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1.
高浓度CO2下苦草的生长和生理生化反应   总被引:4,自引:2,他引:2  
对沉水植物苦草 (VallisneriaspiraslisL .)在高浓度CO2 (10 0 0 μmol/mol)和对照浓度CO2 (35 0 μmol/mol)下的生长特征和生理生化指标进行了比较研究。在实验的早期阶段 ,从冬芽出苗的苦草幼株在高浓度CO2 下生长明显加快 ,但由于后期生长逐渐放慢 ,其最终总生物量比对照组仅高出 11.6 %。尽管高浓度CO2 也促进了根的生物量的累积 ,但是由于苦草叶片生物量占总株生物量比例大 ,高浓度CO2 下苦草生物量的增加主要反映为叶片生物量的增加。在实验后期阶段 ,高浓度CO2 促进了苦草冬芽的形成。实验过程中 ,苦草的根叶生物量比 (RLR)在高浓度和对照浓度CO2 下均有所降低 ,二者之间无明显统计学差异。高浓度CO2 下苦草叶片中叶绿素含量和可溶性蛋白质含量降低 ,而可溶性总糖含量明显增加。  相似文献   

2.
以贡湖水体营养盐水平现状[ρ(TN)0.4~4 mg·L-1、ρ(TP)0.04~0.4 mg·L-1]为依据,研究不同梯度营养盐水体对刺苦草(Vallisneria spinulosa)与密刺苦草(V.denseserrulata)生长及生理的影响,探讨同属沉水植物对不同营养水体的响应差异。结果表明:水体营养条件对两种沉水植物的生物量累积没有显著影响;处理组刺苦草的最大株高分别增加了19%(P0.05)、63%(P0.05)、205%(P0.01),密刺苦草高浓度中植株最大株高与低浓度差异显著(P0.05);刺苦草与密刺苦草在高浓度水体中的克隆繁殖能力分别下降了30%和20%;低浓度水体中刺苦草与密刺苦草叶片丙二醛含量增加(P0.05),叶绿素含量减少(P0.05),表明其受到养分胁迫;在ρ(TN)1.5~4 mg·L-1、ρ(TP)0.15~0.4 mg·L-1范围内,两种苦草表现出较强适应性。  相似文献   

3.
研究了用开顶箱控制CO2 浓度在 5 0 0和 70 0 μmol·mol-1左右时红松幼苗的生理生态反应 .结果表明 ,高浓度CO2 (5 0 0、70 0 μmol·mol-1CO2 )和对照 (对照开顶箱、裸地 )条件下 ,红松幼苗的净光合速率与气孔导度之间的变化不同 .红松幼苗在 5 0 0 μmol·mol-1CO2 条件下 ,RuBPcase活性最高 ,呈现光合上调反应 ,日平均净光合速率最大 ,叶绿素及可溶性糖含量最高 ;而生长在 70 0 μmol·mol-1CO2 的红松幼苗呈现光合下调反应 ,光合作用明显低于对照植株 ,其酶活性及物质含量均最低  相似文献   

4.
 对菹草 (Potamogeton crispus) 叶在高CO2 (1 000±50 μmol·mol-1)和对照浓度(约380 μmol·mol-1)下的表型及一些生理生化指标进行了比较研究。结果表明:CO2浓度升高明显地改变了菹草叶的表型特征,外形更为粗短,叶宽、单叶面积、单株总叶面积、叶面积率、叶重比明显增加,但特殊叶面积和叶长增加不明显。线性回归分析表明单株总叶面积和植株大小密切相关。异速生长分析表明叶面积的变化不是可塑性反应,而是受植株大小所制约。此外,CO2浓度升高后植物的色素含量和一些化学物质含量明显改变。叶绿素a、叶绿素b、总叶绿素及类胡萝卜素含量减少,且叶绿素a/b也降低;可溶性糖含量增加,而蛋白质、N和P浓度降低。  相似文献   

