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1.
2010年在四川卧龙自然保护区选择海拔为2350、2700、3150和3530 m的4个分布地点,研究了巴郎山海拔梯度对奇花柳叶片13C、光合、CO2扩散导度、氮含量、光合氮利用效率( PNUE)和比叶面积(SLA)的影响.结果表明:随着海拔的升高,目标树种叶片氮含量(尤其是单位面积氮含量)及PNUE增加,叶片δ13C值也随之显著增加,且海拔每升高1000 m,δ13C增加1.4‰;CO2扩散导度(气孔导度和叶肉细胞导度)的增加,在一定程度上阻碍了叶片δ13C值随海拔升高,但不足以改变δ13C值随海拔升高的趋势;羧化能力是羧化位点与外界CO2分压比( Pc/Pa),甚至δ13C的限制因子.在海拔2350~2700m,奇花柳光合系统内部氮素分配主要受温度的影响,而2700~3530 m的光照作用可能更大.奇花柳的SLA随海拔无显著变化.  相似文献   

2.
夏季南京市中心-郊区-城市森林梯度上的近地层大气特征   总被引:1,自引:0,他引:1  
运用定点观测法和车载传感器的流动观测法,研究了夏季沿南京市市中心-郊区-城市森林梯度的近地层大气温度(T_(N-S))、CO_2浓度(p_(N-S)(CO_2))、湿度和污染气体浓度的变化规律.结果表明,沿市中心-郊区-城市森林梯度,T_(N-S)、p_(N-S)(CO_2)、相对湿度(RH_(N-S))和污染物浓度(p_(N-S)(SO_2)和p_(N-S)(NO_2))均表现为规律性的变化,与观测点距市中心的距离间的关系可用logistic方程进行较好的拟合(R~2在0.71~0.90之间).与城市森林(S9)相比,市中心(S1)的T_(N-S)和p_(N-S)(CO_2)在一天中的任何时段均有不同程度的升高,其中,T_(N-S)升高幅度在5:00~6:00时段最小,而在17:00~18:00时段最大,分别为1.3℃和4.7℃,白天和夜间平均分别升高了3.7℃和2.1℃;而p_(N-S)(CO_2)升高幅度在1:00~2:00时段最小,在13:00~14:00时段最大,分别为7.0μmol/mol和66μmol/mol,白天和夜间平均分别升高了55μmol/mol和20μmol/mol.S1和S9点间,绝对湿度(AH_(N-S))的全天平均值无显著差异;而RH_(N-S)除了5:00~6:00时段两点均接近饱和外,一天中S9点均高于S1点,两点最大差值出现在13:00~14:00时段,S1和S9分别为37.4%和52.9%,全天平均升高了7.0%.与S9点相比,S1点的p_(N-S)(SO_2)和p_(N-S)(NO_2)在上午10:00~11:40间分别升高了0.88倍和2.1倍.表明,当前城市的一些环境因子如T_(N-S)和p_(N-S)(CO_2)相当于全球数十年或更久以后的水平.  相似文献   

3.
喻阳华  程雯  杨丹丽  钟欣平 《生态学报》2018,38(24):8733-8740
稳定性碳同位素自然丰度(δ13C)能够揭示生态系统长时间尺度的有机碳动态变化,阐明生态系统功能的变化特征。以黔西北次生林14个优势树种为研究对象,测定叶片、凋落物以及根区土壤有机碳含量和δ13C值,分析不同层次碳含量和δ13C丰度之间的相关性。结果表明:14个优势树种叶片碳含量为404.67—487.14 g/kg,总体为针叶树种较高、常绿灌木较低;δ13C值为-31.2‰—-27.1‰,随生活型的变化规律不明显。凋落物碳含量为414.62—561.31 g/kg,与叶片碳含量的变化规律较为一致;δ13C值为-31.5‰—-27.3‰,随树种生活型的变化特征也不明显。根区土壤碳含量为10.02—91.59 g/kg,δ13C值为-26.8‰—-22.5‰,碳含量以光皮桦、银白杨等落叶乔木较高。叶片、凋落物和根区土壤3个层次的碳含量与δ13C丰度之间均呈不显著相关,不同层次的δ13C丰度之间和碳含量之间均为正相关。研究结果有助于反映森林生态系统碳循环过程的关键信息,为森林植被恢复提供理论依据。  相似文献   

