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1.
A semi-closed system to label with 14C and trace photoassimilatesunder steady state conditions is described. It was used to elucidatethe effects of night temperature on the carbon budget of tomato The third leaf kept at 25 °C in 8 h light of 36 W m–1(PAR) assimilated 13·77 mg C . d–1. By the endof the photoperiod, 46% of the carbon assimilate was exportedto the sinks, out of which 27% was respired and 19% was accumulatedin the sinks, respectively The plants were then kept in the dark for 16 h at 15, 20, 25and 30%C. The export in the night-time increased with nighttemperature, reaching 18–27% of the carbon assimilated.Thus, the total export in a whole day amounted to 63–72%of the carbon assimilated, out of which 35 and 42% were lostby respiration and 29 and 31% was accumulated in the sinks at15 and 30 °C, respectively. Thus, accumulation in the sinksdiffered little with night temperature, while that in the sourceleaf, and hence the total accumulation, decreased with increasingnight temperature The export started early in the morning and was much greaterin the light than in the dark. In addition, the day/night ratioof export was lower at higher night temperatures The percentage distribution of 14C-assimilates to the lowerparts decreased, while that to the upper parts increased withincreasing night temperature. The calculated respiratory lossin individual sinks seemed to correspond to the distributionpattern of 14C-assimilates Carbon budget, 14C, 14C steady state feeding, translocation, respiration, assimilate distribution, temperature, tomato  相似文献   

2.
Effects of CO2-Enrichment on the Growth of Young Tomato Plants in Low Light   总被引:3,自引:0,他引:3  
HURD  R. G. 《Annals of botany》1968,32(3):531-542
Carbon dioxide-enrichment of young tomato plants grown in controlled-environmentcabinets at low light intensity (14 cal cm–2 day–1,visible radiation) increased their net assimilation rates and,initially, relative growth-rates. Subsequently, the relativegrowth-rate fell to near the rate of non-enriched plants, owingto a fall in leaf-area ratio associated with an increase inleaf dry weight/area. Sowing non-enriched plants a few daysearlier to reach the same total dry weight would not have producedidentical plants. The effects of CO2-enrichment to 1000 vpm could be simulatedby increasing light intensity by approximately one third exceptthat the plants had shorter internodes than those in extra CO2.This was a morphogenetic effect of light since CO2-enrichmentitself produced slightly shorter plants than controls for anequivalent total dry weight. CO2-enrichment did not change the dry-weight distribution inthe plants and had little effect on rate of leaf produoctionor the number of flower primordia. There were no indicationsthat beneficial effects of CO2-enrichment operated other thanthrough increased photosynthesis.  相似文献   

3.
Multifactorial experiments were performed to study the diurnal dynamics of CO2 exchange in intact cucumber plants (Cucumis sativus L.). Based on experimental data, we analyzed the models of net photosynthesis, night respiration, and biomass accumulation. This analysis allowed us to resolve the growth component of respiration and to determine the diurnal temperature pattern that is optimal for biomass accumulation. It was found that the most profound transformation of assimilates into the biomass occurs under the maximum ratio of growth respiration to maintenance respiration. Under the experimental conditions used, this requirement was fulfilled at a temperature of 25°C during the photoperiod (optimum of net photosynthesis) and at subsequent gradual cooling to a hardening temperature (13°C by the end of the night).  相似文献   

4.
This study was carried out to elucidate the carbon budget inyoung tomato plants in photosynthetic light periods of 8, 12and 16 h after being acclimated to an 8-h light period. Thephotosynthetic rate was nearly constant for 16 h: thereforethe amount of 14C fixed was proportional to the light period(13·77 mg C per 8 h, 20·2 mg C per 12 h, 30·5mg C per 16 h). The amounts exported, lost by respiration and accumulated whenexpressed as percentages of the carbon fixed in the day differedlittle between the light periods. The leaf continued to exportcarbon at a nearly constant rate during the light periods and,for example, exported approximately twice as much during a 16-hperiod as in an 8-h light period, even though it was not acclimatedto the long light period. The amount of starch breakdown affected the amount of carbonexported and carbon lost by respiration at night, although itwas not sufficient to account for these losses altogether. Thepossible roles of carbon accumulation and respiration are alsodiscussed. Carbon budget, steady state feeding, 14C, photosynthesis, respiration, translocation, carbon metabolism, tomato, Lycopersicon esculentum Mill  相似文献   

