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1.
Effects of doubled CO2 and O3 concentration on Soybean were studied in open-top chambers (OTC). Under doubled CO2 concentration, grain yield and biomass increased, the SOD activity, vitamin C (Vc) and carotenoid (Car) content also increased; Superoxide (O2-) generating rate decreased, relative conductivity and malondialdehyde (MDA) content significantly declined. But under doubled O3 concentration, the SOD activity, Vc and Car contents declined, resulting in imbalance of activated-oxygen production, enhanced O2- generating rate and accelerated process of lipid peroxidation and increase in MDA content and ion leakage of leaves. The final result was decreased grain yield and plant biomass. Interactive effects of doubled CO2 and O3 concentrations on soybean were mostly counteractive. However, the beneficial effects of concentration-doubled CO2 are more than compensate the negative effects imposed by doubled O3, and the latter in its turn partly counteracted the positive effects of the former.  相似文献   

2.
Effects of doubled CO2 and O3 concentration on Soybean were studied in open-top chambers (OTC). Under doubled CO2 concentration, grain yield and biomass increased, the SOD activity, vitamin C (Vc) and carotenoid (Car) content also increased; Superoxide (O2 ?) generating rate decreased, relative conductivity and malondialdehyde (MDA) content significantly declined. But under doubled O3 concentration, the SOD activity, Vc and Car contents declined, resulting in imbalance of activated-oxygen production, enhanced O2 ? generating rate and accelerated process of lipid peroxidation and increase in MDA content and ion leakage of leaves. The final result was decreased grain yield and plant biomass. Interactive effects of doubled CO2 and O3 concentrations on soybean were mostly counteractive. However, the beneficial effects of concentration-doubled CO2 are more than compensate the negative effects imposed by doubled O3, and the latter in its turn partly counteracted the positive effects of the former.  相似文献   

3.
Zhao  Tianhong  Shi  Yi  Huang  Guohong  Wang  Yan  Sun  Bei 《中国科学:生命科学英文版》2005,48(1):136-141

Effects of doubled CO2 and O3 concentration on Soybean were studied in open-top chambers (OTC). Under doubled CO2 concentration, grain yield and biomass increased, the SOD activity, vitamin C (Vc) and carotenoid (Car) content also increased; Superoxide (O2 ) generating rate decreased, relative conductivity and malondialdehyde (MDA) content significantly declined. But under doubled O3 concentration, the SOD activity, Vc and Car contents declined, resulting in imbalance of activated-oxygen production, enhanced O2 generating rate and accelerated process of lipid peroxidation and increase in MDA content and ion leakage of leaves. The final result was decreased grain yield and plant biomass. Interactive effects of doubled CO2 and O3 concentrations on soybean were mostly counteractive. However, the beneficial effects of concentration-doubled CO2 are more than compensate the negative effects imposed by doubled O3, and the latter in its turn partly counteracted the positive effects of the former.

  相似文献   

4.
经渗透胁迫后 ,CO2 倍增条件下小麦叶片的SOD、POX和CAT的活性均显著高于对照 ,上升或稳定时期较长 ;在渗透胁迫后期MDA含量和电解质泄露率增加较慢 ,显著低于对照 ;H2 O2 含量一直高于对照但进行PEG胁迫后增长较慢。CO2 倍增条件下 ,小麦细胞出现DNA梯的时间较晚而且持续的时间较长 ,DNA梯出现时抗氧化酶和H2 O2 处于相对稳定状态。结果表明在渗透胁迫下CO2 倍增使小麦的抗氧化能力增强从而减轻了对细胞膜和DNA的损伤 ,并且干旱条件下小麦的细胞程序性死亡可能是由于细胞内氧化过强所致  相似文献   