5.
CO2浓度升高对两个种植密度下红桦生长和养分含量的影响   总被引:3,自引:3,他引:0  
采用控制环境生长室,研究了CO2浓度升高对2个种植密度下红桦幼苗生长和氮(N)、磷(P)含量的影响。试验设置CO2浓度为350和700μmol.mol-12个水平,每个CO2浓度水平下又设密度28和84株.m-22个水平。结果表明:CO2浓度升高,红桦株高和叶面积指数(LAI)均增加,净同化率(NAR)值增加,叶质比(LMR)和比叶面积(SLA)均下降,但相对生长率(RGR)提高。CO2浓度增加,红桦幼苗茎枝、叶、根和总生物量提高,氮(N)、磷(P)含量降低,但单株N、P总吸收量均增加。CO2浓度升高,氮磷利用效率(NUE和PUE)提高,氮磷累积速率(NAcR和PAcR)显著增加。CO2浓度升高,红桦幼苗体内N、P浓度下降是由于生物量迅速增加引起的稀释效应造成的,而NUE和PUE的提高可以有效缓解CO2浓度升高后,亚高山和高山地区森林土壤中养分元素不足对森林生产力的限制。CO2浓度升高导致的植物生长的增加量会随植株密度的增加而降低,不同器官养分吸收量的增加量在低密度条件下比高密度条件下大得多,主要是因为高种植密度显著降低了植株各部位的干质量。  相似文献   

6.
研究了持续 3个生长季高浓度CO2 处理的长白山主要树种红松、长白赤松和水曲柳幼苗叶 (片 )的蔗糖、果糖、可溶性总糖、淀粉及全氮含量变化 .结果表明 ,前两个生长季 70 0 μmol·mol-1CO2 处理 ,促进了水曲柳和长白赤松幼苗的淀粉累积 ,70 0和 5 0 0 μmol·mol-1CO2 却使红松幼苗的全N含量明显降低 .第三个生长季高浓度CO2 处理的第一周和第二周 ,红松和水曲柳幼苗的淀粉含量增加 ,全N含量降低 ,第八周时 ,水曲柳仍维持原来的变化趋势 .第三个生长季高浓度CO2 处理 ,并未使长白赤松的C、N含量有明显的增减 .CO2 浓度影响了碳水化合物在叶 (片 )中的积累形式  相似文献   

7.
不同CO2浓度下长白山3种树木幼苗的光合特性   总被引:25,自引:9,他引:16  
选取长白山针叶树红松 (Pinuskoraiensis)、长白赤松 (Pinussylvestriformis)和阔叶树水曲柳(Fraxinusmandshurica)幼苗为研究对象 ,以开顶箱的方式控制CO2 浓度为 5 0 0和 70 0 μmol·mol-1,经过 3个生长季CO2 处理后 ,分别测定了 3个树种的 3年生幼苗在高浓度CO2 和大气CO2 浓度下的光合特性 .结果表明 ,前两个生长季高浓度CO2 处理增强了 3个树种幼苗的光合能力 ;不同树种在相同CO2 浓度下 ,最大净光合速率及光响应参数值不同 ;第 3个生长季 ,除 5 0 0 μmol·mol-1CO2 下生长的长白赤松外 ,各树种的幼苗在高浓度CO2 下并未发生“光合驯化”现象 ;最大净光合速率及光响应参数值随CO2 处理时间的延长有不同幅度的增减 ;高浓度CO2 改变了树木幼苗对强光和弱光的利用能力 .  相似文献   

