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1.
通过沙基培养方法研究不同浓度锌(Zn)对汞(Hg)胁迫下小麦幼苗叶绿素相对含量(SPAD)、丙二醛(MDA)与脯氨酸的积累及抗氧化酶活性等的影响.结果表明:单独Hg(10 mg L-1)胁迫下,小麦幼苗叶绿素含量降低,超氧化物歧化酶(SOD)与过氧化氢酶(CAT)活性受到抑制,MDA与脯氨酸含量升高.加入10 mg L-1Zn后,叶绿素含量比Hg单独胁迫升高了5.6%,MDA含量降低了32.4%,表明该浓度Zn在一定程度上缓解了Hg对小麦幼苗的毒害;Zn浓度高于10 mg L-1的处理中,叶绿素含量逐渐降低,MDA则呈升高趋势,表明随Zn浓度升高,Zn对Hg毒害的缓解作用逐渐降低.低浓度Zn(10~20 mg L-1)提高了Hg胁迫下小麦幼苗SOD与CAT活性,其活性随Zn浓度升高逐渐增加,20mg L-1Zn处理下,两种酶活性比Hg单独胁迫分别升高了103.3%与71.0%,高浓度Zn(50~100 mg L-1)处理下,两种酶活性则呈下降趋势,表明Zn对Hg胁迫下两种酶活性的促进作用逐渐减弱.在试验设置的Zn浓度范围内,脯氨酸含量均低于Hg单独胁迫,并且低于对照,说明外加Zn抑制了脯氨酸的生成.综上所述,10~20 mg L-1的Zn可以在一定程度上缓解10 mg L-1Hg对小麦幼苗造成的毒害.  相似文献   

2.
大坞河流域重金属污染与五节芒光谱效应关系研究   总被引:8,自引:1,他引:8  
以大坞河流域五节芒(Miscanthus floridulus)可见一近红外光谱以及叶片样本Cu、Zn、Fe元素质量分数监测数据为基础,对研究区内五节芒中重金属质量分数特征、光谱特征及两者的相关性进行了探讨。结果表明:五节芒叶片中3种金属元素的质量分数都较高;从上游到下游,五节芒叶片中Cu质量分数整体呈逐渐降低的趋势,五节芒光谱反射率在可见光区和近红外区均增加,红边“红移”(向长波方向飘移)强度逐渐减小;同时,五节芒叶片中Cu质量分数与五节芒可见光区、近红外区光谱反射率积分值呈负相关性,与红边“红移”强度、土壤中Cu质量分数呈正相关。并由此得出五节芒光谱特征中A1、A2、S等3项指标能够较好反映土壤的Cu污染程度,经进一步深入研究,可以将五节芒作为监测矿区土壤Cu污染的指示植物。  相似文献   

3.
采用水培的方法,研究了Mn、Zn单一及复合污染对锰超富集植物水蓼(Polygonum hydropiper L.)生长、氮代谢关键酶(谷氨酰胺合酶(GOGAT)、谷氨酸合成酶(GS)、硝酸还原酶(NR)、谷氨酸脱氢酶(GDH))活性以及硝态氮(NO3-)、铵态氮(NH4+)、可溶性蛋白质、游离脯氨酸、叶绿素a、叶绿素b和叶绿素a+b含量,水蓼对Mn、Zn的吸收和转移系数的影响。研究结果表明,水蓼根、茎、叶中Mn、Zn含量,随着Mn、Zn处理浓度的增加而增加,且水蓼对Zn和Mn的转移系数分别维持在1.0~1.8和1.0~11.9,表明Zn对水蓼体内Mn的转移影响较为明显;Mn/Zn单一及复合处理显著降低了水蓼叶绿素a、叶绿素b和叶绿素a+b的含量(P0.05),但是叶绿素a/b较对照组显著提高(P0.05),Mn/Zn复合处理抑制了根系生长及株重,T8时,根长仅为对照组的64.93%,而T9时,株重仅为对照组的65.45%;单Zn及Mn/Zn复合处理均降低了水蓼根系中NO3-的含量,以及抑制NR活性,T5时,叶片和根中NR活性分别是对照组的44.36%和34.41%,但提高了叶片与根系中NH4+的含量,T9时叶片中的NH4+含量是对照组的2.35倍,T8时根中的NH4+含量是对照组的1.58倍,以及增加了GS活性,T9时,叶和根中GS活性分别使对照组的1.32和1.57倍,Zn及Mn、Zn复合处理对水蓼叶片与根系中可溶性蛋白质含量无显著影响(P0.05),表明GS活性以及GDH活性提高在消除NH4+胁迫过程中起重要作用。  相似文献   