5.
大豆对臭氧、二氧化碳及其复合效应的响应   总被引:5,自引:0,他引:5  
以大豆‘中黄14'为试验材料,首次模拟研究大气中O3、CO2浓度增加,及其逐渐和持续增加O3、CO2浓度复合效应对大豆的影响.结果表明,CO2浓度增加可缓解O3对叶片的伤害程度,受害时间推迟,受害症状无实质性变化.熏气20 d测定各处理叶片生理参数发现,在本底大气环境下,叶片气孔阻力和蒸腾速率与对照差异较小,熏气时O3、CO2浓度增加诱导叶片气孔关闭,气孔阻力明显增加,蒸腾速率显著降低.与对照相比,O3浓度增加,大豆干物质积累、产量和收获指数明显降低,籽粒粗脂肪含量明显减少,粗蛋白含量显著增加;CO2浓度增加,干物质积累和产量显著提高,收获指数无明显差异,籽粒粗脂肪和粗蛋白含量均明显减少;逐渐和持续增加O3和CO2浓度复合效应处理下,大豆干物质积累、产量和收获指数差异不明显,籽粒粗蛋白含量不同程度地减少,粗脂肪含量显著增加.  相似文献   

6.
渗透胁迫对水稻幼苗膜脂过氧化及体内保护系统的影响   总被引:5,自引:0,他引:5  
两个不同抗旱性的水稻品种对PEG6000渗透胁迫(-0.5MPa,-0.8MPa)的反应具有一定差异。渗透胁迫下SOD,POD和CAT活性及Vc,Car含量与膜脂过氧化水平及膜透性呈一定负相关性,表明这些指标可作为水稻抗旱育种的参考依据。  相似文献   

7.
厚壁毛竹光合作用对CO_2浓度倍增的短期响应   总被引:1,自引:0,他引:1  
采用Li-6400P光合测定仪对比测定了大气CO2浓度和短期CO2浓度倍增下不同季节厚壁毛竹的光合特性,结果表明:CO2浓度加倍促使最大净光合速率、净光合速率、水分利用率、光合量子效率和光饱和点升高,年平均增幅分别为62.79%、48.74%、94.41%、8.70%和16.67%;CO2浓度加倍促使蒸腾速率、暗呼吸速率和光补偿点下降,年平均降幅分别为17.60%、37.25%和40.50%。不同季节厚壁毛竹光合生理特性参数在CO2浓度加倍后的增加幅度或降低幅度与叶片生理活性和气候变化密切相关。CO2浓度的倍增并未明显改变厚壁毛竹光合特性的季节变化规律,除光补偿点外,其它光合参数的季节大小顺序仍与大气CO2浓度下的相同。厚壁毛竹光合作用对短期CO2浓度升高的响应特征与C3植物光合作用对短期CO2浓度升高响应的普遍规律相符。  相似文献   

8.
在CO2浓度分别为当今CO2浓度(360 mL/L)和加富浓度(5 000 mL/L)条件下,研究了UV-B胁迫对亚心形扁藻(Platymonas subcordiformis (Wille) Hazen)的光合作用、膜脂过氧化和抗氧化酶活性的影响。实验结果表明:(1) UV-B单独作用下,亚心形扁藻的干重、光合速率、叶绿素a (Chl a)和类胡萝卜素(Car.)含量显著降低,CO2加富单独作用下,亚心形扁藻的干重和光合速率显著升高,叶绿素a和类胡萝卜素含量与对照相比没有显著变化,而UV-B与CO2共同作用则使亚心形扁藻的干重和光合速率与对照相比没有显著变化,叶绿素a和类胡萝卜素含量显著降低。(2) UV-B单独作用和CO2加富单独作用都使可溶性蛋白含量显著降低,UV-B与CO2共同作用下的可溶性蛋白含量比UV-B单独作用的要高。高CO2对藻的可溶性蛋白含量的变化在很大程度上归因于Rubisco蛋白的降低。(3)UV-B单独作用下,O2-. 产生速率、H2O2 含量和MDA含量显著升高,而CO2加富单独作用下,O2-. 产生速率、H2O2 含量和MDA含量显著降低,与UV-B单独作用相比,UV-B与CO2共同作用使O2-. 产生速率、H2O2 含量和MDA含量显著降低。说明CO2加富可以减少活性氧对亚心形扁藻的氧化胁迫,同时减少UV-B对亚心形扁藻的膜脂过氧化伤害。(4) UV-B单独作用下,SOD、POD、CAT、GR和GPX活性显著升高,高CO2  相似文献   

