共查询到19条相似文献,搜索用时 164 毫秒
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为探究外源有机酸在加强秋华柳(Salix variegata Franch.)镉积累效率中的应用潜力,采用营养液培养方法,研究了5种100μmol/L外源有机酸(草酸、柠檬酸、酒石酸、苹果酸和琥珀酸)对50μmol/L Cd胁迫下秋华柳生长适应性及Cd积累特征的影响,并通过化学平衡程序VISUAL MINTEQ v3.0计算溶液中不同化学形态Cd(游离态和螯合态Cd)的含量。结果表明:柠檬酸、酒石酸、苹果酸和琥珀酸的添加有效缓解了Cd对秋华柳的毒害,明显促进了秋华柳的生长。除草酸处理组外,其余4个有机酸处理组培养液中游离Cd~(2+)含量均得到较大提升,显著促进了秋华柳对Cd的吸收。柠檬酸、酒石酸、琥珀酸和苹果酸的添加显著提高了秋华柳植株的Cd积累量,分别是未加入有机酸Cd处理组的210%、190%、190%和178%。外源有机酸的施加提高了介质中游离Cd~(2+)的含量,并通过与重金属的络合等作用提升了植株对Cd的吸收和积累能力。但不同有机酸对秋华柳Cd积累特征的影响差异明显,柠檬酸加入后通过提高秋华柳根生物量和根中Cd含量,显著增加了根系Cd积累量;酒石酸、苹果酸和琥珀酸的应用则明显提高了秋华柳地上部分Cd积累量。因此,外源酒石酸、琥珀酸和苹果酸的应用可提高秋华柳地上部分的Cd积累效率,更有利于对Cd污染土壤的修复。 相似文献
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镉胁迫下金银花的生长反应及积累特性 总被引:5,自引:0,他引:5
采用水培试验方法,研究了藤本植物金银花在不同浓度镉(Cd)胁迫下的生长反应和积累特 性,结果表明,Cd对金银花生长未造成显著影响,甚至低浓度(5和10 mg·L-1) Cd具有一定的生长促进作用,表现为植物的株高和叶绿素含量有所增加。当Cd处理浓度达到50 mg·L-1时,植物的株高和根长虽有所降低,但与对照相比并无显著差异,且耐性系数均>0.8,表明金银花对Cd具有较强的耐性。当Cd处理浓度为25 mg·L-1时,金银花地上部中Cd含量达到286.12 μg·g-1,而富集系数均>1,说明金银花具备Cd超富集植物的特征,对Cd污染土壤的修复具有很大的应用潜力。 相似文献
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镉胁迫对丹参生长及有效成分积累的影响研究 总被引:3,自引:0,他引:3
采用盆栽试验方法,研究了镉(Cd2+)对丹参(Salvia miltiorrhiza Bunge)的生长及其有效成分积累的影响。结果表明,镉胁迫下丹参的生长受到了显著抑制,体内Cd2+残留量、可溶性蛋白含量和膜脂过氧化程度显著增加,叶绿素含量降低。与对照相比,镉胁迫下丹参叶片水溶性酚酸类化合物咖啡酸和迷迭香酸的含量显著降低(P〈0.05),原儿茶酸含量增加,丹参素、原儿茶醛和丹酚酸B的含量也降低,但变化均不显著(P〉0.05)。而根系中这6种酚酸类化合物含量均降低,其中迷迭香酸的含量变化极显著(P〈0.01)。镉胁迫下丹参根系脂溶性丹参酮类化合物二氢丹参酮、丹参酮I和隐丹参酮含量均显著降低,而丹参酮lIA含量变化不显著。丹参叶片中水溶性酚酸类化合物合成关键酶苯丙氨酸解氨酶(PAL)和酪氨酸氨基转移酶(TAT)的活性显著降低,而肉桂酸4一羟化酶(C4H)和4一香豆酸CoA连接酶(4CL)的活性显著升高。这些结果均说明镉胁迫可以降低丹参的产量和质量。 相似文献
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美人蕉(Canna indica)是我国城区普遍栽植兼具绿化、观赏和净化环境等重要价值的地被植物。为研究美人蕉对Cd的胁迫反应及积累特性, 使用盆栽方法对美人蕉进行不同含量水平Cd处理, 测定其生长过程中部分形态、生态、生理指标的变化和收获后体内Cd含量。结果表明, Cd含量小于1 mg·kg-1时对美人蕉生长影响不大, 大于5 mg·kg-1时抑制美人蕉生长。Cd含量小于5 mg·kg-1时延长了美人蕉的花期。随着Cd含量的增大, 美人蕉根系活力、叶绿素含量和含水量逐渐降低, 可溶性糖含量先升高后降低, 游离脯氨酸含量和细胞膜透性逐渐升高。Cd在美人蕉体内的分布为根系>地上部分, 随着Cd含量的增大, 美人蕉根系和地上部分Cd含量逐渐升高、富集系数和转运系数逐渐降低; Cd含量为20 mg·kg-1时美人蕉对Cd的积累量最大, 为5.89 mg·株-1。综合分析美人蕉的生长、生理生态变化及富集Cd的能力, 美人蕉适于土壤Cd含量小于1 mg·kg-1条件下的园林应用。 相似文献
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为探究干旱条件下,互叶醉鱼草(Buddleja alternifolia Maxim.)幼苗对重金属镉胁迫的生长及光合生理响应机制,以两年生互叶醉鱼草幼苗为试验材料,设置对照与干旱两个水分处理组(土壤相对含水率分别为:65%—60%,35%—30%),每个水分处理条件下再分别设置3个镉处理浓度(0.28、(0.6+0.28)、(1.2+0.28)mg/kg),共6个处理。测定不同水分及镉处理对互叶醉鱼草生长、生物量、光合参数及体内重金属含量的影响。结果表明:干旱与镉复合胁迫下植物的存活率为100%。镉胁迫、干旱与镉复合胁迫均不同程度抑制了互叶醉鱼草幼苗生长、生物量积累、植株的光合作用及叶绿素含量,且其光合和叶绿素含量的降幅明显大于单一镉胁迫。镉胁迫下,互叶醉鱼草幼苗单株最高镉富集量为69.33 mg/kg,而复合胁迫下单株最高镉富集量为50.68 mg/kg。以上结果表明:干旱胁迫能够加重镉胁迫对植物的影响,使复合胁迫下互叶醉鱼草生长、光合生理及镉富集能力下降。但单一镉胁迫下,互叶醉鱼草对镉具有更强的耐受性,并有较高的生物富集能力,且干旱与Cd复合胁迫下互叶醉鱼草幼苗仍有一定的镉积累量。因此在干旱半干旱区园林绿化以及Cd污染地区的生态建设中,互叶醉鱼草是一种具有巨大应用潜力和前景的灌木树种。 相似文献
