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1.
黄河三角洲不同生态型芦苇光合速率和气孔导度有明显差异 ,随生境盐度的增加而降低 ,气孔限制因素是盐胁迫下芦苇光合降低的原因之一。低盐度生境中生长的芦苇的 Rn BPCase活性均大于高盐度下的 ,而 PEPCase活性均小于高盐度下的 ,表明在盐渍条件下 ,叶肉光合器官光合活性的降低也限制芦苇的光合速率。随盐度升高 ,Ru BPCase与PEPCasc活性之比降低。高 PFD下 ,盐胁迫加剧 Fv/Fm降低程度。此外 ,在高盐度下由于叶片蒸腾下降而导致的叶温较高也可能与光合活性降低有关。  相似文献   

2.
鱼腥藻7120响应NaCl胁迫的光合特性   总被引:13,自引:1,他引:12  
NaCl胁迫处理丝状蓝藻鱼腥藻7120后光合特性的变化表明;鱼腥藻7120的净光合放氧速率和呼吸速率随NaCl浓度的程式高而降低,且浓度低于0.4mol/LNaCl时的降幅比高于0.4mol/LNaCl时的降幅小,加入0.4%(W?V)的蔗糖后可提高盐胁迫后的鱼腥藻7120的光合放氧速率,吸收光谱测定结果表明盐胁迫没有改变鱼腥藻7120的光合色素组成,但导致藻胆蛋白的总含量降低,类胡萝卜素含量增加。低温荧光发射光谱测定表明盐胁迫后改变了光能在两个光系统之间的分配。由藻胆蛋白吸收的光能向光Ⅱ传递受阻。荧光动力学分析表明光系统Ⅱ的光化学效率随盐浓度的增加而降低。表现出与光合放氧速率的一致性。  相似文献   

3.
在对聚球藻PCC 7942开展基因组简化的过程中, 发现一些非必需大片段的删除可导致耐盐胁迫能力降低。突变株?Synpcc7942_0233-0253和?Synpcc7942_2169-2187, 其基因组中分别删除了18和14 kb的区域, 在BG11培养液中的生长与野生型没有显著差异, 但在含有0.4 mol/L NaCl的培养液中的生长相对于野生型被严重抑制。进一步分析发现, 在盐胁迫下2个突变株的光合放氧速率比野生型显著下降, 光系统Ⅰ和Ⅱ电子传递速率均低于野生型, 呼吸耗氧速率与野生型相比却维持在较高水平。这些结果说明, 蓝藻基因组中有些非必需基因实际上对于适应胁迫条件是需要的。  相似文献   

4.
干旱、高盐和低温是限制植物生长和农作物产量的主要逆境因子。S-腺苷甲硫氨酸合成酶(S-adenosylmethionine synthetase,SAMS)与植物抗逆境密切相关,而且超表达SAMS的转基因植物具有更高的抗干旱、高盐和低温能力。进行条斑紫菜(Porphyra yezoensis)S-腺苷甲硫氨酸合成酶基因(PySAMS)cDNA的克隆及序列特征分析。首先利用电子克隆技术得到基因相关的contig,预测全长并设计引物,最后利用RT-PCR技术成功克隆了PySAMS的cDNA序列(GenBank accession:FJ404748)。该cDNA序列含有长1155nt的完整ORF,编码蛋白(PySAMS)分子量41.8kDa,长384AA。PySAMS与盘基网柄菌(Dictyostelium discoideum)、莱茵衣藻(Chlamydomonas reinhardtii)、拟南芥(Arabidopsis thaliana)和水稻(Oryza sativa)等多种生物的SAMS具有较高的序列一致性,含有与SAMS酶活性密切相关的氨基酸残基和保守序列,与人(Homo sapiens)和大肠杆菌(Escherichia coli)的SAMS具有高度相似的三维结构。所以PySAMS与其它生物的SAMS一样,在条斑紫菜的抗逆过程中发挥重要作用。研究PySAMS有助于阐明条斑紫菜耐受非生物胁迫的作用机理,有助于获得高抗逆转基因植物。  相似文献   

