共查询到18条相似文献,搜索用时 62 毫秒
1.
重金属胁迫对植物内生细菌群落结构的影响在很大程度上是未知的,目前也很少有研究超积累植物内生细菌的群落结构与多样性对根际土壤中重金属的响应。【目的】探索在不同镉污染水平下,超积累(HE)和非超积累生态型(NHE)东南景天的根系、茎和叶片中内生细菌的群落结构与多样性的变化及其差异性,试图从植物-内生菌之间的相互关系的角度补充解释2种生态型东南景天对有效态镉忍耐和积累能力的差异。【方法】采用Illumina新一代测序方法分析了在不同Cd~(2+)浓度土壤上生长的2种生态型东南景天根、茎和叶中的内生细菌群落结构。【结果】高浓度Cd~(2+)抑制NHE东南景天的生长,内生细菌的丰富度和多样性也降低;然而,高浓度Cd~(2+)促进HE东南景天的生长,茎和根系内生细菌的丰富度增加。在3种土壤上,2种生态型东南景天叶片、茎和根系内生细菌均以变形菌门(Proteobacteria)、厚壁菌门(Firmicutes)、拟杆菌门(Bacteroidetes)和放线菌门(Actinobacteria)占优势。随着土壤中Cd~(2+)浓度的增加,HE东南景天叶片中Gammaproteobacteria纲、Negativicutes纲和Clostridia纲的相对丰度显著增加,茎中Alphaproteobacteria纲的相对丰度显著增加,Clostridia纲的相对丰度显著减少;NHE东南景天叶片中Alphaproteobacteria纲、Gammaproteobacteria纲和Clostridia纲的相对丰度没有显著变化,茎中Negativicutes纲的相对丰度显著减少,根系中Betaproteobacteria纲和Clostridia纲的相对丰度显著减少,Negativicutes纲却显著增加。在高Cd~(2+)污染土壤(50mg/kg)上,HE东南景天叶片中Sphingomonas属和茎中Veillonella属的相对丰度均大于NHE,且HE东南景天根系内生细菌的第一、第二、第三优势菌Veillonella、Sphingomonas、Prevotella属细菌均没有出现在NHE东南景天根系。【结论】土壤Cd~(2+)污染水平对2种生态型东南景天叶、茎、根中的内生菌群落结构有显著影响。 相似文献
2.
超积累生态型东南景天吸收锌的特性 总被引:3,自引:4,他引:3
采用水培和盆栽方法研究超积累生态型东南景天吸收锌的特征。在水培条件下,1μmol·L-1Zn处理,根系Zn含量随着处理时间的增加而缓慢增加,叶片和茎Zn含量在处理2d后达到最大值,随着培养时间的延长,其含量略有下降。500μmol·L-1Zn处理水平下,叶片和茎Zn含量随着处理时间的增加而增加,处理16d后基本上达到稳定,根系Zn含量在0~16d增加缓慢,但处理16d后急剧上升。当溶液Zn浓度为1~500μmol·L-1,叶片和茎Zn含量随营养液中Zn浓度的增加而增加,而根系Zn含量增加缓慢;当溶液Zn≥1000μmol·L-1时,叶片和茎Zn含量急剧下降,而根系Zn含量迅速增加。盆栽条件下,当土壤Zn含量较低时时,土壤Zn促进东南景天的生长。5月13日和7月21日收获的植株地上部的干物质量分别在400mg·kg-1(0.71g盆-1)和800mg·kg-1(1.45g盆-1)处理达到最大值。但当土壤Zn添加量≥1600mg·kg-1时,植物的生长受到抑制。随着土壤中Zn添加量的增加,东南景天地上部Zn浓度变化趋势基本上与其生物量的变化一致。5月13日收获时,当土壤Zn添加量≤1600mg·kg-1,地上部Zn含量随着土壤Zn浓度的增加而增加,在1600mg·kg-1处理达到最大值,约为17000mg·kg-1(DW)。7月21日收获的结果显示,当土壤Zn添加量≤800mg·kg-1,地上部Zn含量随着土壤Zn浓度的增加而增加,最大值为29000mg·kg-1(DW);但当土壤Zn添加量≥1200mg·kg-1时,地上部Zn含量反而随着土壤Zn含量的增加而显著降低。 相似文献
3.
