000 lbs. or 0 to 5000 lbs. per square inch or 5000 to 9000 lbs. per square inch usually do not stimulate to "shock stoppage" of cyclosis, but some cells are stimulated. Sudden decreases of pressure are more likely to stimulate, again with variation depending on the cell. In the absence of stimulation, the cyclosis velocity at 23°C. slows as the pressure is increased in steps of 1000 lbs. per square inch. In some cells a regular slowing is observed, in others there is little slowing until 4000 to 6000 lbs. per square inch, when a rapid slowing appears, with only 50 per cent to 30 per cent of the original velocity at 9000 lbs. per square inch. The cyclosis does not completely stop at 10000 lbs. per square inch. The pressure effect is reversible unless the cells have been kept too long at the high pressure. At low temperatures (10°C.) and at temperatures near and above (32°–38°C.) the optimum temperature for maximum cyclosis (35–36°C.) pressures of 3000 to 6000 lbs. per square inch cause only further slowing of cyclosis, with no reversal of the temperature effect, such as has been observed in pressure-temperature studies on the luminescence of luminous bacteria. Sudden increase in temperature may cause shock stoppage of cyclosis as well as sudden decrease in temperature. Article in Journal/Newspaper Nitella flexilis Rockefeller University Press Journal of General Physiology 25 6 855 863
institution Open Polar
collection Rockefeller University Press
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language English
description Nitella flexilis cells are not stimulated to "shock stoppage" of cyclosis by suddenly evacuating the air over the water or on sudden readmission of air, or on suddenly striking a piston in the water-filled chamber in which they are kept with a ball whose energy is 7.6 joules, provided the Nitella cell is not moved by currents against the side of the chamber. Sudden increases in hydrostatic pressure from zero to 1000 lbs. or 0 to 5000 lbs. per square inch or 5000 to 9000 lbs. per square inch usually do not stimulate to "shock stoppage" of cyclosis, but some cells are stimulated. Sudden decreases of pressure are more likely to stimulate, again with variation depending on the cell. In the absence of stimulation, the cyclosis velocity at 23°C. slows as the pressure is increased in steps of 1000 lbs. per square inch. In some cells a regular slowing is observed, in others there is little slowing until 4000 to 6000 lbs. per square inch, when a rapid slowing appears, with only 50 per cent to 30 per cent of the original velocity at 9000 lbs. per square inch. The cyclosis does not completely stop at 10000 lbs. per square inch. The pressure effect is reversible unless the cells have been kept too long at the high pressure. At low temperatures (10°C.) and at temperatures near and above (32°–38°C.) the optimum temperature for maximum cyclosis (35–36°C.) pressures of 3000 to 6000 lbs. per square inch cause only further slowing of cyclosis, with no reversal of the temperature effect, such as has been observed in pressure-temperature studies on the luminescence of luminous bacteria. Sudden increase in temperature may cause shock stoppage of cyclosis as well as sudden decrease in temperature.
format Article in Journal/Newspaper
author Harvey, E. Newton
spellingShingle Harvey, E. Newton
HYDROSTATIC PRESSURE AND TEMPERATURE IN RELATION TO STIMULATION AND CYCLOSIS IN NITELLA FLEXILIS
author_facet Harvey, E. Newton
author_sort Harvey, E. Newton
title HYDROSTATIC PRESSURE AND TEMPERATURE IN RELATION TO STIMULATION AND CYCLOSIS IN NITELLA FLEXILIS
title_short HYDROSTATIC PRESSURE AND TEMPERATURE IN RELATION TO STIMULATION AND CYCLOSIS IN NITELLA FLEXILIS
title_full HYDROSTATIC PRESSURE AND TEMPERATURE IN RELATION TO STIMULATION AND CYCLOSIS IN NITELLA FLEXILIS
title_fullStr HYDROSTATIC PRESSURE AND TEMPERATURE IN RELATION TO STIMULATION AND CYCLOSIS IN NITELLA FLEXILIS
title_full_unstemmed HYDROSTATIC PRESSURE AND TEMPERATURE IN RELATION TO STIMULATION AND CYCLOSIS IN NITELLA FLEXILIS
title_sort hydrostatic pressure and temperature in relation to stimulation and cyclosis in nitella flexilis
publisher Rockefeller University Press
publishDate 1942
url http://dx.doi.org/10.1085/jgp.25.6.855
http://rupress.org/jgp/article-pdf/25/6/855/1239384/855.pdf
genre Nitella flexilis
genre_facet Nitella flexilis
op_source Journal of General Physiology
volume 25, issue 6, page 855-863
ISSN 1540-7748 0022-1295
op_doi https://doi.org/10.1085/jgp.25.6.855
container_title Journal of General Physiology
container_volume 25
container_issue 6
container_start_page 855
op_container_end_page 863
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