4.
王英姿 《生态学报》2013,33(10):3129-3137
对灵石山海拔157-842 m(分9个海拔梯度,分别记为A1-A9)的米槠林优势种叶片δ13C值的特征及其与属性因子的关系进行分析,结果表明,灵石山米槠林优势种叶片δ13C的分布范围为(-28.806‰—-34.399‰),平均值为(-30.885±1.205)‰,叶片δ13C值与比叶面积(SLA)、叶片N含量、2年生K含量、Na含量、Mg含量、Ash(灰分)含量呈显著负相关,与2年生叶片Chl(叶绿素)含量、叶片P含量、叶片Ca含量、叶片干物质含量(LDMC)含量呈显著正相关,与不同叶龄Fe、Zn含量相关性不显著,与1年生和2年生叶片Mn含量分别呈负相关和正相关.不同优势种植物叶片δ13C丰度差异可以反映植物生理状况的变化.不同海拔梯度上叶片属性特征在一定程度上反映和影响了以米槠为建群种和优势种的灵石山常绿阔叶林叶片δ13C的特征.  相似文献   

5.
为了探究森林不同演替阶段碳氮(C、N)、稳定碳氮同位素值(δ13C、δ15N)随演替发生的变化特征与内在联系,该文以喀斯特高原峡谷区草灌、灌木、乔灌和乔木4个演替阶段的森林植物群落为研究对象,测定了叶片-凋落物-土壤的C、N及稳定同位素值,并分析其在不同层次间的互作效应。结果表明:(1)喀斯特地区森林叶片-凋落物-土壤δ13C值分别为-31.31‰~-28.23‰、-29.96‰~-20.07‰、-26.83‰~-21.14‰,相应的δ15N值依次为-3.41‰~1.54‰、-2.61‰~0.99‰、5.36‰~8.63‰,总体上土壤表现出富集效应。(2)伴随着演替发生,叶片δ13C值与土壤δ15N值均为先减小后增大,土壤、凋落物δ13C值呈降低趋势,叶片和凋落物δ15N值均无明显变化规律。(3)乔灌阶段叶片-土壤δ15N值最低,表明该阶段生态系统N饱和程度较小,N含量相对亏缺。(4)叶片-...  相似文献   

6.
王玉涛  李吉跃  程炜  陈崇  耿欣 《生态学报》2008,28(7):3143-3451
城市绿化树种是城市生态系统的重要组成部分,为了探讨城市绿化树种水分利用效率的季节变化及其影响因素,本文对北京24个城市绿化树种(包括6个常绿针叶和18个落叶阔叶树种)叶片碳同位素组成(δ13C)的季节变化以及与土壤温湿度和气象因子的相关性进行了研究.结果表明:常绿树种叶片δ13C季节间差异不显著,春、夏和秋季的平均值都接近-25.9‰,在-27.0‰~-24.5‰间变化;落叶树种叶片δ13C季节间差异极显著(p=1.97×10-7秋季>夏季,表明绿化树种水分利用效率(WUE)也为春季>秋季>夏季.研究发现:叶片δ13C与比叶面积(SLA)呈显著的负相关(落叶p=6.195×10-8相似文献   

7.
<正>鼎湖山生物圈保护区森林景观(张倩媚摄)。熊鑫等通过对鼎湖山森林演替序列植物-土壤碳氮同位素自然丰度的测定,分析了叶片稳定碳同位素比率(δ~(13)C)和稳定氮同位素比率(δ~(15)N)与其叶片元素含量的关系,叶片-凋落物-土壤δ~(13)C、δ~(15)N沿演替方向以及土壤δ~(13)C、δ~(15)N沿剖面深度的变化特征,借此探讨该地区植物群落对资源的利用策略以及森林演替过程中碳氮元素循环过程的变化(本期533–542页)。  相似文献   

