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1.
不同生态区烤烟叶片稳定碳同位素组成特征 总被引:3,自引:0,他引:3
在河南、福建和云南3个生态区大田种植烤烟K326,采集不同叶位生理成熟的烟叶,测定δ13C值、总碳、全氮及比叶重,探讨了不同生态区烟叶δ13C值组成特征。结果表明:河南烟叶δ13C值分布范围为-31.2%—-27.3‰,平均值-29.7‰;福建烟叶δ13C值分布范围为-28.6%—-24.6‰,平均值-26.3‰;云南烟叶δ13C值分布在-27.1—-24.0‰之间,平均值-25.6‰;河南烟叶全氮含量最高,其总碳、碳氮比和比叶重均显著低于其余两地;福建和云南烟叶各生理指标值较为接近;各生态区烟叶δ13C值均与全氮含量呈负相关,与碳氮比及比叶重呈正相关。河南与其余两地烤烟生理特征的差异性,以及福建与云南烤烟生理特征的相似性表明,δ13C值可能与烤烟的品质存在关联。 相似文献
2.
应用碳、氮稳定同位素研究鄱阳湖枯水末期水生食物网结构 总被引:3,自引:0,他引:3
稳定碳、氮同位素比值分析技术是研究生态系统中物质循环与能量流动的有效技术.δ13C值常用来分析消费者食物来源,δ15N值常用来确定生物在食物网中的营养位置.应用稳定同位素技术分析了鄱阳湖北部湖口县、都昌县、星子县、吴城镇4个采样点95条鱼和其他食物网成分样品的碳、氮稳定同位素比值,构建了鄱阳湖枯水期末期水生食物网.结果表明,不同水域颗粒有机物(POM)的δ13C值不同,范围为-27.5‰~-24.6‰可以区分赣江、修水、鄱阳湖、长江和鄱阳湖湖交汇处水体的颗粒有机物特征.江西鄱阳湖国家级自然保护区受人类活动干扰少,核心区生物δ15N相对较低,而周边人类活动频繁的星子、都昌两县附近水域生物体内的δ15N偏高,反映了人类活动引起的营养输入对系统的影响.在湖区不同位置捕获的相同品种水生生物δ13C值不同,反映了其不同的食物来源,用δ15N值计算发现其所占据的相对营养位置较为一致. 相似文献
3.
基于国际冻原计划(ITEX)模拟增温效应对植物影响的研究方法,以高寒矮嵩草草甸4种植物(矮嵩草、垂穗披碱草、棘豆、麻花艽)为实验材料,设置大(OTC1)和小(OTC2)两类增温小室,测定了其叶片碳氮及其稳定性碳同位素(δ~(13)C、δ~(15)N)等指标在增温3年后的变化。结果表明:除矮嵩草在较小增温小室(OTC2)中C/N比值比对照降低了14.1%,其它物种C/N在两个增温处理下都有所增加,但差异均不显著(P0.05)。4种植物叶片δ~(13)C值在-24.12‰~-28.34‰之间,矮嵩草叶片δ~(13)C值随增温而升高,棘豆、麻花艽随增温而降低,且矮嵩草在OTC2的δ~(13)C值变化达到显著水平(P0.05)。矮嵩草和麻花艽的叶片δ~(15)N值在OTC1和OTC2中均比对照增加,且麻花艽增加较显著(P0.05)。垂穗披碱草在OTC1和OTC2的叶片δ~(15)N值比对照分别减少18.7%和26.9%,差异都不显著(P0.05);棘豆叶片δ~(15)N值在OTC2内比对照低11.0%(P0.05),在OTC1的内比对照高2.8%(P0.05)。可见,高寒矮嵩草草甸不同功能群植物物种碳氮含量及稳定性碳氮同位素含量对短期增温有不同的响应模式和规律。 相似文献
4.
植物根呼吸是土壤呼吸的主要组成,研究根呼吸对生态系统碳收支及碳平衡有重要意义。采用~(13)C脉冲标记技术,在3种供水条件下,对比不同根离体时间(标记后0,6,24,48,216,360 h)的白羊草离体根呼吸速率和根呼吸释放的δ~(13)C同位素比值变化,分析根参数与离体根呼吸相关性。结果表明:1)不同离体时间的离体根呼吸速率变化趋势一致,3种供水条件下无显著差异,均在0—20 min急剧下降,下降范围为32%—39%。2)测定离体根呼吸释放的δ~(13)C在不同离体时间的变化,为实时监测转移到白羊草根系的~(13)CO_2在根部释放的过程提供了新思路;不同离体时间,3种供水条件下根呼吸释放的δ~(13)C在2 h内均值大小呈:供水充分轻度胁迫重度胁迫。随离体时间(0—360 h)推移根呼吸释放的δ~(13)C均值先增大后减小,在216 h达到峰值31.46‰;3)离体根呼吸速率和根呼吸释放的δ~(13)C受根系根面积、比根面积、N含量、C/N及根组织δ~(13)C的影响显著。4)轻度水分胁迫可促使根系生长(C固定)和根呼吸(C代谢)同时增加。 相似文献
5.
