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1.
镧在小麦幼苗富集与幼苗营养生长的关系   总被引:8,自引:0,他引:8       下载免费PDF全文
通过暴露和暴露恢复试验研究低浓度稀土元素镧对小麦幼苗营养生长的影响.结果表明,幼苗暴露于0.5~25mg/L镧溶液,镧抑制幼苗根的伸长,降低茎叶和根系的干重,降低矿质元素Ca、Mg、Zn、Mn的含量;镧的植物富集速度及镧从根系向茎叶迁移速度与镧暴露浓度呈明显的对数关系.去除镧后,幼苗生长加快,生物量及根长增加,矿质元素含量升高,但已富集的镧主要在作物体内再分配,很难排出体外,且随作物的生长而逐步的稀释,但仍影响作物生长.幼苗中镧的富集量与幼苗相对干重呈负线性相关,幼苗根系生长比茎叶更容易受到溶液中镧抑制.  相似文献   

2.
Combined chemical analyses and biological measurements were utilized to investigate potential toxicological effects and possible mechanisms involved in risk assessment of rare earth elements (REEs) on Vicia faba L. seedlings, which were hydroponically cultivated and exposed to various concentrations of lanthanum (La) for 15 days. The results showed that La contents in both the solution and roots increased with the increase of extraneous La, contributing to hormetic dose responses of superoxide dismutase (SOD), catalase (CAT), guaiacol peroxidase (GPX), ascorbate peroxidase (APX) and endoprotease (EP) isozymes activities, and HSP 70 production enhanced at low doses but suppressed at higher doses of La. These physiological responses constituted antioxidant and detoxification systems against La-induced oxidative stress. The elevated La levels also contributed to oxidatively modified proteins, which were most responsible for subsequent cell death and growth retardation of the roots. By combination of hormetic and traditional threshold dose levels, the threshold dose range was deduced to be 108-195 μg La/g dry weight in the roots, corresponding to 0.90-3.12 mg/L of soluble La in the culture solution. It suggests that persistent applications of REEs may lead to potential ecological risk in the environment.  相似文献   

3.
Screening potential plant species is a crucial consideration in phytoremediation technology. Our previous study demonstrated that Rhus chinensis Mill. seedlings had potentials for phytoremediation of Pb contaminated soil. However, its bioaccumulation and tolerance characteristics remain unclear. Seedling growth, LMWOAs secreted by roots, Pb subcellular distribution and chemical forms, and mineral elements in R. chinensis tissues were evaluated under different Pb concentrations (0, 25, 50, 100, 200 and 400?mg/L) in culture solution at 14?days after planting. R. chinensis did not show visual symptoms of Pb toxicity under lower Pb treatments; however, Pb significantly declined the growth of seedlings under higher Pb treatments. Higher Pb stress also decreased the concentrations of nitrogen in leaves, but increased the concentrations of P and K in roots. Pb stress also decreased Mn concentrations in leaves. A great quantity of Pb was uptake and mostly retained in R. chinensis roots. Nonetheless, R. chinensis can still concentrate 459.3 and 1102.7?mg/kg Pb in leaves and stems, respectively. Most of Pb in R. chinensis tissues was stored in the cell wall with HAc-, HCl-, and NaCl-extractable form. LMWOAs secreted by R. chinensis roots showed a strong positive correlation with Pb concentrations in all plant tissues and with P in roots. Our results suggested that Pb deposited in the cell wall and integration with phosphate or oxalate might be responsible for the tolerance of R. chinensis under Pb stress in short period.  相似文献   