5.
盐胁迫对不同品种玉米苗期生长与叶片光合特性的影响   总被引:2,自引:0,他引:2  
为研究盐胁迫对不同玉米品种玉米苗期生理性状的影响, 以玉米杂交种隆平206、秦龙14以及隆平206亲本(母本L239和父本L7221)为试验材料, 设置不同盐浓度处理, 分析玉米苗期生长与叶片光合特性的变化。结果表明, 盐胁迫下玉米植株高和地上部分鲜重显著下降, 随着盐浓度的增加, 其下降幅度增加; 两杂交种品种比较, 盐胁迫对秦龙14的影响较隆平206大; 隆平206两亲本比较, 盐胁迫对父本L7221较母本L239植株高与地上部分鲜重的影响更大。与对照相比, 盐胁迫显著增加玉米叶片色素含量, 且随着盐浓度的增加, 其增幅逐渐增加。盐胁迫显著增加叶片净光合速率, 但单叶光合速率逐渐降低, 两杂交种品种表现一致。可见虽然盐胁迫下单叶光合速率下降, 单位面积叶片的光合作用对玉米有一定的补偿作用。盐胁迫对秦龙14单叶光合速率的影响较隆平206大, 隆平206两亲本比较, 盐胁迫对父本L7221的影响较母本L239更大。  相似文献   

6.
盐胁迫下囊果碱蓬出苗状况及苗期抗盐性   总被引:3,自引:0,他引:3  
高奔  宋杰  刘金萍  史功伟  范海  赵可夫  王宝山 《生态学报》2009,29(11):6131-6135
研究了盐胁迫对囊果碱蓬出苗、幼苗生长、离子积累以及光合放氧速率的影响.囊果碱蓬生长的最适盐浓度在200 mmol/L NaCl左右.高浓度NaCl(400 mmol/L和600 mmol/L)没有显著降低其出苗率,200 mmol/L NaCl对出苗率具有促进作用.400 mmol/L和600 mmol/L NaCl显著降低了光合放氧速率.囊果碱蓬在高浓度NaCl处理下能够维持叶片较高的K+/Na+ 及含水量可能是其适应高盐生境的重要机制.  相似文献   

7.
曼氏无针乌贼耗氧率及溶氧胁迫对其体内酶活力的影响   总被引:5,自引:0,他引:5  
采用Winkler法测定水中溶氧含量,通过比较对照呼吸室与试验呼吸室水中溶解氧含量之差确定曼氏无针乌贼耗氧率及窒息点,并在不同程度的溶氧胁迫下测定乌贼体内多种酶的活力变化.结果表明:曼氏无针乌贼耗氧率呈明显的“高-低-高-低”昼夜变化;耗氧率与水温(16 ℃~28 ℃)和光照(3~500 μmol·m-2·s-1)呈正相关,与pH值(6.25~9.25)呈负相关;随着盐度的升高(18.1~29.8),乌贼耗氧率呈“高-低-高”变化,盐度为24.8时耗氧率最低;雌性乌贼耗氧率高于雄性.窒息点随乌贼的体质量增加而降低,平均体质量为(38.70±0.52) g的乌贼窒息点为(0.9427±0.0318) mg·L-1.随着溶氧胁迫程度的增加,超氧化物歧化酶(superoxide dismutase, SOD)、过氧化氢酶(catalase, CAT)和过氧化物酶(peroxidase, POD)活力均先升后降,脂肪酶活力下降,蛋白酶活力呈“降-升-降”变化;乳酸脱氢酶(lactate dehydrogenase, LDH)活力呈先升后降趋势,但溶氧胁迫下的酶活力比正常时要高.  相似文献   

8.
以欧美107杨(Populus×euramericana ‘Neva',Wt)和转拟南芥液泡膜Na~+/H~+逆向转运蛋白基因AtNHX1的欧美107杨新品系(Tr) 幼苗为材料,研究了高低度盐胁迫对两品系幼苗光合色素含量、光合参数和叶绿体超微结构的影响,以阐明转AtNHX1基因杨树的耐盐性与其光合作用及叶绿体结构之间的关系.结果表明:(1)盐处理后,两品系叶片叶绿素含量、类胡萝卜素含量、净光合速率、蒸腾速率和气孔导度均下降,且高盐度处理下降幅度更大;同等盐度处理下,Tr品系叶片叶绿素含量、净光合速率和气孔导度的下降幅度显著低于Wt品系,且在高盐度处理间差异更大;两品系杨树叶片P_n下降的原因在低盐处理时以气孔限制为主,而在高盐下则是气孔限制和非气孔限制共同作用的结果.(2)盐胁迫对T_r 品系叶片叶绿体超微结构的影响较轻,其在高盐下仍保持了较好的内部结构;盐胁迫Wt品系叶绿体则缩皱成球形,内部结构趋向简单,以至解体,脂质球显著增多.可见,盐胁迫导致杨树叶绿体结构破坏而引起叶绿体色素含量下降,最终降低其光合作用效率;同等盐度胁迫下,转AtNHX1基因品系叶片保持了较完整的叶绿体超微结构、更高的叶绿素含量,能维持较好的光合状态,从而表现出较高的耐盐能力.  相似文献   

