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1.
为了解外源钙对缓解沙拐枣(Calligonum mongolicum)盐胁迫的主要生理机制,采用盆栽法探究在0、100、200 mmol/L的NaCl胁迫下,分别添加5、10、15和20 mmol/L的Ca(NO32对沙拐枣同化枝中w(脯氨酸)、丙二醛含量、w(可溶性蛋白)、w(可溶性糖)的影响.结果表明,单独添加Ca(NO32使沙拐枣同化枝内w(脯氨酸)、丙二醛含量、w(可溶性蛋白)以及w(可溶性糖)增加,即Ca(NO32对沙拐枣的生长造成了胁迫.对w(脯氨酸)、丙二醛含量、w(可溶性蛋白)、w(可溶性糖)来说,NaCl和Ca(NO32之间均存在极显著的交互作用,与对照相比,在c(NaCl)分别为100、200 mmol/L,添加c[Ca(NO32]为10、20 mmol/L时,w(脯氨酸)显著增加,分别达到最大值(736.7、1 086.3 μg/g);丙二醛含量分别降低了37.8%和40.5%,w(可溶性蛋白)以及w(可溶性糖)均增加.总之,适宜浓度的钙盐通过增加渗透物质w(脯氨酸)、w(可溶性蛋白)及w(可溶性糖),降低丙二醛的含量来有效缓解盐胁迫对沙拐枣幼苗产生的伤害,当c(NaCl)/c[Ca(NO32]为10:1时,缓解作用最佳,并且钙盐对沙拐枣盐胁迫的缓解属于抗性诱导的调节作用.   相似文献   
2.
Indiscriminate release of metal oxide nanoparticles (NPs) into the environment due to anthropogenic activities has become a serious threat to the ecological system including plants. The present study assesses the toxicity of nano-CuO on rice (Oryza sativa cv. Swarna) seedlings. Three different levels of stress (0.5 mM, 1.0 mM and 1.5 mM suspensions of copper II oxide, <50 nm particle size) were imposed and seedling growth performance was studied along control at 7 and 14 d of experiment. Modulation of ascorbate–glutathione cycle, membrane damage, in vivo ROS detection, foliar H2O2 and proline accumulation under nano-CuO stress were investigated in detail to get an overview of nano-stress response of rice. Seed germination percentage was significantly reduced under stress. Higher uptake of Evans blue by nano-CuO stressed roots over control indicates loss of root cells viability. Presence of dark blue and deep brown spots on leaves evident after histochemical staining with NBT and DAB respectively indicate severe oxidative burst under nano-copper stress. APX activity was found to be significantly increased in 1.0 and 1.5 mM CuO treatments. Nevertheless, elevated APX activity might be insufficient to scavenge all H2O2 produced in excess under nano-CuO stress. That may be the reason why stressed leaves accumulated significantly higher H2O2 instead of having enhanced APX activity. In addition, increased GR activity coupled with isolated increase in GSH/GSSG ratio does not seem to prevent cells from oxidative damages, as evident from higher MDA level in leaves of nano-CuO stressed seedlings over control. Enhanced proline accumulation also does not give much protection against nano-CuO stress. Decline in carotenoids level might be another determining factor of meager performance of rice seedlings in combating nano-CuO stress induced oxidative damages.  相似文献   
3.
4.
Subcellular distribution and toxicity of cadmium in Potamogeton crispus L   总被引:2,自引:0,他引:2  
Xu Q  Min H  Cai S  Fu Y  Sha S  Xie K  Du K 《Chemosphere》2012,89(1):114-120
The submerged macrophyte Potamogeton crispus L. was subjected to varying doses of cadmium (0, 20, 40, 60 and 80 μM) for 7 d, and the plants were analyzed for subcellular distribution of Cd, accumulation of mineral nutrients, photosynthesis, oxidative stress, protein content, and ultrastructural distribution of calcium (Ca). Leaf fractionation by differential centrifugation indicated that 48-69% of Cd was accumulated in the cell wall. At all doses of Cd, the levels of Ca and B rose and the level of Mn fell; the levels of Fe, Mg, Zn, Cu, Mo, and P rose initially only to decline later. Exposure to Cd caused oxidative stress as evident by increased content of malondialdehyde and decreased contents of chlorophyll and protein. Photosynthetic efficiency, as indicated by the quenching of chlorophyll a fluorescence (Fv/Fm, Fo and Fm), decreased significantly, the extent of decrease being directly proportional to the concentration of Cd. Increased amounts of precipitates of calcium were noticed in the treated plants, located either outside the cell membrane or in chloroplasts, mitochondria, the nucleus, and the cytoplasm whereas control plants showed small deposits of the precipitates around surface of the vacuole membrane and in the intercellular space but rarely in the cytoplasm. Photosynthetic efficiency and oxidative stress could be used as indicators of physiological end-points in determining the extent of Cd phytotoxicity.  相似文献   
5.
