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1.
浓度不断升高的地表臭氧(O3)已成为全球性环境问题, 中国也不例外。目前, 高浓度O3对叶片光合气体交换、植物生长或生物量的影响已备受关注, 但有关O3对生态系统层次的研究还相对稀缺且存在较大的不确定性。该文梳理了近40年来地表O3浓度及其影响相关领域的发展趋势和研究热点, 回顾了地表O3浓度升高对植物影响的研究手段和评估方法, 综述了地表O3浓度升高对陆地生态系统影响方面取得的重要进展, 主要包括植物应对O3胁迫的响应机制、地表O3对粮食产量和作物品质、生态系统固碳能力、群落结构和地下过程的影响及地表O3污染区域风险; 此外, 针对目前研究的不足, 对未来研究进行了展望。建议利用先进的完全开放式O3熏蒸系统模拟O3浓度升高对生态系统影响的同时加强对地下生态过程的研究, 开展O3与其他环境因子的复合作用研究; 关注O3污染对粮食安全的影响; 开展联网研究, 建立统一评价体系; 探索减缓地表O3污染的生态防控措施; 以期为地表O3污染生态效应领域的发展提供助力。  相似文献   

2.
《植物生态学报》1958,44(5):526
浓度不断升高的地表臭氧(O3)已成为全球性环境问题, 中国也不例外。目前, 高浓度O3对叶片光合气体交换、植物生长或生物量的影响已备受关注, 但有关O3对生态系统层次的研究还相对稀缺且存在较大的不确定性。该文梳理了近40年来地表O3浓度及其影响相关领域的发展趋势和研究热点, 回顾了地表O3浓度升高对植物影响的研究手段和评估方法, 综述了地表O3浓度升高对陆地生态系统影响方面取得的重要进展, 主要包括植物应对O3胁迫的响应机制、地表O3对粮食产量和作物品质、生态系统固碳能力、群落结构和地下过程的影响及地表O3污染区域风险; 此外, 针对目前研究的不足, 对未来研究进行了展望。建议利用先进的完全开放式O3熏蒸系统模拟O3浓度升高对生态系统影响的同时加强对地下生态过程的研究, 开展O3与其他环境因子的复合作用研究; 关注O3污染对粮食安全的影响; 开展联网研究, 建立统一评价体系; 探索减缓地表O3污染的生态防控措施; 以期为地表O3污染生态效应领域的发展提供助力。  相似文献   

3.
臭氧与其他环境因子对植物的交互作用   总被引:1,自引:0,他引:1  
随着城市化进程加速,近几十年来全球范围内对流层的臭氧(O3)浓度持续增加,臭氧对植物的影响引起广泛关注。植物受到臭氧胁迫后,生理生化和形态上出现一系列变化。但臭氧对植物的影响受大气、土壤和光照条件的影响很大。全球气候变化和极端气候常态化使得臭氧和环境因子的交互作用大大增加,因此,臭氧和其他环境因子交互作用的实验条件更接近自然环境条件。这些交互作用很大程度上取决于植物种类、臭氧浓度、胁迫时间、植物对这些环境因子的敏感性以及具体的气候条件。本文综述了臭氧与二氧化碳(CO2)、二氧化硫(SO2)、酸雨、氮(N)素、干旱、光照和紫外辐射(UV-B)的交互作用对植物的影响,探讨了臭氧与其他环境因子对植物的交互作用机理,并提出未来的研究热点是臭氧与其他环境因子交互作用对植物地下部分及根际影响、植物根系及其功能变化与根际过程相互影响的机制研究,不同气候条件下,各种类型森林对臭氧和其他环境因子交互作用的响应,臭氧与气候、大气和重金属污染物的交互作用,与低温等逆境的交互作用对植物的影响,从而找出逆境状态下生物进化的若干规律,为合理筛选抗臭氧污染的植物提供参考,对于改善生态环境具有重要意义。  相似文献   