9.
本研究检测了与盐芥(Ghellungiella halophila)和拟南芥(Arabidopsis thaliana)光合作用相关的叶绿素、净光合速率(photosynthetic rate, Pn)、气孔导度(stomatal conductance, Gs)、胞间隙CO2浓度以及叶绿素荧光参数等指标, 观察到随着NaCl浓度逐渐增加, 盐芥的叶绿素a/b值(Chl a/Chl b)、类胡萝卜素/总叶绿素值(Car/Chl)显著高于拟南芥, 且二比值变化幅度较小并保持较高水平。盐胁迫下拟南芥净光合速率下降、气孔导度下降和胞间CO2浓度减小。气孔因素是引起拟南芥光合能力下降的主要因素。叶绿素荧光参数的变化表明, 50-200 mmol.L-1 NaCl降低拟南芥叶绿体对光能的吸收能力, 而且降低叶绿体的光化学活性, 使电子传递速率和光能转化效率大幅度下降,造成光能转化为化学能的过程受阻,进一步加剧了光合放氧和碳同化能力的降低。而50-200 mmol.L-1 NaCl 胁迫没有使盐芥的光合作用受到不良影响。  相似文献   

10.
赵可夫  冯立田 《生态学报》2000,20(5):795-799
黄河三角洲不同生态型芦苇光合速率和气孔导度有明显差异,随生境盐度的增加而降低,气孔限制因素是盐迫下芦苇光合降低的原因之一。低盐度生境中生长的芦苇的RnBPCase活性均大于高盐度下的,而PEPCase活性均小于高盐度下的,表明在盐渍条件下,叶肉光合器官光合活 的氏也限制芦苇的光合速率。随盐度升高,RuBPCase与PEPCasc活性之比降低。高PED下,盐胁迫加剧Fv/Fm降低程度。此外,在高盐度  相似文献   

11.
In the Mississippi River Delta, the common wetland grass, Phragmites australis, displays high genetic diversity, as several genetically distinct populations are co-occurring. Differences in salinity tolerance may be an important factor determining these populations’ distribution in the delta. Our study investigated the salt tolerance of four genotypes exposed to 0, 10, 20, 30, and 40 ppt salinity. The growth rate, biomass, and the light-saturated photosynthetic rate were stimulated at 10 ppt salinity and inhibited at salinities higher than 20 ppt, compared to controls. Increased concentrations of Cl? and Na+ were found in the roots and older leaves of plants exposed to high salinities. Salt tolerance levels differed between genotypes. High salinity tolerance was mainly achieved by reduced water uptake and vacuole compartmentalization of toxic ions. The most tolerant genotype sustained biomass and photosynthesis even at 40 ppt, whereas the most sensitive genotype did not survive salinities higher than 20 ppt. Our findings show that the observed occurrence of different genotypes in the Mississippi River Delta is correlated to genetically determined differences in salinity tolerance. Further investigations are needed to better understand the role that salinity tolerance plays in the invasion of certain introduced P. australis genotypes.  相似文献   

12.
A freshwater green alga, Rhizoclonium riparium (Roth) Harvey, was found to grow in diluted seawater with salinities (PSU) from 0.1 to 34.0 (0.1–34.0 S). It grew best at 13.6 S and least at 0.1 S which was the least salinity reported in its habitat. Net photosynthetic oxygen production of R. riparium rose with salinity up to 34.0. However, in the medium adjusted at pH 8.1. the net photosynthesis rose at low ranges of salinity and was almost at the same level in all ranges of salinities examined. The net photosynthesis was increased by the addition of bicarbonate in the medium. Respiratory oxygen consumption did not rise with the increase of external salinities from 0.1 to 34.0. The results indicate that R. riparium can grow by increasing net photosynthesis in diluted seawater in which the pH value is suitable for effective bicarbonate supply to photosynthesis.  相似文献   

