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51.
采用差速离心法和逐步提取法,分析Cd超积累植物小飞扬草根、茎、叶中Cd的亚细胞分布和化学形态.培养液中Cd浓度5mg/L和10 mg/L条件下,在小飞扬草根、茎、叶中,细胞壁和细胞膜是Cd主要的结合场所,含量分别占总量的47.1%~49.0%、39.7%~41.4%、42.9%~56.2%,其次是胞液组分,含量分别占37.5%~41.4%、28.2%~40.7%、35.2%~46.8%,细胞器组分中Cd含量较少.Cd在小飞扬草根、茎、叶中均以氯化钠提取态为主,含量分别占70.5%~84.8%、72.4%~83.0%、50.0%~74.8%.根部各提取态含量依次为CNaCl>CHAC>CEtOH>CHCl>CW>CR,茎、叶中各提取态含量依次为CNaCl>CHCI>CHAC>CEtOH>CW>CR.在小飞扬草中,Cd与细胞壁和细胞膜中的果胶酸和蛋白质等物质结合固定,而进入细胞的Cd大部分与有机酸络合而隔离于液泡内,这可能是小飞扬草忍耐并超积累Cd的机制. 相似文献
52.
采用差速离心法和逐步提取法,分析Cd超积累植物小飞扬草根、茎、叶中Cd的亚细胞分布和化学形态。培养液中Cd浓度5mg/L和10mg/L条件下,在小飞扬草根、茎、叶中,细胞壁和细胞膜是Cd主要的结合场所,含量分别占总量的47.1%~49.0%、39.7%~41.4%、42.9%~56.2%,其次是胞液组分,含量分别占37.5%~41.4%、28.2%~40.7%、35.2%~46.8%,细胞器组分中Cd含量较少。Cd在小飞扬草根、茎、叶中均以氯化钠提取态为主,含量分别占70.5%~84.8%、72.4%~83.0%、50.0%~74.8%。根部各提取态含量依次为CNaCl>CHAC>CEtOH>CHCl>CW>CR,茎、叶中各提取态含量依次为CNaCl>CHCl>CHAC>CEtOH>CW>CR。在小飞扬草中,Cd与细胞壁和细胞膜中的果胶酸和蛋白质等物质结合固定,而进入细胞的Cd大部分与有机酸络合而隔离于液泡内,这可能是小飞扬草忍耐并超积累Cd的机制。 相似文献
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基于高效液相色谱(HPLC)技术分析了8种定鞭金藻、2种硅藻在对数生长期的光合色素组成,比较了中肋骨条藻(Skeletonema costatum)、路氏巴夫藻(Pavlova lutheri)和湛江叉鞭金藻(Dicrateria zhanjiangensis)在不同生长阶段主要光合色素组成和比值的变化。实验结果表明:8种定鞭金藻根据光合色素19’-已酰基氧化岩藻黄素的存在与否可分为两类,其中不含19’-已酰基氧化岩藻黄素的定鞭金藻与硅藻光合色素组成相似。通过对比不同生长阶段的样品发现稳定期硅藻(中肋骨条藻)中叶绿素c1+c2,岩藻黄素、硅甲藻黄素与总叶绿素a比值显著高于它们在定鞭金藻(路氏巴夫藻、湛江叉鞭金藻)中与叶绿素a的比值(P<0.05),并且随培养时间延长而增大,而路氏巴夫藻、湛江叉鞭金藻中叶绿素c1+c2,岩藻黄素、硅甲藻黄素与总叶绿素a比值则一直维持在较低水平。该结果可以作为基于CHEMTAX软件的化学分类法的依据,以提高定量分析硅藻和定鞭金藻的准确性。 相似文献
56.
