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1.
李永华  王献  孔德政  叶庆生 《生态学报》2007,27(5):1852-1857
以开顶式塑料薄膜温室为设施,研究了红掌(Anthurium andlaealzum L.)幼苗植株生长、叶片净光合速率和光合酶活性对长期高CO2浓度的响应。结果表明:处理90d时,处理组T1((700±too)μmol·mol^-1CO2)的株高、单叶面积、株鲜重分别比对照组((360±30)μmol·mol^-1)增加了15.76%、14.30%、29.62%,而处理组他((1000±100)μmol·mol^-1CO2)的株高、单叶面积、株鲜重分别比对照增加了15.00%、9.63%、36.22%;处理150d时T1的株高、单叶面积、株鲜重与对照相比分别增加了16.08%、17.30%、49.09%,而他增加了16.61%、10.10%、48.87%。在各自生长环境下处理组T1、T2的净光合速率在整个处理期间均高于对照,处理150d时,T1、T2的净光合速率分别比对照高8.25%、20.62%;但处理90d时,在对照CO2浓度下测定的净光合速率处理组开始低于对照组,可能此时处理组的红掌叶片开始出现光合适应现象;CO2浓度升高促进了叶片中可溶性糖和淀粉积累,处理90d时T1、T2处理组中淀粉含量分别比对照高52.60%、67.66%;处理150d时,T1组红掌叶片中淀粉与可溶性糖含量比对照高53.43%、6.32%,T2比对照高58.44%、8.07%,叶绿素含量在处理90d时也开始低于对照组;整个实验过程中,Rubisco活性前期增加,90d以后开始下降;乙醇酸氧化酶活性则明显下降,T1、T2处理组试验结束时与对照组相比分别下降了41.28%、45.35%。一定处理时间(90d)的高浓度CO2处理提高了红掌叶片的净光合速率和碳水化合物的积累,促进了营养生长,但随着处理时间的延长,这种促进作用逐渐降低。  相似文献   

2.
李永华  王献  孔德政  叶庆生 《生态学报》2007,27(5):1852-1857
以开顶式塑料薄膜温室为设施,研究了红掌(Anthurium andraeanum L.)幼苗植株生长、叶片净光合速率和光合酶活性对长期高CO2浓度的响应。结果表明:处理90 d时,处理组T1((700±100) μmol•mol-1 CO2)的株高、单叶面积、株鲜重分别比对照组((360±30)μmol•mol-1)增加了15.76%、14.30%、29.62%,而处理组T2 ((1000±100)μmol•mol-1 CO2)的株高、单叶面积、株鲜重分别比对照增加了15.00%、9.63%、3622%;处理150 d时T1的株高、单叶面积、株鲜重与对照相比分别增加了1608%、17.30%、49.09%,而T2增加了16.61%、10.10%、48.87%。在各自生长环境下处理组T1、T2的净光合速率在整个处理期间均高于对照,处理150 d时,T1、T2的净光合速率分别比对照高8.25%、20.62%;但处理90 d时,在对照CO2浓度下测定的净光合速率处理组开始低于对照组,可能此时处理组的红掌叶片开始出现光合适应现象;CO2浓度升高促进了叶片中可溶性糖和淀粉积累,处理90 d时T1、T2处理组中淀粉含量分别比对照高52.60%、67.66%;处理150 d时,T1组红掌叶片中淀粉与可溶性糖含量比对照高53.43%、6.32%,T2比对照高58.44%、8.07%,叶绿素含量在处理90 d时也开始低于对照组;整个实验过程中,Rubisco活性前期增加,90 d以后开始下降;乙醇酸氧化酶活性则明显下降,T1、T2处理组试验结束时与对照组相比分别下降了41.28%、45.35%。一定处理时间(90 d)的高浓度CO2处理提高了红掌叶片的净光合速率和碳水化合物的积累,促进了营养生长,但随着处理时间的延长,这种促进作用逐渐降低。  相似文献   

3.
 研究了CO2加富对丹尼斯凤梨(Guzmania`Denise’)和吉利凤梨(Guzmania `Cherry’)叶片光合速率、植株生长、开花和光合相关酶活性的 影响。结果表明,处理30 d期间,处理(600±40)、(900±40) μmol CO2&;#8226;mol-1的净光合速率分别比同期对照增加了6.24%~31.91%和11.92%~ 41.48%;CO2加富下促进了叶片中可溶性糖和淀粉的积累, 蒸腾速率和气孔导度下降,Rubisco活性增加,乙醇酸氧化酶活性则明显下降。(600 ±40)μmol CO2&;#8226;mol-1处理下的株高、叶面积分别比同期对照下增加了6.94%~14.63%和1.66%~7. 06%,而处理(900±40) μmol CO2&;#8226;mol-1下 分别增加了9.71%~20.85%和2.87%~11.62%;CO2加富下促进了干重和鲜重的积累。此外,CO2加富提前了吉利凤梨的花期。  相似文献   

