Degrees of crassulacean acid metabolism in tropical epiphytic and lithophytic ferns

被引:56
作者
Holtum, JAM
Winter, K
机构
[1] Smithsonian Trop Res Inst, Balboa, Panama
[2] James Cook Univ N Queensland, Sch Trop Biol, Dept Trop Plant Sci, Townsville, Qld 4811, Australia
来源
AUSTRALIAN JOURNAL OF PLANT PHYSIOLOGY | 1999年 / 26卷 / 08期
关键词
crassulacean acid metabolism; CAM; ferns; tropical epiphyte; lithophyte;
D O I
10.1071/PP99001
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Crassulacean acid metabolism (CAM) was observed in three species of tropical ferns, the epiphytes Microsorium punctatum and Polypodium crassifolium and the lithophyte Platycerium veitchii. Polypodium crassifolium and P. veitchii exhibited characteristics of weak CAM. Although no net nocturnal CO2 uptake was observed, the presence of CAM was inferred from nocturnal increases in titratable acidity of 4.7 and 4.1 mu equiv (g fr wt)(-1) respectively, a reduction in the rates of net CO2 evolution during the first half of the dark period, and the presence of a CAM-like decrease in net CO2 uptake during the early light period. In M. punctatum net CO2 uptake during the first half of the dark period was accompanied by an increase in titratable acidity of 39.2 mu equiv (g fr wt) -1 and a pronounced reduction in net CO2 uptake during the early light period. When water was withheld from P. crassifolium and M. punctatum, net CO2 uptake during the light was reduced markedly but there was no change in the extent or patterns of CO2 exchange in the dark. As a consequence, the proportion of carbon gained due to CO2 fixation in the dark increased from 2.8 and 10% to 63.5 and 49.3%, respectively (100% being net CO2 uptake during the light plus the estimated CO2 uptake during the dark). After 9 days without added water, dark CO2 uptake was responsible for the maintenance of a net 24 h carbon gain in P. crassifolium. Platycerium veitchii, P. crassifolium and M. punctatum exhibited carbon isotope ratios of between -25.9 and -22.6 parts per thousand indicating that carbon isotope ratios may not, by themselves, be sufficient for the identification of weak CAM. We suggest that CAM may be more prevalent in tropical epiphytic and lithophytic ferns than currently envisaged.
引用
收藏
页码:749 / 757
页数:9
相关论文
共 33 条
[21]  
OSMOND CB, 1999, PLANT CARBOHYDRATE B, P183
[22]   Ecophysiology of the C3-CAM intermediate Clusia minor L. in Trinidad:: seasonal and short-term photosynthetic characteristics of sun and shade leaves [J].
Roberts, A ;
Borland, AM ;
Maxwell, K ;
Griffiths, H .
JOURNAL OF EXPERIMENTAL BOTANY, 1998, 49 (326) :1563-1573
[24]   High photosynthetic capacity in a shade-tolerant Crassulacean acid metabolism plant - Implications for sunfleck use, nonphotochemical energy dissipation, and susceptibility to photoinhibition [J].
Skillman, JB ;
Winter, K .
PLANT PHYSIOLOGY, 1997, 113 (02) :441-450
[25]  
Smith JAC, 1996, ECOL STU AN, V114, P427
[26]   NACL INDUCED CRASSULACEAN ACID METABOLISM IN MESEMBRYANTHEMUM-CRYSTALLINUM [J].
WINTER, K ;
WILLERT, DJV .
ZEITSCHRIFT FUR PFLANZENPHYSIOLOGIE, 1972, 67 (02) :166-&
[27]   CRASSULACEAN ACID METABOLISM IN AUSTRALIAN VASCULAR EPIPHYTES AND SOME RELATED SPECIES [J].
WINTER, K ;
WALLACE, BJ ;
STOCKER, GC ;
ROKSANDIC, Z .
OECOLOGIA, 1983, 57 (1-2) :129-141
[28]   LIGHT AND DARK CO2 FIXATION IN CLUSIA-UVITANA AND THE EFFECTS OF PLANT WATER STATUS AND CO2 AVAILABILITY [J].
WINTER, K ;
ZOTZ, G ;
BAUR, B ;
DIETZ, KJ .
OECOLOGIA, 1992, 91 (01) :47-51
[29]   ANALYSIS OF STOMATAL AND NONSTOMATAL COMPONENTS IN THE ENVIRONMENTAL-CONTROL OF CO2 EXCHANGE IN LEAVES OF WELWITSCHIA-MIRABILIS [J].
WINTER, K ;
SCHRAMM, MJ .
PLANT PHYSIOLOGY, 1986, 82 (01) :173-178
[30]  
WINTER K, 1979, ECOLOGICAL PROCESSES, P297