5.
Using an open and a closed system of gas analysis, it was found that CO2 evolution in light and in darkness from plant leaves (sunflower, soybean, watermelon, eggplant, and jackbean) have a different response to temperature. While the rate of CO2 evolution in light increased with increasing temperature from 17 to 35° and then declined, the rate of CO2 evolution in darkness increased continuously up to 40°. The rate of CO2 evolution in light was affected by light intensity. At 1800 ft-c and below 35° the rate of CO2 evolution in light was greater than in darkness, but above 35° it became lower than in darkness. The Q10 for CO2 evolution in light was consistently lower than that in darkness.  相似文献   

6.
7.
There has been a significant increase in studies of how global change parameters affect interacting species or entire communities, yet the combined or interactive effects of increased atmospheric CO2 and associated increases in global mean temperatures on chemically mediated trophic interactions are mostly unknown. Thus, predictions of climate-induced changes on plant-insect interactions are still based primarily on studies of individual species, individual global change parameters, pairwise interactions, or parameters that summarize communities. A clear understanding of community response to global change will only emerge from studies that examine effects of multiple variables on biotic interactions. We examined the effects of increased CO2 and temperature on simple laboratory communities of interacting alfalfa, chemical defense, armyworm caterpillars, and parasitoid wasps. Higher temperatures and CO2 caused decreased plant quality, decreased caterpillar development times, developmental asynchrony between caterpillars and wasps, and complete wasp mortality. The effects measured here, along with other effects of global change on natural enemies suggest that biological control and other top-down effects of insect predators will decline over the coming decades.  相似文献   

8.
25~30℃和30 μmol m~(-2)s~(-1)光下培养的黄瓜幼苗,在黑暗下经 1~7℃处理24h或5℃处理24~72h,光合电子传递活性受不同程度的抑制;其抑制部位主要在PSⅡ氧化侧;随温度的降低和时间的延长,抑制部位可发展至PSⅡ及之后的电子递体上,但尚未影响PSⅠ的活性。160μmol m~(-2)s~(-1)的光强加重低温对电子传递活性的抑制,光强越高,则加重的程度越高;抑制部位从PSⅡ氧化侧发展至PSⅡ反应中心以及PSⅠ。  相似文献   

9.
The CO2 compensation point at 25 °C and 250 µEinsteinsm–2 s–1 wasmeasured for 27 bryo-phyte species, andwas found to be in the range of 45–160 µl CO2 I–1air. Under the same conditions Zea mays gave a value of 11 µlI–1 and Horde um vulgare 76 µI–1. The rate of loss of photosyntheticallyfixed 14CO2 in the light and dark in six bryophytes (three mosses,two leafy liverworts, one thalloid liverwort) was determinedin CO2-free air and 100% O2. The rate of 14CO2 evolution inthe light was less than that in the dark in CL2-free air, butin 100% O2 the rate in the light increased, so that in all butthe leafy liverworts it was greater than that in the dark. Raisingthe temperature tended to increase the rate of 14CO2 evolutioninto CO2-free air both in the light and dark, so that the light/dark(L/D) ratio did not greatly vary. The lower rate of loss of14CO2 in the light compared tothe dark could be due to partialinhibition of ‘dark respiration’ reactions in thelight, a low rate of glycolate synthesis and oxidation, or partialreassimilation of the 14CO2 produced, or a combination of someor all of these factors.  相似文献   

10.
A study was made of the incorporation of 14C by intact leavesof Coffea arabica (cultivars Mundo Novo, Catuai, 1130–13,and H 6586–2) and Coffea canephora (cultivar Guarini)supplied with gas mixtures containing 14CO2 under controlledconditions. Samples of the leaves were combusted and the 14Cin the CO2 produced measured using a liquid scintillation counter.The results were used to estimate photosynthetic rates. Theeffects of changing the partial pressures of O2 and CO2 on thephotosynthetic rate were studied and estimates made of the CO2compensation point and photorespiration. The data obtained show differences between the mean net photosyntheticrates of the C. arabica cultivars (6·14 mg CO2 dm–2h–1) and the mean rate for the C. canephora cultivar (3·96mg CO2 dm–2 h–1). The cultivar of the latter speciesphotorespired more rapidly than the cultivar Catuai of C. arabica.Rates of photosynthesis in coffee measured using the 14CO2 methodwere similar to rates obtained by others using an infrared gasanalyser. The 14CO2 method proved to be reliable for photosyntheticmeasurements and the apparatus is suitable for use in fieldconditions.  相似文献   

11.
The effects of light regime, feeding regime and tentacle number on the zooplankton feeding capability of Hydra viridis were tested in the laboratory. Feeding was measured by exposing Hydra to a known volume of Artemia salina nauplii and recording the number captured and ingested. In all cases there was a correlation between the number of Artemia captured and the number ingested. H. viridis with 7 tentacles captured and ingested more Artemia than Hydra with 6 tentacles. However, changes in light and/or feeding regimes did not alter the number of tentacles/Hydra. Varying light and feeding regimes altered the number of Zoochlorellae/cell and Hydra growth rate. There was no effect on the number of Artemia captured or ingested and no effect on the percent ingestion of captured Artemia. These data suggest that, under these conditions, zooplankton feeding by H. viridis is independent of nutritional history.  相似文献   