棕榈科植物种子内生细菌群落多样性的高通量测序分析 总被引:1,自引:0,他引:1
【目的】探究棕榈科种子内生细菌群落组成及其随物种的差异。【方法】运用MiSeq高通量方法测定蒲葵、棕榈、加拿利海枣、山棕、软叶刺葵、短穗鱼尾葵及三药槟榔7种棕榈科种子内生细菌群落16S rRNA基因V3–V4区序列并进行生物信息学分析。【结果】7种测试种子中获得的V3–V4区有效序列数在2341–40671条之间,聚成97–590个操作分类单元(OTU),Shannon指数计算为1.35–2.94,以加拿利海枣种子最高,山棕种子最低;种群归类结果显示不同种子中测得的各级细菌分类阶层总数及组成不同,总丰度以厚壁菌门的肠球菌属最高,同为厚壁菌门的芽孢杆菌属次之;属级水平上,第一优势细菌属分别为:蒲葵种子(芽孢杆菌属,45.8%),棕榈种子(肠球菌属,51.2%),山棕种子(肠球菌属,12.1%),短穗鱼尾葵种子(肠球菌属,32.6%),三药槟榔种子(肠球菌属,42.9%),软叶刺葵种子(肠球菌属,28.3%),加拿利海枣种子(糖多孢菌属,31.2%)。各种子中次优势细菌属分别为:蒲葵种子(乳球菌属),棕榈、山棕及三药槟榔种子(类芽孢杆菌属),加拿利海枣种子(戈登氏菌属),软叶刺葵和短穗鱼尾葵种子(鞘脂单胞菌属);PICRUST基因预测显示各种子均包含多个与人体器官及人类疾病相关的KEGG功能模块。此外,各种子中均产生了丰度较高的外源物质降解、萜和聚酮合成、多糖合成等有益功能信息。【结论】棕榈科植物种子内生细菌群落多样性较为丰富,群落组成随物种不同而异。各种子内生细菌群体中普遍含多个与人和动物体相关的种群和功能信息,也定殖多种具有益功能性状的细菌类群,值得进一步研究。 相似文献
4.
为探讨不同寄主植物对西花蓟马Frankliniella occidentalis内生细菌分布的影响,应用Illumina MiSeq第二代测序技术对取食不同寄主植物的西花蓟马内生细菌的16S rDNA V5~V7区域进行测定。结果显示,Alpha多样性分析发现,西花蓟马内生细菌在取食不同寄主植物后多样性表现为西葫芦Cucurbita pepo L. >菊花Dendranthema morifolium(Ramat.) Tzvelev >曼陀罗Datura stramonium L. >玫瑰Rosa rugosa Thunb. >牵牛花Pharibitis purpurea (L.) Voigt >辣椒Capsicum annuum L.;在门水平的菌群组成上,变形菌门在各样品中所占比例最高,是西花蓟马内生菌中的优势菌门,厚壁菌门为次优势菌菌门。在属水平上内生细菌也表现出较大的差异,其中假单胞菌属Pseudomonas和欧文氏菌属Erwinia在西花蓟马取食各寄主植物时均有分布,取食辣椒、玫瑰、曼陀罗时,优势菌属均为欧文氏菌属Erwinia,取食菊花和牵牛花时,优势菌属为立克次体Rickettsia,而取食西葫芦时,则为短波毛单胞菌属Brevundimonas;利用KEGG数据库,对内生细菌进行基因功能预测分析发现,内生细菌群富集了高丰度的代谢功能基因,且主要集中于碳水化合物代谢、氨基酸代谢以及能量代谢。综上所述取食不同寄主植物时西花蓟马内生细菌多样性与群落结构具有一定的差异,寄主植物可对西花蓟马内生细菌群落组成产生重要的影响;且各寄主植物上西花蓟马内生细菌基因功能主要集中在碳水化合物代谢、氨基酸代谢和能量代谢。 相似文献
5.