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镉超积累植物及植物镉积累特性转基因改良研究进展 总被引:5,自引:0,他引:5
植物提取修复技术是一项既经济又环保的土壤镉(Cd)污染修复技术,该技术的关键是筛选Cd超积累植物或利用基因工程手段改良植物以提高其Cd积累能力。人们已发现遏兰菜等7种Cd超积累植物及美人蕉等潜在的Cd超积累植物。还发现了许多与Cd耐受和积累能力有关的基因:(1)编码与Cd积累、耐受有关酶的基因,如细菌中的ACC(1-aminocyclopropane-1-carboxylic acid),植物中的PCS(Phytochelatin Synthase)基因;(2)编码金属结合蛋白的基因:MT(Metallothionein)、转运蛋白(P-type ATPase、ABC型转运器)基因;(3)其它相关基因:Hvhsp17、PvSR2(Phaseolus vulgaris stress-related gene number 2)等。并将其中的一些基因转入到其它生物中,提高了其对Cd的耐受性和积累量,为实现Cd污染土壤修复的目标奠定基础。 相似文献
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A study quantifying the effect of NaCl on growth and Cd accumulation of Spartina alterniflora subjected to Cd stress was conducted. Seedlings were cultivated in the presence of 1 or 3 mM Cd alone, or combined with NaCl (50 or 100 mM). The results showed that NaCl magnified the phytotoxicity of moderate Cd stress (1 mM Cd) on plants due to reduced levels of plant biomass, plant height, and chlorophyll a + b, while no synergistic effects were recorded under severe Cd stress (3 mM Cd). Proline and Ca2 + accumulated along with additional NaCl under moderate Cd stress, instead of reduced or unchanged levels under severe Cd stress owing to different adoption strategies caused by NaCl under different Cd stresses. NaCl reduced the oxidative stress in Cd-treated plants through increasing levels of antioxidative enzymes (catalase (CAT) and peroxidase (POD)) under moderate Cd stress. With NaCl addition, Cd2 + contents in S. alterniflora increased and reduced under moderate and severe Cd stress, respectively. However, total Cd2 + amounts increased with increasing NaCl concentration due to biological dilution. NaCl improved the increase of Cd2 + translocation factor (TF) under moderate Cd stress, indicating that NaCl might improve Cd2 + uptake and translocation from roots to shoots, and enhance the phytoextraction of S. alterniflora on Cd; while phytostabilization of Cd under severe Cd stress may be possible due to the reduced TF. Thus, NaCl alleviated phytotoxicity caused by Cd stress through improved management of osmotic solutes and oxidative status, and affected Cd accumulations in S. alterniflora differently under moderate and severe Cd stresses. 相似文献