12.
Ursino DJ 《Plant physiology》1973,51(5):954-959
Eastern white pines (Pinus strobus L.) in their 3rd year of growth photoassimilated 35, 110, 220, or 400 microcuries of 14CO2 on a single occasion in the spring when needle expansion was occurring. Once assimilated into organic products and translocated to various sinks, the retained 14C represented an internal chronic source of ionizing radiation to the plant. About 2.5 months later, the pines were harvested, and the distribution of 14C activity was determined. In addition, new needle lengths, fresh weights, and rates of processes involving CO2 exchange were measured.  相似文献   

13.
In order to study the effects of inorganic phosphate (P1) starvationon C4plants, 3-week-old maize plants (Zea maysL cv. Brulouis)were grown in a growth chamber on a nutrient solution withoutP1 over 22 d During the first 2 weeks, Pi-starved plants grewas well as control plants The Pi concentration in the planttissue decreased rapidly with time, which suggests that normalbiomass production can be maintained at the expense of internalP1 In addition, photosynthetic CO2 assimilation measured 4-6h after dawn was not affected, but the concentration of glucose,sucrose, and starch in leaves was much higher than in the controls14CO2 pulse-chase experiments earned out on the ninth day oftreatment showed that 14CO2 assimilation was perturbed duringthis initial period, resulting in a larger flow of carbon toboth starch and sucrose At the beginning of the third week ofP1 starvation (15 d after treatment) 14C incorporation intosucrose stayed high relative to controls but this was not thecase for starch At the end of the third week of P1-deficiency,shoot growth was considerably reduced and fresh weight was onlyone-third of that of the control plants. The P1 concentrationof both the leaf and root tissues was less than 1.0 µmolg–1 FW compared to 20-25µmol g1 FW in the controls.Photosynthetic CO2 assimilation was reduced and the leaf concentrationof sucrose and starch, which had begun to decrease after theend of the second week of P1 limitation, became lower than inthe controls. These results obtained on maize plants show thatphotosynthesis and carbon partitioning between sucrose and starchwere strongly affected by P1 deficiency, similar to C3 species. Key words: CO2 assimilation, corn, orthophosphate deficiency, starch, sucrose  相似文献   

14.
The rates of CO2 assimilation by potted spray carnation plants(cv. Cerise Royalette) were determined over a wide range oflight intensities (45–450 W m–2 PAR), CO2 concentrations(200–3100 vpm), and leaf temperatures (5–35 °C).Assimilation rates varied with these factors in a way similarto the response of single leaves of other temperate crops, althoughthe absolute values were lower. The optimal temperature forCO2 assimilation was between 5 and 10 °C at 45 W m–2PAR but it increased progressively with increasing light intensityand CO2 concentration up to 27 °C at 450 W m–2 PARand 3100 vpm CO2 as expressed by the equation TOpt = –6.47-h 2.336 In G + 0.031951 where C is CO2 concentration in vpmand I is photo-synthetically active radiation in W m–2.CO2 enrichment also increased stomatal resistance, especiallyat high light intensities. The influence of these results on optimalization of temperaturesand CO2 concentrations for carnation crops subjected to dailylight variation, and the discrepancy between optimal temperaturesfor growth and net photosynthesis, are discussed briefly  相似文献   

15.
Young tomato plants were grown from germination in water cultureat light-flux densities from 6 to 110 W m-2 (400–700 nm),daylengths from 8 to 24 h and CO2 concentrations from 0.4 to2.2 g CO2 m-3 in controlled environment cabinets. The growth rates and net assimilation rates of 14–17-day-oldplants at the highest light integrals were appreciably greaterthan most values previously recorded for tomato, and diminishedwith time. Plants in the lowest light conditions had leaf arearatios five times larger than those in the highest light, attributablemainly to a difference in leaf dry weight/area. Such flexibilityin leaf area ratio has not previously been associated with ‘sun’plants such as the tomato. Relatively normal growth was obtained in continuous light, incontrast to most other reports. This may have been due to theuse of conditions which would minimise water stress. The efficiency of the conversion of incident light energy tochemical energy by the whole plant ranged from 15 per cent inseedlings in low continuous light to about 6 per cent, tendingto be higher in young plants in long days under CO2 enrichment.The higher values are probably overestimates because of theexclusion of reflected light from the energy receipt values.  相似文献   