4.
UV-B辐射增强对陆地植物次生代谢的影响   总被引:16,自引:6,他引:10  
薛慧君  岳明 《西北植物学报》2004,24(6):1131-1137
平流层臭氧的减薄已导致地表中波紫外辐射(UV-B,280~320nm)增强,由于UV-B能被许多生物大分子如蛋白质和核酸吸收并引起分子构象的变化,因此可对植物的各方面产生影响。本文将近年来特别是近5年的UV-B辐射增强对植物次生代谢物影响的研究工作进行了综述。主要包括:UV-B辐射增强对植物紫外吸收物的影响和可能的机制;环境因子的复合作用对植物紫外吸收物的影响和可能的机制;UV-B辐射增强对次生代谢物影响的生态学意义。并对该领域未来的研究作了展望。  相似文献   

5.
城市土壤质量演变及其生态环境效应   总被引:83,自引:0,他引:83  
城市化是人类活动影响下自然生态系统向人工生态系统的急剧变化形式,它引起一系列生态环境条件的改变。城市对土壤资源的数量和质量产生深刻的影响,包括土壤地表封闭引起的土壤生态功能彻底消失,土壤物理性质恶化,土壤形态学特征和演变过程深受人为作用的影响。短程变异增加而总体多样性降低,土壤污染加剧,土壤养分富集等多方面,城市过程中土地利用变化对土壤产生一系列生态环境效应,如养分径流输出增加,热缓冲能力下降,污染转移危险性上升等,有必要迅速开展城市化过程中土壤质量演变及其生态环境效应的系统研究,为我国城市可持续发展提供理论依据。  相似文献   

6.
土壤中多环芳烃污染对植物生理生态的影响   总被引:4,自引:0,他引:4  
多环芳烃(PAHs)是一类广泛存在于天然环境中的持久性有机污染物,对土壤的污染尤为突出,给生态环境、植物和人类健康造成严重的潜在威胁.当前,修复受PAHs污染的土壤是国际土壤和环境领域研究的热点,而植物修复是最具潜力的环境修复技术之一.本文对近年来土壤PAHs及其与其他污染物复合胁迫对植物生长及其形态结构、光合作用和抗氧化系统等影响研究的最新进展进行综述,并对今后的重要领域和研究热点进行了展望.  相似文献   

7.
臭氧胁迫对植物主要生理功能的影响   总被引:9,自引:0,他引:9  
列淦文  叶龙华  薛立 《生态学报》2014,34(2):294-306
近年来,由于光化学反应的臭氧前体增加,全球植物受对流层臭氧(O3)胁迫的程度越来越严重。臭氧污染被认为是造成东欧、西欧和整个美国的大片森林衰退和枯死的主要原因。臭氧胁迫严重影响植物叶片对光能的利用,通过气孔限制和非气孔限制,导致其光合速率的降低,影响光合产物的产量。臭氧对植物的影响与植物体内代谢物质的积聚量紧密联系。臭氧胁迫引发植物的各种防御保护机制,刺激抗氧化系统,影响膜系统,改变其体内碳和矿质养分的吸收并引起它们的重新分配,诱导其基因表达的深层变化。为了适应臭氧胁迫环境,植物通过生理生化机制的调节来保证其生命活动。如细胞通过调节渗透物质的含量来保持渗透势的平衡;细胞内各种抗氧化酶活性增加,以清除自由基,避免或者减轻细胞受到伤害;改变代谢途径以保持能量储备和降低代谢速率。可见,生态环境对生物进化具有重要影响。这个观点将在臭氧胁迫对植物生理的影响中得到证实,也是生物进化论的另一种证据。综述了臭氧对光合生理、呼吸代谢、抗氧化系统、膜系统、矿质养分的吸收和分配与分子生理等主要生理功能的影响,并提出臭氧胁迫对植物生理影响的今后研究方向与未来研究热点是:(1)加强在植物个体和群落水平上臭氧胁迫对植物生理影响的研究;(2)臭氧影响下植物的基因调控和相关信号传递网络系统的机理;(3)通过分子标记、基因图谱、基因组学和转基因技术等方法研究选育适应臭氧胁迫环境的植物;(4)尽可能在接近自然条件的环境中开展研究;(5)臭氧胁迫对亚热带和热带森林及其树种主要生理功能影响的研究;(6)建立模型评估臭氧对植物的影响。  相似文献   