4.
镧-铅复合污染下AM真菌对玉米生长和镧、铅吸收的影响   总被引:2,自引:1,他引:1  
常青  郭伟  潘亮  王起凡  周昕南  杨亮  李娥 《环境科学》2017,38(9):3915-3926
采用温室盆栽试验的方法,模拟不同程度的镧-铅复合污染土壤(50、200、800 mg·kg~(-1)),研究接种丛枝菌根(arbuscular mycorrhizal,AM)、真菌Claroideoglomus etunicatum(CE)和Rhizophagus intraradices(RI)对玉米(Zea mays L.)菌根侵染率、生物量、矿质营养元素吸收、C∶N∶P生态化学计量比、稀土镧(La)和重金属铅(Pb)吸收、转运的影响,旨在为稀土-重金属复合污染土壤的治理和修复提供科学依据.结果表明,AM真菌CE和RI均与玉米建立了共生关系,平均菌根侵染率为26.7%~95.8%;随着La-Pb复合污染含量的增加,玉米植株菌根侵染率、地上部和根部生物量以及N、P、K、Ca、Mg这5种矿质营养元素含量显著降低,而玉米植株C∶P和N∶P以及地上部和根部La、Pb含量显著增加.接种2种AM真菌使玉米植株生物量显著提高了17.8%~158.9%,地上部和根部P含量显著提高了24.5%~153.8%,降低了C∶P和N∶P,符合生长速率假设.在3种程度La-Pb复合污染含量土壤上,AM真菌使玉米植株根部Pb含量显著增加了51.3%~67.7%,地上部Pb含量显著降低了16.0%~67.7%,Pb从玉米根部向地上部的转运率降低了31.5%~54.7%;同时,接种AM真菌显著增加了轻度LaPb复合污染土壤上玉米植株的La含量,在中度La-Pb复合污染土壤上却显著减少了玉米地上部的La含量,增加了玉米根部的La含量,抑制了La从根部向地上部的转运,重度La-Pb复合污染土壤上均没有显著影响.试验结果初步证明,AM真菌具有促进稀土-重金属复合污染土壤植物修复的潜力,对于稀土-重金属复合污染土壤生态系统的植被恢复具有潜在应用价值.  相似文献   

5.
采用水培法通过测定大豆幼苗叶片和根的POD活性、MDA含量、H2O2含量,研究了酸雨(AR)和稀土La(Ⅲ)对大豆幼苗POD活性和脂膜过氧化的复合影响。结果表明:单一La(Ⅲ)(RE1/20 mg/L、RE2/60 mg/L、RE3/100 mg/L、RE4/300 mg/L)处理时,低剂量La(Ⅲ)(RE1/20 mg/L)处理下,叶和根中POD活性高于CK而MDA和H2O2含量较之降低,高剂量La(Ⅲ)(RE2/60 mg/L、RE3/100 mg/L、RE4/300 mg/L)处理下,叶和根3项指标均升高。在酸雨(ARl/pH2.5、AR2/pH3.5和AR3/pH4.5)单独作用和RE+AR复合作用影响下,叶和根3项指标均升高;而且AR的pH越低,RE的浓度越高,叶和根中的3项指标增幅越大。RE1和AR复合处理下叶和根中3项指标的增幅低于AR单一处理,其它浓度RE和AR复合处理叶和根中的3项指标增幅高于各自单独作用。单一酸雨处理组各指标变幅为叶>根,单一镧和复合处理组各指标变幅为根>叶。  相似文献   

6.
铅低积累大豆的筛选及铅对其豆中矿物营养元素的影响   总被引:3,自引:0,他引:3  
筛选和培育铅低积累作物品种已被用来降低铅流入到人们的食物链中.本实验采用盆栽方法,研究了16个选定的大豆品种在两个铅处理(500和1500 mg·kg-1)下的生长反应,并评估其对铅的耐性.结果表明,在两个铅处理(500和1500 mg·kg-1)下,大豆中Pb含量有显著差异(p0.05),其平均值分别为0.19和0.27 mg·kg-1.在两种Pb梯度处理下富集系数的范围分别为0.003~0.014和0.002~0.012.16种大豆品种的富集系数在两种Pb梯度处理下均小于0.02,且存在显著差异(p0.05),表明大豆吸收的Pb主要积累在根部.大豆品种:垦丰16号、绥农28号、中黄35号和黑河35号被发现符合低铅积累大豆品种的标准.这4个品种的大豆被进一步用于评估Pb和其他矿质营养元素之间的相互作用,如Ca、Cu、Fe、Mg、Mn和Zn.土壤中Pb含量会影响大豆对微量矿物营养元素的吸收,表现为土壤中高剂量Pb能抑制大豆对Ca、Cu、Fe、Mg和Zn的吸收,同时增加其对Mn的吸收和积累.  相似文献   