8.
大气CO2浓度升高影响外来植物入侵,研究外来入侵植物和本地植物对大气CO2浓度升高响应的差异,有助于准确预测和管理外来植物入侵。基于封顶式CO2生长室,模拟大气CO2浓度变化(对照和700μmol/mol),比较研究了外来入侵植物飞机草(Chromolaena odorata)和本地植物异叶泽兰(Eupatorium heterophyllum)形态、生长、生物量分配和光合特性对大气CO2浓度升高响应的差异。结果表明:(1)在当前大气CO2浓度下,飞机草总生物量、株高、基径和总叶面积高于异叶泽兰,分枝数低于异叶泽兰;CO2浓度升高,飞机的总生物量、株高、基径、分枝数和总叶面积分别增加了92%、41%、60%、325%和148%,高于异叶泽兰的32%、14%、30%、64%和79%,飞机草生长优势进一步提高。(2)无论在高或低CO2浓度下,飞机草根生物量分数(RMF)都低于异叶泽兰,叶生物量分数(LMF)和茎生物量分数(SMF)都高于异叶泽兰;CO2倍增两种植物RMF均降低,LMF和SMF均升高,但这2个参数对CO2倍增响应的种间差异不显著。(3)无论在高或低CO2浓度下,飞机草和异叶泽兰的净光合速率差异均不显著,CO2倍增对两种植物的净光合速率的促进作用相似。上述结果表明,在未来大气CO2浓度升高的条件下,飞机草的入侵性可能提高,入侵危害将加剧。  相似文献   

9.
利用便携式光合气体分析系统 (LI 6 4 0 0 ) ,比较测定了高CO2 浓度 (FACE ,free airCO2 enrich ment)和普通空气CO2 浓度下生长的水稻叶片的净光合速率、水分利用率、表观量子效率和RuBP羧化效率等光合参数 .在各自生长CO2 浓度 (380vs 5 80 μmol·mol-1)下测定时 ,高CO2 浓度 (5 80 μmol·mol-1)下生长的水稻叶片的净光合速率、碳同化的表观量子效率和水分利用率明显高于普通空气 (380 μmol·mol-1)下生长的水稻叶片 .但是 ,随着FACE处理时间的延长 ,高CO2 浓度对净光合速率的促进作用逐渐减小 .在相同CO2 浓度下测定时 ,FACE条件下生长的水稻叶片净光合速率和羧化效率明显比普通空气下生长的对照低 .尽管高CO2 浓度下生长的水稻叶片的气孔导度明显低于普通空气中生长的水稻叶片 ,但两者胞间CO2 浓度差异不显著 ,因此高CO2 浓度下生长的水稻叶片光合下调似乎不是由气孔导度降低造成的 .  相似文献   

10.
很多外来入侵植物都具有克隆生长习性,探究克隆整合特性与外来克隆植物入侵性间的关系对阐明其生态适应性及入侵机制具有重要的意义。本研究以入侵植物空心莲子草及其本地同属种莲子草为研究对象,比较在生防昆虫莲草直胸跳甲的取食下,克隆整合对两种植物先端分株、基端分株及整个克隆片段生长和生物量分配的影响。结果表明: 在莲草直胸跳甲取食下,有克隆整合的空心莲子草先端分株的叶片数、茎长、分株数及整个克隆片段的地径均显著高于无克隆整合植株,其基端分株及整个克隆片段的地下生物量和总生物量相较于无克隆整合植株分别降低了78.2%、60.9%和48.7%、37.2%;有克隆整合的莲子草先端分株的地径及整个克隆片段的叶片数与无克隆整合植株相比显著增加,其基端分株数显著降低了21.7%,而其先端分株、基端分株及整个克隆片段的生物量均无显著差异。耗益分析表明,在莲草直胸跳甲取食下,空心莲子草先端分株的分株数与生物量及莲子草先端分株的分株数均能通过克隆整合显著受益,而两种植物基端的分株数、生物量的耗益则不受克隆整合处理的影响。这些结果表明,克隆整合虽能在一定程度缓解莲草直胸跳甲对于两种植物先端分株的取食压力,且空心莲子草的克隆整合作用要强于莲子草,但在整个克隆片段水平上,两种植物并不能通过克隆整合显著获益。  相似文献   