烟草种子内生细菌群落结构与多样性 总被引:4,自引:0,他引:4
【目的】为了解烟草种子内生细菌的群落结构和多样性。【方法】分别对3个品种(K326、云烟85、云烟87)烟草种子内生细菌的16S rRNA基因V3–V4区进行扩增,采用Illumina MiSeq测序技术对扩增片段进行高通量测序,并对3个品种烟草种子内生细菌群落结构和多样性进行分析。【结果】3个品种种子共获得的V3–V4区高质量序列片段128558条,Shannon指数计算为2.03–3.73,K326和云烟85内生菌多样性指数高于云烟87。3品种烟草种子内生细菌的优势门均为变形菌门Proteobacteria、放线菌门Actinobacteria、厚壁菌门Firmicute和拟杆菌门Bacteroidete。3个品种烟草种子内生细菌共有菌属共有27个,K326和云烟85的最优势菌属为假单胞菌属(Pseudomonas),云烟87的最优势菌属为大肠杆菌志贺菌属(Escherichia-shigella)。16S功能预测显示各种子中产生了丰度较高的蛋白质、核苷酸、糖类、辅酶及代谢产物合成的有益功能信息。【结论】烟草种子内生细菌多样性丰富,不同品种种子细菌群落组成基本相似,其丰度存在一定差异性。种子中存在的潜在有益细菌包括假单胞菌、类芽孢杆菌、根瘤菌、马赛菌、藤黄单胞菌、萨勒河菌、Lelliottia菌等,具有大量代谢相关的有益功能。研究结果为今后烟草种子内生菌的功能研究和利用以及种子病害生物防控提供参考信息。 相似文献
6.
[目的]为详细了解水稻不同组织内生细菌群落多样性。[方法]对宁粳43号内生细菌的总DNA提取后,采用高通量测序技术对水稻内生细菌的16S rRNA基因进行了序列测定,分析了水稻不同组织部位内生细菌群落结构特征。[结果]叶部共获得内生细菌OTUs 610个,茎部411个,根部174个。物种分类显示,叶部内生细菌种类隶属于22门40纲103目198科399属,其中优势类群是红球菌属(Rhodococcus)和乳酸杆菌属(Lactobacillus),它们的相对丰度分别为21.00%和9.19%;茎部内生细菌种类隶属于19门31纲85目169科306属,其中优势类群是红球菌属和罗尔斯通菌属(Ralstonia),它们的相对丰度分别为19.25%和13.52%;根部内生细菌种类隶属于9门19纲44目82科140属,其中优势类群是肠杆菌属(Enterobacter)和埃希氏杆菌属(Escherichia),它们的相对丰度分别为81.13%和10.89%。根茎叶中相同的OTU有78个,放线菌门(Actinobacteria)与大多数细菌具有相关性。根系内生细菌中具有调控各种代谢网络功能的物种丰度高于茎部和叶部。[结论]不同水稻组织内生细菌具有丰富的群落多样性,其中叶部的内生细菌物种最丰富,根系参与各种代谢调控的细菌丰度最高,各个组织部位的优势菌属各不相同,变形菌门是最重要的水稻内生细菌。 相似文献
7.
植物内生菌广泛分布于植物的各种组织及器官中,对植物的生长表现出各种作用,而植物种子中的内生菌对植物的作用也越来越受到人们的关注。以榆中县和秦安县两种不同生境的中国沙棘种子为材料,分析中国沙棘种子内生细菌多样性,以期探究生境对种子内生菌多样性的影响,并为进一步研究种子内生菌与沙棘的相互作用提供依据。研究利用纯培养方法和高通量测序方法分别进行中国沙棘种子内生细菌多样性分析。对纯培养分离得到的内生细菌,利用16S rRNA基因序列分析法结合形态学特征进行内生细菌的鉴定;对高通量测序得到的数据进行基于OTUs(Operational Taxonomic units,可操作分类单元)的物种注释分析。通过纯培养方法从榆中县中国沙棘种子中分离得到4株内生细菌,分属于芽孢杆菌属(Bacillus)、葡萄球菌属(Staphylococcus)和假单胞菌属(Pseudomonas);秦安县中国沙棘种子中分离得到5株内生细菌,分属于芽孢杆菌属(Bacillus)、葡萄球菌属(Staphylococcus)和不动杆菌属(Acinetobacter)。采用高通量测序方法检测到榆中县中国沙棘种子内生细菌分属于7个... 相似文献
8.
