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1.
A gas-tight chamber has been constructed to calibrate the 15N isotope dilution method against direct 15N2 measurements. The theoretical basis for such estimates is given, and the practical problems associated with the experiments are discussed. 相似文献
2.
N2 fixation in lines of Phaseolus vulgaris was measured by 15N-isotope dilution to determine whether a programme of crossing and recurrent selection had resulted in enhanced nitrogen fixation. In field experiments on an isohyperthermic Aquic Hapludoll soil the amount of N2 fixed by the different lines ranged from 18 to 36 kg ha–1 (32 to 47% of plant N) in 56 days. The quantity of N2 fixed and the proportion of plant N derived from fixation was not significantly greater in the lines selected for N2 fixation (RIZ lines) than parental lines. Total shoot N ranged from 53 to 77 kg ha–1 and partitioning of N to pods differed from 28 to 52% among the lines which all had similar growth habit and duration. Nodulation patterns were also distinct. Nodules formed early (10 to 15 plant–1 at 13 days) in many lines, and smallest amounts of fixation were observed in those lines which nodulated slowly and did not form substantial nodule mass until after 40 days. The screening criteria used in the selection of the RIZ lines had been largely indirect with other factors such as disease resistance also being included. Progress for increasing N2 fixation over good-fixing parental lines such as BAT76 was not significant and it is recommended that more attention be paid to early nodulation, to the use of soils with lower available N and to inter-crossing of lines having different good N2 fixation traits in order to further enhance the potential for N2 fixation in beans. 相似文献
3.
M. Norhayati S. Mohd Noor K. Chong A. W. Faizah D. F. Herridge M. B. Peoples F. J. Bergersen 《Plant and Soil》1988,108(1):143-150
Methods for partitioning the nitrogen assimilated by nodulated legumes, between nitrogen derived from soil sources and from
N2 fixation, are described as applied in peninsular Malaysia.
The analysis of nitrogenous components translocated from the roots to the shoots of nodulated plants in the xylem sap is outlined,
with some precautions to be observed for applications in the tropics. Some examples of the use of the technique in surverying
apparent N2 fixation by tropical legumes, in studying interrow cropping in plantation systems and in assessing effects of experimental
treatments on N2 fixation by food legumes, are described.
Techniques for assesing N2 fixation by means of15N abundance have been used to show that applications of nitrogenous fertilizers commonly used in Malaysia for soybeans depress
N2 fixation, that similar results are obtained with natural abundance and15N-enrichment methods and that, in at least two locations in Malaysia, differences between the natural abundance of15N in plant-available soil nitrogen and in atmospheric N2 are great enough to permit application to measurement of N2 fixation by leguminous crops. 相似文献
4.
Whether grown as pulses for grain, as green manure, as pastures or as the tree components of agro-forestry systems, the value of leguminous crops lies in their ability to fix atmospheric N2, so reducing the use of expensive fertiliser-N and enhancing soil fertility. N2 fixing legumes provide the basis for developing sustainable farming systems that incorporate integrated nutrient management. By exploiting the stable nitrogen isotope 15N, it has been possible to reliably measure rates of N2 fixation in a wide range of agro-ecological field situations involving many leguminous species. The accumulated data demonstrate that there is a wealth of genetic diversity among legumes and their Rhizobium symbionts which can be used to enhance N2 fixation. Practical agronomic and microbiological means to maximise N inputs by legumes have also been identified. 相似文献
5.
Leaf carbon isotope and mineral composition in subtropical plants along an irradiance cline 总被引:14,自引:0,他引:14
Summary Leaf carbon isotope ratios and leaf mineral composition (Ca, K, Mg, Mn, N, and P) were measured on the dominant species along an irradiance cline in a subtropical monsoon forest of southern China. This irradiance cline resulted from disturbance caused by fuel-harvesting. Leaf carbon isotope ratios increased from undisturbed to disturbed sites for all species, indicating that leaf intercellular CO2 concentrations decreased and leaf water use efficiencies increased along this cline. Nitrogen and magnesium levels were lower in leaves of species on the disturbed sites, but there were no clear patterns for calcium, potassium, phosphorus or manganese.C.I.W.D.P.B. Publication no 932 相似文献
6.