8.
为探讨会仙喀斯特湿地不同生长环境下植物叶片碳(C)、氮(N)、磷(P)、稳定碳同位素(δ~(13)C)特征及其生态学指示意义,该文以挺水植物芦苇、浮水植物水葫芦和沉水植物金鱼藻为研究对象,分析了三种典型不同生活型植物叶片的δ~(13)C特征及种间和微生境的差异,并基于植物碳同位素与碳酸酐酶显著正相关的二端元模型,估算了植物利用光合作用固定的碳酸氢根离子(HCO3-)的碳量。结果表明:(1)三种植物叶片δ~(13)C的变化范围为-28.47‰~-21.69‰,平均值为-24.83‰,不同生活型植物间δ~(13)C存在差异,金鱼藻水葫芦芦苇。(2)植物δ~(13)C值与叶片C、N和P元素含量间呈显著正相关,与C/N、C/P和N/P呈显著负相关关系,与底泥的有机质、速效氮、总氮、速效磷和总磷含量呈显著正相关。(3)会仙喀斯特湿地三种不同生活型植物叶片N/P平均值为10.34,表现出植物受N、P共同影响的特征。(4)δ~(13)C的变化特征,揭示了三种水生植物可能通过增加磷利用效率来促进低水分利用率环境下的碳的合成,通过提高植物水分利用效率的策略来代偿较低的氮素利用效率。(5)芦苇光合作用固定HCO3-碳量为159.60 t·a~(-1)·km~(-2),水葫芦为10.80 t·a~(-1)·km~(-2),金鱼藻为9.24 t·a~(-1)·km~(-2),平均值为59.88 t·a~(-1)·km~(-2)。会仙喀斯特湿地植物的不同生活型、光合作用途径和生长微环境,是影响叶片δ~(13)C变化的主要因素。  相似文献   

9.
六道沟流域不同冠层小叶杨光合特性及水分利用效率研究   总被引:1,自引:0,他引:1  
魏特  王力  杨国敏 《西北植物学报》2017,37(11):2247-2255
小叶杨作为六道沟流域植被恢复的优势乔木速生树种,对该区的生态恢复与建设有着至关重要的作用。通过测定六道沟流域生长旺期(8和9月)不同冠层高度下小叶杨叶片的水势、光合气体交换参数、稳定性碳同位素比率(δ~(13)C)和叶片全N全P含量,分析了冠层叶片的δ~(13)C、光合特性指标、叶水势等在不同月份及冠层高度下的变化特征。结果表明:(1)小叶杨8、9月份间叶片光合特性指标净光合速率(P_n)、气孔导度(G_s)、胞间CO_2浓度(C_i)、蒸腾速率(T_r)均随着冠层高度增加而减小。(2)小叶杨叶片δ~(13)C和瞬时水分利用效率(WUEi)均随冠层高度增加而增加,δ~(13)C沿冠层高度的变化范围为-29.81‰~-27.43‰。(3)叶片δ~(13)C与植物的水分利用效率呈正相关关系,8月份和9月份δ~(13)C沿树高的变化幅度分别为2.22‰和2.12‰。研究发现,六道沟流域小叶杨叶片确实受到来自树高所引起的水分胁迫,叶片δ~(13)C能真实反映其长期的水分利用状况,且叶片δ~(13)C的变化是自身遗传特性与环境因子共同作用的结果。  相似文献   