4.
研究了CO2加富对丹尼斯凤梨(Guzmania`Denise’)和吉利凤梨(Guzmania `Cherry’)叶片光合速率、植株生长、开花和光合相关酶活性的 影响。结果表明,处理30 d期间,处理(600±40)、(900±40) μmol CO2•mol-1的净光合速率分别比同期对照增加了6.24%~31.91%和11.92%~ 41.48%;CO2加富下促进了叶片中可溶性糖和淀粉的积累, 蒸腾速率和气孔导度下降,Rubisco活性增加,乙醇酸氧化酶活性则明显下降。(600 ±40)μmol CO2•mol-1处理下的株高、叶面积分别比同期对照下增加了6.94%~14.63%和1.66%~7. 06%,而处理(900±40) μmol CO2•mol-1下 分别增加了9.71%~20.85%和2.87%~11.62%;CO2加富下促进了干重和鲜重的积累。此外,CO2加富提前了吉利凤梨的花期。  相似文献   

5.
柚树(Citrus grandis)叶片光合作用对补增UV-B辐射的响应   总被引:4,自引:0,他引:4  
生长在人工光照 4 0 0μmol m- 2 s- 1 下的柚树幼树光合速率的最大值为 1 0 .2± 0 .5μmol m- 2 s- 1 ;而补增UV-B辐射 ( 3.8-4 .2μW cm- 2 ,2 4 5~ 2 97nm,4 5d)的叶片则为 6.4± 0 .8μmol m- 2 s- 1 ,较对照植株降低37.2 %。对照植物的表观量子产率 (固定 mol CO2 mol- 1量子 )为 0 .0 75± 0 .0 1 2 ,而经 UV-B辐射处理植株则为0 .0 4 1± 0 .0 0 8,明显较对照植株低。UV-B辐射处理使植株叶片的光呼吸和不包括光呼吸的 CO2 补偿点增高。对照植株叶片的最大值的 CO2 羧化速率 (μmol m- 2 s- 1 )为 57.1± 1 .5μmol m- 2 s- 1 ,较 UV-B辐射处理的高30 .9% ,而 UV-B辐射处理的植株的光合电子传递速率较对照低 30 %。同时 UV-B辐射植株叶片有较低的光能转化效率 ,其较对照低 39.1 % ,叶片亦含有较低的叶绿素含量。结果表明 ,UV-B辐射明显抑制叶片光合羧化速率和光合电子传递速率 ,UV-B辐射可能抑制包括 Rubisco羧化作用在内的多个光合生理过程 ,降低叶片光合速率。柚树叶片对 UV-B辐射敏感 ,选育抗 UV-B辐射的柚树品种势在必行。  相似文献   

6.
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   

7.
CO2浓度升高对凤梨叶片生长和光合特性的影响   总被引:14,自引:0,他引:14  
研究了CO2浓度升高对开顶式气室中凤梨叶片的生长与光合生理的影响。结果表明:高CO2浓度(1000±100μmolmol-1)下生长的凤梨植株的株高、叶面积、鲜重和干重均高于对照(360±30μmolmol-1),处理90d时分别为对照的120.19%、119.22%、177.91%和161.04%;凤梨叶片的净光合速率也增加了136%-259%,且促进了叶片中可溶性糖和淀粉的积累,但叶绿素含量则下降了33.91%。高CO2浓度处理的凤梨叶片中RuBP羧化酶活性没有明显变化,乙醇酸氧化酶活性则明显下降。  相似文献   

8.
赵天宏  孙加伟  赵艺欣  付宇  王岩  史奕 《生态学报》2008,28(8):3644-3653
为了揭示CO2和O3浓度升高及其复合作用对植物活性氧(ROS)代谢及抗氧化酶活性的影响机理,以玉米(Zea mays L.)为研究材料,利用开顶式气室(OTCs)研究了CO2和O3浓度升高及其复合作用下,玉米叶片活性氧产生速率、含量,膜脂过氧化程度,抗氧化酶活性,净光合速率及玉米籽粒产量的变化.结果表明,在整个生育期内,与对照相比,高浓度CO2((550±20)μmol · mol-1)处理下,玉米叶片净光合速率升高,O- ·2 产生速率、H2O2含量下降, MDA含量、相对电导率减小,SOD、CAT、POD活性增强,玉米百粒重和穗粒数增加;而在O3浓度为(80±10)nmol · mol-1的条件下,玉米叶片净光合速率下降,O- ·2 产生速率、H2O2含量升高,MDA含量、相对电导率增大,SOD、CAT、POD活性减弱,玉米百粒重和穗粒数降低;CO2和O3浓度升高复合((550±20)μmol · mol-1 (80±10)nmol · mol-1)处理下,玉米叶片的净光合速率、H2O2含量、SOD活性先升高后降低, MDA含量、相对电导率、CAT活性增加,POD活性减弱,而O- ·2 产生速率几乎不变化,且玉米的百粒重和穗粒数略低于对照.以上结果说明,CO2浓度升高抑制了玉米叶片活性氧的代谢速率,提高了抗氧化酶的活性,从而增强了光合作用,使玉米籽粒产量增加,对玉米表现为保护效应,而O3浓度升高促进了玉米叶片活性氧的代谢速率,降低了抗氧化酶的活性,抑制了光合作用,使玉米籽粒产量下降,对玉米表现为伤害效应.在CO2和O3浓度升高复合处理下,CO2浓度升高在一定程度上缓解了O3浓度升高对玉米的伤害效应,而O3浓度升高亦在一定程度上削弱了CO2浓度升高对玉米的保护效应.  相似文献   

