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1.
水稻(Oryza.sativa L.)是我国最重要的粮食作物之一,水稻产量占粮食总产量的一半以上,一旦水稻受到重金属污染,将会影响水稻植株的正常生长和生理特性。目前关于钒胁迫对水稻植株生理特性指标的影响方面报道较少。通过水培实验,研究了不同钒(V)质量浓度(0、4、8、12、16、20 mg·L-1)对水稻幼苗(Oryza.sativa L)生理生化和富集特性的影响。结果表明:随着V胁迫浓度的增加,叶绿素含量、可溶性蛋白含量、过氧化氢酶(CAT)活性、过氧化物酶(POD)活性、超氧化物歧化酶(SOD)等均呈现先上升、后下降的变化趋势。当ρ(V)≤12 mg·L-1,与对照相比较,叶绿素含量、可溶性蛋白含量和酶活性增大了135.3%、104.2%、77.8%(CAT)、84.5%(POD)和273.2%(SOD);当ρ(V)〉12 mg·L-1,则分别降低37.2%、39.4%、41.1%、24.1%和24.5%。随着 V 胁迫浓度的增加,丙二醛(MDA)含量和细胞膜透性逐渐增大,与对照相比,分别增加了38.5%~289.3%、21.2%~303.2%,根系活力下降了10.9%~82.2%。可见,低ρ(V)(≤12 mg·L-1)对水稻幼苗的生长有一定的刺激作用,水稻幼苗自身保护酶表现出较强的自我调节能力;高ρ(V)(〉12 mg·L-1)明显抑制叶绿素和蛋白合成、抗氧化酶活性和根系活力,伤害了细胞质膜系统,影响水稻幼苗的生长发育。不同V浓度胁迫下,水稻幼苗累积的V含量为:根〉茎叶。随着V胁迫浓度增加,水稻幼苗各器官V含量增大,其中根部增幅远大于茎叶,当ρ(V)从5 mg·L-1增加到40 mg·L-1,与对照相比较,根部增加了0.98~25.3倍,茎叶部增加了0.26~4.74倍。生物富集系数(BF)先增加后降低,最大值为2.8408;迁移系数(TF)下降,最低值为0.1170,说明水稻对V有较强的富集能力,但迁移能力较低,积累的V主要富集在根部,可减轻V对地上部植物的危害。  相似文献   
2.
为探讨老化时间对TiO_2纳米颗粒(nanoparticles,NPs)生物有效性的影响,研究了不同老化时间的Ti O_2NPs(0~120 d)对玉米幼苗生长的影响、在玉米体内的吸收及其在植株不同部位的存在位点等。研究发现,不同浓度的TiO_2NPs(1 000 mg·kg~(-1)和2 000 mg·kg~(-1))加入到土壤中,对玉米幼苗干鲜重没有明显的影响,但老化时间小于60 d时,对玉米幼苗株高有一定的抑制效应,老化60 d之后,随着老化时间的继续延长,毒性逐渐降低,最后趋于稳定。老化60 d时,TiO_2NPs处理的玉米幼苗根冠增大,玉米幼苗体内产生H2O_2的累积。在Ti O_2老化土壤中生长的玉米幼苗根系和地上部均有Ti的累积,1 000 mg·kg~(-1)的TiO_2NPs在玉米幼苗根部的生物累积系数达到35.4%,在地上部为13.6%,在玉米植株体内的转运系数为0.38;通过TEM观察,TiO_2NPs可以进入到玉米幼苗体内,并存在于根细胞的细胞质和叶绿体膜上,在叶片细胞的液泡和细胞核中也发现有TiO_2NPs的存在。上述研究结果为客观评价TiO_2NPs的生态风险提供了有用信息。  相似文献   
3.
施用城市污泥对杨树土壤化学特性及金属含量的影响   总被引:5,自引:0,他引:5  
辛涛  白莉萍  宋金洪  卢振兰  伏亚萍 《生态环境》2010,19(11):2722-2727
采用温室盆栽方法,研究城市污泥对杨树土壤化学特性、金属含量的影响。实验设置6个处理:4个不同用量的污泥处理:30(S1)、60(S2)、90(S3)和120 t.hm-2(S4),以及对照(Control:不施加污泥和肥料)和无机复合肥处理(F:1.5 t.hm-2)。结果表明,施用污泥后,土壤有机质、全氮及全磷均提高,且随污泥施用量的增加而增加。S1~S4处理的土壤有机质、全氮及全磷较Control处理分别提高了32.50%~52.05%、32.00%~95.30%及75.43%~236.25%;较F处理分别提高了47.60%~69.37%、35.04%~99.70%及77.10%~239.46%。但污泥施用降低土壤pH和全钾质量分数,土壤pH较Control和F处理分别下降了0.11~0.42和0.01~0.32,但仍呈弱碱性;土壤全钾质量分数较Control和F处理分别降低了1.65%~21.51%和1.19%~21.14%。随污泥施用量的增加,土壤Cu、Zn、Ca和Na质量分数呈增加趋势,而Mn、Fe、Al、Mg质量分数呈降低趋势,其中Cu和Zn增加明显,并较Control处理分别增加了31.89%~104.36%和38.93%~358.02%,较F处理分别增加了23.10%~90.75%和37.88%~354.55%。总体而言,污泥施用于杨树后,可明显改善土壤的化学特性,但污泥施用量越大,土壤重金属Cu和Zn的质量分数残留越多。  相似文献   
4.