11.
红豆草与土壤氮含量对大气二氧化碳浓度升高的响应   总被引:1,自引:0,他引:1  
在封闭的植物培养箱中,通过盆栽实验,研究了红豆草和土壤氮含量对CO2浓度增加的响应.结果表明,与正常CO2浓度(355~370 μmol·mol-1)相比,CO2浓度升高(700 μmol·mol-1),植物生物量增加25.1%(P<0.01),但植物体氮浓度降低25.3%(P<0.001),植物全氮没有显著的变化.经3个月盆栽实验后,与原始土壤相比,两种CO2浓度处理土壤全N、NO3--N和NH4+-N都有所降低,而土壤微生物氮则显著增加,这可能与植物生长有关.不同CO2浓度处理土壤NH4+-N浓度基本一致,但在高CO2浓度下,土壤NO3--N浓度显著降低,而微生物生物氮显著增加.对整个土壤-植物系统而言,盆栽实验后,整个系统全氮有少量增加,但变化不显著,特别是在高CO2浓度条件下,土壤-植物系统全氮最大,这可能与培养材料红豆草为豆科植物,而且在高CO2浓度下生物量增加,导致氮的固定量增加有关.  相似文献   

12.
An increase in leaf mass per area (MLA) of plants grown at elevated [CO2] is often accompanied by accumulation of non-structural carbohydrates, and has been considered to be a response resulting from source-sink imbalance. We hypothesized that the increase in MLA benefits plants by increasing the net assimilation rate through maintaining a high leaf nitrogen content per area (NLA). To test this hypothesis, Polygonum cuspidatum was grown at ambient (370 micro mol mol-1) and elevated (700 micro mol mol-1) [CO2] with three levels of N supply. Elevated [CO2] significantly increased MLA with smaller effects on NLA and leaf mass ratio (fLM). The effect of change in MLA on plant growth was investigated by the sensitivity analysis: MLA values observed at ambient and elevated [CO2] were substituted into a steady-state growth model to calculate the relative growth rate (R). At ambient [CO2], substitution of a high MLA (observed at elevated [CO2]) did not increase R, compared with R for a low MLA (observed at ambient [CO2]), whereas at elevated [CO2] the high MLA always increased R compared with R at the low MLA. These results suggest that the increase in MLA contributes to growth enhancement under elevated [CO2]. The optimal combination of fLM and MLA to maximize R was determined for different [CO2] and N availabilities. The optimal fLM was nearly constant, while the optimal MLA increased at elevated [CO2], and decreased at higher N availabilities. The changes in fLM of actual plants may compensate for the limited plasticity of MLA.  相似文献   

13.
基于CTGC试验系统下面包小麦主要品质性状的研究   总被引:7,自引:0,他引:7       下载免费PDF全文
 当前,全球气候变化背景下,CO2浓度升高和气候变暖可能已经并将持续对小麦(Triticum aestivum)品质产生影响。为此依据自行设计的模拟气候变化的试验装置系统 (CTGC),研究大田条件下CO2浓度和温度增加对面包小麦主要品质性状的交互作用。 结果表明:在433.3~610.2μmol•mol-1范围内,CO2浓度增加对面包小麦的籽粒蛋白质含量、湿面筋含量和沉降值的影响不利;增温(+2 ℃多)表现为有利。当CO2浓度从433.3 mol•mol-1逐渐增加到551.5 mol•mol-1且温度增幅逐渐为+2 ℃时,CO2和温度对面包小麦的籽粒蛋白质含量、湿面筋含量和沉降值的交互作用表现为增加;而当CO2浓度增幅较大(达到610.2 mol•mol-1),温度增幅不大(白天平均温度仅增加2℃多)时,交互作用则 表现为减少。此外,CO2浓度增加使面包小麦的醎淀粉酶活性降低,温度上升则使之提高,两因素的交互作用则表现为醎淀粉酶活性提高。  相似文献   

14.
二氧化碳浓度升高对太湖沉水植物马来眼子菜生长的影响   总被引:1,自引:0,他引:1  
通过室外培养试验,研究不同CO2浓度条件下沉水植物马来眼子菜的生长及生理变化.结果表明:CO2浓度升高(1000 μmol·mol-1)条件下,马来眼子菜单株的平均生物量增加了44.3%(P<0.01),茎生物量比重下降了5.5%(P<0.05);根和叶中氮含量分别下降了18.1%和6.4%(P<0.05),而茎中氮含量变化不明显(P>0.05);根、茎、叶中磷含量分别增加了22.2%(P<0.05)、26.6%(P>0.05)和38.8%(P<0.05);可溶性糖含量增加了27.3%、18.3%和37.5%(P<0.05);根、茎和叶中全碳含量增加了4.6%、5.3%和2.0%;CO2浓度升高使水体中氮、磷含量分别下降了7.9%和5.1%(P<0.05),但对底泥中氮、磷的含量影响不明显.CO2浓度升高将对沉水植物生长及其生境有一定影响.  相似文献   