9.
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   

10.
李成忠  陶俊  孙燕  孔芬  耿庆萍  杜蓓 《生态学杂志》2012,31(11):2817-2822
以5年生芍药盆栽苗为试材,研究了喷钙措施对芍药花茎品质、花茎机械强度及叶片光合参数的影响.结果表明,喷钙处理(4%,w/v)显著提高了花茎的机械强度,增幅达24.3%,花茎中纤维素、半纤维素、木质素及果胶含量均较对照显著增加,其中纤维素含量为456.54 μg·g-1,较对照增加了28.5%,增幅最大.喷钙处理还使芍药叶片净光合速率(Pn)、气孔导度(Gs)、蒸腾速率(Tr)和水分利用效率( WUE)增加,至处理28 d时,Pu为17.07 μmol·m-2·s-1,较对照增加29.6%,Gs较对照提高了55%,为0.31 mol·m-2·s-1,Tr较对照提高了20%,达到2.61 mmol · mol-1,WUE为6.54 mmol · mol-1,较对照增加7.6%.另外,喷钙使芍药叶片最大净光合速率(Pmax)达到20.71 μmol·m-2·s-1,较对照提高24.6%,光饱和点为902.5 μmol·m-2·s-1,较对照增加7.5%,而光补偿点则显著降低,为7.27 μmol·m-2·s-1,较对照降低34.5%.  相似文献   

11.
通过对6种藓类植物,即褶叶青藓(Brachythecium salebrosum(Web.et Mohr.)B.S.G.)、湿地匐灯藓(Plagiomnium acutum(Lindb.)Kop.)、侧枝匐灯藓(Plagiomnium maximoviczii(Lindb.)Kop.)、大凤尾藓(Fissidensnobilis Griff.)、大羽藓(Thuidium cymbifolium(Doz.et Molk.)B.S.G.)和大灰藓(Hypnum plumaeforme Wils.)嫩茎和老茎的石蜡切片和显微观察发现,同一藓类植株的嫩茎和老茎,茎结构稳定,不同种藓类植物茎横切面具有不同特征.植物体茎横切面形状、表层细胞的层数、细胞大小和细胞壁厚薄、皮层细胞大小和形状、中轴的有无以及比例等特征可以作为藓类植物的分科分类依据之一.  相似文献   

12.
Seed germination of an aurea mutant of tomato ( Lycopersicon esculentum Mill.) is promoted by continuous irradiation with red, far-red or long-wavelength far-red (758 nm) light as well as by cyclic irradiations (5 min red or 5 min far-red/25 min darkness). Far-red light applied immediately after each red does not change the germination behaviour. Seed germination of the isogenic wild-type, cv. UC-105, is promoted by continuous and cyclic red light while it is inhibited by continuous and cyclic far-red light and by continious 758 nm irradiation. Far-red irradiation reverses almost completely the promoting effect of red light. The promoting effect (in the aurea mutant) and the inhibitory effect (in the wild-type) of continuous far-red light do not show photon fluence rate dependency above 20 nmol m−2 s−1. It is concluded that phytochrome controls tomato seed germination throgh low energy responses in both the wild type and the au mutant. The promoting effect of continuous and cyclic far-red light in the au mutant can be attributed to a greater sensitivity to Pfr.  相似文献   

13.
14.
真菌类遗传学分析的知识结构教学   总被引:5,自引:2,他引:3  
罗桂花 《遗传》2002,24(3):349-350
本文以认知结构理论为指导,讨论了真菌类遗传分析与高等动植物遗传分析的内在联系,认为利用这种内在联系进行教学可收到好的效果并说明了作者的具体教学过程。 Abstract:In the paper, the relationship between genetic analysis of Fungi and genetic analysis of high animal and plant was discussed.A good results were obtained when we adopted this method in the teaching.  相似文献   