10.
叶片性状是决定植物光合能力和羧化能力的关键因素,研究叶片性状在海拔梯度上的变化特征是解释植物对于环境变化的适应策略的重要手段。本文以分布于红池坝(10958′E, 3130′ N)草地的5个常见物种红三叶(Trifolium pratense)、老鹳草(Geranium wilfordii)、紫菀(Aster tataricus)、火绒草(Leontopodium leontopodioides)和绣线菊(Spiraea prunifolia)为研究对象,分析了所有物种(n=56)和不同物种的叶片比叶重(LMA)、叶氮含量(单位面积氮含量Narea、单位重量氮含量Nmass)以及叶片δ13C含量沿海拔梯度(815-2545m)的变化趋势及叶片性状之间的关系。研究结果表明:所有物种样品(n=56)的比叶重(LMA)、Narea和δ13C含量沿海拔梯度的增加呈显著增加趋势;Nmass沿海拔梯度的变化趋势不明显;δ13C含量与LMA、Narea呈现极显著正相关关系;不同物种的叶片性状沿着海拔梯度的响应特征有所不同,绣线菊(S. prunifolia)和老鹳草(G. wilfordii)的叶片性状沿海拔梯度的分布规律与所有物种(n=56)样品分布规律一致,红三叶(T. pratense)、紫菀(A. tataricus)、火绒草(L. leontopodioides)的各叶片性状沿海拔梯度的分布特征有所不同。  相似文献   

11.
Here, we analysed the transition from heterotrophic to autotrophic growth of the epigeal species sunflower (Helianthus annuus), and how transition is affected by CO(2). Growth analysis and steady-state (13)CO(2)/(12)CO(2) and (15)NO(3) (-)/(14)NO(3) (-) labelling were used to quantify reserve- and current assimilation-derived carbon (C) and nitrogen (N) allocation to shoots and roots in the presence of 200 and 1,000 micromol CO(2) mol(-1) air. Growth was not influenced by CO(2) until cotyledons unfolded. Then, C accumulation at elevated CO(2) increased to a rate 2-2.5 times higher than in sub-ambient CO(2) due to increased unit leaf rate (+120%) and leaf expansion (+60%). CO(2) had no effect on mobilization and allocation of reserve-derived C and N, even during the transition period. Export of autotrophic C from cotyledons began immediately following the onset of photosynthetic activity, serving roots and shoots near-simultaneously. Allocation of autotrophic C to shoots was increased at sub-ambient CO(2). The synchrony in transition from heterotrophic to autotrophic supply for different sinks in sunflower contrasts with the sequential transition reported for species with hypogeal germination.  相似文献   

12.
Solid-state (13)C NMR measurements of intact soybean leaves labeled by (13)CO(2) (at subambient concentrations) show that excess glycine from the photorespiratory C(2) cycle (i.e. glycine not part of the production of glycerate in support of photosynthesis) is either fully decarboxylated or inserted as (13)C-labeled glycyl residues in proteins. This (13)C incorporation in leaf protein, which is uniformly (15)N labeled by (15)NH(4)(15)NO(3), occurs as soon as 2 min after the start of (13)CO(2) labeling. In those leaves with lower levels of available nitrogen (as measured by leaf nitrate and glutamine-glutamate concentrations), the excess glycine is used primarily as glycyl residues in protein.  相似文献   

13.
Turnover of glucose and acetate in the presence of active reduction of nitrate, ferric iron and sulfate was investigated in anoxic rice field soil by using [U-(14)C]glucose and [2-(14)C]acetate. The turnover of glucose was not much affected by addition of ferrihydrite or sulfate, but was partially inhibited (60%) by addition of nitrate. Nitrate addition also strongly reduced acetate production from glucose while ferrihydrite and sulfate addition did not. These results demonstrate that ferric iron and sulfate reducers did not outcompete fermenting bacteria for glucose at endogenous concentrations. Nitrate reducers may have done so, but glucose fermentation may also have been inhibited by accumulation of toxic denitrification intermediates (nitrite, NO, N(2)O). Addition of nitrate resulted in complete inhibition of CH(4) production from [U-(14)C]glucose and [2-(14)C]acetate. However, addition of ferrihydrite or sulfate decreased the production of (14)CH(4) from [U-(14)C]glucose by only 70 and 65%, respectively. None of the electron acceptors significantly increased the production of (14)CO(2) from [U-(14)C]glucose, but all increased the production of (14)CO(2) from [2-(14)C]acetate. Uptake of acetate was faster in the presence of either nitrate, ferrihydrite or sulfate than in the unamended control. Addition of ferrihydrite and sulfate reduced (14)CH(4) production from [2-(14)C]acetate by 83 and 92%, respectively. Chloroform completely inhibited the methanogenic consumption of acetate. It also inhibited the oxidation of acetate, completely in the presence of sulfate, but not in the presence of nitrate or ferrihydrite. Our results show that, besides the possible toxic effect of products of nitrate reduction (NO, NO(2)(-) and N(2)O) on methanogens, nitrate reducers, ferric iron reducers and sulfate reducers were active enough to outcompete methanogens for acetate and channeling the flow of electrons away from CH(4) towards CO(2) production.  相似文献   