不同品种苹果树内生细菌群落多样性及功能 总被引:1,自引:0,他引:1
【背景】目前苹果树内生细菌的研究较多,但对不同品种苹果树内生细菌群落多样性分析比较的相关报道还较少。【目的】通过分析比较新疆本地和吉尔吉斯斯坦引进的8个不同品种苹果树内生细菌群落多样性的差异,可以充分挖掘其蕴含的丰富微生物资源。【方法】采用MiSeq高通量测序技术分别测定不同品种苹果树内生细菌群落16S rRNA基因V3-V4区序列并进行生物信息学分析。【结果】不同品种苹果树中获得的V3-V4区有效序列数在61487-71583条之间,聚成24-92个操作分类单元(operationaltaxonomicunit,OTU),Shannon指数和Simpson指数分别在0.729-1.177和0.265-0.457之间,新疆本地品种的苹果树内生细菌种类和多样性高于吉尔吉斯斯坦品种。内生细菌种群分析结果表明,变形菌门和放线菌门的OTU总计分别覆盖了不同品种苹果树内生细菌的61.16%-97.08%,为苹果树的主要优势细菌门。优势细菌属数目、组成及其丰度随苹果品种的不同而有所差异。马赛菌属(Massilia)和节杆菌属(Arthrobacter)的总丰度最高,其丰度分别在6.06%-71.3... 相似文献
9.
为了解火棘不同组织内生细菌群落多样性,该研究采用高通量测序技术对火棘内生细菌16S rRNA V5~V7可变区进行测序,分析火棘不同组织部位内生细菌群落多样性。结果表明:(1)从火棘根、茎、叶组织中共获得内生细菌OTU 1 818个,其中根部754个,茎部 308 个,叶部756个,三者共有 OTU 152 个。(2)物种分类显示,不同火棘组织内生细菌具有丰富的群落多样性,火棘根部内生细菌种类隶属于23门53纲137目216科373属557种,其中异样根瘤菌属(Allorhizobium-Neorhizobium-Pararhizobium-Rhizobium)和链霉菌属(Streptomyces)为优势属,其相对丰度分别为 10.57%和 8.00%; 茎部内生细菌种类隶属于21门32纲76目126科204属270种,其中马赛菌属(Massilia)和未知分类的丛毛单胞菌科属(unclassified_f_Comamonadaceae)为优势属,其相对丰度分别为31.10%和12.82%; 叶部内生细菌种类隶属于21门52纲130目210科380属581种,其中土芽孢杆菌属(Geobacillus)和假单胞菌属(Pseudomonas)为优势属,其相对丰度分别为12.31%和9.84%。(3)PICRUSt功能预测表明,根部内生细菌物种最丰富,参与各种代谢调控的细菌丰度最高。该研究结果为进一步探讨植物内生细菌功能,挖掘新的有益微生物资源提供了参考。 相似文献
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植物长期生长在重金属污染的生境中,逐渐进化成不同的生态型。通过调查中国东南部古老Pb/zn矿和非矿山生境中的植物种群,发现生长在古老Pb/Zn矿的东南景天(Sedum alfredii Hance)是一种新的Zn超积累植物。在自然和控制条件下,古老Pb/Zn矿生态型比非矿山生态型植株的茎粗、叶片大、植株高。在矿山土壤Zn有效含量为105.5~325.4mg·kg-1时,矿山生态型东南景天植株地上部Zn含量为4134~5000mg·kg-1;当营养液中Zn浓度为1223.6μmol时,其Zn含量高达2%。在相同Zn浓度下,矿山生态型地上部Zn含量比非矿山生态型高30倍左右。两种生态型体内Zn分布也不同,古老铅锌矿山生态型的不同器官中Zn含量以茎>叶片>根系,而非矿山生态型则以根系>茎>叶片。古老铅锌矿山生态型地上部积累的Zn占植株总积累量的90%以上,其中叶片和茎分别占41.66%±5.46%和54.75%±5.87%;非矿山生态型各器官中积累的Zn远远低于古老铅锌矿山生态型,各器官中积累的Zn以茎>根系>叶片。本研究表明,这两种生态型东南景天的发现,为今后探讨植物耐高Zn胁迫和超积累Zn的微进化过程提供了非常有价值的材料,也为Zn污染土壤的植物修复提供了一种很有潜力的候选材料。 相似文献
11.
