Growth rate and biomass partitioning of wildtype and low-gibberellin tomato (Solanum lycopersicum) plants growing at a high and low nitrogen supply

被引:26
作者
Nagel, OW
Konings, H
Lambers, H
机构
[1] Univ Utrecht, Dept Plant Ecol & Evolutionary Biol, NL-3508 TB Utrecht, Netherlands
[2] Univ Western Australia, Fac Agr, Nedlands, WA 6907, Australia
关键词
D O I
10.1034/j.1399-3054.2001.1110105.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The growth-promoting effects of gibberellins (GAs) on plants are well documented, but a complete growth analysis at the whole plant level on plants with an altered Gh biosynthesis has never been reported. In the present work, the relative growth rate (RGR), biomass partitioning and morphological parameters of wildtype (Wt) tomato (Solanum lycopersicum L. cv, Moneymaker) plants were compared with those of isogenic (gib) mutants with a reduced biosynthesis of gibberellins, CA deficiency reduced RGR and specific leaf area (SLA, leaf area per unit leaf mass) and increased the net assimilation rate (NAR, the rate of biomass increment per unit leaf area). Despite the free access to nitrogen in the rooting medium, the low-GA mutants had a much higher root mass ratio (RMR, the root mass per unit plant biomass) than the Wt, suggesting that the mutants were disturbed in their growth response to nitrate supply. The experiment was repeated at a low exponential nitrate supply, which forced all plants to grow at the same low RGR. The persistence of the differences in RMR at low N-supply indicated that the high RMR of the mutants was a direct effect of low GA, which was independent of nitrate supply. Because the low N-supply increased the RMRs of all genotypes to the same extent, the response of RMR to N-supply does not seem to depend on GA. Although many of the traits of the slow growing Gh mutants were very similar to those of inherently slow growing plant species from unproductive habitats, gibberellins are unlikely to be a main determinant of a plant's potential RGR.
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页码:33 / 39
页数:7
相关论文
共 36 条
[1]  
[Anonymous], JAARBOEK I BIOL SCHE
[2]   The causes of inherently slow growth in alpine plants: An analysis based on the underlying carbon economies of alpine and lowland Poa species [J].
Atkin, OK ;
Botman, B ;
Lambers, H .
FUNCTIONAL ECOLOGY, 1996, 10 (06) :698-707
[3]  
BOOT RGA, 1992, PHYSIOL PLANTARUM, V86, P152, DOI 10.1111/j.1399-3054.1992.tb01324.x
[4]   ROLE OF ACID EFFLUX DURING GROWTH PROMOTION OF PRIMARY LEAVES OF PHASEOLUS-VULGARIS L BY HORMONES AND LIGHT [J].
BROCK, TG ;
CLELAND, RE .
PLANTA, 1989, 177 (04) :476-482
[5]   RAPID COLORIMETRIC DETERMINATION OF NITRATE IN PLANT-TISSUE BY NITRATION OF SALICYLIC-ACID [J].
CATALDO, DA ;
HAROON, M ;
SCHRADER, LE ;
YOUNGS, VL .
COMMUNICATIONS IN SOIL SCIENCE AND PLANT ANALYSIS, 1975, 6 (01) :71-80
[6]   Seedling growth, allocation and leaf attributes in a wide range of woody plant species and types [J].
Cornelissen, JHC ;
Diez, PC ;
Hunt, R .
JOURNAL OF ECOLOGY, 1996, 84 (05) :755-765
[8]   RELATION BETWEEN RELATIVE GROWTH-RATE, ENDOGENOUS GIBBERELLINS, AND THE RESPONSE TO APPLIED GIBBERELLIC-ACID FOR PLANTAGO-MAJOR [J].
DIJKSTRA, P ;
TERREEGEN, H ;
KUIPER, PJC .
PHYSIOLOGIA PLANTARUM, 1990, 79 (04) :629-634
[9]   ANALYSIS OF SPECIFIC LEAF-AREA AND PHOTOSYNTHESIS OF 2 INBRED LINES OF PLANTAGO-MAJOR DIFFERING IN RELATIVE GROWTH-RATE [J].
DIJKSTRA, P ;
LAMBERS, H .
NEW PHYTOLOGIST, 1989, 113 (03) :283-290
[10]  
FALES FW, 1951, J BIOL CHEM, V193, P113