应用稳定同位素技术对贵州黑洞红点齿蟾组织和器官的δ13C、δ15N同位素组成进行了研究。结果显示,其胃肠、肌肉、肾脏、肝脏、骨头的δ13C值平均范围为-23.5763‰~-22.5933‰,跨度为0.9830‰,δ15N值平均范围为6.2940‰~7.2193‰,跨度为0.9253‰;其δ13C值大小顺序为骨头肌肉胃肠肾脏肝脏,δ15N值大小顺序为骨头肝脏肾脏肌肉胃肠。红点齿蟾在不同的年龄阶段、不同的性别中,其δ13C、δ15N值也不同,其δ13C值大小顺序为幼体雌性成体雌性幼体雄性成体雄性,δ15N值大小顺序为幼体雄性成体雄性幼体雌性成体雌性。Spearman相关分析结果表明,红点齿蟾肝脏的δ13C值随其体长和湿重的变化而成极显著变化(P≤0.01),其Spearman相关系数分别为0.820和0.833;其肾脏和肝脏的δ15N值也随其体长和湿重的变化而呈极显著变化(P≤0.01),其Spearman相关系数分别为0.812,0.895和0.800,0.883。 相似文献
6.
应用碳、氮稳定同位素研究稻田多个物种共存的食物网结构和营养级关系 总被引:3,自引:0,他引:3
稳定碳、氮同位素比值分析技术是研究生态系统中物质循环与能量流动的有效技术。δ13C值常用来分析消费者食物来源,δ15N值常用来确定生物在食物网中的营养位置。应用稳定同位素技术分析了稻-鱼(R-F)和稻-鱼-鸭(R-F-D)两种稻作方式下,稻田多个物种共存的食物网结构和营养级关系。结果表明,R-F中SOM的δ13C值为(-27.7±0.3)‰,与R-F-D(-27.4±0.4)‰,相差不大;R-F中POM的1δ3C值为(-27.4±0.8)‰,低于稻鱼鸭共生田(-26.7±0.5)‰;δ15N值计算发现R-F内浮游动物的营养级位置在2.24±0.16,鱼的营养级位置在3.07±0.26,均高于其在R-F-D内的营养级。在R-F-D内,由于鸭的引入,和R-F相比,鱼的营养级降低为2.63±0.13。 相似文献
7.
黔西北次生林优势树种叶片-凋落物-土壤连续体有机质碳稳定同位素特征 总被引:1,自引:0,他引:1
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
8.
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
9.
集约化生产下农田土壤碳、氮含量变化是衡量土壤肥力持久性的重要指标.对常规水稻-蚕豆轮作地、露地蔬菜地、3年塑料大棚地和10年以上塑料大棚地的土壤pH、电导率(EC)、土壤有机碳(SOC)和总氮(TN)含量及δ13C和δ15N同位素丰度进行测定,研究了集约化生产程度对土壤特性的影响.结果表明:与水稻-蚕豆轮作地相比,露地蔬菜地、3年塑料大棚地和10年以上塑料大棚地0 ~20 cm耕层土壤pH分别降低1.1、0.8和0.7,而土壤EC分别是水稻-蚕豆轮作地的4.2、4.9和5.2倍;土壤碳、氮含量随塑料大棚地生产年限的增加总体上呈先增大后减小的趋势.与水稻-蚕豆轮作地相比,10年以上塑料大棚地0~20、20~40、40 ~60、60 ~ 80、80 ~ 100 cm土层的土壤SOC含量分别下降了54%、46%、60%、63%和59%,土壤TN含量分别下降了53%、53%、71%、82%和85%.农田集约化生产程度显著影响土壤SOC、TN含量和δ13C、δ15N丰度,土壤δ13C丰度与SOC含量呈显著负相关.土壤δ13C丰度可作为评价农田土壤碳循环受人为干扰强度的指标. 相似文献
10.
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
11.
Although theoretical foodweb models predict the presence of only three to four trophic categories, estimation of “potential” vertical foodweb structure from species lists and inferred feeding interactions suggest that as many as 7 trophic categories can occur in the pelagic foodwebs of North American glaciated lakes. A compilation of data on the nitrogen isotopic composition of zooplankton from 46 Canadian Shield lakes suggested the average existence of one “realized” trophic category in addition to that of filter-feeding, herbivorous cladocerans. When phytoplankton, planktivorous invertebrates, and plantivorous and piscivorous fish are included, the vertical foodweb structure in the pelagic zones of these lakes are greater than those hypothesized from some theoretical models. 相似文献
12.