16.
Adverse climate change attributed to elevated atmospheric carbon dioxide concentration (CO2) and increased temperature components of global warming has been a central issue affecting economic and social development. Climate change, particularly global warming, imposes a severe impact on the terrestrial ecosystem. Elevated CO2, drought, and high temperature have been extensively documented individually; however, relatively little is known about how plants respond to the interaction of these factors. To summarize current knowledge on the response of plants to global change factors, we focus on the interactive effects of CO2 enrichment, warming, and drought on plant growth, carbon allocation, and photosynthesis. Stimulation due to elevated CO2 might be suppressed under other negative climatic/environmental stresses such as drought, high temperature, and their combination. However, elevated CO2 could alleviate deleterious effects of moderate drought via reducing stomatal conductance, altering leaf surface, and regulating gene expression. High CO2 levels and rising temperatures may result in opposite responses in plant water use efficiency. Stimulation of plant growth due to elevated CO2 for C3 species occurs regardless of water conditions, but only under a water deficit for C4 species. The positive effect of elevated CO2 on C4 species is derived mainly from the improved water status. Plant adaptive or maladaptive responses to multivariate environments are interactive; thus, researchers need to explore the ecological underpinnings involved in such responses to the multiple factors involved in climate change.  相似文献   

17.
18.
以'津优3号'黄瓜幼苗为试验材料,采用焦锑酸钙沉淀的电镜细胞化学方法,研究了CaCl2预处理对亚适温(昼/夜18℃/12℃)弱光(100 μmol·m-2·s-1)下黄瓜幼叶细胞中Ca2+分布、Ca2+-ATP酶活性及叶绿素荧光参数的影响.结果显示:正常温光条件(CK)下,黄瓜幼叶细胞Ca2+主要存在于液泡和液泡膜上,细胞质中含量较低;经亚适温和弱光处理7 d后,叶片细胞质和细胞膜中形成较大的钙沉淀颗粒,液泡中的Ca2+颗粒聚集成团,膜组织边缘模糊,Ca2+-ATPase活性降低;胁迫前用CaCl2预处理的细胞质中Ca2+颗粒略有增加,且分布较均匀,膜组织完整,Ca2+-ATPase活性与CK差异不显著;而经LaCl3、EGTA和CPZ预处理的Ca2+多呈大颗粒状聚积在细胞质、液泡膜或细胞壁上,Ca2+-ATPase活性大幅度下降.在7 d亚适温弱光处理后,各处理黄瓜叶片的Fv/Fm变化不大,而ΦPSⅡ、qP和ETR显著降低;与水预处理相比,叶片ΦPSⅡ、qP和ETR在CaCl2处理下显著增加,而在EGTA和CPZ处理下显著减小,LaCl3处理的无显著变化.研究表明,亚适温弱光处理能打破黄瓜幼苗细胞内的Ca2+平衡,使其膜组织受到一定程度破坏;CaCl2可维持胞内较高的Ca2+-ATP酶活性,保持Ca2+平衡,保护细胞膜组织结构完整,并参与了光合作用光能捕获和光合效率的调控,能有效减轻亚适温弱光对黄瓜幼苗光合作用的不良影响.  相似文献   

19.
CO2浓度升高对植物-土壤系统地下部分碳流通的影响   总被引:11,自引:1,他引:11  
目前 ,由于化石燃料的燃烧和土地利用的改变 ,每年释放到大气中的碳大约有 7Gt[2 4 ] ,其中 ,有 3Gt留在大气中 ,2Gt被固定在深海中 ,另 2Gt被植物固定在生态系统中[19,4 8] ,事实上 ,陆地生态系统中的碳大部分都贮存在土壤中[4 4 ] ,所以植物与土壤之间的碳流通对全球碳循环极为重要。大气CO2 浓度升高有可能通过生态系统中的各种生理过程来改变植物 -土壤系统中碳通量的变化 ,使输入土壤的碳量增加 ,另一方面 ,地下部分碳通量的增加使土体成为一个潜在的碳汇 ,有可能缓解大气中CO2 浓度的升高。但有关高CO2 对地下部分植物…  相似文献   

20.
采用RT-PCR技术,从豌豆(Pisum sativum L.)幼叶中克隆了1个约800bp的Lhcb2 cDNA。以特异探针进行的Southern杂交结果表明,Lhcb2基因以单拷贝形成存在于豌豆基因组中。不同光照时间和温度对豌豆幼苗进行处理的RT-PCR和Northern blotting分析表明,Lhcb2基因转录水平上的表达受光照的控制,且明显表现出对光照时间的依赖性。光照0 ̄1.5hLh  相似文献   

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