15.
The levels of endogenous phytohormones and respiratory rate in nine sorts of flowers such as Cymbidium faberi Rolfe, Nopalxochia ackermannii Kunth and others were investigated both at full bloom and senescence and meanwhile the effect of exogenous phytohormones on prolonging the blossoms and promoting ethylene production were tested. There is a high content of endogenous ethylene in all the long-lived flowere, about 3–16 folds higer than the short-lived ones. There is a high level of ABA at full blooming flowers of short-lived flowers, in which there is no or only some cytokinins in it, but the ratio of CTK (6BA+zeatin)/ABA is smaller(l.7). The endogenous ABA reached a much higher level at senescence in all nine sorts of flowers, so it is reasonable to consider that it is ABA which plays an important role of regulation in controlling flower's senescence. There is a much higher level of GA3 and zeatin in the long-lived flowers which is not demonstrated in the shortlived ones. The respiratory rate is one of the factors controtling the longevity of flowers, but it does not play a decided role. Application of 6BA and zeatin prolongs distinctly orchid’s longevity, however exogenous IAA through the promotive action on ethylene production, evidently extends the longevity of the flowers of the Nopalxochia ackermannii Kunth.  相似文献   

16.
A complex analysis of seasonal fluctuations of the mean group parameters of the system of regulation of lipid peroxidation has been performed in liver of Balb/c mice. Association of lipid characteristics and morphophysiological parameters is studied in the Balb/c mouse liver. An inter-connection is revealed between the liver index and the amount of lysoforms of phospholipids, the scale and character of the interconnection differing essentially depending on proportion of phos-phatidylcholine in mouse liver phospholipids.  相似文献   

17.
18.
龙胆科药用植物化学成分的研究现状   总被引:16,自引:0,他引:16  
龙胆科植物在我国的分布范围很广,且多数为药用植物,其多数种属的药用植物,至今其化学成分尚未被系统研究。综述了目前龙胆科药用植物的化学成分的研究现状及一般提取方法,对近年来发现的环烯醚萜及裂环烯醚萜类化合物进行了总结,为本科药用植物的更深入研究提供了参考。  相似文献   

19.
Seven strains of aerobic carbon monoxide-oxidizing bacteria (carboxydebacteria) when growing on CO as sole source of carbon and energy had doubling times which ranged from 12–42 h. The activity profiles obtained after discontinuous sucrose density gradient centrifugation indicated that the CO-oxidizing enzymes are soluble and the hydrogenases are membrane-bound in all strains examined. The CO-oxidizing enzymes of Pseudomonas carboxydohydrogena, Pseudomonas carboxydoflava, Comamonas compransoris, and the so far unidentified strains OM2, OM3, and OM4 had a molecular weight of 230,000; that of Achromobacter carboxydus amounted to 170,000. The molecular weights of the CO-oxidizing and H2-oxidizing enzymes turned out to be identical. The cell sonicates were shown to catalyze the oxidation of both CO and H2 with methylene blue, thionine, phenazine methosulfate, toluylene blue, dichlorophenolindophenol, cytochrome c or ferricyanide as electron acceptors. Methyl viologen, benzyl viologen, FAD+, FMN+, and NAD(P)+ were not reduced. The spectrum of electron acceptors was identical for all strains tested. Neither free formate, hydrogen nor oxygen gas were involved in the CO-oxidation reaction. Methylene blue was reduced by CO at a 1:1 molar ratio. The results indicate that CO-oxidation by carboxydobacteria is catalyzed by identical or similar enzymes and that the reaction obeys the equation CO+H2OCO2+2H++2e- as previously shown for Pseudomonas carboxydovorans.Dedicated to Otto Kandler remembering almost three decades of enjoyable cooperation  相似文献   

20.
Since the introduction of the concepts of allostery about four decades ago, much advancement has been made in elucidating the structure-function correlation in allostery. However, there are still a number of issues that remain unresolved. In this review we used mammalian pyruvate kinase (PK) as a model system to understand the role of protein dynamics in modulating cooperativity. PK has a triosephosphate isomerase (TIM)(α/β)8 barrel structural motif. PK is an ideal system to address basic questions regarding regulatory mechanisms about this common (α/β)8 structural motif. The simplest model accounting for all of the solution thermodynamic and kinetic data on ligand-enzyme interactions involves two conformational states, inactive ET and active ER. These conformational states are represented by domain movements. Further studies provide the first evidence for a differential effect of ligand binding on the dynamics of the structural elements, not major secondary structural changes. These data are consistent with our model that allosteric regulation of PK is the consequence of perturbation of the distribution of an ensemble of states in which the inactive ET and active ER represent the two extreme end states. Sequence differences and ligands can modulate the distribution of states leading to alterations of functions. The future work includes: defining the network of functionally connected residues; elucidating the chemical principles governing the sequence differences which affect functions; and probing the nature of mutations on the stability of the secondary structural elements, which in turn modulate allostery.  相似文献   

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