8.
环境大气臭氧污染对植物的影响(一)   总被引:2,自引:0,他引:2  
汪开始 《生物学通报》1993,28(4):1-2,11
综合论述了最近国外有关对流层环境大气中臭氧污染对于植物,特别是作物、林木和园艺植物影响的实验研究,包括臭氧的化学性质、来源、浓度、研究方法、互作以及植物对臭氧的敏感性和指示植物等6个部份。着重论述了臭氧对植物的急性影响和慢性影响,包括叶片的可见症状、形态学、生理学和生物化学、单产和品质等。可供植物学、农林园艺学、环境生物学和环境保护学等方面的大专院校师生、中学和中专教师、科研和生产设计人员参考。  相似文献   

9.
植物内生细菌修复重金属污染土壤作用机制研究进展   总被引:1,自引:0,他引:1  
内生细菌生活在植物组织内部,长期以来与宿主植物形成了紧密的共生关系。内生细菌在重金属吸收、耐受和解毒方面具有优良的特性,为修复重金属污染土壤提供了有效的新方案。综述了内生细菌强化植物修复重金属污染土壤的作用机制,包括内生细菌通过产生植物生长调节激素,分泌ACC脱氨酶和几丁质酶等,促进宿主植物在重金属胁迫条件下的生长;通过改变重金属的生物有效性/毒性,减轻植物重金属毒害;通过与植物形成联合修复体,加强植物抗重金属毒性的能力。分析了近几年超富集植物内生细菌多样性及其影响因素,探讨了联合修复过程中影响内生细菌强化修复效果的主要因素,包括内生细菌的来源、活性和环境胁迫等各种生物因素和非生物因素,并对内生细菌与植物联合修复的研究方向进行展望,涉及内生细菌自身存活原因和如何耐受重金属的机制研究,植物内生细菌的行为动力学和代谢,以及内生细菌、植物及土壤之间的生态互作效应等,以期推动内生细菌大规模应用于植物修复重金属污染土壤。  相似文献   

10.
植物根系分泌物对土壤污染修复的作用及影响机理   总被引:4,自引:0,他引:4  
王亚  冯发运  葛静  李勇  余向阳 《生态学报》2022,42(3):829-842
生物修复是一种经济环保的土壤修复技术。根系分泌物是利用生物修复污染土壤过程中的关键物质,也是植物与土壤微生物进行物质交换和信息传递的重要载体,在植物响应污染物胁迫中扮演重要角色。研究植物根系分泌物对土壤污染修复的作用和影响机理,是深入理解植物和微生物环境适应机制的重要途径,对促进生物修复污染土壤有重要指导意义。从污染物胁迫对根系分泌物的影响、根系分泌物对土壤污染物环境行为的影响、根系分泌物在调控污染土壤中根际微生物群落结构和多样性中发挥的作用等几个方面综述了根系分泌物对土壤污染修复的影响及内在机制。研究结果表明,根系分泌物在降低重金属对植物的毒性、加速有机污染物降解等方面有非常重要的作用。根系分泌物对土壤微生物的丰度和多样性均有显著影响,其与根际微生物互作在土壤污染物的消减中发挥了重要的调控作用。在此基础上,提出了以往研究中的不足,并对污染物胁迫下根系分泌物未来研究的方向和趋势进行了展望。  相似文献   

11.
鲍歆歆  周伟奇  郑重  徐林莉 《生态学报》2023,43(5):1749-1762
近地面臭氧(O3)已成为继PM2.5后影响我国空气质量的一种重要二次污染物。随着氮氧化物浓度的持续下降和气候变暖的加剧,城市O3的形成对挥发性有机化合物的浓度更加敏感。近年来城市绿色空间显著增长,植物源挥发性有机化合物(BVOCs)排放和浓度逐年增加。针对BVOCs与近地面O3之间复杂的交互作用,从植物BVOCs的特性与作用出发,综述了不同因素尤其是O3浓度增加对树木生理状态及BVOCs排放速率的影响,定量分析了已有研究中O3对不同植物异戊二烯和单萜烯排放速率的影响,以及BVOCs对O3形成的贡献,总结了BVOCs与O3相互作用研究领域存在的不足。未来亟需加强的研究包括:(1)城市树种BVOCs排放因子的实测,建立物种的排放速率数据库,优化模型参数,提升精细尺度BVOCs排放量估算模型精度;(2)多种环境因子,比如污染物浓度、温湿度等对城市植物BVOCs排放的交互作用和综合影响的研究;(3)植物BVOCs对O  相似文献   

