Extracellular ATP affects chlorophyll fluorescence of kidney bean ( Phaseolus vulgaris ) leaves through Ca2+ and H2O2-dependent mechanism
Gespeichert in:
Verfasser / Beitragende:
[H. Feng, Q. Jiao, K. Sun, L. Jia, W. Tian]
Ort, Verlag, Jahr:
2015
Enthalten in:
Photosynthetica, 53/2(2015-06-01), 201-206
Format:
Artikel (online)
Online Zugang:
| LEADER | caa a22 4500 | ||
|---|---|---|---|
| 001 | 605481199 | ||
| 003 | CHVBK | ||
| 005 | 20210128100419.0 | ||
| 007 | cr unu---uuuuu | ||
| 008 | 210128e20150601xx s 000 0 eng | ||
| 024 | 7 | 0 | |a 10.1007/s11099-015-0097-2 |2 doi |
| 035 | |a (NATIONALLICENCE)springer-10.1007/s11099-015-0097-2 | ||
| 245 | 0 | 0 | |a Extracellular ATP affects chlorophyll fluorescence of kidney bean ( Phaseolus vulgaris ) leaves through Ca2+ and H2O2-dependent mechanism |h [Elektronische Daten] |c [H. Feng, Q. Jiao, K. Sun, L. Jia, W. Tian] |
| 520 | 3 | |a Extracellular ATP (eATP) has been considered as an important extracellular compound to mediate several physiological processes in plant cells. We investigated the effects of eATP on chlorophyll (Chl) fluorescence characteristics of kidney bean (Phaseolus vulgaris) leaves. Treatment with exogenous ATP at 1 mM showed no significant effect on the maximal photochemical efficiency of PSII. However, the treatment significantly enhanced the values of the PSII operating efficiency (ΦPSII), rate of photosynthetic electron transport through PSII (ETR), and photochemical quenching (qP), while the values of the nonphotochemical quenching (qN) and quantum yield of regulated energy dissipation of PSII (YNPQ) significantly decreased. Our observations indicated that eATP stimulated the PSII photochemistry in kidney bean leaves. Similarly, the treatment with exogenous Ca2+ or H2O2 at 1 mM caused also the significant increase in ΦPSII, qP, and ETR and the significant decrease in qN and YNPQ. LaCl3 (an inhibitor of Ca2+ channels) and dimethylthiourea (a scavenger of H2O2) abolished the effects of exogenous ATP. The results suggest that the role of eATP in enhancing the PSII photochemistry could be related to a Ca2+ or H2O2 signaling pathway. | |
| 540 | |a The Institute of Experimental Botany, 2015 | ||
| 690 | 7 | |a photosynthesis |2 nationallicence | |
| 690 | 7 | |a reactive oxygen species |2 nationallicence | |
| 690 | 7 | |a signaling molecules |2 nationallicence | |
| 690 | 7 | |a DMTU : dimethylthiourea |2 nationallicence | |
| 690 | 7 | |a eATP : extracellular ATP |2 nationallicence | |
| 690 | 7 | |a ETR : the rate of photosynthetic electron transport through PSII |2 nationallicence | |
| 690 | 7 | |a Fv/Fm : the maximal photochemical efficiency of PSII |2 nationallicence | |
| 690 | 7 | |a qN : the nonphotochemical quenching |2 nationallicence | |
| 690 | 7 | |a qP : the photochemical quenching |2 nationallicence | |
| 690 | 7 | |a ROS : reactive oxygen species |2 nationallicence | |
| 690 | 7 | |a YNO : the quantum yield of nonregulated energy dissipation of PSII |2 nationallicence | |
| 690 | 7 | |a YNPQ : the quantum yield of regulated energy dissipation of PSII |2 nationallicence | |
| 690 | 7 | |a ΦPSII : the PSII operating efficiency |2 nationallicence | |
| 700 | 1 | |a Feng |D H. |u College of Life Science, Northwest Normal University, 730070, Lanzhou, China |4 aut | |
| 700 | 1 | |a Jiao |D Q. |u College of Life Science, Northwest Normal University, 730070, Lanzhou, China |4 aut | |
| 700 | 1 | |a Sun |D K. |u College of Life Science, Northwest Normal University, 730070, Lanzhou, China |4 aut | |
| 700 | 1 | |a Jia |D L. |u College of Life Science, Northwest Normal University, 730070, Lanzhou, China |4 aut | |
| 700 | 1 | |a Tian |D W. |u College of Life Science, Northwest Normal University, 730070, Lanzhou, China |4 aut | |
| 773 | 0 | |t Photosynthetica |d The Institute of Experimental Biology of the Czech Academy of Sciences |g 53/2(2015-06-01), 201-206 |x 0300-3604 |q 53:2<201 |1 2015 |2 53 |o 11099 | |
| 856 | 4 | 0 | |u https://doi.org/10.1007/s11099-015-0097-2 |q text/html |z Onlinezugriff via DOI |
| 898 | |a BK010053 |b XK010053 |c XK010000 | ||
| 900 | 7 | |a Metadata rights reserved |b Springer special CC-BY-NC licence |2 nationallicence | |
| 908 | |D 1 |a research-article |2 jats | ||
| 949 | |B NATIONALLICENCE |F NATIONALLICENCE |b NL-springer | ||
| 950 | |B NATIONALLICENCE |P 856 |E 40 |u https://doi.org/10.1007/s11099-015-0097-2 |q text/html |z Onlinezugriff via DOI | ||
| 950 | |B NATIONALLICENCE |P 700 |E 1- |a Feng |D H. |u College of Life Science, Northwest Normal University, 730070, Lanzhou, China |4 aut | ||
| 950 | |B NATIONALLICENCE |P 700 |E 1- |a Jiao |D Q. |u College of Life Science, Northwest Normal University, 730070, Lanzhou, China |4 aut | ||
| 950 | |B NATIONALLICENCE |P 700 |E 1- |a Sun |D K. |u College of Life Science, Northwest Normal University, 730070, Lanzhou, China |4 aut | ||
| 950 | |B NATIONALLICENCE |P 700 |E 1- |a Jia |D L. |u College of Life Science, Northwest Normal University, 730070, Lanzhou, China |4 aut | ||
| 950 | |B NATIONALLICENCE |P 700 |E 1- |a Tian |D W. |u College of Life Science, Northwest Normal University, 730070, Lanzhou, China |4 aut | ||
| 950 | |B NATIONALLICENCE |P 773 |E 0- |t Photosynthetica |d The Institute of Experimental Biology of the Czech Academy of Sciences |g 53/2(2015-06-01), 201-206 |x 0300-3604 |q 53:2<201 |1 2015 |2 53 |o 11099 | ||