Kielo Haahtela Tuula Laakso Eeva-Liisa Nurmiaho-Lassila Timo K. Korhonen 《Plant and Soil》1988,106(2):239-248
Strains ofKlebsiella pneumoniae, Klebsiella terrigena, Enterobacter agglomerans andAzospirillum lipoferum were compared as diazotrophic inoculants in association withPoa pratensis andTriticum aestivum. Each strain colonized both plants in numbers ranging from 104 to 107 bacteria per root, and electron microscopy and immunofluorescence staining of inoculated roots revealed bacteria mainly on
root hairs. Indirect immunofluorescence with specific antifimbriae antibodies showed that the enteric bacteria expressed their
fimbria in both associations. All associations were positive in an acetylene reduction test but only in half of them was atmospheric
nitrogen transferred to the plant. In the inoculated plants, variable effects in the dry matter and N yields in both hosts
were observed and no correlation was found between dry matter, nitrogen content or the amount of fixed nitrogen. In infected
plants, the number of root hairs and lateral roots increased and the length of the zone of elongation decreased. The changes
in root morphology were more evident in associations with enteric bacteria than with Azospirillum. The results give further
evidence on the importance of bacterial adhesion in associative N2 fixation and suggest that bacteria-induced physiological changes in plant roots may be more important than the amount of
nitrogen transferred to the plant. 相似文献
7.
In areas with a short growing season the poor adaptability of soybean [Glycine max Meer. (L.)] to cool soil conditions is considered the primary yield limiting factor. Soybean requires temperatures in the 25 to 30°C range for optimum N2-fixation and yield. Field studies were conducted in 1990 and 1991 at Montreal, Quebec to determine whether adaptability to cool soil conditions, with respect to earlier symbiosis establishment and function, existed among either Bradyrhizobium strains or soybean genotypes. An early maturing isoline of the soybean cultivar Evans and the cultivar Maple Arrow were inoculated with one of four strains isolated from the cold soils of Hakkaido, northern Japan, or the commercially used strains 532C or USDA110, at two planting dates. Plot biomass and nodulation were assessed at seedling (V2), and flowering(R2) growth stages and harvest maturity. Soybean genotypes did not differ for pre-flowering nodulation or N2-fixation in the cool spring conditions of the first year. Seasonal N2-fixation rates were also determined at the final harvest by the N-balance and 15N-isotope dilution methods. Significantly higher symbiotic activity was found for two of the four Hakkaido strains and was reflected in higher final soybean seed yield and total N2-fixation for the growing season, as compared to the two commercial strains. Planting 14 days earlier resulted in greater early vegetative and total seasonal N2 fixation and yield in the second year when soil temperatures were warmer, emphasizing the need for the development of soybean-Bradyrhizobium combinations superior in nodule development and function under cool soil conditions. 相似文献
8.
Inoculation of sugar mill by-products compost with N2-fixing bacteria may improve its quality by increasing total N and available P. Compost was inoculated with Azotobacter vinelandii(ATCC 478), Beijerinckia derxii (ATCC 49361), and Azospirillumsp. TS8, each alone and all three together. Numbers of all N2-fixing bacteria in compost declined from an initial population of 5×105cellsg–1 during incubation. The population of Azotobacter declined to approximately 2×102cellsg–1 and the population of Beijerinckia and Azospirillum declined to approximately 9×103 and 3.5×104cellsg–1 respectively, at day 50. Inoculation with N2-fixing bacteria increased acetylene reduction, total N by 6–16 and available P by 25–30% in comparison to the uninoculated control. Increasing the N content and P availability of compost increases its value and there may be additional benefit from providing N2 fixing bacteria. 相似文献
9.