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Salintiy and temperature are two important ecological factors which affect the distribution and abundance of Spartina alerniflora Loisel. To find out how cordgrass adapts to the environmental conditions in the introduced range, we studied the dynamics of a series of important physiological components including superoxide dismutase (SOD), guaiacol peroxidase (POD), catalase (CAT), malondialdehyde (MDA), soluble sugar and free proline under different salinity and temperature stresses. The results showed that low NaCl concentration (lower than 100 mmol·L?1) enhanced the growth of S. alterniflora. On the contrary, high NaCl concentration (higher than 100 mmol·L?1) inhibited the growth of S. alterniflora. To a certain extent, S. alterniflora was able to be acclimated to the osmotic pressure created by external solution concentration by adjusting the activities of POD, SOD and CAT, and the contents of free proline and soluble sugar. S. alterniflora varied in its responses to environment in different parts of the plant under 5°C and 38°C temperature stress. Compared with roots, leaves accumulated more soluble sugar, and CAT activities in leaves were higher, whereas SOD and POD activities in leaves were much lower than those in roots. 相似文献
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菖蒲幼苗对Cd胁迫的响应及其Cd富集能力分析 总被引:4,自引:0,他引:4
研究了菖蒲(Acorus calamus L.)幼苗对不同浓度Cd胁迫的响应及其Cd富集能力。结果表明,随Cd浓度的提高(0~25mg·L^-1),菖蒲幼苗的株高、根长、干质量、叶绿素含量和对Cd的耐性指数均逐渐下降,脯氨酸含量逐渐升高;各处理组的SOD和POD活性均高于对照,且以15mg·L^-1Cd处理组最高。随胁迫时间延长(1—10d),叶绿素含量持续下降,而SOD和POD活性及脯氨酸含量则先升高后下降。菖蒲幼苗体内Cd含量随Cd浓度的提高而增加,根系对Cd的富集能力高于地上部分。在Cd胁迫条件下,菖蒲幼苗对Cd的转移系数小于1,根系对Cd的滞留率为89.5%-93.9%,表明菖蒲幼苗根系对Cd有较强的滞留作用和富集能力。 相似文献
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通过栽培实验研究了高、中、低不同养分水平对外来入侵种互花米草(Spartina alterniflora)表型可塑性的影响。结果表明:随着养分含量的增加,互花米草分枝强度不断增加,低养分处理与中、高养分处理间差异显著;间隔子长度随着养分含量的增加而增加,但分枝角度不受养分含量的影响;互花米草生物量分配格局显著受养分水平的影响,随着养分的降低,互花米草对地上部分(茎和叶)的生物量投资减小,而对地下部分(根和根茎)的生物量投资增加。这些结果说明,养分水平对互花米草的克隆生长有显著影响,互花米草对不同的养分条件表现出较强的可塑性。 相似文献
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Abstract. The response of the adenylate energy charge (AEC) ratio and the adenine nucleotide pools to nutrients was studied in two perennial marsh plant species. Adenine nucleotide levels and the AEC ratio were measured in Spartina patens (Alton) Muhl. plants which were grown in the greenhouse at various nutrient levels as well as in Spartina alterniflora Loisel. transplants removed from the field but maintained in marsh soil amended with different nutrient supplements. In addition, adenine nucleotide concentrations were measured in both species in their natural environment and compared with that of the same species grown in the greenhouse with a complement of nutrients.