4.
通过分析兰州市某交通线路两侧绿化植物叶片金属含量及其相关性,叶绿素和渗透性调节物含量的变化,探究交通线路活动造成的植物重金属污染特征及其对绿化植物生理特性的影响,为筛选适应道路环境的绿化植物提供理论依据。结果表明:在不同道路环境中植物体内重金属含量有明显的差异,路侧植物灌木月季(Rosa chinensis)、乔木冬青(Ilex chinensis)、槐树(Sophora japonica)、梧桐(Firmiana platanifolia)和碧桃(Amygdalus persica var. persica)的Cr、Pb、Ni和Zn积累量高,如冬青叶片Cr达到2.11 mg·kg~(-1),月季叶片Pb为9.14 mg·kg~(-1),Ni在碧桃和槐树叶片中的积累量分别为28.48 mg·kg~(-1)和26.42 mg·kg~(-1),十字交叉采样点的乔灌木植物Pb、Cr、Mn、Ni和Zn积累量比较高,这可能与十字路口有较多的车流量或交通活动频繁有关系。相关性和逐步回归分析表明,交通线路路侧植物体内Cr-Pb、Cr-Zn、Cr-Ca、Pb-Ni、Pb-Fe和Mn-Ni元素之间的相关性表现为显著正相关。在所有绿化植物中,松柏叶绿素含量最低,路侧槐树和碧桃的叶绿素含量最高;与对照点植物相比,路侧冬青和槐树叶片叶绿素含量显著升高,而月季叶片叶绿素含量明显降低。此外,路侧重金属含量高的环境下槐树和碧桃叶片中的脯氨酸含量高,分别达到81.42μg·g~(-1)和91.11μg·g~(-1),月季叶片积累可溶性糖增加,说明不同的绿化植物可能在不同的重金属环境中积累不同的渗透性调节物,以维持细胞渗透性平衡从而抵抗重金属胁迫。  相似文献   

5.
土霉素对小麦毒性效应的品种间差异   总被引:4,自引:0,他引:4  
为了研究土霉素对小麦毒性效应的品种间差异,收集了63个小麦品种,根据土霉素对小麦种根影响的试验结果,从中筛选出对土霉素耐性相差最大的两个小麦品种,探讨了土霉素对这两个小麦品种叶片叶绿素含量的影响.结果表明:1)小麦对土霉素的耐性存在品种间差异,在供试的63个小麦品种中,核优1号对土霉素最敏感,而烟农21对土霉素最不敏感,二者的EC50值分别为1.25和54.21mg·L-1;2)土霉素处理能够显著降低小麦叶片叶绿素a、叶绿素b以及总叶绿素的含量,其中对土霉素敏感品种核优1号的抑制显著高于不敏感品种烟农21;3)就同一品种而言,土霉素胁迫条件下,叶片叶绿素a的降低程度明显高于叶绿素b,叶片叶绿素a/b的比值显著降低.土霉素对敏感品种核优1号叶绿素a/b比值的影响显著弱于不敏感品种烟农21.  相似文献   

6.
采用水培实验的方法,研究了Pb、Zn及其交互作用对蜈蚣草抗氧化酶及叶绿素含量的影响.实验结果显示,Pb浓度在0—50 mg·L-1时,蜈蚣草叶绿素含量随Zn浓度增加逐渐升高、MDA含量逐渐降低,Pb、Zn交互作用可促进植株叶绿素合成.Pb浓度在100—400 mg·L-1时,Pb、Zn交互作用则降低叶绿素含量;在Pb浓度400 mg·L-1时,Pb、Zn交互作用显著增加MDA含量.实验结果还显示,在Pb浓度固定时,蜈蚣草叶片SOD、CAT的活性随Zn浓度增加呈现先上升后下降的趋势;POD随着Zn处理浓度的增加持续增加.在Zn浓度一定时,蜈蚣草叶片SOD、CAT、POD的活性随Pb浓度增加先上升后下降.由此可见,在低Pb、Zn浓度下,Pb、Zn交互作用表现为协同作用;在高Pb、Zn浓度下,Pb、Zn交互作用表现为拮抗作用.  相似文献   

