CO2 RESPONSIVENESS OF PLANTS - A POSSIBLE LINK TO PHLOEM LOADING

被引:110
作者
KORNER, C [1 ]
PELAEZRIEDL, S [1 ]
VANBEL, AJE [1 ]
机构
[1] UNIV UTRECHT,DEPT PLANT ECOL & EVOLUTIONARY BIOL,3508 UTRECHT,NETHERLANDS
关键词
CARBOHYDRATES; ELEVATED CARBON DIOXIDE; LEAF ANATOMY; PHOTOSYNTHESIS; SUGARS; TRANSPORT;
D O I
10.1111/j.1365-3040.1995.tb00560.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Of the many responses of plants to elevated CO2, accumulation of total non-structural carbohydrates (TNC in % dry weight) in leaves is one of the most consistent, Insufficient sink activity or transport capacity may explain this obvious disparity between CO2 assimilation and carbohydrate dissipation and structural investment, If transport capacity contributes to the problem, phloem loading may be the crucial step, It has been hypothesized that symplastic phloem loading is less efficient than apoplastic: phloem loading, and hence plant species using the symplastic pathway and growing under high light and good water supply should accumulate more TNC at any given CO2 level, but particularly under elevated CO2. We tested this hypothesis by carrying out CO2 enrichment experiments with 28 plant species known to belong to groups of contrasting phloem loading type. Under current ambient CO2 symplastic loaders were found to accumulate 36% TNC compared with only 19% in apoplastic loaders (P = 0.0016), CO2 enrichment to 600 mu mol mol(-1) increased TNC in both groups by the same absolute amount, bringing the mean TNC level to 41% in symplastic loaders (compared to 25% in apoplastic loaders), which may be close to TNC saturation (coupled with chloroplast malfunction), Eight tree species, ranked as symplastic loaders by their minor vein companion cell configuration, showed TNC responses more similar to those of apoplastic herbaceous loaders, Similar results are obtained when TNC is expressed on a unit leaf area basis, since mean specific leaf areas of groups were not significantly different, We conclude that phloem loading has a surprisingly strong effect on leaf tissue composition, and thus may translate into alterations of food webs and ecosystem functioning, particularly under high CO2.
引用
收藏
页码:595 / 600
页数:6
相关论文
共 30 条
[21]  
Stitt M., 1994, Flux control in biological systems: from enzymes to populations and ecosystems., P57
[22]   ROOT RESTRICTION AS A FACTOR IN PHOTOSYNTHETIC ACCLIMATION OF COTTON SEEDLINGS GROWN IN ELEVATED CARBON-DIOXIDE [J].
THOMAS, RB ;
STRAIN, BR .
PLANT PHYSIOLOGY, 1991, 96 (02) :627-634
[23]   DIFFERENT PHLOEM-LOADING MACHINERY CORRELATED WITH THE CLIMATE [J].
VANBEL, AJE .
ACTA BOTANICA NEERLANDICA, 1992, 41 (02) :121-141
[24]   DISSIMILAR PHLOEM LOADING IN LEAVES WITH SYMPLASMIC OR APOPLASMIC MINOR-VEIN CONFIGURATIONS [J].
VANBEL, AJE ;
GAMALEI, YV ;
AMMERLAAN, A ;
BIK, LPM .
PLANTA, 1992, 186 (04) :518-525
[25]  
VANBEL AJE, 1994, PLANTA, V192, P31
[26]   STRATEGIES OF PHLOEM LOADING [J].
VANBEL, AJE .
ANNUAL REVIEW OF PLANT PHYSIOLOGY AND PLANT MOLECULAR BIOLOGY, 1993, 44 :253-281
[27]  
VANBEL AJE, 1992, PLANT CELL ENVIRON, V15, P265, DOI 10.1111/j.1365-3040.1992.tb00973.x
[28]   ELEVATED ATMOSPHERIC PARTIAL-PRESSURE OF CO2 AND PLANT-GROWTH .2. NONSTRUCTURAL CARBOHYDRATE CONTENT IN COTTON PLANTS AND ITS EFFECT ON GROWTH-PARAMETERS [J].
WONG, SC .
PHOTOSYNTHESIS RESEARCH, 1990, 23 (02) :171-180
[29]   THE EFFECTS OF ELEVATED CONCENTRATIONS OF CARBON-DIOXIDE ON INDIVIDUAL PLANTS, POPULATIONS, COMMUNITIES AND ECOSYSTEMS [J].
WOODWARD, FI ;
THOMPSON, GB ;
MCKEE, IF .
ANNALS OF BOTANY, 1991, 67 :23-38
[30]   CARBON EXCHANGE-RATES, CHLOROPHYLL CONTENT, AND CARBOHYDRATE STATUS OF 2 FOREST TREE SPECIES EXPOSED TO CARBON-DIOXIDE ENRICHMENT [J].
WULLSCHLEGER, SD ;
NORBY, RJ ;
HENDRIX, DL .
TREE PHYSIOLOGY, 1992, 10 (01) :21-31