14.
Due to the ban on meat and bone meal (MBM) as an animal feed, combustion with energy recovery has been considered a viable alternative usage for the mounting stocks of MBM. The effects of the co-combustion of MBM and peat on flue gas emissions and fluidisation were studied using a bubbling fluidised bed (BFB) test facility (20 kW). The dispersion of emissions such as nitrogen dioxide (NO2), sulphur dioxide (SO2), carbon monoxide (CO), hydrogen chloride (HCl) and particulates was investigated for a proposed site and compared to the relevant national and international regulations. Concentrations of NO2, CO and HCl were less than 10% of legislative and guideline thresholds while ground level concentrations of SO2 were also below relevant EU and world guidelines. The results indicate the potential for using MBM as a co-fuel with peat in a BFB while maintaining high air quality standards.  相似文献   

15.
Survival of Rhizobium meliloti 102F5 in aerosols at 20 C was maximal at high relative humidity (RH) and minimal at low RH. Relatively high concentrations of NO(2), SO(2), or formaldehyde were needed to significantly reduce viability of R. meliloti in aerosols at 50% RH. Except for the reduction in activity of formaldehyde by SO(2), there was no additive or antagonistic effect of mixing pollutants. High environmental RH enhanced bactericidal activity of NO(2) and SO(2). High RH minimized and low RH accentuated the biological effect of ultraviolet light of 300 to 400 nm wavelength.  相似文献   

16.
Understanding of the influences of root-zone CO2 concentration on nitrogen (N) metabolism is limited. The influences of root-zone CO2 concentration on growth, N uptake, N metabolism and the partitioning of root assimilated 14C were determined in tomato (Lycopersicon esculentum). Root, but not leaf, nitrate reductase activity was increased in plants supplied with increased root-zone CO2. Root phosphoenolpyruvate carboxylase activity was lower with NO3(-)- than with NH4(+)-nutrition, and in the latter, was also suppressed by increased root-zone CO2. Increased growth rate in NO3(-)-fed plants with elevated root-zone CO2 concentrations was associated with transfer of root-derived organic acids to the shoot and conversion to carbohydrates. With NH4(+)-fed plants, growth and total N were not altered by elevated root-zone CO2 concentrations, although 14C partitioning to amino acid synthesis was increased. Effects of root-zone CO2 concentration on N uptake and metabolism over longer periods (> 1 d) were probably limited by feedback inhibition. Root-derived organic acids contributed to the carbon budget of the leaves through decarboxylation of the organic acids and photosynthetic refixation of released CO2.  相似文献   

17.
Coal is the most abundant of the fossil fuels, with reserves estimated at 102 billions of tons. The feasibility of using coal as a fuel depends upon reducing emissions of gas when it is burnt, such as carbon dioxide (CO2), sulfur oxides (SO(x)), and nitrogen oxides (NO(x)). The removal of CO2 with microalgae may be one of the most efficient ways of reducing this gas, without the need for radical changes in the world's energy supply and production methods. Spirulina sp. LEB-18 and Scenedesmus obliquus LEB-22 were cultivated in serial tubular photobioreactors, with the aim of measuring the potential of CO2 biofixation and the resistance of the microalgae to SO2 and NO. Spirulina sp. and S. obliquus had CO2 biofixation scores of 0.27 and 0.22 g L(-1) d(-1), respectively. Both microalgae were resistant to SO2 and NO, and grew during the 15 d they were cultivated, which proves that using microalgae is an efficient method of biofixation of CO2 emitted when fossil fuels are burnt.  相似文献   