7.
为了探明磺胺甲恶唑(sulfamethoxazole,SMZ)的生态毒理效应,通过实验室人工控制毒理实验,研究了低浓度SMZ暴露对小麦体内超氧化物歧化酶(SOD)活性、叶绿素(CHL)和蛋白质(SP)含量的影响。结果显示:染毒7d后,各浓度组小麦叶片的SOD活性均被显著诱导(P<0.01),并且染毒浓度的升高增强了SOD的活性,表明SMZ暴露胁迫下,小麦可启动自身的保护机制以最大限度地减少自由基损伤。而小麦叶片的CHL含量,随着SMZ染毒浓度的增加而逐渐降低。并且当SMZ暴露浓度较高时,小麦叶片的CHL含量被显著抑制(P<0.05))。当SMZ染毒浓度为0.05~0.50mg·L-1时,SP的含量被显著诱导(P<0.01));1.00mg·L-1SMZ对SP的含量产生显著(P<0.01)抑制,这说明SMZ染毒剂量将对蛋白质的合成产生严重影响。综上,SOD的活性变化可反映出SMZ暴露对小麦的污染效应及其生态毒性作用,但将其作为评估SMZ污染暴露的生物标志物有待于进一步深入研究。  相似文献   

8.
为了探明磺胺甲恶唑(sulfamethoxazole,SMZ)的生态毒理效应,通过实验室人工控制毒理实验,研究了低浓度SMZ暴露对小麦体内超氧化物歧化酶(SOD)活性、叶绿素(CHL)和蛋白质(SP)含量的影响.结果显示:染毒7d后,各浓度组小麦叶片的SOD活性均被显著诱导(P<0.0l),并且染毒浓度的升高增强了SOD的活性,表明SMZ暴露胁迫下,小麦可启动自身的保护机制以最大限度地减少自由基损伤.而小麦叶片的CHL含量,随着SMZ染毒浓度的增加而逐渐降低.并且当SMZ暴露浓度较高时,小麦叶片的CHL含量被显著抑制(P<0.05)).当SMZ染毒浓度为0.05~ 0.50 mg· L-1时,SP的含量被显著诱导(P< 0.01));1.00 mg·L-1SMZ对SP的含量产生显著(P<0.01)抑制,这说明SMZ染毒剂量将对蛋白质的合成产生严重影响.综上,SOD的活性变化可反映出SMZ暴露对小麦的污染效应及其生态毒性作用,但将其作为评估SMZ污染暴露的生物标志物有待于进一步深入研究.  相似文献   

9.
为探究2种具有较高药用和观赏价值的鼠尾草对酸雨的耐受性及其生理机制,以美丽鼠尾草(Salvia meiliensis S.W.Su)和贵州鼠尾草(Salvia cavaleriei Lévl.)为试验材料,分析了2种鼠尾草在不同p H(6.8、5.6、4.5、3.5和2.5)模拟酸雨胁迫下伤害等级、叶绿素含量、抗氧化酶活性以及丙二醛和有机渗透调节物质含量的变化。结果显示:模拟酸雨对美丽鼠尾草的伤害程度高于贵州鼠尾草;随着p H的下降,2种鼠尾草叶片叶绿素a、b和总含量逐渐降低,但贵州鼠尾草叶片叶绿素a、b和总含量高于美丽鼠尾草,并以较高的叶绿素a/b适应模拟酸雨胁迫;2种鼠尾草在模拟酸雨胁迫下产生了适应性反应,表现为叶片可溶性糖、可溶性蛋白和脯氨酸含量以及超氧化物歧化酶和过氧化物酶活性的升高,但这一适应性反应被降低的过氧化氢酶活性严重削弱;模拟酸雨胁迫下,贵州鼠尾草叶片SOD、POD和CAT活性均高于美丽鼠尾草,叶片MDA含量低于美丽鼠尾草。研究表明,尽管美丽鼠尾草渗透调节能力很强,但其抗氧化酶活性、叶绿素含量和叶绿素a/b都低于贵州鼠尾草,使其膜脂过氧化程度较高、对光能的吸收和转化效率较低,是其对模拟酸雨的耐受性低于贵州鼠尾草的重要原因。  相似文献   

10.
生防枯草芽孢杆菌胞外植酸酶对小麦耐盐性的影响   总被引:2,自引:0,他引:2  
以产植酸酶的广谱拮抗生防枯草芽孢杆菌(Bacillus subtilis)T2为出发菌株,经硫酸二乙酯(DES)诱变,得到遗传特性稳定的一株植酸酶负突变株M3.采用有效磷限量、含NaCl 150 mmol L-1的植物生长水培液对小麦进行盐胁迫,在植酸存在的条件下,水培液中施加T2发酵液或植酸酶均可促进盐胁迫下小麦幼苗的生长,小麦株高、鲜重、叶片叶绿素含量和根系活力均得以增高,而植株丙二醛(MDA)含量降低.失去植酸酶活力的负突变株M3发酵液则不具有提高小麦株高鲜重和叶绿素含量的作用,对根系活力的提高和对MDA含量的降低程度也均低于T2发酵液处理.上述结果表明,生防枯草芽孢杆菌胞外植酸酶在增强小麦耐盐性方面起了重要作用.图6表2参13  相似文献   