The addition of nutrients stimulated an increase in the individual and total adenylate pools and the AEC ratio. Low nutrient levels resulted in extremely reduced adenylate pools. The AEC ratio was significantly affected in some instances, but did not decrease proportionately with the adenine nucleotide level and was typically maintained at values above 0.60. The adenine nucleotide concentrations measured in the leaves of both species were significantly higher in greenhouse-grown plants compared to field plants, but the AEC ratios were not significantly different.
Because the AEC ratio in plants can be significantly affected by nutrient level. AEC response in field investigations should be planned with attention to the potential effect of dissimilar nutrient levels among study sites. 相似文献
The addition of nutrients stimulated an increase in the individual and total adenylate pools and the AEC ratio. Low nutrient levels resulted in extremely reduced adenylate pools. The AEC ratio was significantly affected in some instances, but did not decrease proportionately with the adenine nucleotide level and was typically maintained at values above 0.60. The adenine nucleotide concentrations measured in the leaves of both species were significantly higher in greenhouse-grown plants compared to field plants, but the AEC ratios were not significantly different.
Because the AEC ratio in plants can be significantly affected by nutrient level. AEC response in field investigations should be planned with attention to the potential effect of dissimilar nutrient levels among study sites. 相似文献
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Cd胁迫下黄菖蒲幼苗根系生长与Cd积累的研究 总被引:3,自引:1,他引:3
采用水培法研究了Cd胁迫对黄菖蒲(Iris pseudacorus L.)幼苗根系生长和Cd含量的影响,用透射电镜观察了Cd胁迫对根尖细胞亚显微结构的影响并确定了Cd沉积部位。结果表明,10mg·L^-1 Cd处理对黄菖蒲幼苗根系的生长有一定促进作用,根毛数量及不定根上侧根的数量、密度和长度均高于对照;Cd浓度高于25mg·L^-1时,根系的生长发育受到抑制,上述指标均显著低于对照。用10~40mg·L^-1 Cd处理后,黄菖蒲幼苗不定根上侧根中的Cd含量均显著高于未长侧根的不定根和去掉侧根的不定根(P〈0.05),说明不定根上的侧根对Cd沉积有重要作用。100mg·L^-1 Cd处理能导致根尖细胞质浓缩、质壁分离和液泡变大,且大量Cd颗粒沉积在细胞壁上和细胞间隙中,表明细胞壁和细胞间隙对Cd的沉积作用可能是黄菖蒲幼苗耐Cd胁迫的重要机理之一。 相似文献
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基质及水位对入侵种互花米草生长的影响 总被引:1,自引:0,他引:1
为了揭示基质和水位对互花米草种群扩张过程的影响,通过室内模拟试验分析了不同基质和地下水位对互花米草幼苗存活率、高生长和生物量及分配等表型参数的影响。结果表明:基质、水位及其交互作用对互花米草幼苗生长影响显著;基质类型和地下水位的交互作用显著影响幼苗的存活率;同种基质中地下水位的降低显著促进了幼苗根长的增加;由于不同基质持水力和营养的差异,沙中生长的幼苗随地下水位的降低地上部分表现出显著的生长抑制,而沙土和壤土中的幼苗在中等水位生长最好;沙中幼苗根状茎的长度显著低于沙土和壤土,而随水位的降低,沙土和壤土根茎长度显著下降。由此可以推论,互花米草种群扩张强度因生境而异,在沙土和壤土基质中互花米草可能表现出更强的入侵性和扩散能力。 相似文献
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Cd、Zn及其交互作用对互花米草中重金属的积累、亚细胞分布及化学形态的影响 总被引:2,自引:0,他引:2