9.
CO2和O3浓度倍增及其复合作用对大豆叶绿素含量的影响   总被引:19,自引:3,他引:19  
利用开顶箱(OTC)法研究了在CO2和O3浓度倍增及其复合作用下,大豆叶片叶绿素含量及叶绿素a/b值的变化规律。结果表明,不同生育时期大豆叶片中叶绿素含量不同,Chla、Chlb和ChlT都表现出低.高一低的趋势,而且不同处理间变化不同步。不同处理间比较,O3处理的植株叶绿素含量下降最为明显,其次是复合处理的影响,而CO2浓度倍增对提高叶片叶绿素含量有一定的作用。Chla/b呈下降趋势,受CO2倍增影响最明显,有利于提高作物的光合性能。  相似文献   

10.
二氧化碳和臭氧浓度升高对春小麦生长及次生代谢的影响   总被引:2,自引:0,他引:2  
李果梅  史奕  陈欣 《应用生态学报》2008,19(6):1283-1288
通过开顶式气室(OTCs)研究了OTC对照(自然CO2浓度约342 μmol·mol-1,O3浓度约30 nmol·mol-1)、高浓度CO2(550 μmol·mol-1)、高浓度O3(浓度为80 nmol·mol-1)及其交互作用(CO2 550 μmol ·mol-1,O3 80 nmol·mol-1)对春小麦不同发育时期生物量、总酚量、黄酮含量及成熟期产量性状的影响.结果表明:CO2浓度增加条件下,春小麦生物量和产量性状都显著高于OTC对照(P<0.05);而O3浓度升高条件下,小麦生物量降低,株高、穗长、穗粒质量及千粒重也显著低于对照;CO2和O3交互作用下各项指标处于二者之间.说明CO2可以缓解O3对小麦的负效应,而O3对CO2的正效应具有削弱作用,但二者的作用并非简单的叠加.CO2、O3浓度增加及其交互作用显著增加了春小麦叶片中的总酚含量,其中两者交互作用的效应更大,但在小麦生长后期,总酚含量增加量比对照有所降低.在小麦生长前期,各处理总黄酮含量均低于对照;而在成熟期,各处理都显著高于对照.  相似文献   

11.
不同氮素水平下CO_2倍增对转Bt棉花氮素代谢的影响   总被引:1,自引:0,他引:1  
通过开顶式CO_2气室研究了盛蕾期转Bt棉花新棉33~B及其对照亲本DP5415的生长势和氮素代谢特征对土壤氮素水平(100和200 mg N·kg~(-1))和CO_2浓度倍增(750和375μl·L~(-1))的生理生态响应.结果表明:CO_2浓度升高可显著提高2种棉花的株高和茎粗,增加生物产量;氮素水平提高可显著增加转Bt棉花的株高、茎粗,以及茎和蕾的鲜质量,而对亲本棉花DP5415的影响不显著;对照棉花DP5415的谷氨酰胺合成酶(GS)活力随大气CO_2浓度的升高而显著降低,随氮素营养的提高而升高,转Bt棉花新棉33~B在低氮条件下,GS活力随大气CO_2浓度的升高而显著增加;大气CO_2浓度升高及氮素营养的增加使盛蕾期转Bt棉花的硝酸还原酶(NR)活力显著增加,DP5415的NR活力也随大气CO_2浓度的升高而显著提高;大气CO_2浓度对2种棉花的亚硝酸还原酶(NiR)活力都有明显的抑制作用,其中,高CO_2浓度条件下,DP5415的NiR活力还随氮素营养的增加而显著下降.可见,大气CO_2浓度升高下,土壤氮素水平变化对转Bt棉花的生长势影响显著,但对其氮素代谢生理的影响较对照亲本棉花小.生产中(尤其是高浓度CO_2环境下),应进一步加强转Bt棉花的氮肥优化管理.
Abstract:
By using open-top chambers, this paper studied the physiological and ecological re-sponses of transgenic Bt cotton cv. 33~B and its parent line non-transgenic cotton cv. DP5415 in their growth potential and nitrogen metabolism to doubled CO_2 concentration (750 μl·L~(-1) vs.375 μl·L~(-1)) and nitrogen fertilization level (200 mg N·kg~(-1)vs. 100 mg N·kg~(-1)). Doubled CO_2 concentration promoted the height-and stem growth and the biomass production of the two eultivars significantly, whereas doubled N fertilization level only had significant positive effects on 33~B. The leaf glutamine synthetase activity (GSA) of DP5415 decreased significantly under doubled CO_2 concentration but increased significantly under doubled N fertilization level, while the GSA of 33~B was significantly higher under doubled CO_2 concentration and low nitrogen fertili-zation level. Both the doubled CO_2 concentration and the doubled nitrogen fertilization level in-creased the leaf nitrate reductase activity (NRA) of 33~B significantly, and the NRA of DP5415 also had a significant increase under doubled CO_2 concentration. Doubled CO_2 concentration had significant inhibitory effects on the leaf nitrite reductase activity (NiRA) of both 33~B and DP5415. The NiRA of DP5415 decreased significantly under doubled CO_2 concentration and N fertilization level. All the results suggested that under doubled CO_2 concentration, N fertilization level had significant effects on the growth potential of transgenic Bt cotton but lesser effects on its nitrogen metabolism, compared with the control non-transgenic cotton. Therefore, in the planting of transgenic Bt cotton, especially,under elevated CO_2 condition, optimized N fertilization should be made.  相似文献   