酸雨与镧对大豆幼苗生长的复合伤害效应研究   总被引:2,自引:0,他引:2  
梁婵娟  潘丹云  徐秋荣  周青 《环境科学》2010,31(7):1652-1656
为探索酸雨与稀土镧对大豆幼苗生长的复合影响及其内在机制,以重要油粮作物大豆(Glycine max)为材料,研究在模拟酸雨pH分别为3.0、3.5、4.5与稀土镧La(Ⅲ)浓度分别为60、100和300mg·L-1处理下大豆幼苗生长及光合作用的变化.结果表明,相对单一酸雨与镧处理,酸雨与La(Ⅲ)复合处理组中大豆幼苗的生长受抑制程度增大,两者呈协同效应,且pH越低,La(Ⅲ)浓度越高,抑制效应越明显.光合参数的变化规律与生长指标近同,相同处理组各光合参数的降幅不一致,其中最大荧光(Fv/Fm)和叶绿素含量(Chl)的降幅范围分别为9.53%~22.75%和9.14%~24.53%,较净光合速率Pn(22.78%~84.7%)、希尔(Hill)反应速率(15.52%~73.38%)和Mg2+-ATPase活性(14.51%~71.54%)小,表明各光合参数对2个胁迫因子的敏感程度存在差异.进一步相关性分析发现,Pn变化主要受Hill反应速率与Mg2+-ATPase活性的影响,而Chl、Fv/Fm次之.表明酸雨与La(Ⅲ)对植物光合过程各环节的作用机制不同,光合作用受阻是影响植物生长的重要因素之一.  相似文献   
5.
The effects of arbuscular mycorrhizal fungi (AMF) Glomus mosseae on the responses to elevated O3 in growth and nutrition of snap bean (Phaseolus vulgaris L. cv Guangzhouyuan) were investigated. Exposure was conducted in growth chambers by using three O3 concentrations (20 (CF), 80 (CFO1) and 120 nL/L (CFO2); 8 hr/day for 75 days). Results showed that elevated O3 slightly impacted overall mycorrhizal colonization, but significantly decreased the proportional frequency of hypha and increased the proportional frequency of spores and vesicles, suggesting that O3 had significant effects on mycorrhizal structure. Elevated O3 significantly decreased yield, dry mass and nutrient contents (N, P, K, Ca and Mg) in both non-mycorrhizal and mycorrhizal plants. However, significant interactive effects were found in most variables due to that the reduction by O3 in the mycorrhizal plants was less than that in the non-mycorrhizal plants. Additionally, AMF increased the concentrations of N, P, Ca, and Mg in shoot and root. It can be concluded that AMF alleviated detrimental effects of increasing O3 on host plant through improving plant nutrition and growth.  相似文献   
6.
光合细菌和螺旋藻对黄泔水净化与利用初探   总被引:6,自引:1,他引:5  
应用光合细菌将黄泔水中的有机物降解转化为无机氮磷后养殖螺旋藻。结果表明,在实验条件下光合细菌对黄泔水CODcr的去除率可达70%,处理后的黄泔水用甲壳质絮凝澄清后加入螺旋藻并曝气进行培养,藻生长周期为22d,生长速率为20-30mg/L.D。藻体蛋白质含量平均为52.6g/100g游离氨基酸平均含量为2.4g/100g。  相似文献   
7.