In the tropics, cowpea is often intercropped with maize. Little is known about the effect of the intercropped maize on N2-fixation by cowpea or how intercropping affects nitrogen fertilizer use effiency or soil N-uptake of both crops. Cowpea and maize were grown as a monocrop at row spacings of 40, 50, 60, 80, and 120 cm and intercropped at row spacing of 40, 50, and 60 cm. Plots were fertilized with 50 kg N as (NH4)2SO4; microplots within each plot received the same amount of15N-depleted (NH4)2SO4. Using the15N-dilution method, the percentage of N derived from N2-fixation by cowpea and the recovery of N-fertilizer and soil N-uptake was measured for both crops at 50 and 80 days after planting.Significant differences in yield and total N for cowpea and maize at both harvest periods were dependent on row spacing and cropping systems. Maize grown at the closer row spacing accumulated most of its N during the first 50 days after planting, whereas maize grown at the widest row spacing accumulated a significant portion of its N during the last 30 days before the final harvest, 80 days after planting.Overall, no significant differences in the percentage of N derived from N2-fixation for monocropped or intercropped cowpea was observed and between 30 and 50% of its N was derived from N2.At 50 DAP, fertilizer and soil N uptake was dependent on row spacing with maize grown at the narrowest row spacing having a higher fertilizer and soil N recovery than maize grown at wider spacings. At 50 and 80 DAP, intercropped maize/cowpea did not have a higher fertilizer and soil N uptake than monocropped cowpea or maize at the same row spacing. Monocropped maize and cowpea at the same row spacing took up about the same amount of fertilizer or soil N. When intercropped, maize took up twice as much soil and fertilizer N as cowpea. Apparently intercropped cowpea was not able to maintain its yield potential.Whereas significant differences in total N for maize was observed at 50 and 80 DAP, no significant differences in the atom %14N excess were observed. Therefore, in this study, the atom %14N excess of the reference crop was yield independent. Furthermore, the similarity in the atom %14N excess for intercropped and monocropped maize indicated that transfer of N from the legume to the non-legume was small or not detectable. 相似文献
10.
Summary Previous investigations indicated some forage grass roots in Texas are heavily colonized with N2-fixing bacteria. The most numerous N2-fixing bacteria were in the genera Klebsiella and Enterobacter. In the present investigation inoculation experiments were
conducted using 18 isolates of these bacteria to determine if a N2-fixing association could be established between the bacteria and the grassesCynodon dactylon andPanicum coloratum. Plants were grown in soil for approximately 5 months in a greenhouse and were measured periodically for dry matter, nitrogen
accumulation, and acetylene reduction activity. Results of the investigation indicated that 25% of the plant-soil systems
were active in acetylene reduction and the activity was high enough to indicate agronomically significant quantities of N2 were being fixed (>8kg N ha−1). However, plant systems extrapolated to fix>8 kg N ha−1 contained less nitrogen and accumulated less dry matter than plants less active in acetylene reduction. Inocula could not
be re-isolated from healthy grass roots indicating that the N2-fixing activity may have not have been closely assiciated with plant roots. Future research is needed to determine factors
limiting colonization of grass roots. 相似文献
11.
Natural abundance of 15N ( 15N) of leaves harvested from tropical plants in Brazil and Thailand was analyzed. The 15N values of non-N2-fixing trees in Brazil were +4.5±1.9, which is lower than those of soil nitrogen (+8.0±2.2). In contrast, mimosa and kudzu had very low 15N values (–1.4+0.5). The 15N values of Panicum maximum and leguminous trees, except Leucaena leucocephala, were similar to those of non-N2-fixing trees, suggesting that the contribution of fixed N in these plants is negligible. The 15N values of non-N2-fixing trees in Thailand were +4.9±2.0. Leucaena leucocephala, Sesbania grandiflora, Casuarina spp. and Cycas spp. had low 15N values, close to the value of atmospheric N2 (0), pointing to a major contribution of N2 fixation in these plants. Cassia spp. and Tamarindus indica had high 15N values, which confirms that these species are non-nodulating legumes. The 15N values of Acacia spp. and Gliricidia sepium and other potentially nodulating tree legumes were, on average, slightly lower than those of non-N2-fixing trees, indicating a small contribution of N2 fixation in these legumes. 相似文献
12.
Summary The uptake and distribution of15NH
4
+
,15NO
3
−
and15N2 was studied in greenhouse-grown beans (Phaseolus vulgaris L.) with a commercial cultivar and 2 recombinant inbred backcross lines;15N was supplied in the nutrient solution at the R3 (50% bloom) stage. Plants were harvested 1, 5 and 10 days after treatment,
and were separated into nodules, roots, stems, mature leaflets, immature leaflets, and flowers/fruits. All 3 lines showed
rapid increases in the N content of flowers/fruits after the R3 stage. However, the percentage N in these tissues decreased
after the R3 stage.
One of the recombinant lines showed a greater uptake of NH
4
+
than the other 2 lines. Rates of15N2 fixation and NO
3
−
uptake were similar for all 3 lines, N2 fixation estimated from total N content showed the 2 recombinant lines with 24 and 34 percent greater activity than the commercial
cultivar.