Sedum alfredii Hance is a terrestrial zinc/cadmium (Zn/Cd)-hyperaccumulating and lead (Pb)-accumulating plant. Previous studies on S. alfredii were mostly focused on its physiological mechanism of heavy metal uptake and the application in phytoextraction of metals from contaminated soils. In this study, we evaluated the application potential of S. alfredii in the cleanup of heavy metals from contaminated lake water. Our research revealed that changing pH in lake water would not make particular difference on the final accumulation amount of heavy metals, because the acidic water environment negatively affected plant growth compared with the neutral and alkaline environments, but was more conducive for heavy metal absorption and accumulation. In addition, S. alfredii showed an increase of approximately 2.2-fold in dry weight (DW) when cultured with lake water for 25 d. At the same time, it accumulated approximately 5.0 mg/kg DW of Cd and 41.4 mg/kg DW of Pb. The absorption of heavy metals was highly effective during the first 10 d of culture. Also, the quality of lake water was greatly improved after only 2-d cleanup by S. aifredii. In general, this hyperaccumulator exhibits great potential for application in the cleanup of heavy metals-polluted waters. 相似文献
12.
几种有机添加剂对遏蓝菜和东南景天吸收提取Zn的效应 总被引:3,自引:0,他引:3
通过盆栽试验,比较研究乙二胺四乙酸二钠盐(EDTA)、味精废液、柠檬酸、乙酸、草酸和混合试剂(柠檬酸∶味精废液∶EDTA∶KC l=10∶1∶2∶3)对Zn超累积植物遏蓝菜(T h lasp i caeru lescens)和东南景天(S edum a lf red ii)吸收提取Zn的影响。结果表明:各种添加剂均提高土壤中的水提取态和NH4NO3提取态Zn的含量,其顺序为EDTA混合试剂>味精废液>有机酸。除乙酸和味精废液外,其余添加剂都显著促进遏蓝菜的生长,以混合试剂的增产效果最好;但只有EDTA和混合试剂在浓度为10mm o l/kg土时提高了东南景天的生物量。混合试剂在浓度为6~10 mm o l/kg土时促进遏蓝菜对Zn的吸收和向地上部转移;EDTA和浓度为10mm o l/kg的混合试剂能显著促进东南景天对Zn的吸收和向地上部的转移。因此东南景天配合环境风险较小、用量为10mm o l/kg土的混合试剂较适合我国南方的Zn污染土壤。 相似文献
13.
Integration of small RNAs,degradome and transcriptome sequencing in hyperaccumulator Sedum alfredii uncovers a complex regulatory network and provides insights into cadmium phytoremediation 下载免费PDF全文
Xiaojiao Han Hengfu Yin Xixi Song Yunxing Zhang Mingying Liu Jiang Sang Jing jiang Jihong Li Renying Zhuo 《Plant biotechnology journal》2016,14(6):1470-1483
14.
Qing Luo Shiyu Wang Li-na Sun Hui Wang Tong Bao Muhammad Adeel 《Journal of Plant Interactions》2017,12(1):272-278
The Pb-accumulator Sedum alfredii is a good phytoremediation material, and widely used in the phytoremediation research of soils contaminated with Pb. The root exudates from it may be playing a significant role in the process of phytoremediation. In this study, the metabonomics method which based on gas chromatography–mass spectrometry (GC–MS) and pattern recognition analysis was used to identify the remarkable root exudates from S. alfredii under different Pb stresses, including exposure concentrations (0, 10, 50, 200 and 1000?µmol/L) and times (4 and 8 days). And batch extraction experiments were used to verify the roles of these remarkable root exudates. According to the results, 11 metabolites were considered as the remarkable metabolites. Oxalic acid, galactonic acid and glyceric acid can remove Pb in soil, and the removal effect was: oxalic acid?>?galactonic acid?>?glyceric acid. Xylose, glucose and maltose have no removal effect for Pb in soil. 相似文献
15.