彭祺  周青 《环境科学》2008,29(7):2024-2027
为进一步认识La(Ⅲ)提高类黄酮含量及减轻UV-B辐射伤害植物机制,以大豆幼苗为材料,采用水培实验的方法研究了La(Ⅲ)对UV-B辐射胁迫下大豆幼苗类黄酮抗氧化能力的动态影响.结果表明, UV-B辐射(T1:0.15W·m-2和T2:0.45W·m-2)胁迫下,大豆幼苗类黄酮含量在胁迫期和恢复期均先升后降,质膜透性、MDA含量先升(1~5d)后降(6~11d),类黄酮对O·-2和·OH的清除率与其含量变化趋势近同.各处理组类黄酮含量La(Ⅲ) UV-B>UV-B>La(Ⅲ)>CK, La(Ⅲ) T1>La(Ⅲ) T2;质膜透性、MDA含量UV-B>La(Ⅲ) UV-B>CK>La(Ⅲ), La(Ⅲ) T2>La(Ⅲ) T1;类黄酮对O-2和·OH清除率La(Ⅲ) UV-B>UV-B>La(Ⅲ)>CK, La(Ⅲ) T1, La(Ⅲ) T2,表明La(Ⅲ)对类黄酮的调控作用,提高了清除活性氧自由基的运行效率,降低了MDA浓度,维持了质膜正常透性,且对低剂量(T1)的防护效果优于高剂量(T2),进而在防御系统层面实现了La(Ⅲ)对UV-B辐射伤害大豆幼苗的防护效应.  相似文献   
8.
用氯化铈 (CeCl3 )沉淀的电镜细胞化学方法 ,对常温下及 2℃低温处理后的冬小麦 (TriticumaestiviumL .)幼苗质膜Ca2 ATPase活性进行定位 .结果显示 :(1)常温下生长的冬小麦幼苗 ,质膜上有部分Ca2 ATPase活性反应 .(2 )冬小麦幼苗经 2℃低温处理 1h ,质膜上Ca2 ATPase活性增加 .处理 3h ,活性进一步加强 .2℃下处理 12h ,有强的酶活性反应 .处理 2 4h后 ,活性反应达到最强 .2℃处理 3d ,Ca2 ATPase活性有所下降 ,但仍高于CK .细胞结构完整 .据结果推测 ,质膜Ca2 ATPase活性受细胞内Ca2 浓度反馈调节 .图 1参 10  相似文献   
9.
The rising concentration of carbon dioxide [CO2] in the atmosphere represents an increase in a growth-limiting resource for C3 crop species. Identification of lines or characteristics of lines which have superior yield at elevated [CO2] could aid in adaptation to this global change. While intraspecific variation in responses to elevated [CO2] has been found in several species, intraspecific differences in crop yield responses to elevated [CO2] under field conditions have seldom been documented. In this 4-year study, the responses of photosynthesis, growth, pod number, seed number and size, and seed yield to the elevation of [CO2] to 180 μmol mol−1 above the current ambient concentration were examined in four varieties of Phaseolus vulgaris in the field, using open-top chambers. There was a significant variety by [CO2] interaction for seed yield, with seed yield at elevated [CO2] ranging from 0.89 to 1.39 times that at ambient [CO2] (mean 1.17×) in the different varieties, when averaged over 4 years. The highest yielding variety at elevated [CO2] was not the highest yielding variety at ambient [CO2]. The varieties with the largest and smallest yield responses both had an indeterminate growth habit. Down-regulation of photosynthesis at elevated [CO2] only occurred in the two indeterminate varieties, and there was no significant correlation between the response of single leaf photosynthetic rate and the response of seed yield to elevated [CO2] among varieties, nor between the responses of stem mass and seed yield. The change in the number of pods at elevated [CO2] was the primary determinant of the response of seed yield. These results indicate that significant variation in the response of seed yield to elevated [CO2] under field conditions does exist among varieties of P. vulgaris, and that variation in the response of pod and seed number may be more important than variation in photosynthetic response.  相似文献   
10.
To demonstrate the existence of light thresholds in plant growth and to examine the effects of elevated CO2 on the shade tolerance of a tree species, an experiment consisting of a completely randomized design for a total of 96 yellow birch (Betula alleghaniensis Britton) seedlings was conducted with 3 light levels (2.9%, 7.7%, 26.1% of full sunlight)×2 CO2 levels (350 and 700±10 ppm) with 4 replications in a phytotron. The study proved that thresholds exist and they vary in different plant organs. In ambient CO2, the thresholds were 13.3%, 18.7%, 15.0%, 15.2%, and 15.6% of full sunlight for stem, leaf, root, total plant biomass, and the averaged value, respectively. In 700 ppm CO2, the corresponding thresholds were 16.7%, 21.3%, 18.1%, 21.7% and 19.5% for stem, leaf, root, total plant biomass, and the averaged value, respectively. The lowest threshold in the stem is an indicator of the minimal light intensity for regular growth for seedlings of this species. Below this threshold, light-stressful growth occurs. The result of a paired t-test indicated that the thresholds in elevated CO2 were significantly higher than in ambient CO2. This suggests that yellow birch will lose its moderate shade tolerance, evolutionally becoming a shade-intolerant species, and that it may become more difficult to naturally regenerate in the future.  相似文献   
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