12.
Two modern cultivars [Yangmai16 (Y16) and Yangfumai 2 (Y2)] of winter wheat (Triticum aestivum L.) with almost identical phenology were investigated to determine the impacts of elevated ozone concentration (E‐O3) on physiological characters related to photosynthesis under fully open‐air field conditions in China. The plants were exposed from the initiation of tillering to final harvest, with E‐O3 of 127% of the ambient ozone concentration (A‐O3). Measurements of pigments, gas exchange rates, chlorophyll a fluorescence and lipid oxidation were made in three replicated plots throughout flag leaf development. In cultivar Y2, E‐O3 significantly accelerated leaf senescence, as indicated by increased lipid oxidation as well as faster declines in pigment amounts and photosynthetic rates. The lower photosynthetic rates were mainly due to nonstomatal factors, e.g. lower maximum carboxylation capacity, electron transport rates and light energy distribution. In cultivar Y16, by contrast, the effects of E‐O3 were observed only at the very last stage of flag leaf ageing. Since the two cultivars had almost identical phenology and very similar leaf stomatal conductance before senescence, the greater impacts of E‐O3 on cultivars Y2 than Y16 cannot be explained by differential ozone uptake. Our findings will be useful for scientists to select O3‐tolerant wheat cultivars against the rising surface [O3] in East and South Asia.  相似文献   

13.
Acute ozone exposure triggers major emissions of volatile organic compounds (VOCs), but quantitatively, it is unclear how different ozone doses alter the start and the total amount of these emissions, and the induction rate of different stress volatiles. It is also unclear whether priming (i.e. pre‐exposure to lower O3 concentrations) can modify the magnitude and kinetics of volatile emissions. We investigated photosynthetic characteristics and VOC emissions in Phaseolus vulgaris following acute ozone exposure (600 nmol mol?1 for 30 min) under illumination and in darkness and after priming with 200 nmol mol?1 O3 for 30 min. Methanol and lipoxygenase (LOX) pathway product emissions were induced rapidly, followed by moderate emissions of methyl salicylate (MeSA). Stomatal conductance prior to acute exposure was lower in darkness and after low O3 priming than in light and without priming. After low O3 priming, no MeSA and lower LOX emissions were detected under acute exposure. Overall, maximum emission rates and the total amount of emitted LOX products and methanol were quantitatively correlated with total stomatal ozone uptake. These results indicate that different stress volatiles scale differently with ozone dose and highlight the key role of stomatal conductance in controlling ozone uptake, leaf injury and volatile release.  相似文献   

14.
Four modern cultivars of winter wheat (Triticum aestivum L.) were grown under elevated ozone concentration (E‐O3) in fully open‐air field conditions in China for three consecutive growth seasons from 2007 to 2009. Results indicated that a mean 25% enhancement above the ambient ozone concentration (A‐O3, 45.7 p.p.b.) significantly reduced the grain yield by 20% with significant variation in the range from 10% to 35% among the combinations of cultivar and season. The varietal difference in the yield response to E‐O3 became nonsignificant when the anova was done by omitting one cultivar which showed unstable response to E‐O3 among the seasons. The reduction of individual grain mass accounted mostly for the yield loss by E‐O3, and showed significant difference between the cultivars. The response of relative yield to E‐O3 was not significantly different from those reported in China, Europe and India on the basis of experiments in open‐top chambers. Our results thus confirmed the rising threat of surface O3 on wheat production worldwide in the near future. Various countermeasures are urgently needed against the crop losses due to O3 such as mitigation of the increase in surface O3 with stricter pollution control, and enhancement of the wheat tolerance against O3 by breeding and management.  相似文献   