Distribution of15N at the whole plant level was similar for all 3 lines for a similar N source.15NO
3
−
was transported first to leaflets and the label then moved into flowers/fruits. Transport of fixed N2 was from the nodules to roots, stems and into flowers/fruits; usually less than 10 percent entered the leaflets. This indicates
that N2 fixation furnishes N directly to flowers/fruits with over 50 percent of the fixed N being deposited into flowers/fruits within
5 days after treatment. 相似文献
13.
Rennie R. J. Rennie D. A. Siripaibool C. Chaiwanakupt P. Boonkerd N. Snitwongse P. 《Plant and Soil》1988,112(2):183-193
The practice of seeding soybeans following paddy rice in Thailand has encountered difficulties in seedling germination, nodulation and crop establishment. This research project evaluated the choice of a non-fixing control to quantify N2 fixation by15N isotope dilution, and the effect of tillage regime, soybean cultivar, strain ofBradyrhizobium japonicum and P fertilization on yield and N2 fixation after paddy rice in northern and central Thailand.Japanese non-nodulating lines Tol-0 and A62-2 were the most appropriatecontrol plants for15N isotope dilution for Thai soybeans in these soils which contained indigenous rhizobia. Cereals such as maize, sorghum and barley were also appropriate controls at some sites. The choice of the appropriate non-fixing control plant for the15N isotope dilution technique remains a dilemma and no alternative exists other than to use several possible controls with each experiment. Acetylene reduction assay (ARA) proved of little value for screening varieties on their N2 fixing capacity.The recommended Thai soybean cultivars (SJ1, 2, 4, 5) and an advanced line 16–4 differed little in their ability to support N2 fixation or yield, possibly due to similar breeding ancestry. The ten AVRDC (ASET) lines showed considerable genotypic control in their ability to utilize their three available N sources (soil, fertilizer, atmosphere) and to translate them into yields. None of these lines were consistently superior to Thai cultivars SJ4 or SJ5 although ASET lines 129, 209 and 217 showed considerable promise.Neither recommended Thai or ASET cultivars were affected by tillage regime. Zero tillage resulted in superior N2 fixation and yield at two sites but conventional tillage was superior at another site. Soybean cultivars grown in Thailand were well adapted to zero tillage. Levels of N2 fixation were similar to world figures, averaging more than 100 kg N ha–1 and supplying over 50% of the plant's N yield. However, seed yields seldom exceeded 2 t ha–1, well below yields for temperately-grown soybeans. It is not clear why Thai soybeans support N2 fixation, but do not translate this into higher seed yields. 相似文献
14.
It has recently been reported that N2 fixation and carbon isotope discrimination (Δ) are negatively correlated. To further test this hypothesis, a greenhouse experiment
was conducted to investigate if Δ is correlated with the efficiency of lentil (Lens culinaris cv Laird) in fixing atmospheric nitrogen. Lentil seed was inoculated with one of 10 Rhizobium leguminosarum strains that varied in their effectiveness in symbiotic N2 fixation. Carbon-13 discrimination was positively correlated with N2 fixation (r2=0.60*). Although the amount of N2 fixed ranged from 1.5 mg N to 13.5 mg N shoot−1, the range of Δ values was only 25.8 to 26.6%.. It is unlikely that variability of such small magnitude could be of any practical
use in selecting for N2-fixing efficiency. 相似文献
15.
Soybean is the most important leguminous crop in Brazil and the nitrogen required for plant growth is supplied byBradyrhizobium bacteria through the symbiotic relation established by the inoculation process. Since 1992, two new strains, CPAC 7 and CPAC
15, which have been shown to increase yields in several field experiments, have been recommended in Brazilian commercial inoculants.
CPAC 15 is a natural variant of theB. elkanii SEMIA 566 strain, and was isolated after several years of adaptation to a Brazilian Cerrado soil, while CPAC 7 is a variant
ofB. japonicum strain CB 1809, selected under laboratory conditions for higher nodulation and yield. The comparison between parental and
variant strains, under greenhouse conditions, showed that both CPAC 15 and CPAC 7 increased N2 fixation rates in relation to the parental strains. The better performance of CPAC 15 was related to an increase in nodule
efficiency (mg N2 fixed mg-1 nodule) while with CPAC 7 the higher N2 fixation rates were due to increased nodulation. Both CPAC 15 and CPAC 7 increased nodule occupancy, when co-inoculated at
a ratio of 1:1 withB. elkanii 29w, in relation to their parental strains. Variant strains also differed from parental in their ability to increase numbers
of root hairs (Hai phenotype) either when inoculated onto plants, or when supernatants of bacteria exposed to seed exudates
were used as inoculants. This results lead to the hypothesis that a modification in some of the “common” nodulation genes
had occurred. However, the increase in Hai phenotype with CPAC 7 was dependent on the soybean cultivar, indicating a possible
alteration in some genotypic specific nodulation gene. Apparently, there were no differences in Nod metabolites produced by
strains CPAC 15 and SEMIA 566, but a more detailed chemical analysis would be required to rule out subtle differences. On
the contrary, significant differences were found between CPAC 7 and the parental strain CP 1809, in the profile of Nod metabolites.