颗粒有机质的来源、测定及其影响因素 总被引:4,自引:1,他引:4
土壤活性有机质及其组分作为土壤质量的重要指标在土壤化学、物理和生物性质方面起着重要作用。颗粒有机质能够有效地反映有机质的特性,与微生物生长、营养供给及C、N的生物学调节密切相关。作为活性有机质的一个量度指标,颗粒有机质越来越受到人们的重视。本文综述了土壤颗粒有机质的来源及其在土壤有机质转化过程中的作用,对其测定方法作了系统的描述,阐明了土壤理化性质、农业措施(施肥与耕作)及土地利用类型对土壤颗粒有机质在土壤形成及维持其稳定性方面的影响。 相似文献
13.
Carbon pathways to zooplankton: insights from the combined use of stable isotope and fatty acid biomarkers 总被引:2,自引:1,他引:2
MARIE-ELODIE PERGA MARTIN KAINZ BLAKE MATTHEWS ASIT MAZUMDER 《Freshwater Biology》2006,51(11):2041-2051
1. Numerous studies have quantified the relative contribution of terrestrial‐ and phytoplankton‐derived carbon sources to zooplankton secondary production in lakes. However, few investigated the pathways along which allochthonous and autochthonous carbon (C) was actually conveyed to consumers. 2. We suggest that the combined use of fatty acid and stable isotope biomarkers could solve this issue. We conducted a field study on two oligotrophic lakes, in which primary production increased significantly between 2002 and 2004. We used modelling to estimate the contribution of terrestrial‐ and phytoplankton‐derived C to particulate organic C (POC) and zooplankton production from their δ13C values in 2002 and 2004. 3. According to the isotope model, phytoplankton‐derived C accounted for a major part of the POC pool in both lakes and supported more Daphnia sp. production in 2004 than in 2002. Fatty acid data revealed that increased contribution of algal‐C to Daphnia production, although common between both lakes, was achieved through C pathways that were different. In one lake, Daphnia grazed more intensively on phytoplankton, whereas in the other there was greater grazing on bacteria. In the latter case, the increased primary production resulted in greater release of algal‐derived dissolved organic C (DOC), which may have supported extra bacterial and eventually Daphnia, production. 4. This is the first study illustrating that the combination of fatty acid and stable isotope biomarkers could further our understanding of the factors controlling the relative magnitude of food webs pathways conveying organic matter to zooplankton. 相似文献
14.
稳定性同位素技术已经成为研究生态系统食物网结构和营养级关系及其动态变化的重要手段。应用稳定同位素技术(δ13C和δ15N)研究了东风洞的食物网结构和营养级关系。研究结果表明,东风洞主要为腐食食物链,由于在洞穴内黑暗带中无光照也无植物生长,所以碳源主要为东风洞中的土壤有机质,作为第一营养级;主要摄食关系为马陆与土壤有机物质,螺类与土壤有机物质等;在该洞生态系统中,将3种马陆直接作为初级消费者,以隅蛛和其它马陆平均值之间的差值(2.04‰)作为东风洞食物网稳定氮同位素的富集因子。根据营养级模型可知,马陆类群、细长钻螺等土壤动物,裸灶螽和涂闪夜蛾形成第二营养级,即初级消费者;第三营养级包括蜘蛛类、盲蛛、地蜈蚣以及黑眶蟾蜍,为次级消费者。 相似文献
15.
Variations and controls of nitrogen stable isotopes in particulate organic matter of lakes 总被引:3,自引:0,他引:3
B. Gu 《Oecologia》2009,160(3):421-431
Nitrogen stable isotope (δ15N) data of particulate organic matter (POM) from the literature were analyzed to provide an understanding of the variations
and controls of δ15NPOM in lakes at the global scale. The δ15NPOM variability characterized by seasonal mean, minimum, maximum, and amplitude (defined as δ15NPOM maximum − δ15NPOM minimum) from 36 lakes with seasonal data did not change systematically with latitude, but was significantly lower in small
lakes than in large lakes. The seasonal mean δ15NPOM increased from oligotrophic lakes to eutrophic lakes despite large variations that are attributed to the occurrences of nitrogen
fixation across the trophic gradient and the differences in δ15N of dissolved inorganic nitrogen (DIN) in individual lakes. Seasonal mean δ15NPOM was significantly correlated with DIN concentration and δ15NDIN in two subsets of lakes. Seasonal minimum δ15NPOM in individual lakes is influenced by nitrogen fixation and δ15NDIN while seasonal maximum δ15NPOM is influenced by lake trophic state and δ15NDIN. As a result of the dominance of non-living POM in the unproductive surface waters, seasonal δ15NPOM amplitude was small (mean = 4.2‰) in oligotrophic lakes of all latitudes. On the other hand, seasonal δ15NPOM amplitude in eutrophic lakes was large (mean = 10.3‰), and increased from low to high latitudes, suggesting that the seasonal
variability of δ15N in the phytoplankton-dominated POM pool was elevated by the greater spans of solar radiation and thermal regimes at high
latitudes. The δ15NPOM from 42 lakes with no seasonal data revealed no consistent patterns along latitude, lake area, and trophic gradients, and
a greater than 2‰ depletion compared to the lakes with seasonal data. Along with the large seasonal variability of δ15NPOM within lakes, these results provide insightful information on sampling design for the studies of food web baseline in lakes.
Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users. 相似文献
16.
Ted R. Angradi 《Hydrobiologia》1991,211(3):171-183
I investigated organic matter transport in the Henry's Fork of the Snake River, Idaho, USA, from August 1987 to November 1988. Mean discharge during the study was 15 m3 s–1. Screens were used to sample very coarse (> 6 mm) transported aquatic macrophyte material (VCTMM). Drift nets were used to sample coarse (1–6 mm) and fine (0.25–1 mm) transported particulate organic matter (CTOM and FTOM). Mean monthly concentration of VCTMM was 0.064 mg AFDWl–1 and was significantly higher than CTOM (0.024 mg AFDW l–1) and FTOM (0.036 mg AFDW l–1). VCTMM concentration was highest in December (0.163 mg AFDW l–1) and lowest in May (0.018 mg AFDW l–1). The sample position along a transect across the channel had a significant effect on the amount of transported organic matter collected in many months. The concentration of debris from individual species tracked the standing stock of that species during the growing season. In Fall, a dramatic increase in VCTMM corresponded to a decrease in macrophyte standing stock. FTOM and CTOM concentrations were highest in January (CTOM: 0.048; FTOM: 0.111 mg AFDW l–1), lowest in November 1988 (<0.006 mg AFDW l–1), were not correlated with discharge, and were inversely correlated with the standing stocks of macrophytes upstream, probably because macrophyte beds influenced the retentiveness of the channel. Standing stock of aquatic macrophytes was highest in September–October (5.2 kg wet weight m –2) and lowest in February (1.7 kg wet weight m–2). Annual movement of particulate organic matter past the sampling point was about 45 000 kg AFDW, of which 21 000 kg was VCTMM, 8 000 kg was CPOM, and 16 000 kg was FPOM. 相似文献
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土壤氮库对生态系统的养分循环至关重要。目前多数研究主要关注氮沉降对土壤总氮的影响, 而对土壤不同有机质组分的氮库对氮沉降响应的研究较为缺乏。该研究基于内蒙古典型草地的长期多水平施氮(0、8、32、64 g·m-2·a-1)实验平台, 利用土壤密度分级方法, 探究氮添加处理13年后典型草地中两种土壤有机质组分(颗粒态有机质(POM), 矿质结合态有机质(MAOM))氮含量的变化及调控机制。结果显示: 土壤总碳含量、POM和MAOM的碳含量在施氮处理间均没有显著差异。土壤总氮含量则随着施氮水平增加呈显著增加的趋势, 同时施氮处理下POM的氮含量显著上升, 而MAOM的氮含量没有变化。进一步分析发现, 施氮促进植物地上生物量积累, 增加了凋落物量及其氮含量, 从而导致POM的氮含量增加。由于MAOM主要通过黏土矿物等吸附土壤中小分子有机质形成, 其氮含量受土壤中黏粒与粉粒含量影响, 而与氮添加水平无显著相关关系。该研究结果表明长期氮添加促进土壤氮库积累, 但增加的氮主要分布在稳定性较低的POM中, 受干扰后容易从生态系统中流失。为了更准确地评估和预测氮沉降对陆地生态系统的氮循环过程的影响, 应考虑土壤中不同有机质组分的差异响应。 相似文献
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Beaver are well known to influence the geomorphology and geochemistry of boreal waters, in addition to being prominent vectors in the selective import of deciduous coarse woody debris (CWD). Because the stable carbon isotope ratios of deciduous trees are lower than those of coniferous trees, the possibility exists that the 13C values of particulate organic matter near beaver lodges may differ from those characteristic for littoral regions without beaver activity. In agreement with this supposition, 13C was found to significantly increase in progressively smaller size fractions of CWD collected from near lodges, probably due to the more rapid breakdown, decomposition and disappearance of deciduous material. 相似文献