11.
铈对酸雨和镉双重胁迫下小麦生理指标的影响   总被引:1,自引:0,他引:1  
以小麦永良4号(Triticum aestivum)为材料,通过营养液水培实验,研究了在酸雨和镉的双重胁迫下,铈对小麦幼苗叶片内丙二醛(MDA)含量、超氧化物歧化酶(SOD)活性、硝酸还原酶(NR)活性的影响.实验结果显示:pH2.0+10 mg·L~(-1) Cd~(2+)、pH2.0+50 mg·L~(-1) Cd~(2+)、pH2.0+200 mg·L~(-1) Cd~(2+)三种处理都可明显增加MDA含量,提高SOD活性,降低NR活性,双重胁迫的抑制作用明显,且随着Cd~(2+)的质量浓度增加,抑制程度加重;叶面喷施40 mg·L~(-1)的铈预处理后,MIDA含量下降,SOD活性降低,NR活性上升,显示叶面喷施适当质量浓度铈可以有效降低小麦体内氧自由基含量,减轻膜系统的损伤,提高小麦对氮肥的利用能力,缓解镉和酸雨双重胁迫对小麦幼苗生长与代谢的损伤.数据还显示:适当铈对三个测定指标的修复作用不同,表现为SOD>MDA>NR.  相似文献   

12.
The aim of this study was to investigate canopy spectral reflectance responses to different levels of heavy metals copper (Cu), zinc (Zn), and cadmium (Cd) induced stress. Random blocks design experiment was conducted to simulate Cu, Zn, and Cd at five concentration levels. Chlorophyll and visible and near infrared canopy reflectance were measured for each treatment 56 days after seeding using chlorophyll meter SPAD-502 and spectroradiometer, respectively. New vegetative indices termed ratio of inclination angles (RIA), MERIS (the medium resolution imaging spectrometer) terrestrial chlorophyll index (MTCI), and normalized difference vegetation index (NDVI) were used to assess the response of canopy spectral reflectance to different heavy metal levels. Significant spectral variability especially in blue, red, and near infrared reflectance was observed for different heavy metal treatments. One-sample test showed significant difference for NDVI, MTCI, and RIA among five-level treatments at the 0.01 level. Correlation analysis demonstrated that the two vegetative indices (RIA and MTCI) were significantly correlated with chlorophyll meter values for Cd, Cu, and Zn treatments. However, NDVI was only significantly correlated with chlorophyll meter values for Cu and Zn treatments. Linear regression analysis also illustrated that RIA and MTCI were potential indices for predicting chlorophyll concentration with significant F test under Cu-, Zn-, and Cd-mediated stress.  相似文献   

13.
通过唐菖蒲在石家庄不同大气环境中叶片的形态、叶绿素总量、细胞膜透性以及过氧化物酶活性的变化,研究了唐菖蒲对氟污染胁迫的生理生化反应及适应调节机理.结果表明:石家庄市各监测点的大气中均存在氟污染,其污染物浓度由高到低依次为:市热电厂>元南小区>棉七生活区>阳光公园;从严重污染区到清洁区,随着污染程度的减小,唐菖蒲的叶绿素含量显著增加,细胞膜相对电导率及过氧化物酶活性明显降低.初步分析显示,唐菖蒲可作为大气氟污染的指示植物.  相似文献   

14.
The effect of copperchloride (CuCl2) on the level of chlorophyll (a+b), proline, protein and abscisic acid in sunflower (Helianthus annuus L.) seedlings were investigated Control and copper treated (0.4, 0.5 and 0.6 mM) seedlings were grown for ten days in Hoagland solution. Abscisic acid content was determined in root, shoot and leaf tissues of seedlings by HPLC. Copper stress caused significant increase of the abscisic acid contents in roots, shoots and leaves of seedlings. The increase was dependent on the copper salt concentration. Enhanced accumulation of proline in the leaves of seedlings exposed to copper was determined, as well as a decrease of chlorophyll (a+b) and total protein (p < 0.05 or p < 0.01). It was observed that the level of chlorophyll (a+b) and total protein (p < 0.05 or p < 0.01) remarkably decreased as copper concentration increased to 0.6 mM, although the levels of proline and abscisic acid in the leaves of plants were increased--a dose-depended behavior The same trends were also observed with the level of abscisic acid of stems and roots. Copper has dose- depended effects on chlorophyll, proline, protein and abscisic acid level of sunflower (Helianthus annuus L.) seedlings. Thus, we assumed that copper levels increase above some critical points seedling growth get negative effects. This assumption is in line with previous findings.  相似文献   

