Sensitivity of photosystem 2 of Antarctic lichens to high irradiance stress:: Fluorometric study of fruticose (Usnea antarctica) and foliose (Umbilicaria decussata) species

被引:24
作者
Barták, M [1 ]
Vráblíková, H [1 ]
Hájek, J [1 ]
机构
[1] Masaryk Univ, Fac Sci, Dept Plant Physiol & Anat, CZ-61137 Brno, Czech Republic
关键词
chlorophyll fluorescence; low temperature; photoinhibition; photosynthesis; non-photochemical quenching; recovery;
D O I
10.1023/B:PHOT.0000027513.90599.ad
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Two lichen species collected in maritime Antarctica (King George Island) were exposed under laboratory conditions to excess irradiance to evaluate the response of photosystem 2 (PS2). The response was measured on fully hydrated lichen thalli at 5 C by means of a modulated fluorometer using chlorophyll (Chl) fluorescence induction curve supplemented with analysis of quenching mechanisms. Chl fluorescence parameters [i.e. ratio of variable to maximum Chl fluorescence (Fv/FM), quantum yield of PS2 photochemical reactions (Phi(2)), quenching coefficients] were evaluated before and several times after exposition to high irradiance in order to characterise the extent of photoinhibition, fast and slow phase of recovery. Strong irradiance (2 000 mumol m(-2) s(-1)) caused high degree of photoinhibition, particularly higher in fruticose (Usnea antarctica) than in foliose (Umbilicaria decussata) lichen species. Fast phase of recovery from photoinhibition, corresponding to regulatory mechanisms of PS2, was more apparent in U. decussata and Phi(2) than in U. antarctica and F-V/F-M and Phi(2) within 40 min after photoinhibitory treatment. It was followed by a slow phase lasting several hours, corresponding to repair and re-synthesis processes. After photoinhibitory treatment, recovery of non-photochemical quenching (NPQ) was faster and more pronounced in U. decussata than in U. antarctica. Significant differences were found between the two species in the rate of recovery in fast- (q(E)) and slow-recovering (q(T+1)) component of NPQ.
引用
收藏
页码:497 / 504
页数:8
相关论文
共 39 条
[1]   Violaxanthin accessibility and temperature dependency for de-epoxidation in spinach thylakoid membranes [J].
Arvidsson, PO ;
Carlsson, M ;
Stefansson, H ;
Albertsson, PA ;
Akerlund, HE .
PHOTOSYNTHESIS RESEARCH, 1997, 52 (01) :39-48
[2]   The arrangement of chloroplasts in cells influences the reabsorption of chlorophyll fluorescence emission.: The effect of desiccation on the chlorophyll fluorescence spectra of Rhizomnium punctatum leaves [J].
Bartosková, H ;
Naus, J ;
Vykruta, M .
PHOTOSYNTHESIS RESEARCH, 1999, 62 (2-3) :251-260
[3]   ROLE OF THE XANTHOPHYLL CYCLE IN PHOTOPROTECTION ELUCIDATED BY MEASUREMENTS OF LIGHT-INDUCED ABSORBENCY CHANGES, FLUORESCENCE AND PHOTOSYNTHESIS IN LEAVES OF HEDERA-CANARIENSIS [J].
BILGER, W ;
BJORKMAN, O .
PHOTOSYNTHESIS RESEARCH, 1990, 25 (03) :173-185
[4]   ENERGY-DEPENDENT QUENCHING OF DARK-LEVEL CHLOROPHYLL FLUORESCENCE IN INTACT LEAVES [J].
BILGER, W ;
SCHREIBER, U .
PHOTOSYNTHESIS RESEARCH, 1986, 10 (03) :303-308
[5]   INHIBITION OF ENERGY-TRANSFER TO PHOTOSYSTEM-II IN LICHENS BY DEHYDRATION - DIFFERENT PROPERTIES OF REVERSIBILITY WITH GREEN AND BLUE-GREEN PHYCOBIONTS [J].
BILGER, W ;
RIMKE, S ;
SCHREIBER, U ;
LANGE, OL .
JOURNAL OF PLANT PHYSIOLOGY, 1989, 134 (03) :261-268
[6]   Energy dissipation in photosynthesis: Does the quenching of chlorophyll fluorescence originate from antenna complexes of photosystem II or from the reaction center? [J].
Bukhov, NG ;
Heber, U ;
Wiese, C ;
Shuvalov, VA .
PLANTA, 2001, 212 (5-6) :749-758
[7]   Changes in in vivo chlorophyll fluorescence quenching in lichen thalli as a function of water content and suggestion of zeaxanthin-associated photoprotection [J].
Calatayud, A ;
Deltoro, VI ;
Barreno, E ;
delValleTascon, S .
PHYSIOLOGIA PLANTARUM, 1997, 101 (01) :93-102
[8]   DIFFERENCES IN THE SUSCEPTIBILITY TO LIGHT STRESS IN 2 LICHENS FORMING A PHYCOSYMBIODEME, ONE PARTNER POSSESSING AND ONE LACKING THE XANTHOPHYLL CYCLE [J].
DEMMIGADAMS, B ;
ADAMS, WW ;
GREEN, TGA ;
CZYGAN, FC ;
LANGE, OL .
OECOLOGIA, 1990, 84 (04) :451-456
[9]  
DEMMIGADAMS B, 1990, PLANTA, V180, P400, DOI 10.1007/BF00198792
[10]   Dynamics of xanthophyll-cycle activity in different antenna subcomplexes in the photosynthetic membranes of higher plants -: The relationship between zeaxanthin conversion and nonphotochemical fluorescence quenching [J].
Färber, A ;
Young, AJ ;
Ruban, AV ;
Horton, P ;
Jahns, P .
PLANT PHYSIOLOGY, 1997, 115 (04) :1609-1618