15.
Human activities result in a wide array of pollutants being released to the atmosphere. A number of these pollutants have direct effects on plants, including carbon dioxide (CO2), which is the substrate for photosynthesis, and ozone (O3), a damaging oxidant. How plants respond to changes in these atmospheric air pollutants, both directly and indirectly, feeds back on atmospheric composition and climate, global net primary productivity and ecosystem service provisioning. Here we discuss the past, current and future trends in emissions of CO2 and O3 and synthesise the current atmospheric CO2 and O3 budgets, describing the important role of vegetation in determining the atmospheric burden of those pollutants. While increased atmospheric CO2 concentration over the past 150 years has been accompanied by greater CO2 assimilation and storage in terrestrial ecosystems, there is evidence that rising temperatures and increased drought stress may limit the ability of future terrestrial ecosystems to buffer against atmospheric emissions. Long‐term Free Air CO2 or O3 Enrichment (FACE) experiments provide critical experimentation about the effects of future CO2 and O3 on ecosystems, and highlight the important interactive effects of temperature, nutrients and water supply in determining ecosystem responses to air pollution. Long‐term experimentation in both natural and cropping systems is needed to provide critical empirical data for modelling the effects of air pollutants on plant productivity in the decades to come.  相似文献   

16.
We investigated the effects of elevated ozone concentration (E‐O3) on CH4 and N2O emission from paddies with two rice cultivars: an inbred Indica cultivar Yangdao 6 (YD6) and a hybrid one II‐you 084 (IIY084), under fully open‐air field conditions in China. A mean 26.7% enhancement of ozone concentration above the ambient level (A‐O3) significantly reduced CH4 emission at tillering and flowering stages leading to a reduction of seasonal integral CH4 emission by 29.6% on average across the two cultivars. The reduced CH4 emission is associated with O3‐induced reduction in the whole‐plant biomass (?13.2%), root biomass (?34.7%), and maximum tiller number (?10.3%), all of which curbed the carbon supply for belowground CH4 production and its release from submerged soil to atmosphere. Although no significant difference was detected between the cultivars in the CH4 emission response to E‐O3, a larger decrease in CH4 emission with IIY084 (?33.2%) than that with YD6 (?7.0%) was observed at tillering stage, which may be due to the larger reduction in tiller number in IIY084 by E‐O3. Additionally, E‐O3 reduced seasonal mean NOx flux by 5.7% and 11.8% with IIY084 and YD6, respectively, but the effects were not significant statistically. We found that the relative response of CH4 emission to E‐O3 was not significantly different from those reported in open‐top chamber experiments. This study has thus confirmed that increasing ozone concentration would mitigate the global warming potential of CH4 and suggested consideration of the feedback mechanism between ozone and its precursor emission into the projection of future ozone effects on terrestrial ecosystem.  相似文献   

17.
Few investigations have been made on the impact of elevated ozone (O3) concentration on methane (CH4) emission from rice paddies. Using open‐top chambers in situ with different O3 treatments, CH4 emissions were measured in a rice paddy in Yangtze River Delta, China in 2007 and 2008. There were four treatments applied: charcoal‐filtered air (CF), nonfiltered air (NF), and charcoal‐filtered air with different O3 additions (O3‐1 and O3‐2). The mean O3 concentrations during the O3 fumigation were 19.7, 22.6, 69.6 and 118.6 ppb in 2007 and 7.0, 17.4, 82.2 and 138.3 ppb in 2008 for treatments CF, NF, O3‐1 and O3‐2, respectively. The rice yields, as compared with CF, were reduced by 32.8% and 37.1%, 58.3% and 52.1% in treatments O3‐1 and O3‐2 in 2007 and 2008, respectively. The diurnal patterns of CH4 emission varied temporally with treatments and there was inconsistence in diurnal variations in CH4 emissions from the paddy field. The daily mean CH4 emissions were significantly lower in treatments O3‐1 and O3‐2 than those in treatments CF and NF. Compared with CF treatment, CH4 emissions from the paddy field were decreased to 46.5% and 38.3%, 50.6% and 46.8% under treatments O3‐1 and O3‐2 in the whole growing seasons of 2007 and 2008, respectively. The seasonal mean CH4 emissions were negatively related with AOT40 (accumulative O3 concentration above 40 ppb; P < 0.01 in both years), but positively related to the relative rice yield (reference to CF; P < 0.01 in 2007 and P < 0.001 in 2008), aboveground biomass (P < 0.01 in both years) and underground biomass (P < 0.01 in 2007 and P < 0.05 in 2008). The decreased CH4 emission from the rice paddy due to an increased O3 exposure might partially mitigate the global warming potential induced by soil carbon loss under elevated O3 concentrations.  相似文献   