15.
Kandeler  E.  Tscherko  D.  Bardgett  R.D.  Hobbs  P.J.  Kampichler  C.  Jones  T.H. 《Plant and Soil》1998,202(2):251-262
We investigate the response of soil microorganisms to atmospheric CO2 and temperature change within model terrestrial ecosystems in the Ecotron. The model communities consisted of four plant species (Cardamine hirsuta, Poa annua, Senecio vulgaris, Spergula arvensis), four herbivorous insect species (two aphids, a leaf-miner, and a whitefly) and their parasitoids, snails, earthworms, woodlice, soil-dwelling Collembola (springtails), nematodes and soil microorganisms (bacteria, fungi, mycorrhizae and Protista). In two successive experiments, the effects of elevated temperature (ambient plus 2 °C) at both ambient and elevated CO2 conditions (ambient plus 200 ppm) were investigated. A 40:60 sand:Surrey loam mixture with relatively low nutrient levels was used. Each experiment ran for 9 months and soil microbial biomass (Cmic and Nmic), soil microbial community (fungal and bacterial phospholipid fatty acids), basal respiration, and enzymes involved in the carbon cycling (xylanase, trehalase) were measured at depths of 0–2, 0–10 and 10–20 cm. In addition, root biomass and tissue C:N ratio were determined to provide information on the amount and quality of substrates for microbial growth.Elevated temperature under both ambient and elevated CO2 did not show consistent treatment effects. Elevation of air temperature at ambient CO2 induced an increase in Cmic of the 0–10 cm layer, while at elevated CO2 total phospholipid fatty acids (PLFA) increased after the third generation. The metabolic quotient qCO2 decreased at elevated temperature in the ambient CO2 run. Xylanase and trehalase showed no changes in both runs. Root biomass and C:N ratio were not influenced by elevated temperature in ambient CO2. In elevated CO2, however, elevated temperature reduced root biomass in the 0–10 cm and 30–40 cm layers and increased N content of roots in the deeper layers. The different response of root biomass and C:N ratio to elevated temperature may be caused by differences in the dynamics of root decomposition and/or in allocation patterns to coarse or fine roots (i.e. storage vs. resource capture functions). Overall, our data suggests that in soils of low nutrient availability, the effects of climate change on the soil microbial community and processes are likely to be minimal and largely unpredicatable.  相似文献   

16.
 为揭示我国暖温带地区辽东栎群落若干优势植物光合作用随CO2浓度升高而变化的特点,用自行设计的同化室装置对自然生长状态下的辽东栎(Quercus liaotungensis KOidz.)、大叶白蜡(Fraxinus mandshurica Rupr.)、蒙椴(Tilia mongolica Maxim.)、五角枫(Acer mono Maxim.),以及优势灌木六道木(Abelia biflora Turcz.)、毛榛(Corylus mandshurica Maxim.)等6种木本植物进行升高CO2浓度处理,测定了这几种植物净光合速率的变化。加倍CO2浓度对6种植物的光合作用有不同程度的促进作用,净光合速率增加的程度从37%到93%不等,以辽东栎受到的促进作用最大,六道木最小,平均增加75%。净光合作用随CO2浓度升高而增加的程度中乔木种类略高于灌木种类。在夏季和秋季进行的日动态测定都表现出加倍CO2浓度对6种木本植物净光合速率的明显的促进作用。  相似文献   