The effects of di erent phosphate-amendments on lead (Pb) uptake, the activities of superoxide dismutase (SOD) and the level of malondialdehyde (MDA) in cauliflower (Brassica oleracea L.) in contaminated soils with 2500, or 5000 mg P2O5/kg soil of hydroxyapatite (HA), phosphate rock (PR), single-superphosphate (SSP) and the mix of HA/SSP (HASSP) were evaluated in pot experiments. Results showed that the Pb concentrations in shoots and roots decreased by 18.3%–51.6% and 16.8%–57.3% among the treatments respectively compared to the control samples. The e ciency order of these phosphate-amendments in reducing Pb uptake was as follows: HASSPt HA > SSP t PR.With the addition of SSP, HA and the mix of HA/SSP, the SOD activity in shoot was reduced markedly (P < 0.05) compared with that in the control group. For example, the SOD activities in shoot by the treatments of HASSP, SSP, and HA in 5000 mg P2O5/kg were found to be only 51.3%, 56.2%, and 56.7%, respectively. Similar e ects were also observed on the level of MDA in the shoots with a decrease in 24.5%–56.3%. The results verified the inference that phosphate compounds could be used to reduce the plant uptake of Pb and resist the Pb stress in the plant vegetated in Pb-contaminated soils.  相似文献   
6.
The effect of white African mineral dye Yombofita (YF) on the activities of alkaline phosphatase (ALP), acid phosphatase (ACP) and malondialdehyde (MDA) levels in the skin, liver, kidney and serum of albino rats was investigated. The chemical analysis of the dye was first carried out using solubility test, pH determination and X-ray fluorescence (XRF) elemental analysis. Six different concentrations (0.05, 0.15, 0.25, 0.5, 0.75 and 1.00%) of the dye were prepared using hydrogen peroxide (30 volume) as solvent. A total of 80 albino rats (Rattus norvegicus) were used for the study. The rats were divided into 8 groups of 10 each and were maintained on commercial feed for the period of the experiment i.e. 30 days. In group 1, the control group, the animals were applied distilled water on their heads, whereas in group 2 the vehicle i.e. hydrogen peroxide was applied. In groups 3 to 8 various concentrations of YF (white) dye ranging from 0.05, 0.15, 0.25, 0.5, 0.75 to 1.00% was applied respectively. At the end of the experiment, blood samples were collected and portions of the selected tissues were excised for the determination of ALP and ACP activities. The MDA level was also determined in the skin of experimental animals. The results revealed a significant decrease (p?p?相似文献   
7.
为了评价纳米二氧化硅对鱼类发育的影响,以斑马鱼为模式生物,研究了不同浓度纳米二氧化硅和常规二氧化硅的水溶悬浮液对斑马鱼胚胎发育的毒性效应.结果表明,常规二氧化硅对斑马鱼胚胎发育无明显毒性效应,而纳米二氧化硅对斑马鱼胚胎发育具有明显的抑制作用,且呈一定的剂量依赖性,其对84hpf斑马鱼胚胎的LC50值为240mg·L-1.纳米二氧化硅可导致胚胎孵化率显著下降、死亡率显著上升,且可观察到幼鱼多种畸形现象,此外纳米二氧化硅可使斑马鱼提前孵化,但提前孵化的幼鱼未发育完全.检测108hpf斑马鱼幼鱼体内丙二醛(MDA)含量发现,纳米二氧化硅染毒组MDA含量均显著高于对照组(0mg·L-1)(p<0.05),提示,纳米二氧化硅的发育毒性可能源于其导致的氧化损伤.  相似文献   
8.