18.
The impact of ozone (O3) on European vegetation is largely under‐investigated, despite huge areas of Europe are exposed to high O3 levels and which are expected to increase in the next future. We studied the potential effects of O3 on photosynthesis and leaf area index (LAI) as well as the feedback between vegetation and atmospheric chemistry using a land surface model (ORCHIDEE) at high spatial resolution (30 km) coupled with a chemistry transport model (CHIMERE) for the whole year 2002. Our results show that the effect of tropospheric O3 on vegetation leads to a reduction in yearly gross primary production (GPP) of about 22% and a reduction in LAI of 15–20%. Larger impacts have been found during summer, when O3 reaches higher concentrations. During these months the maximum GPP decrease is up to 4 g C m?2 day?1, and the maximum LAI reduction is up to 0.7 m2 m?2. Since CHIMERE uses the LAI computed by ORCHIDEE to estimate the biogenic emissions, a LAI reduction may have severe implications on the simulated atmospheric chemistry. We found a large change in O3 precursors that however leads to small changes in tropospheric O3 concentration, while larger changes have been found for surface NO2 concentrations.  相似文献   

19.
China has the highest carbon dioxide (CO2) emissions in the world. In China, logistics accounts for a significant portion of the total energy use and CO2 emissions in business‐to‐customer (B2C) retailing. This study focuses on the environmental impacts of B2C delivery in China, focusing on the book retail industry. Mathematical models are proposed based on the practical operations of the “e‐commerce networked delivery” (END) system and the “sustainable networked delivery” (SND) system. The energy consumption and CO2 emissions per book are then determined and compared for the two systems. Furthermore, we contrast the findings with those of similar studies conducted for other countries and provide explanations for the differences. The results show that (1) in general, in China, the SND system is better than the END system in terms of environmental impacts; (2) the END system in China generates fewer environmental impacts than those in the United States and the United Kingdom, while the SND system in China has greater environmental impacts than that in the United States; and (3) the wide use of vehicles such as electric bicycles that have low energy consumption rates contributes to the reduction of environmental impacts per book in both the END and SND systems in China. The limitations of the study and suggestions for future research are also discussed.  相似文献   

20.
The carbon‐sink strength of temperate and boreal forests at midlatitudes of the northern hemisphere is decreased by ozone pollution, but knowledge on subtropical evergreen broadleaved forests is missing. Taking the dataset from Chinese studies covering temperate and subtropical regions, effects of elevated ozone concentration ([O3]) on growth, biomass, and functional leaf traits of different types of woody plants were quantitatively evaluated by meta‐analysis. Elevated mean [O3] of 116 ppb reduced total biomass of woody plants by 14% compared with control (mean [O3] of 21 ppb). Temperate species from China were more sensitive to O3 than those from Europe and North America in terms of photosynthesis and transpiration. Significant reductions in chlorophyll content, chlorophyll fluorescence parameters, and ascorbate peroxidase induced significant injury to photosynthesis and growth (height and diameter). Importantly, subtropical species were significantly less sensitive to O3 than temperate ones, whereas deciduous broadleaf species were significantly more sensitive than evergreen broadleaf and needle‐leaf species. These findings suggest that carbon‐sink strength of Chinese forests is reduced by present and future [O3] relative to control (20–40 ppb). Given that (sub)‐tropical evergreen broadleaved species dominate in Chinese forests, estimation of the global carbon‐sink constraints due to [O3] should be re‐evaluated.  相似文献   

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