12.
大气二氧化碳倍增对短葶飞蓬生长和有效成分积累的影响   总被引:1,自引:0,他引:1  
通过对人工倍增CO2浓度(800±100) μmol·mol-1与正常CO2浓度(400±25) μmol·mol-1条件下短葶飞蓬植株生物量、体内灯盏乙素和总咖啡酸酯含量及产量的比较,探讨了CO2浓度升高对药用植物短葶飞蓬生物量、有效成分含量及产量的影响.结果表明:CO2浓度倍增条件下,短葶飞蓬植株生物量增加了22%;总咖啡酸酯及灯盏乙素含量分别增加23%和26%,产量分别增加37.6%和45.3%.不同器官的生物量及有效成分含量对CO2浓度升高的响应不同.在CO2浓度倍增条件下,短葶飞蓬植株含氮量减少47.2%,与次生代谢有效成分含量的变化呈反比,符合“碳素/营养平衡假说”;植株生物量与次生代谢产物含量的变化呈正相关,植株生长与次生代谢产物积累之间没有表现出权衡关系.说明合理施用CO2是可实现短葶飞蓬的优质高产.  相似文献   

13.
This study investigated whether increased solar UV-B radiation (280-315 nm) could suppress the growth of marine microalgae through effects on their antioxidant systems. Two marine microalgae species, Platymonas subcordiformis (Wille) Hazen and Nitzschia closterium (Ehrenb.) W. Sm, were exposed to a range of UV-B radiation and both showed reductions in their growth rates, and the chlorophyll a (Chl a) and carotenoid (Car) contents when UV-B radiation dose increased. Superoxide anion radical (O2)production and the concentration of hydrogen peroxide (H2O2) and malodiadehyde (MDA) also increased with the increasing of UV-B radiation. Antioxidant systems, non-enzymic components (Car and glutathione content) and enzymic components (superoxide dismutase (SOD) and catalase (CAT) activity), decreased as a result of enhanced UV-B radiation. When the exogenous glutathione (GSH) was added, the effects of UVB radiation on the growth of the two species were alleviated. These results suggest that enhanced UV-B radiation suppressed the antioxidant systems and caused some active oxygen species to accumulate, which in turns retarded the development of the marine microalgae.  相似文献   