潮白河周丛生物群落元素组成与水质变化的生态计量学关系研究 总被引:2,自引:0,他引:2
研究了潮白河流域中污染水体对周丛生物群落的碳(C)、氮(N)、磷(P)元素含量以及生态计量组成的影响.结果表明,下游潮白河NH4+-N、NOx--N分别占TN的52%和28%;上游白河则分别占1.6%和38%.潮白河TP含量(0.104 mg.L-1)为白河TP含量(0.005 mg.L-1)的21倍.白河和潮白河周丛生物C、N、P元素的变异系数分别为0.55、0.41、0.62和0.24、0.13、0.18,表明生长于白河周丛生物的元素结构变化更大.无周丛生物的水体NH4+-N和TP的浓度分别为有周丛生物的21倍和11倍.通过对TOC、TN、NOx--N、NH4+-N、TP、pH、氧化还原电位(ORP)和电导率(conductivity)等水质指标进行二元Logistic回归分析得知,水体TP为影响潮白河周丛生物生存的主要因素,其预测正确率为87.3%.周丛生物C、N、P元素间有强相关性,其中N起了"桥梁"作用.生态计量学分析进一步显示周丛生物的N∶P的比值追随水体TN∶TP的变化;并且该比值主要受水体TP浓度影响.周丛生物N∶P可用于水体TN∶TP变化的生态计量学的指示因子.本研究为进一步探究周丛生物群落结构变化,以及对高一级营养级生物群落结构和元素循环的影响奠定了基础. 相似文献
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Competition of three bloom-forming marine phytoplankton (diatom Skeletonema costatum, and dinoflagellates Prorocentrum
minimum and Alexandrium tamarense) was studied through a series of multispecies cultures with di erent nitrate (NaNO3) and
phosphate (NaH2PO4) levels and excess silicate to interpret red tide algae succession. S. costatum outgrew the other two dinoflagellates
in nitrate and phosphate replete cultures with 10 mol/L Na2SiO3. Under nitrate limited (8.82 mol/L NaNO3) conditions, the growth
of S. costatum was also dominant when phosphate concentrations were from 3.6 to 108 mol/L. Cell density of the two dinoflagellates
only increased slightly, to less than 400 and 600 cells/mL, respectively. Cell density of S. costatum decreased with time before day
12, and then increased to 4000 cells/mL (1.5 mg/L dry biomass) at NaNO3 concentrations between 88.2 and 882 mol/L with limited
phosphate (0.36 mol/L NaH2PO4) levels. In addition, P. minimum grew well with a maximal cell density of 1690–2100 cells/mL
(0.5–0.6 mg/L dry biomass). Although S. costatum initially grew fast, its cell density decreased quickly with time later in the growth
phase and the two dinoflagellates were dominant under the nitrate-limited and high nitrate conditions with limited phosphate. These
results indicated that the diatom was a poor competitor compared to the two dinoflagellates under limited phosphate; however, it grew
well under limited nitrate when growth of the dinoflagellates was near detection limits. 相似文献
60.
The toxicity of naphthalene to a freshwater microalga, Chlorella pyrenoidosa, and the subsequent recovery of algae from the damage
were investigated under two nutrient conditions, either enriched with nitrogen (N) and phosphorus (P), or starved of N and P. Results
showed that C. pyrenoidosa was more sensitive to naphthalene under N,P-enriched condition, and the inhibitory rate generally increased
at first and then decreased gradually with the evaporation of naphthalene under both nutrient conditions. Enriched N, P reduced the
inhibitory rate at initial naphthalene concentration of 5 and 10 mg/L, but enhanced it at 100 mg/L, at which more severe ultrastructure
damages were found than those under N,P-starved condition. Observed damages included partly or totally disappearance of nucleolus,
nuclear, and plasma membranes. According to the chlorophyll content and cell density measurements, C. pyrenoidosa could recover
from naphthalene damage with initial concentrations 6 50 mg/L in 7 days under both nutrient conditions, while they could not recover
if the initial concentration of naphthalene was at 100 mg/L. Under the N,P-starved condition, the inability of C. pyrenoidosa to recover
from the naphthalene damage was consistent with the results of high inhibitory rate, low value of specific growth rate (SGR, 0.05
day??1), and the severe destruction of cell structure. However, under the N,P-enriched conditions, the observed lower inhibitory rate,
higher value of SGR (0.55 day??1), and the intact cell structure of most cells suggested that algae could potentially recover from the
naphthalene damage. 相似文献