7.
硅对锰胁迫下水稻吸收矿质元素的影响   总被引:1,自引:0,他引:1  
揭示Mn胁迫下硅对水稻中营养元素的影响特点,可为减轻水稻锰毒害提供理论依据.因此,本文通过水培试验,利用两个对Mn耐性不同的水稻品种,研究施Si(1.5 mmol·L-1)对Mn(2 mmol·L-1)胁迫下水稻营养元素的影响.同时,采用同步辐射X射线荧光(SRXRF)分析了营养元素的分布特点,以及各元素分布之间的相互关系.结果显示,高锰胁迫下,耐性品种叶片和根系的Mn含量都显著高于敏感品种.高锰胁迫抑制了敏感品种K元素从根部向叶片的转移,而降低了耐性品种的根部吸收K元素的能力.高锰胁迫下,施硅处理增加了敏感品种叶片中K、Fe和Zn的相对含量;可显著增加耐性品种叶片中K和Zn的相对含量,显著降低其Ca和Fe的相对含量.高锰胁迫下施硅可以促进敏感品种K元素的转运,促进耐性品种Zn元素转运.Si对耐性品种各元素含量保持相对平衡具有重要作用.水稻体内的锰大部分是硫酸锰,高锰胁迫下施硅不改变水稻植株体内的锰形态.  相似文献   

8.
豆科类植物生物量的减少主要与氮和磷之间的平衡受到影响而有紧密的相关性。然而,其他营养元素之间的不平衡也能响应生物量的减少,比如铁和锰营养元素。选择了贵州茂兰相邻的石灰岩和砂岩地区土壤进行了野外种植实验。实验结果表明:生长着的豆科类植物铁(Fe)和锰(Mn)出现互为相反的分配模式:在砂岩地区生长的豆科类植物根部对铁的吸收相对高于石灰岩地区;而对锰的吸收,石灰岩地区高于砂岩地区。因此,植物根部的Fe∶Mn,砂岩地区高于石灰岩地区。这个结果说明豆科类植物根部对Fe和Mn的吸收存在不同模式。然而,在叶片中的Fe∶Mn砂岩地区和石灰岩地区之间基本没有区别,这说明铁和锰从根部到叶片的迁移具有不同模式。当叶片的Fe∶Mn(质量之比)低于2.9时,有可能响应豆科类植物生物量的减少。我们在研究植物与土壤的营养元素含量之间相关性时,越过环境因素,必须考虑植物内部随生长过程而发生变化的营养元素的化学计量,比如,生长着的植物中Fe∶Mn比值的变化等。  相似文献   

9.
Increasing atmospheric CO2 concentration is generally expected to enhance photosynthesis and growth of agricultural C3 vegetable crops, and therefore results in an increase in crop yield. However, little is known about the combined effect of elevated CO2 and N species on plant growth and development. Two growth-chamber experiments were conducted to determine the effects of NH4^+/NO3^- ratio and elevated CO2 concentration on the physiological development and water use of tomato seedlings. Tomato was grown for 45 d in containers with nutrient solutions varying in NH4^+/NO3^- ratios and CO2 concentrations in growth chambers. Results showed that plant height, stem thickness, total dry weight, dry weight of the leaves, stems and roots, G value (total plant dry weight/seedling days), chlorophyll content, photosynthetic rate, leaf-level and whole plant-level water use efficiency and cumulative water consumption of tomato seedlings were increased with increasing proportion of NO3- in nutrient solutions in the elevated CO2 treatment. Plant biomass, plant height, stem thickness and photosynthetic rate were 67%, 22%, 24% and 55% higher at elevated CO2 concentration than at ambient CO2 concentration, depending on the values of NH4^+/NO3^- ratio. These results indicated that elevating CO2 concentration did not mitigate the adverse effects of 100% NH4^+-N (in nutrient solution) on the tomato seedlings. At both CO2 levels, NH4^+/NO3^- ratios of nutrient solutions strongly influenced almost every measure of plant performance, and nitrate-fed plants attained a greater biomass production, as compared to ammonium-fed plants. These phenomena seem to be related to the coordinated regulation of photosynthetic rate and cumulative water consumption of tomato seedlings.  相似文献   

