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Fluorescence quenching during photosynthesis and photoinhibition of Ulva rotundata blid.

Publication ,  Journal Article
Osmond, CB; Ramus, J; Levavasseur, G; Franklin, LA; Henley, WJ
Published in: Planta
1993

The relationships between photoinhibition and photoprotection in high and low-light-grown Ulva were examined by a combination of chlorophyll-fluorescence-monitoring techniques. Tissues were exposed to a computer-controlled sequence of 5-min exposures to red light, followed by 5-min darkness, with stepwise increases in photon flux. Coefficients of chlorophyll fluorescence quenching (1-qP and NPQ) were calculated following a saturating pulse of white light near the end of each 5-min light treatment. Dark-adapted chlorophyll fluorescence parameters (F0 and FV/FM) were calculated from a saturating pulse at the end of each 5-min dark period. Low-light-grown Ulva showed consistently higher 1-qP, i.e. higher reduction status of Q (high primary acceptor of photosystem II), and lower capacity for nonphotochemical quenching (NPQ) at saturating light than did high-light-grown plants. Consequently, low-light plants rapidly displayed photoinhibitory damage (increased F0) at light saturation in seawater. Removal of dissolved inorganic carbon from seawater also led to photoinhibitory damage of high-light-grown Ulva at light saturation, and addition of saturating amounts of dissolved inorganic carbon protected low-light-grown plants against photoinhibitory damage. A large part of NPQ was abolished by treatment with 3 mM dithiothreitol and the processes so inhibited were evidently photoprotective, because dithiothreitol treatment accelerated photoinhibitory damage in both low- and high-light-grown Ulva. The extent of photoinhibitory damage in Ulva was exacerbated by treatment with chloramphenicol (1 mM) without much effect on chlorophyll-quenching parameters, evidently because this inhibitor of chloroplast protein synthesis reduced the rate of repair processes. © 1993 Springer-Verlag.

Duke Scholars

Published In

Planta

DOI

ISSN

0032-0935

Publication Date

1993

Volume

190

Issue

1

Start / End Page

97 / 106

Related Subject Headings

  • Plant Biology & Botany
  • 3108 Plant biology
  • 3001 Agricultural biotechnology
  • 0703 Crop and Pasture Production
  • 0607 Plant Biology
 

Citation

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Osmond, C. B., Ramus, J., Levavasseur, G., Franklin, L. A., & Henley, W. J. (1993). Fluorescence quenching during photosynthesis and photoinhibition of Ulva rotundata blid. Planta, 190(1), 97–106. https://doi.org/10.1007/BF00195680
Osmond, C. B., J. Ramus, G. Levavasseur, L. A. Franklin, and W. J. Henley. “Fluorescence quenching during photosynthesis and photoinhibition of Ulva rotundata blid.Planta 190, no. 1 (1993): 97–106. https://doi.org/10.1007/BF00195680.
Osmond CB, Ramus J, Levavasseur G, Franklin LA, Henley WJ. Fluorescence quenching during photosynthesis and photoinhibition of Ulva rotundata blid. Planta. 1993;190(1):97–106.
Osmond, C. B., et al. “Fluorescence quenching during photosynthesis and photoinhibition of Ulva rotundata blid.Planta, vol. 190, no. 1, 1993, pp. 97–106. Scival, doi:10.1007/BF00195680.
Osmond CB, Ramus J, Levavasseur G, Franklin LA, Henley WJ. Fluorescence quenching during photosynthesis and photoinhibition of Ulva rotundata blid. Planta. 1993;190(1):97–106.
Journal cover image

Published In

Planta

DOI

ISSN

0032-0935

Publication Date

1993

Volume

190

Issue

1

Start / End Page

97 / 106

Related Subject Headings

  • Plant Biology & Botany
  • 3108 Plant biology
  • 3001 Agricultural biotechnology
  • 0703 Crop and Pasture Production
  • 0607 Plant Biology