14.
四季竹对土壤水分胁迫的生理适应   总被引:1,自引:0,他引:1  
以四季竹2年生竹苗为材料,采用每天补水控制土壤含水量的方法,设置土壤相对含水率为<30%(T1)、40%~50%(T2)、60%~70%(T3)、80%~90%(T4)和竹蔸部完全水淹(T5)5个土壤水分含量水平,研究四季竹叶片在水分胁迫下的生理活性变化,以探讨四季竹对土壤水分的适应能力。结果表明:(1)随处理时间的延长,T1处理叶片离子渗漏率、MDA含量、叶绿素a/b值、SOD和POD活性、脯氨酸和可溶性蛋白含量均迅速升高,叶绿素含量、类胡萝卜素含量和叶绿素/类胡萝卜素比值迅速下降。(2)T5处理14d后叶片各生理指标随处理时间的延长与T1处理表现出相同的变化规律(类胡萝卜素和脯氨酸除外),并且分别在T1处理14d和T5处理28d后四季竹叶片全部干枯脱落。(3)随处理时间的延长,T2、T3、T4处理的四季竹叶片各生理指标经过一段时间的适应后最终稳定在处理前水平,且处理间均无显著差异。研究发现,四季竹在土壤相对含水率小于30%的土壤中生长不良,甚至死亡,在相对含水率40%~90%的土壤中能正常生长;四季竹耐受水淹胁迫的时间阈值是28d。  相似文献   

15.
大气CO2浓度和温度升高对作物生理生态的影响   总被引:22,自引:9,他引:22  
论述了大气CO2浓度和温度升高下的植物生长,光合作用,产量以及水分养分利用效率等方面的研究进展,未来高CO2浓度下,光合作用速率有不同程度的提高,生物量和产量增加;气孔导度降低,水分利用效率(WUE)提高,一般地上部分和根系尤其是细根生物量增加,凋落物量随之增加,C/N比率提高,植物残体的腐解速率降低,CO2浓度升高后,会给根际微生物带来更多的底物,从而提高了微生物活性,加速养分的矿化过程,改善植物的养分状况。  相似文献   

16.
锌硼营养对苦瓜产量品质与叶片多胺、激素及衰老的影响   总被引:13,自引:7,他引:13  
采用田间试验、植株生理生化测定方法,研究了锌硼营养对苦瓜(株洲长白)产量品质与叶片多胺、激素及衰老的影响。结果表明,在锌硼缺乏的土壤中施用硫酸锌和硼砂均可提高苦瓜产量,并可提高苦瓜蛋白质、Vc和17种氨基酸含量,尤其是人体必需氨基酸含量,降低NO3^-含量,改善苦瓜品质。这与锌硼提高了叶片多胺(PAs)、腐胺(Put)、亚精胺(Spd)、精胺(Spm)、抗坏血酸(ASA)、吲哚乙酸(IAA)、赤霉素(GA3)含量以及超氧化物歧化酶(SOD)、过氧化物酶(POD)、过氧化氢酶(CAT)酶的活性,减少脱落酸(ABA)、丙二醛(MDA)含量,从而抑制膜脂过氧化有关试验结果同时表明苦瓜产量与叶片PAs、Put、Spd、Spm、GA3、SOD、POD、CAT呈极显著正相关,与叶片MDA与ABA含量呈极显著负相关。叶片MDA含量与ABA呈极显著正相关,而与PAs、Put、Spd、Spm、ASA、IAA、CA3、SOD、POD、CAT呈极显著负相关。  相似文献   

17.
Cui H  Shi ZL  Cai J  Jiang D  Cao WX  Dai TB 《应用生态学报》2011,22(4):979-984
FACE platform was applied to study the effects of elevated atmospheric CO2 concentration on wheat grain yield and quality under two nitrogen (N) application rates. Elevated atmospheric CO2 concentration and applying N increased the grain yield, spike number, grain number per spike, and biomass significantly, but elevated CO2 concentration had no significant effects on harvest index (HI). Under elevated CO2 concentration, there was a significant decrease in the protein, gliadin, gluteinin, and glutein contents of the grain and the sedimentation value of the flour, and a significant increase in the starch and its components contents of the grain; under N application, an inverse was observed. The dough stability time and the dough viscosity characteristics, such as peak viscosity, final viscosity, and setback value, increased significantly under elevated CO2 concentration and high N application rate. The interaction of atmospheric CO2 concentration and N application rate had significantly positive effects on wheat grain yield and biomass, but less effect on grain quality. Therefore, with elevated atmospheric CO2 concentration in the future, maintaining a higher N application level would benefit wheat grain yield and paste characteristics, and mitigate the decline of grain quality.  相似文献   