Consequently, it may be possible that diffusable molecules, responsible for Hai phenotype, would be related to nodulation
ability, competiviveness, and N2 fixation, resulting in the higher yields that have been associated with CPAC 7 and CPAC 15. For the CPAC 7 strain, the increase
in Hai phenotype could be atributed to the differences found in the Nod molecules. Consequently, a high degree of physiological
and genetic variability can result from the adaptation of rhizobial strains to the soil. Also, this variability can be found
under laboratory conditions, when searching single colonies with specific properties. ei]Section editor: R O D Dixon 相似文献
16.
The effects of dairy cow urine and defoliation severity on biological nitrogen fixation and pasture production of a mixed ryegrass-white clover sward were investigated over 12 months using mowing for defoliation. A single application of urine (equivalent to 746 kg N ha–1), was applied in late spring to plots immediately after light and moderately-severe defoliation (35 mm and 85 mm cutting heights, respectively) treatments were imposed. Estimates of percentage clover N derived from N2 fixation (%Ndfa) were compared by labelling the soil with 15N either by applying a low rate of 15N-labelled ammonium sulphate, immobilising 15N in soil organic matter, adding 15N to applied urine, or by utilising the small differences in natural abundance of 15N in soil. Urine application increased annual grass production by 85%, but had little effect on annual clover production. However, urine caused a marked decline in %Ndfa (using an average of all 15N methods) from 84% to a low of 22% by 108 days, with recovery to control levels taking almost a year. As a result, total N fixed (in above ground clover herbage) was reduced from 232 to 145 kg N ha–1 yr–1. Moderately–severe defoliation had no immediate effect on N2 fixation, but after 108 days the %Ndfa was consistently higher than light defoliation during summer and autumn, and increased by up to 18%, coinciding with an increase in growth of weeds and summer-grass species. Annual N2 fixation was 218 kg N ha–1 yr–1 under moderately-severe defoliation compared to 160 kg N ha–1 yr–1 under light defoliation. Estimates of %Ndfa were generally similar when 15N-labelled or immobilised 15N were used to label soil regardless of urine and defoliation severity. The natural abundance technique gave highly variable estimates of %Ndfa (–56 to 24%) during the first 23 days after urine application but, thereafter, estimates of %Ndfa were similar to those using 15N-labelling methods. In contrast, in urine treated plots the use of 15N-labelled urine gave estimates of %Ndfa that were 20–30% below values calculated using conventional 15N-labelling during the first 161 days. These differences were probably due to differences in the rooting depth between ryegrass and white clover in conjunction with treatment differences in 15N distribution with depth. This study shows that urine has a prolonged effect on reducing N2 fixation in pasture. In addition, defoliation severity is a potential pasture management tool for strategically enhancing N2 fixation. 相似文献
17.
The Nostoc cyanobiont of the lichen Peltigera canina when grown on N2 possesses, in the motile stage, discrete unbranched non-flagellar appendages (fimbriae or pili). These arise from the host cell surface in a peritrichous manner, have an axial hole, are 7.0 ±0.3 nm in diameter and are up to 3 m long. They do not haemagglutinate guinea pig red blood corpuscles and differ from the major fimbrial types reported for Gram-negative heterotrophic bacteria and from sex pili. They may be involved in motility and specificity in symbiotic cyanobacteria. 相似文献
18.
Summary A two-year field study was undertaken using15N isotope techniques to differentiate between stimulation of N uptake and N2 fixation in Western Canadian cultivars of spring wheat (Triticum aestivum L. emend Thell) and durum (T. turgidum L. emend Bowden) in response to inoculation with N2-fixing bacteria.
Bacterial inoculation either had no effect or lowered the % N derived from the fertilizer and the fertilizer use efficiency.