18.
Most heterotrophic bacteria assimilate CO(2) in various carboxylation reactions during biosynthesis. In this study, assimilation of (14)CO(2) by heterotrophic bacteria was used for isotope labeling of active microorganisms in pure cultures and environmental samples. Labeled cells were visualized by microautoradiography (MAR) combined with fluorescence in situ hybridization (FISH) to obtain simultaneous information about activity and identity. Cultures of Escherichia coli and Pseudomonas putida assimilated sufficient (14)CO(2) during growth on various organic substrates to obtain positive MAR signals. The MAR signals were comparable with the traditional MAR approach based on uptake of (14)C-labeled organic substrates. Experiments with E. coli showed that (14)CO(2) was assimilated during both fermentation and aerobic and anaerobic respiration. The new MAR approach, HetCO(2)-MAR, was evaluated by targeting metabolic active filamentous bacteria, including "Candidatus Microthrix parvicella" in activated sludge. "Ca. Microthrix parvicella" was able to take up oleic acid under anaerobic conditions, as shown by the traditional MAR approach with [(14)C]oleic acid. However, the new HetCO(2)-MAR approach indicated that "Ca. Microthrix parvicella," did not significantly grow on oleic acid under anaerobic conditions with or without addition of NO(2)(-), whereas the addition of O(2) or NO(3)(-) initiated growth, as indicated by detectable (14)CO(2) assimilation. This is a metabolic feature that has not been described previously for filamentous bacteria. Such information could not have been derived by using the traditional MAR procedure, whereas the new HetCO(2)-MAR approach differentiates better between substrate uptake and substrate metabolism that result in growth. The HetCO(2)-MAR results were supported by stable isotope analysis of (13)C-labeled phospholipid fatty acids from activated sludge incubated under aerobic and anaerobic conditions in the presence of (13)CO(2). In conclusion, the novel HetCO(2)-MAR approach expands the possibility for studies of the ecophysiology of uncultivated microorganisms.  相似文献   

19.
小兴安岭主要乔、灌木燃烧过程的烟气释放特征   总被引:3,自引:1,他引:2  
测定了小兴安岭林区凉水林场10种乔木和9种灌木可燃物燃烧过程中释放的CO2、CO、xHy、SO2和NO等气体含量,计算了不同可燃物的气体释放量及排放因子.结果表明:乔木和灌木可燃物试样燃烧过程中释放的CO2、含碳气体总量和5种气体总量的平均值分别为1 277.04和1 149.06 mg·g-1、1 476.27和1 147.18 mg·g-1、1 486.21和1 459.67 mg·g-1,乔木均大于灌木;乔木和灌木的CO、NO和SO2释放量平均值分别为231.58和282.93 mg·g-1、3.61和5.03 mg·g-1、6.32和7.46 mg·g-1,灌木均大于乔木;乔木和灌木的CO2、CO排放因子分别为2.8853和2.7718、0.4558和0.2425,乔木大于灌木.  相似文献   

20.
Understanding environmental and physiological controls of the variations in δ(13) C of CO(2) respired (δ(13) C(R)) from different compartments of an ecosystem is important for separation of CO(2) fluxes and to assess coupling between assimilation and respiration. In a wheat field, over 3 days we characterised the temporal dynamics of δ(13) C(R) from shoots and roots, from the soil and from the whole agroecosystem. To evaluate the basis of potential variations in δ(13) C(R), we also measured δ(13) C in different organic matter pools, as well as meteorological and gas exchange parameters. We observed strong diel variations up to ca. 6% in shoot, root and soil δ(13) C(R), but not in δ(13) C of the putative organic substrates for respiration, which varied by not more than ca. 1% within 24 h. Whole ecosystem-respired CO(2) was least depleted in (13) C in the afternoon and most negative in the early morning. We assume that temporally variable respiratory carbon isotope fractionation and changes in fluxes through metabolic pathways, rather than photosynthetic carbon isotope fractionation, governs the δ(13) C of respired CO(2) at the diel scale, and thus provides insights into the metabolic processes related to respiration under field conditions.  相似文献   

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