15.
A field experiment was carried out to determine the effects of walnut (Juglans regia L.) and pine (Pinus sp.) leaves on bread wheat (Triticum aestivum L.) growth and weed control, during 2001-02 and 2002-03 growing seasons in East Mediterranean region of Turkey. In this research, the treatments were: applications of ground walnut leaves (GWL) and ground pine leaves (GPL) at 19 g/m2 dose at Zadoks-11, applications of 200, 400 and 800 cc/m2 of walnut leaves extract (WLE2, WLE4 and WLE8 respectively), pine leaves extract (PLE2, PLE4 and PLE8 respectively), mixture extract of 200 cc walnut and 200 cc pine (ME), herbicide application (HA) at 8 g/m2 dose at Zadoks-21, and control (C) without any treatment. The results have indicated that the effects of treatments were significant for grain yield (GY), plant height (PH), flag leaf length (FLL), weed number per square meter (WN), but non significant for grain number per head (GN), grain weight per head (GW), 1000 grain weight (1000 GW), flag leaf width (FLW), head number per square meter (HN), vegetative period (VP), grain filling period (GFP) and days to maturity (DM).  相似文献   

16.
Assessment of agropotentiality of the effluent coming out from century pulp and paper mill, Ghanshyamdham, Lalkua (Uttaranchal) has been made on wheat (Triticum aestivum var. UP-2329) crop grown in two soils differing in texture with different effluent concentrations. Diluted effluent increased the chlorophyll content, plant height, shoot and root biomass, grain yield, protein, carbohydrate and lipid contents in wheat grains, while undiluted effluent caused inhibition in plant growth resulting in a sharp decline of yield. Pure soil provided better growth and yield results than those soil mixed with sand.  相似文献   

17.
In order to screen out the best variety of wheat (Triticum aestivum) out of eight varieties (viz., HP 1633, BW 11, NW 1014, Sonalika, HUW 468, K 9107, HP 1731 and HUW 234), a field experiment was conducted (from Dec. 2002 to April 2003) in a randomized block design replicated thrice at Crop Research and Seed Multiplication Farm, Burdwan University, West Bengal, India. Various morpho physiological parameters viz., plant population, length of shoot and root, leaf area index (LAI), crop growth rate (CGR), leaf area ratio (LAR), leaf area duration (LAD), net assimilation rate (NAR), yield attributes viz., length of panicles, number of grains per panicle, grain yield, straw yield, pigment content in flag leaf (chlorophyll a, b and total chlorophyll and carotenoid content) were estimated and analyzed statistically Soil bacterial populations were also estimated in the fallow land before sowing of seeds and after harvesting of crop. The HUW 468 variety records higher grain yield, maximum panicle length and maximum chlorophyll b and total chlorophyll content.  相似文献   

18.
不同培养介质中纳米氧化铜对小麦毒性的影响   总被引:3,自引:0,他引:3  
采用琼脂培养和水培方法比较了纳米氧化铜(CuONPs)在不同暴露介质中的环境化学行为及其对小麦根生长的影响,并探讨了不同培养介质对CuONPs植物毒性的影响机制.结果表明,琼脂介质相对水相(营养液)环境可以减少CuONPs的团聚,增强其分散性.在琼脂和水相中Cu离子溶出随CuONPs浓度变化规律存在明显差异,在50~1000mg CuONPs·L-(1以Cu计)范围内,CuONPs在琼脂中无论是Cu2+的溶出浓度还是溶出比率均低于其在水相中的值.CuONPs在不同介质中表现出显著的小麦毒性差异.琼脂培养下小麦根生长半抑制效应浓度EC50(以CuONPs浓度表示)为108mg·L-1,而在水培方式下为9.0mg·L-1,说明琼脂介质极大缓解了CuONPs引起的植物毒性.分析表明,Cu2+溶出浓度较CuONPs投放量与小麦根生长抑制效应之间存在更好的指数相关关系,这说明该研究体系下CuONPs小麦毒性主要是由纳米颗粒释放Cu2+引起的.此结论较好地解释了当培养介质从水相变成琼脂时,Cu2+溶出减少,纳米毒性降低的现象.该研究结果认为,当前国内外使用水培法获得的纳米材料植物毒性研究结果在外推至实际土壤状况时将高估其环境安全性风险,推荐使用琼脂作为纳米材料土壤环境风险评价的模拟介质.  相似文献   

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