Despite the depression of fertilizer uptake, inoculants did not alter the relative uptake from soil and fertilizer-N pools
indicating that bacterial inoculation did not alter rooting patterns. Nitrogen-15 isotope dilution indicated that N2 fixation did occur.
In 1984, % plant N derived from the atmosphere (% Ndfa) due to inoculation with Bacillus C-11-25 averaged 23.9% while that
withAzospirillum brasilense ATCC 29729 (Cd) averaged 15.5%. In 1985, higher soil N levels reduced these values by approximately one-half. Cultivar x
inoculant interactions, while significant, were not consistent across years. However, these interactions did not affect cultivars
‘Cadet’ and ‘Rescue’. In agreement with previous results, ‘Cadet’ performed well with all inoculants in both years while ‘Rescue’
performed poorly.
Among 1984 treatments, the N increament in inoculated plants was positively correlated with % Ndfa but no such correlation
existed in 1985. N2 fixation averaged over all cultivars and strains was 17.9 and 6.7 kg N fixed ha−1 in 1984 and 1985, respectively. Highest rates of N2 fixation were estimated at 52.4 kg N ha−1 for ‘Cadet’ in 1984 and 31.3 kg N ha−1 for ‘Owens’ in 1985, both inoculated with Bacillus C-11-25, an isolate from southern Alberta soils. Inoculation with either
ofAzospirillum brasilense strain Cd (ATCC29729) or 245 did not result in as consistent or as high N2 fixation, suggesting that these wheats had not evolved genetic compatability with this exogenous microorganism. These agronomically
significant amounts of N2 fixation occurred under optimally controlled experimental conditions in the field. It is yet to be determined if N2 fixation would occur in response to bacterial inoculation under dryland conditions commonly occurring in Western Canada.
Contribution from Agriculture Canada Research Station, Lethbridge, Alberta, Canada. 相似文献
19.
Alaides P. Ruschel P. B. Vose E. Matsui R. L. Victoria S. M. Tsai Saito 《Plant and Soil》1982,65(3):397-407
Summary Differences in N2-fixation byPhaseolus vulgaris bean cultivars were successfully evaluated in the field using15N isotope dilution technique with a non-fixing test crop of a different species (wheat). The Phaseolus cultivars could have
been similarly ranked for N2-fixation capacity from either seed yield or total nitrogen yield, but the isotope method provided a direct measure of N2-fixation and made it possible to estimate the proportion of fixed to total nitrogen in the crop and in plant parts.
Amounts of nitrogen fixed varied between 24.59 kg N/ha for the 60-day cultivar Goiano precoce to 64.91 kg N/ha for the 90-day
cultivar Carioca. The per cent of plant nitrogen due to fixation was 57–68% for the 90-day cultivars and 37% for Goiano precoce
(60-day cultivar).
Fertilizer utilization was 17–30% of a 20 kg N/ha fertilizer application. 100 kg N/ha fertilizer application decreased N2-fixation without suppressing it totally.
Differences in yield between the highest yielding (Carioca) and the lowest (Moruna) 90-day cultivars were also due apparently
to varietal differences in efficiency of conversion of nitrogen to economic matteri.e. seed, as well as to differences in capacity of genotypes for N2-fixation.
The work described here was in part supported by IAEA Research Contract No. RC/2084
UNDP/IAEA Project BRA/78/006 相似文献
20.
Nodulated seedlings of Acacia auriculiformis Cunn. ex Benth and Acacia mangium Willd were grown with different phosphorus (P) regimes for 90 days, and half of them were exposed to elevated CO2 (800 μl l−1) during the last 30 days. Under ambient CO2, plant growth and the amount of N fixed symbiotically in N2-fixing seedlings decreased with the decrease of supplied P; this relationship did not occur under elevated CO2. The increase in plant biomass by elevated CO2 at low P was accompanied by the increase in internal P use efficiency, the amount of N fixed symbiotically and N use efficiency. Elevated CO2 recovered the low P-induced reduction in leaf dry matter per unit area or unit fresh weight, but it had no effect on the low P-induced increase in partitioning dry matter to roots. These results suggest that elevated CO2 alleviates the low P effect mainly by increasing the use efficiency of internal P for plant growth and symbiotic N2 fixation, and the source-sink relationship is possibly an important driving force for this effect of elevated CO2 in A. auriculiformis and A. mangium. 相似文献