铅染毒导致小鼠DNA损伤与氧化损伤   总被引:5,自引:6,他引:5  
为了研究亚急性铅暴露对小鼠的遗传毒性及氧化损伤的诱导,将不同剂量的醋酸铅对小鼠隔日灌胃4周,用彗星实验检测其外周血淋巴细胞DNA损伤,并测定肝组织中活性氧自由基(ROS)的水平和脂质过氧化主要终产物丙二醛(MDA)的含量.结果显示,随染铅剂量的增加,小鼠肝线粒体中的ROS水平明显升高,染铅剂量为500 mg·kg-1组与对照组相比有显著性差异;肝MDA含量以及淋巴细胞尾长和尾相显著增加,染铅剂量为50、100、500 mg·kg-1组与对照组相比均有显著性差异;MDA与尾长和尾相的变化趋势一致.诱导产生自由基并导致脂质过氧化作用增强及DNA损伤是铅引起机体损伤的主要机制之一.  相似文献   
9.
Zhang B  Zhang H  Jin J  Ni Y  Chen J 《Chemosphere》2012,88(7):798-805
Polychlorinated dibenzo-p-dioxins and polychlorinated dibenzofurans (PCDD/Fs) are ubiquitous contaminants and can be considerably accumulated by natural plants. In order to elucidate the biochemical and physiological responses of plant to PCDD/Fs, tobacco Bright Yellow-2 (BY-2) cells were selected as model plant and treated with time- and concentration-dependent PCDD/Fs. The toxic effect and oxidative stress caused by PCDD/Fs were evident, which could be indicted by the reduction in fresh mass, the increase in malondialdehyde (MDA) content, and the damage of tobacco cell ultrastructure. PCDD/Fs tolerance was correlated with changes in antioxidant system and hormones of tobacco cells. Superoxide dismutase (SOD) and peroxidase (POD) exhibited peak enzyme activities at the PCDD/Fs concentration of 1000 ng WHO98-TEQ g−1 fresh weight. Glutathione reductase (GR) enzyme activity increased monotonically at high level PCDD/Fs, but the activity of catalase (CAT) was only slightly affected at all treatment. Meanwhile, the exposure to PCDD/Fs resulted in the changes of hormones content. With the increase of exposure concentration of PCDD/Fs, the levels of indole-3-acetic acid (IAA) and abscisic acid (ABA) increased, whereas the concentration of jasmonates (JAs) decreased. The above results suggest that tobacco cells had the ability to cope with the oxidative stress induced by low concentration of PCDD/Fs through increasing the activities of antioxidant enzymes and alternating plant hormones levels. However, oxidative stress and toxicity would burst out when plant cells were exposed to the high levels of PCDD/Fs.  相似文献   
10.
Cadmium (Cd) stress may cause serious physiological, ultramorphological and biochemical anomalies in plants. Cd-induced physiological, subcellular and metabolic alterations in two transgenic cotton cultivars (BR001, GK30) and their parent line (Coker 312) were evaluated using 10, 100 and 1000 μM Cd. Germination, fresh biomass of roots, stems and leaves were significantly inhibited at 1000 μM Cd. Root volume tolerance index significantly increased (124.16%) in Coker 312 at 1000 μM Cd. In non-Cd stressed conditions, electron micrographs showed well-configured root meristem and leaf mesophyll cells. At 1000 μM Cd, greater ultramorphological alterations were observed in BR001 followed by GK30 and Coker 312. These changes were observed in nucleus, vacuoles, mitochondria and chloroplast. Dense precipitates, probably Cd, were seen in vacuoles, which were also attached to the cell walls. A considerable increase in number of nuclei, vacuoles, starch granules and plastoglobuli was observed in the electron micrographs of both roots and leaves at 1000 μM Cd. MDA contents were higher in roots of BR001 at 1000 μM Cd. Mean values of SOD activity in leaves of both BR001 and GK30 at 1000 μM Cd significantly increased as compared to the controls. POD activity in roots of BR001 and Coker 312 was greater at all Cd (10, 100, 1000 μM) levels over the control. Regarding APX, highest percent increase (71.64%) in roots of GK30 at 1000 μM Cd was found. Non-significant differences in CAT activity were observed at all levels of Cd stress in leaves of BR001 and GK30. Both transgenic cotton cultivars and their parental line invariably responded towards Cd stress. However, Coker 312 showed Cd-resistant behavior as compared to its progeny lines (BR001 and GK30).  相似文献   
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