13.
Macler BA 《Plant physiology》1988,88(3):690-694
The long-term effects of altered salinities on the physiology of the intertidal red alga Gelidium coulteri Harv. were assessed. Plants were transfered from 30 grams per liter salinity to media with salinities from 0 to 50 grams per liter. Growth rate, agar, photosynthesis, respiration, and various metabolites were quantified after 5 days and 5 weeks adaptation. After 5 days, growth rates were lower for plants at all altered salinities. Growth rates recovered from these values with 5 weeks adaptation, except for salinities of 10 grams per liter and below, where tissues bleached and died. Photosynthetic O2 evolution was lower than control values at both higher and lower salinities after 5 days and did not change over time. Carbon fixation at the altered salinities was unchanged after 5 days, but decreased below 25 grams per liter and above 40 grams per liter after 5 weeks. Respiration increased at lower salinities. Phycobili-protein and chlorophyll were lower for all altered salinities after 5 days. These decreases continued at lower salinities, then were stable after 5 weeks. Chlorophyll recovered over time at higher salinities. Decreases in protein at lower salinities were quantitatively attributable to phycobili-protein loss. Total N levels and C:N ratios were nearly constant across all salinities tested. Carbon flow into glutamate and aspartate decreased with both decreasing and increasing salinities. Glycine, serine, and glycolate levels increased with both increasing and decreasing salinity, indicating a stimulation of photorespiration. The cell wall component agar increased with decreasing salinity, although biosynthesis was inhibited at both higher and lower salinities. The storage compound floridoside increased with increasing salinity. The evidence suggests stress responses to altered salinities that directly affected photosynthesis, respiration, and nitrogen assimilation and indirectly affected photosynthate flow. At low salinities, respiration and photorespiration exceeded photosynthesis with lethal results. At higher salinities, although photosynthesis was inhibited, respiration was low and carbon fixation adequate to offset increased photorespiration.  相似文献   

14.
Juncus kraussii Hochst., an important saltmarsh macrophyte, is intensively harvested for many commercially orientated products and current populations are under threat of overexploitation. In saline, intertidal mud banks, this species occurs on higher ground, suggesting that it is adapted to lower salinities and less frequent inundation. The objectives of this study were to determine biomass accumulation, as well as morphological and physiological adaptations of J. kraussii to salinity and waterlogging stresses. Plants collected from the field were subjected to 0.2, 10, 30, 50 and 70% seawater under drained or flooded conditions for three months. Measurements were made of biomass accumulation, CO2 exchange, chlorophyll fluorescence, ion and water relations. Furthermore, seed germination responses to a range of salinities were investigated. Total dry biomass accumulation, as well as the number and height of culms, decreased with increase in salinity under both flooded and drained conditions. Generally, CO2 exchange, stomatal conductance, Photosystem II (PSII) quantum yield and electron transport rate (ETR) through PSII declined with increase in salinity in both the flooded and drained treatments. Predawn and midday ψ in culms decreased with increase in salinity, being lower under drained than flooded conditions. Inorganic solute concentrations in culms increased with increase in salinity, with Na+ and Cl being the predominant ions. Na+/K+ ratios in culms increased significantly with increase in salinity. Proline concentrations in roots and culms, which increased with salinity, were considerably higher under drained than flooded conditions. Germination was best at salinities less than 20% seawater and decreased significantly with further increase in salinity to 110% seawater. Transfer of ungerminated salt-treated seeds to distilled water stimulated germination. This study has demonstrated that J. kraussii is a highly salt and flood tolerant species, being able to grow and survive in salinities up to 70% seawater, under both drained and flooded conditions. Maximal growth occurred at low salinities (<10% seawater) under flooded condition.  相似文献   

15.
Short-term effects of irradiance (0-1560 micromol photons m(-2) s(-1)), temperature (10-25 degrees C), and salinity (40-160) on oxygenic photosynthesis and oxygen consumption in a hypersaline mat (Salin-de-Giraud, France) were investigated with microsensors under controlled laboratory conditions. Dark O(2) consumption rates were mainly regulated by the mass transfer limitations imposed by the diffusive boundary layer. Areal rates of net photosynthesis increased with irradiance and saturated at irradiances >400 micromol photons m(-2) s(-1). At low irradiances, oxygen consumption increased more strongly with temperature than photosynthesis, whereas the opposite was observed at saturating irradiances. Net photosynthesis vs. irradiance curves were almost unaffected by decreasing salinity (100 to 40), whereas increasing salinities (100 to 160) led to a decrease of net photosynthesis at each irradiance. Dark O(2) consumption rates, maximal gross and net photosynthesis at light saturation were relatively constant over a broad salinity range (60-100) and decreased at salinities above the in situ salinity of 100. Within the range of natural variation, temperature was more important than salinity in regulating photosynthesis and oxygen consumption. At higher salinities the inhibitory impact of salinity on these processes and therefore the importance of salinity as a regulating environmental parameter increased, indicating that in more hypersaline systems, salinity has a stronger limiting effect on microbial activity.  相似文献   

