CHARACTERIZATION OF THE XANTHOPHYLL CYCLE AND OTHER PHOTOSYNTHETIC PIGMENT CHANGES INDUCED BY IRON-DEFICIENCY IN SUGAR-BEET (BETA-VULGARIS L)

被引:99
作者
MORALES, F [1 ]
ABADIA, A [1 ]
ABADIA, J [1 ]
机构
[1] CSIC,DEPT PLANT NUTR,AULA DEI EXPTL STN,APDO 202,E-50080 ZARAGOZA,SPAIN
关键词
D O I
10.1104/pp.94.2.607
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
In this work we characterize the changes induced by iron deficiency in the pigment composition of sugar beet (Beta vulgaris L.) leaves. When sugar beet plants were grown hydroponically under limited iron supply, neoxanthin and β-carotene decreased concomitantly with chlorophyll a, whereas lutein and the carotenoids within the xanthophyll cycle were less affected. Iron deficiency caused major increases in the lutein/chlorophyll a and xanthophyll cycle pigments/chlorophyll a molar ratios. Xanthophyll cycle carotenoids in Fe-deficient plants underwent epoxidations and de-epoxidations in response to ambient light conditions. In dark adapted Fe-deficient plants most of the xanthophyll cycle pigment pool was in the epoxidated form violaxanthin. We show, both by HPLC and by in vivo 505 nanometers absorbance changes, that in Fe deficient plants and in response to light, the de-epoxidated forms antheraxanthin and zeaxanthin were rapidly formed at the expense of violaxanthin. Several hours after returning to dark, the xanthophyll cycle was shifted again toward violaxanthin. The ratio of variable to maximum chlorophyll fluorescence from intact leaves was decreased by iron deficiency. However, in iron deficient leaves this ratio was little affected by light conditions which displace the xanthophyll cycle toward epoxidation or de-epoxidation. This suggests that the functioning of the xanthophyll cycle is not necessarily linked to protection against excess light input.
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页码:607 / 613
页数:7
相关论文
共 18 条
[1]  
ABADIA A, 1989, PLANT PHYSIOL BIOCH, V27, P679
[2]   PHOTOSYNTHETIC PIGMENTS AND MINERAL-COMPOSITION OF IRON DEFICIENT PEAR LEAVES [J].
ABADIA, A ;
SANZ, M ;
RIVAS, JD ;
ABADIA, J .
JOURNAL OF PLANT NUTRITION, 1989, 12 (07) :827-838
[3]   LIGHT-INDUCED SPECTRAL ABSORBANCE CHANGES IN RELATION TO PHOTOSYNTHESIS AND THE EPOXIDATION STATE OF XANTHOPHYLL CYCLE COMPONENTS IN COTTON LEAVES [J].
BILGER, W ;
BJORKMAN, O ;
THAYER, SS .
PLANT PHYSIOLOGY, 1989, 91 (02) :542-551
[4]  
BOLLEJONES EW, 1953, PLANT SOIL, V1, P87
[5]   A NEW REVERSED PHASE-HPLC METHOD RESOLVING ALL MAJOR HIGHER-PLANT PHOTOSYNTHETIC PIGMENTS [J].
DELASRIVAS, J ;
ABADIA, A ;
ABADIA, J .
PLANT PHYSIOLOGY, 1989, 91 (01) :190-192
[6]   PHOTOINHIBITION AND ZEAXANTHIN FORMATION IN INTACT LEAVES - A POSSIBLE ROLE OF THE XANTHOPHYLL CYCLE IN THE DISSIPATION OF EXCESS LIGHT ENERGY [J].
DEMMIG, B ;
WINTER, K ;
KRUGER, A ;
CZYGAN, FC .
PLANT PHYSIOLOGY, 1987, 84 (02) :218-224
[7]   ZEAXANTHIN AND THE HEAT DISSIPATION OF EXCESS LIGHT ENERGY IN NERIUM-OLEANDER EXPOSED TO A COMBINATION OF HIGH LIGHT AND WATER-STRESS [J].
DEMMIG, B ;
WINTER, K ;
KRUGER, A ;
CZYGAN, FC .
PLANT PHYSIOLOGY, 1988, 87 (01) :17-24
[8]   ZEAXANTHIN AND THE INDUCTION AND RELAXATION KINETICS OF THE DISSIPATION OF EXCESS EXCITATION-ENERGY IN LEAVES IN 2-PERCENT O2, 0-PERCENT CO2 [J].
DEMMIGADAMS, B ;
WINTER, K ;
KRUGER, A ;
CZYGAN, FC .
PLANT PHYSIOLOGY, 1989, 90 (03) :887-893
[9]   ZEAXANTHIN SYNTHESIS, ENERGY-DISSIPATION, AND PHOTOPROTECTION OF PHOTOSYSTEM-II AT CHILLING TEMPERATURES [J].
DEMMIGADAMS, B ;
WINTER, K ;
KRUGER, A ;
CZYGAN, FC .
PLANT PHYSIOLOGY, 1989, 90 (03) :894-898
[10]  
FOYER CH, 1989, PLANT PHYSIOL BIOCH, V27, P751