10.
镉和乙草胺、苄嘧磺隆对水稻吸收能力的影响   总被引:1,自引:0,他引:1  
为探讨镉和两种常用除草剂的复合污染对水稻吸收必需矿质元素影响,采用水培法研究了镉(Cd)、乙草胺(AC)和苄嘧磺隆(BSM)在单一及复合污染条件下处理水稻幼苗72h及解除污染并恢复培养96小时后,水稻基本营养元素含量的变化,并对水稻幼苗根系损伤情况也进行了研究。研究发现:Cd和AC、BSM单一和复合处理降低了水稻根系Mn、Cu、Zn的含量。AC单独处理增加了水稻根系Fe的含量,Cd与AC、BSM联合作用时则降低了水稻根系Fe的含量。AC单一及Cd与AC和BSM的复合作用能增加水稻地上部分Fe的含量,最高可达对照的4.5倍。Cd降低了水稻幼苗对Mg的吸收,而AC和BSM却能促进对Mg的吸收。水稻幼苗经96h的恢复培养后,其根和地上部分叶营养元素含量也发生了一些重要的变化,水稻幼苗地上和地下部分Cd的含量发生了显著性下降。Cd和乙草胺、苄嘧磺隆在单独和联合作用下根系和叶片相对电导率、MDA含量都较对照有所升高,而根系活力下降。  相似文献   

11.
为了探究重金属固定植物促生细菌强化作物消减对重金属的吸收及其机制,以产多胺细菌Enterobacter bugandensis YX6和小麦为研究对象,通过水培试验研究Cd胁迫下菌株YX6对小麦生长和Cd吸收以及Cd在小麦根系中亚细胞分布的影响,同时借助非标记蛋白质组学技术研究菌株YX6对小麦根系蛋白质表达的影响.结果表明,与单独3 mg·L-1Cd处理相比,Cd胁迫下接种菌株YX6显著提高了小麦根(42.71%)和叶片(82.83%)的干重,显著降低了小麦根(48.56%)和叶(61.41%)中Cd的含量.同时,菌株YX6的接种显著提高了小麦根和叶中多胺的含量,进而增强了小麦对Cd的抗性.此外,YX6+Cd处理组中小麦根细胞器和可溶性部分中Cd的比例显著低于单独Cd处理中的比例,而细胞壁中Cd的比例则要高于单独Cd处理中的比例.非标记蛋白质组学显示,Cd胁迫下菌株YX6提高了小麦根系中与DNA修复(蛋白质-DNA复合物和DNA包装复合物)和激素(脱落酸和茉莉酸)合成相关蛋白质的表达,从而提高了小麦对Cd的抗性和消减Cd吸收.结果可为阐明产多胺细菌消减小麦Cd吸收的分子机制和保障小麦安全生产提供科学依据和技术途径.  相似文献   

12.
稻米Cd超标问题已成为社会各界广泛关注的热点问题之一,探索降低Cd向地上部转运并缓解水稻Cd胁迫的新方法,对保障食品安全具有重要意义.本研究拟通过在水稻幼苗叶面喷施2,3-二巯基丁二酸(DMSA)评估利用该重金属螯合剂降低Cd向水稻地上部转运并缓解Cd胁迫的可行性.以我国南方水稻主栽品种之一中早35幼苗为研究材料,采用水培法研究了叶面喷施不同浓度DMSA对Cd在水稻幼苗体内吸收转运的影响,同时考察了对水稻幼苗丙二醛(MDA)、谷胱甘肽(GSH)含量以及对抗氧化酶过氧化氢酶(CAT)、超氧化物歧化酶(SOD)活性的影响.结果表明,叶面喷施DMSA 0.2、 0.4和1.0 mmol·L~(-1) 4次后,水稻幼苗地上部Cd含量随着DMSA喷施浓度增加呈显著降低趋势, 3种处理浓度与对照相比分别降低22.1%、 39.7%和43.5%,但是对水稻幼苗根部Cd含量无显著影响;对地上部及根中K、Ca、Mg、Fe、Zn和Mn这6种矿质元素含量无显著影响;喷施4次DMSA后显著降低了幼苗地上部MDA和GSH含量,同时使CAT和SOD活性显著增加,有效缓解了Cd对水稻幼苗造成的胁迫效应.DMSA能抑制Cd从水稻根部向地上部转运,同时不影响对人体必需矿质营养元素的吸收和转运,具备成为水稻降Cd叶面调理剂的潜力.  相似文献   