16.
Eriocheir sinensis is a euryhaline crab migrating from sea to freshwater habitats during the juvenile stage. We used quantitative real-time polymerase chain reaction (qRT-PCR) to investigate the gene expression profile of Na(+)-K(+)-ATPase, Hsp70 (heat shock protein 70) and Hsp90 in megalopa exposed to salinities of 0, 2, 5, 10, and 15 parts per thousand. Both low and high salinities markedly stimulated expression of Na(+)-K(+)-ATPase, Hsp70 and Hsp90 genes of Chinese mitten crab megalopa; salinity had different effects on Na(+)-K(+)-ATPase, Hsp70 and Hsp90 levels depending on the duration of salinity stress, implying that Na(+)-K(+)-ATPase, Hsp70 and Hsp90 may play an important role in salinity tolerance in this crab species.  相似文献   

17.
陈静  沈颂东  薛静 《生态科学》2010,29(2):131-135
探究了不同紫外曝光量及低盐胁迫对浒苔生长的影响。结果显示,紫外辐射对浒苔生长有抑制作用,甚至使浒苔呈负增长,而且在盐度为24时抑制作用比盐度为12时大,藻体湿重下降明显。2.3×104KJ·m-2~4.7×104KJ·m-2的紫外曝光量使藻体变细、变软、变散,在显微镜下观察发现部分藻体受到损伤,死亡后内容物外溢;1.9×104KJ·m-2紫外曝光量对浒苔生长率影响较小。实验设置了0、6、12、24四个盐度梯度,培养42d,在盐度为0的情况下,前21 d浒苔藻体颜色没有明显变化,但藻体变软,变散,随后,藻体颜色慢慢变黄、变白直至死亡;其它各组生长均正常,显示出浒苔的盐度适应范围广,对低盐具有一定的耐受性,但不能长时间耐受0盐度。  相似文献   

18.
Activity and respiration in the anemone, Metridium senile (L.), were monitored under both constant and fluctuating salinity conditions. During constant exposure to 50% sea water it was found that the animals retracted the tentacles and that the rate of oxygen consumption decreased by ≈50%. The same response was elicited from animals in 100% sea water in a contracted state. Animals exposed to continually fluctuating salinities were found to retract the tentacles, contract the body wall, and produce amounts of mucus during periods of decreasing salinities. These reactions were reversed during exposure to increasing salinity. Oxygen consumption never ceased entirely in animals exposed to dilute sea water and it was found that during declining oxygen tension M. senile regulated its oxygen consumption until the environmental oxygen tension fell to ≈30% saturation.  相似文献   

19.
In line with current conservation efforts, some success in the captive breeding of the seahorse Hippocampus kuda (Teleostei: Syngnathidae) has been achieved. To evaluate the salinity tolerance of these hatchery‐bred juveniles, 9‐week‐old H. kuda were transferred without prior acclimatization from ambient full strength seawater (32–33 ppt) to salinities ranging from freshwater to 85 ppt. Survival, growth, and total body water content were determined after 4 and 18 days of exposure. Juvenile H. kuda are able to survive in dilute seawater (15 ppt) for at least 18 days without any compromise in growth (both wet and dry body weight), survival, and total body water. Fish abruptly transferred to freshwater succumbed within 4–24 h, while survival of 5 ppt‐reared fish decreased to ca. 65% in 18 days. Although 10 ppt‐reared seahorses had growth and survival comparable with the control (30 ppt seawater), total body water was significantly elevated indicating reduced adaptability. The upper limit of H. kuda salinity tolerance was 50 ppt. Fish reared at salinities ≥55 ppt succumbed within 24 h. Like several other marine teleosts, growth and survival of juvenile H. kuda tended to peak in diluted seawater salinities of 15 and 20 ppt. These results indicate the possibility of growing hatchery‐bred H. kuda in brackishwater environments.  相似文献   

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