17.
Predictions of shifts in rainfall patterns as atmospheric [CO2] increases could impact the growth of fast growing trees such as Populus spp. and Salix spp. and the interaction between elevated CO2 and water stress in these species is unknown. The objectives of this study were to characterize the responses to elevated CO2 and water stress in these two species, and to determine if elevated CO2 mitigated drought stress effects. Gas exchange, water potential components, whole plant transpiration and growth response to soil drying and recovery were assessed in hybrid poplar (clone 53-246) and willow (Salix sagitta) rooted cuttings growing in either ambient (350 &mgr;mol mol-1) or elevated (700 &mgr;mol mol-1) atmospheric CO2 concentration ([CO2]). Predawn water potential decreased with increasing water stress while midday water potentials remained unchanged (isohydric response). Turgor potentials at both predawn and midday increased in elevated [CO2], indicative of osmotic adjustment. Gas exchange was reduced by water stress while elevated [CO2] increased photosynthetic rates, reduced leaf conductance and nearly doubled instantaneous transpiration efficiency in both species. Dark respiration decreased in elevated [CO2] and water stress reduced Rd in the trees growing in ambient [CO2]. Willow had 56% lower whole plant hydraulic conductivity than poplar, and showed a 14% increase in elevated [CO2] while poplar was unresponsive. The physiological responses exhibited by poplar and willow to elevated [CO2] and water stress, singly, suggest that these species respond like other tree species. The interaction of [CO2] and water stress suggests that elevated [CO2] did mitigate the effects of water stress in willow, but not in poplar.  相似文献   

18.
This study examined the impact of season-long exposure to elevated carbon dioxide (CO2) and ozone (O3), individually and in combination, on leaf chlorophyll content and gas exchange characteristics in potato (Solanum tuberosum L. cv. Bintje). Plants grown in open-top chambers were exposed to three CO2 (ambient, 550 and 680 μmol mol-1) and two O3 treatments (ambient and elevated; 25 and 65 nmol mol-1, 8 h day-1 means, respectively) between crop emergence and maturity; plants were also grown in unchambered field plots. Non-destructive measurements of chlorophyll content and visible foliar injury were made for all treatments at 2-week intervals between 43 and 95 days after emergence. Gas exchange measurements were made for all except the intermediate 550 μmol mol-1 CO2 treatment. Season-long exposure to elevated O3 under ambient CO2 reduced chlorophyll content and induced extensive visible foliar damage, but had little effect on net assimilation rate or stomatal conductance. Elevated CO2 had no significant effect on chlorophyll content, but greatly reduced the damaging impact of O3 on chlorophyll content and visible foliar damage. Light-saturated assimilation rates for leaves grown under elevated CO2 were consistently lower when measured under either elevated or ambient CO2 than in equivalent leaves grown under ambient CO2. Analysis of CO2 response curves revealed that CO2-saturated assimilation rate, maximum rates of carboxylation and electron transport and respiration decreased with time. CO2-saturated assimilation rate was reduced by elevated O3 during the early stages of the season, while respiration was significantly greater under elevated CO2 as the crop approached maturity. The physiological origins of these responses and their implications for the performance of potato in a changing climate are discussed.  相似文献   

19.
The ability of asexual propagules to disperse is an important ecological determinant of the spread and establishment of many aquatic species. However, few previous studies have addressed the relationship between the asexual propagule buoyancy and sprouting abilities in submerged macrophytes. For this reason, turions of Potamogeton crispus samples were collected from Lake Liangzi, and an incubator sprouting experiment was conducted. Our results revealed that the floating turions showed higher sprouting rates than that of sinking turions, indicating the former ones are possibly with high levels of primary metabolites. The higher N and P concentrations in the floating turions caused lower C:N, C:P, and N:P ratios in these turions compared with sinking turions, which confirmed the activation of floating turions. The free amino acid and soluble carbohydrate concentrations were also higher in floating turions than those in sinking turions. Our results also revealed that turion leaf porosity rather than starch concentration may determine the density of P. crispus turions. This study makes a contribution to our understanding of how the internal characteristics of turions can (at least partly) determine dispersal outcomes and offers new insights into the dispersal and sprouting of asexual propagules of submerged macrophytes.  相似文献   

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