13.
LawsofannualnutrientuptakeinaPaulowniaplantation¥WuGang(ResearchCenterforEco-EnvironmentalSciences,ChineseAcademyofSciences,B...  相似文献   

14.
为了明晰稀土提高植物抗酸性的内在机制,采用水培法研究了镧(La,15 mg·L~(-1))对酸雨(AR,pH=3.5、2.5)胁迫下水稻叶片质膜H+-ATPase活性的影响.结果显示:与CK相比,pH=3.5 AR组水稻相对生长速率减小,质膜H+-ATPase活性升高,胞内H+增多,CAT活性升高,H_2O_2和MDA含量升高,质膜脂肪酸不饱和度指数(IUFA)降低.La+pH 3.5 AR组水稻各项指标优于pH=3.5 AR组,表明La促使AR下质膜H+-ATPase活性升高,将胞内过多的H+泵出,减缓AR伤害,维持水稻正常生长.另外,La能增强CAT活性,清除过多的H_2O_2,减轻膜脂过氧化程度,使质膜IUFA升高,膜的流动性增强,提高质膜H+-ATPase活性.pH=2.5 AR组水稻相对生长速率、质膜H+-ATPase活性、CAT活性与质膜IUFA均降低,而胞内H+、H_2O_2和MDA含量升高.La+pH 2.5 AR组与pH=2.5 AR组水稻各指标均无明显差异,La对pH=3.5 AR组的缓解效果优于pH=2.5 AR组.综上可知,La对AR下质膜H+-ATPase活性的调节增强了植物耐酸性,这与La能维持AR下较好的质膜环境有关.同时,La的调控效果受AR强度限制.  相似文献   

15.
Salicylic acid (SA) was an essential component of the plant resistance to pathogens and also plays an important role in mediating plant response to some abiotic stress. The possible effects of SA on the growth and H2O2-metabolizing enzymes in rice seedlings under lead stress were studied. When rice seedlings grown in nutrient solution containing Pb^2+ (0, 0.05, 0.15, 0.25 mmol/L) for 18 d, the plant biomass as well as the chlorophyll content of leaves decreased with increasing Pb concentration. The pre-treatment with SA (treated with 0.1 mmol/L SA for 48 h before Pb stress) partially protected seedlings from Pb toxicity. The chlorophyll contents were significant higher in leaves of Pb-exposed with SA pre-treatment seedlings than in Pb-exposed plants at the same Pb intensity. SA pre-treated alone could significantly increase the length of shoot and root of seedlings but the vigour difference was not marked under long-term exposure to Pb toxicity. SA pre-treated influence the H2O2 level in leaves of seedlings by up-regulating the activity of superoxide dismutase (SOD), repressing the activity of catalase (CAT) and ascorbate peroxidase (APX) depending on the concentrations of Pb^2+ in the growth medium. The results supported the conclusion that SA played a positive role in rice seedlings against Pb toxicity.  相似文献   