潘秀;石福臣;刘立民;柴民伟;刘福春 《植物研究》2012,32(6):717-723
通过盆栽试验,研究了Cd、Zn及其交互作用下互花米草中Cd、Zn的含量及积累量,并分析了Cd、Zn在互花米草中的亚细胞分布及化学形态。结果表明:Cd-Zn处理组互花米草地上部及根部Cd含量显著高于Cd处理组;Cd-Zn处理组根部Zn含量显著低于Zn处理组,但地上部差异不显著,说明Zn促进Cd的吸收,Cd抑制Zn的吸收。Cd-Zn处理组互花米草地上部Cd积累量显著高于Cd处理组,但是根部Cd积累量却显著低于Cd处理组;Zn处理组地上部及根部Zn积累量均显著高于对照组及Cd-Zn处理组。Cd单因素胁迫下,Cd主要分布在细胞壁,Cd-Zn交互作用下,Cd在胞液中的分配比例高于其他细胞组分;Zn单因素及Cd-Zn交互作用下,Zn在胞液中的分配比例均较高,总的分配比例呈现以下趋势:胞液>细胞壁>细胞器,说明Zn的添加影响了Cd的亚细胞分布,Cd的出现对Zn在互花米草细胞中的分布影响不明显。Cd和Zn在互花米草叶中主要以氯化钠提取态存在,表明互花米草中Cd和Zn多以果胶酸盐结合态或蛋白质结合态存在。 相似文献
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Effects of saltmarsh invasion by Spartina alterniflora on arthropod community structure and diets 总被引:1,自引:0,他引:1
Yu-Tong Wu Cheng-Huan Wang Xiao-Dong Zhang Bin Zhao Li-Fen Jiang Jia-Kuan Chen Bo Li 《Biological invasions》2009,11(3):635-649
Invasive plants strongly affect physical and biotic environments of native ecosystems. Insects and other arthropods as one
of the major components of many ecosystems are very sensitive to subtle changes in abiotic and biotic environments. We examined
the effects of exotic Spartina alterniflora invasion on community structure and diets of arthropods in a saltmarsh previously dominated by native Phragmites australis in Yangtze River estuary through net sweeping and plant harvesting methods and stable isotope analysis. Our results showed
that diversity indices were not significantly different between exotic and native plant communities, but the total abundance
of insects estimated through plant harvesting method was found to be lower in Spartina monoculture than that in Phragmites monoculture. Community structure of insects in Spartina monoculture was dissimilar to that in Phragmites monoculture and Phragmites–Spartina mixture. Moreover, stable carbon isotope patterns of arthropods were significantly different between Phragmites and Spartina monocultures. Although some native arthropods (perhaps generalists) shifted their diets, many native taxa did prefer Phragmites to Spartina even in Spartina monoculture. Spartina invasions resulted in reduced abundances of some arthropds, and increased dominance of others feeding preferably on Spartina. This study provides evidence that invasive plants can change the community structure and diets of native arthropods, which
will eventually alter the arthropod food web, and affect the integrity and functioning of native ecosystems within a nature
reserve that has been set aside for conserving the native biodiversity and maintaining the ecosystem integrity. In this sense,
Spartina invasions in the Yangtze River estuary need to be managed appropriately. 相似文献