18.
供氮水平对菠菜营养品质和体内抗氧化酶活性的影响   总被引:9,自引:1,他引:8  
通过水培实验,研究了供氮水平对菠菜营养品质和抗氧化酶活性的影响.结果表明,供氮水平由4mmol·L-1增加到8mmol·L-1,菠菜产量显著增加,叶片中的维生素C(Vc)含量随着供氮浓度由4mmol·L-1提高到8mmol·L-1,再提高供氮水平,Vc含量则明显下降.叶片硝酸盐含量随着氮浓度的提高而增加.供氮浓度从4mmol·L-1增加到8mmol·L-1,叶片可溶态草酸含量略有下降,再提高供氮水平则明显上升,而草酸总量随供氮水平提高,先显著升高然后略有降低.SOD和POD酶的活性随供氮水平由4mmol·L-1提高到8mmol·L-1而增加,再提高供氮水平,酶活性显著下降;CAT活性随供氮水平的增加而降低,叶片MDA含量先降低后显著升高,而游离脯氨酸含量随氮水平的升高而增加.可见供氮水平为8mmol·L-1时,菠菜叶片具有较高的生物量、Vc含量和抗氧化酶活性,较低的硝酸盐和草酸含量以及较低的MDA和游离脯氨酸含量,表明供氮浓度8mmol·L-1有利于提高菠菜的产量、营养品质和抗逆能力,是菠菜生长较适宜的供氮水平.  相似文献   

19.
运用开顶式同化箱(OTCs)在5个O3浓度梯度(过滤大气CF、环境大气NF、50 nL·L-1、100 nL·L-1和150nL·L-1)下,研究了大气O3浓度对四季竹(Oligostachyum lubricum)叶片光合色素、脂质过氧化和抗氧化系统的影响.结果显示:在胁迫处理90 d时,随着O3浓度的升高,四季竹叶片叶绿素(Chl)、类胡萝卜素(Car)、可溶性糖和可溶性蛋白含量呈持续下降趋势,相对电导率和丙二醛(MDA)含量持续升高,超氧化物歧化酶(SOD)活性先升高后降低,过氧化物酶(POD)活性呈升高趋势.与CF相比,四季竹叶片Chl、Car和MDA含量在O3浓度为100 nL·L-1时均有显著差异,在150 nL·L-1时均有极显著差异;相对电导率、SOD和POD活性、可溶性糖和可溶性蛋白含量在O3浓度为100 nL·L-1及以上时均有极显著差异.研究表明,大气长时间高O3浓度(100 nL·L-1及以上)胁迫对四季竹会产生明显伤害效应,致使其叶片光合色素降解或合成受阻,叶片老化加快,膜脂过氧化程度加剧,膜结构和抗氧化系统遭到破坏.  相似文献   

20.
大气CO2浓度和氮肥水平对小麦籽粒产量和品质的影响   总被引:1,自引:0,他引:1  
应用FACE平台,研究了不同氮肥水平下大气CO2浓度升高对小麦籽粒产量和品质的影响.结果表明: 大气CO2浓度升高(FACE)和增施氮肥显著提高了小麦籽粒产量、穗数、穗粒数和生物量.但FACE处理对收获指数无显著影响.FACE处理显著降低了籽粒蛋白质、醇溶蛋白、谷蛋白、面筋含量和沉降值,显著提高了小麦籽粒淀粉及其组分含量,而氮肥处理具有相反的效应.面团稳定时间及峰值黏度、最终黏度、反弹值等黏度特征参数在FACE和高氮水平下显著增加.此外,CO2浓度与氮肥水平互作对小麦籽粒产量和生物量有显著的正效应,但对籽粒品质无显著影响.在未来大气CO2浓度升高的情况下,维持较高的施氮量有利于提高小麦籽粒产量,改善淀粉糊化特性,缓解小麦品质特性的下降.  相似文献   

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