16.
不同浓度镧处理对铅胁迫下玉米生长和铅吸收的影响   总被引:2,自引:1,他引:1  
王起凡  郭伟  常青  潘亮  周昕南  杨亮  李娥 《环境科学》2019,40(1):480-487
采用温室盆栽试验的方法,研究不同浓度的镧处理(0、50、200和800 mg·kg~(-1))对中度铅胁迫下(200 mg·kg~(-1))玉米生长、矿质营养元素吸收、C∶N∶P生态化学计量比及Pb和La吸收的影响,探讨土壤-植物系统中稀土重金属的相互作用,旨在为稀土矿区稀土重金属复合污染土壤的治理提供基础数据和理论依据.结果表明,随着外源La浓度的增加土壤中乙酸铵-EDTA提取态La的浓度显著增加,而乙酸铵-EDTA提取态Pb的浓度显著降低;玉米地上部干重显著降低了17.90%~81.17%,根冠比显著增加了21.74%~86.96%;随着土壤中La浓度的增加根部P含量显著降低了19.16%~89.68%,La浓度为200 mg·kg~(-1)和800 mg·kg~(-1)时,地上部P和N含量分别显著降低了65.51%~91.98%和48.27%~76.58%;随着土壤中La浓度的增加,植株C∶P、N∶P和植株La浓度显著增加,地上部和根部Pb浓度分别显著增加了52.61%~99.01%和15.99%~44.34%;随着La浓度的升高显著降低了玉米植株K、Ca和Mg的含量.结果初步证明,在稀土-重金属复合污染土壤中,稀土元素的存在加剧了重金属对植物生长的毒害效应及其所引发的生态风险问题,应进一步深入研究稀土对植物吸收重金属的影响及作用机制.  相似文献   

17.
Atrazine accumulation, oxidative stress, and defense response in maize seedlings exposed to extraneous atrazine were studied. Accumulation of atrazine in maize increased with increasing exposure concentration. The abscisic acid (ABA) content was positively correlated with the atrazine concentrations in maize roots and shoots (p < 0.05). Hydroxyl radical (·OH) in maize was determined in vivo with electron paramagnetic resonance spectroscopy. Its intensity was positively correlated with atrazine concentration in roots and shoots (p < 0.05), and higher level of ·OH generated in roots than in shoots corresponded to the major accumulation of atrazine in roots. Superoxide dismutase, peroxidase and catalase in roots were up-regulated by atrazine exposure at 1 mg/L compared to the control and malondialdehyde content in roots was enhanced when atrazine exposure concentration reached 10 mg/L. These results suggested the exposure and accumulation of atrazine caused oxidative toxicity and antioxidant response in maize.  相似文献   

18.
叶施L-半胱氨酸对水稻镉和矿质元素含量的影响   总被引:2,自引:0,他引:2  
为评估将L-半胱氨酸(L-Cys)作为水稻降Cd叶面调理剂的可行性,通过湖南的田间试验,采用小区试验法研究了L-Cys对水稻籽粒中Cd和矿质元素含量的影响,并通过检测水稻各营养器官的Cd分布和Cd赋存形态的变化,探究了L-Cys调控水稻籽粒Cd积累的作用机制.结果表明,在开花期叶面喷施一次L-Cys即可使水稻籽粒Cd含量显著降低,同时提高其Mg和K的含量,对Ca、Mn和Zn的含量无显著影响.L-Cys的降Cd效果随喷施浓度增加而增强,当浓度为10 mmol·L-1时,籽粒中Cd含量降至我国食品安全标准0.2 mg·kg-1以内,降幅达59.2%,同时显著降低了水稻营养器官穗轴、第一节、穗颈、旗叶、第二节间、第二节、第二叶、基部茎叶和根中的Cd含量,降幅分别为58.3%、56.0%、62.7%、67.0%、59.3%、61.5%、60.2%、54.9%和50.3%.水稻不同部位间的Cd转移因子显示,第一节是水稻营养体拦截有害元素Cd的关键器官.叶面喷施L-Cys提高了Cd从旗叶到第一节和第二节间到第一节的转移因子,增幅最高达105.4%和45.8%,并抑制了Cd从第一节继续向上到穗颈的转运,降幅最高达27.5%.在水稻第一节中,L-Cys处理同时降低了无机态、水溶态和残渣态Cd的含量,并提高了其中残渣态Cd的比例至94.4%.由此可见,叶面喷施L-Cys能够降低水稻各营养器官Cd积累量,并促进水稻中Cd向第一节的转运及其对Cd的固定作用,进而提高关键器官第一节对Cd的拦截能力,最终显著抑制Cd向籽粒中的转运积累,同时,叶面喷施L-Cys不降低水稻籽粒中矿质营养元素的含量,具有较好的应用前景.  相似文献   

19.
硒对油菜根尖镉胁迫的缓解作用   总被引:7,自引:2,他引:5  
为研究镉胁迫对油菜根尖的毒性效应及硒的添加对该毒性效应的缓解作用,采用MS(Murashige and Skoog)培养基培养的方式,研究了0.2 mg·L-1硒对1 mg·L-1镉胁迫下油菜幼苗根系生长、根系构型、根尖膜系统完整性、亚细胞超微结构及细胞凋亡程度的影响.结果表明:镉胁迫下,硒的添加在一定程度上恢复了根系的生长,维持了根系的构型,使得总根长、总表面积和分叉数分别增加了33.28%、18.81%和21.66%;硒对根系形态的恢复作用主要表现在对直径小于1.0 mm的根系的恢复,直径小于1.0 mm的根系总根长提高了44.73%,总表面积提高了37.35%,总体积提高了32.88%;硒能够缓解镉对根尖细胞膜系统完整性的破坏;降低膜脂质过氧化程度,减少自由基的生成量,使得根尖O·-2含量降低了67.47%;并能维系细胞的形态和细胞器的结构完整性.然而,0.2 mg·L-1的硒并未显著降低根尖死亡细胞的数量,仅降低了晚期凋亡细胞的比例.  相似文献   

20.
为探究黄芪幼苗对铜离子(Cu2+)胁迫的耐性机理以及凹凸棒黏土对Cu2+污染的缓解作用,研究了不同浓度CuSO4(2~20mmol/L)胁迫对黄芪幼苗的生理学毒性与凹凸棒黏土的缓解作用.结果表明,2mmol/L CuSO4胁迫使得根系Cu2+含量、H2O2(过氧化氢)含量、MDA(丙二醛)含量分别较对照显著上升1.82倍、1.04倍、2.14倍.CuSO4胁迫浓度达8mmol/L时,根系SOD(超氧化物歧化酶)活性、根尖膜损伤程度和叶片Cu2+含量分别较对照显著上升1.13倍、1.12倍和2.62倍;同时,叶片PS Ⅱ(光系统II)实际光化学效率[Y(II)]、光化学淬灭系数(qP)、PSⅡ电子传递速率(ETR)和叶绿素含量较对照分别显著降低22.88%、24.44%、21.49%和28.31%,而NPQ和qN(非光化学荧光猝灭系数)则较对照分别显著上升2.35倍和1.58倍.根系POD(过氧化物酶)和CAT(过氧化氢酶)活性、可溶性糖和可溶性蛋白含量在8mmol/L CuSO4处理下达到最高值后呈下降趋势.CuSO4浓度为15~20mmol/L时,根系APX活性和叶片光适应下PS II潜在最大光化学效率(Fv'/Fm'),以及幼苗全株鲜重、全株干重、地下部鲜重、地下部干重较对照显著下降.在非CuSO4胁迫条件下,基质中凹凸棒黏土的存在使得幼苗根系MDA含量较对照显著降低15.93%,但未对其它所测生理学指标产生显著影响;在20mmol/L CuSO4胁迫条件下,基质中凹凸棒黏土的存在使得幼苗根系和叶片中Cu2+含量分别显著下降30.78%和23.12%;同时显著缓解了20mmol/L CuSO4胁迫对根系活性氧水平、抗氧化酶活性、膜脂质过氧化程度、根尖膜损伤程度、可溶性蛋白和可溶性糖含量,叶片PS II光化学活性和叶绿素含量的不良影响,以及对幼苗生长的抑制作用.研究结果表明,培养基质中凹凸棒黏土的存在能够显著降低幼苗组织中Cu2+的生物有效性,继而缓解CuSO4胁迫对黄芪幼苗的生理学毒性作用.  相似文献   

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