Root Morphology and Zn2+ Uptake Kinetics of the Zn Hyperaccumulator of Sedum alfredii Hance 总被引:1,自引:0,他引:1
Root morphology and Zn2 uptake kinetics of the hyperaccumulating ecotype (HE) and nonhyperaccumulating ecotype (NHE) of Sedum alfredii Hance were investigated using hydroponic methods and the radiotracer flux technique. The results indicate that root length, root surface area, and root volume of NHE decreased significantly with increasing Zn2 concentration in growth media, whereas the root growth of HE was not adversely affected, and was even promoted, by 500 μmol/L Zn2 . The concentrations of Zn2 in both ecotypes of S. alfredii were positively correlated with root length, root surface area and root volumes, but no such correlation was found for root diameter. The uptake kinetics for 65Zn2 in roots of both ecotypes of S. alfredii were characterized by a rapid linear phase during the first 6 h and a slower linear phase during the subsequent period of investigation. The concentration-dependent uptake kinetics of the two ecotypes of S. alfredii could be characterized by the Michaelis-Menten equation, with the Vmax for 65Zn2 influx being threefold greater in HE compared with NHE, indicating that enhanced absorption into the root was one of the mechanisms involved in Zn hyperaccumulation. A significantly larger Vmax value suggested that there was a higher density of Zn transporters per unit membrane area in HE roots. 相似文献
16.
Lead induced changes in the growth and antioxidant metabolism of the lead accumulating and non-accumulating ecotypes of Sedum alfredii 总被引:1,自引:0,他引:1
The phytotoxicity and antioxidative adaptations of lead (Pb) accumulating ecotype (AE) and non-accumulating ecotype (NAE) of Sedum alfredii Hance were investigated under different Pb treatments involving 0, 0.02 mmol/L Pb, 0.1 mmol/L Pb and 0.1 mmol/L Pb/0.1 mmol/L ethylenediaminetetraacetic acid (EDTA) for 6days. With the increasing Pb level, the Pb concentration in the shoots of AE plants enhanced accordingly, and EDTA supply helped 51% of Pb translocation to shoots of AE compared with those treated with 0.1 mmol/L Pb alone. Moreover, the presence of EDTA alleviated Pb phytotoxicity through changes in plant biomass, root morphology and chlorophyll contents. Lead toxicity induced hydrogen peroxide (H2O2) accumulation and lipid peroxidation in both ecotypes of S. alfredii. The activities of superoxide dismutase (SOD), guaiacol peroxidase (G-POD), ascorbate peroxidase, and dehydroascorbate reductase elevated in both leaves and roots of AE as well as in leaves of NAE with the increasing Pb levels, but SOD and G-POD declined in roots of NAE. Enhancement in glutathione reductase activity was only detected in roots of NAE while a depression in catalase activity was recorded in the leaves of NAE. A significant enhancement in glutathione and ascorbic acid (AsA) levels occurred in both ecotypes exposed to Pb and Pb/EDTA treatment compared with the control, however, the differences between these two treatments were insignificant. The dehydroascorbate (DHA) contents in roots of both ecotypes were 1.41 to 11.22-fold higher than those in leaves, whereas the ratios of AsA to DHA (1.38 to 6.84) in leaves altering more to the reduced AsA form were much higher than those in roots. These results suggested that antioxidative enzymes and antioxidants play an important role in counteracting Pb stress in S. alfredii. 相似文献
17.
Sedum alfredii Hance is a newly reported zinc (Zn) and cadmium (Cd) hyperaccumulator native to China. In this study,four populations of S. alfredii were collected from Yejiwei (YJW), Jinchuantang (JCT) and Qiaokou (QK) lead (Pb)/Zn mines located in Hunan Province as well as Quzhou (QZ) Pb/Zn mine located in Zhejiang Province for exploring the intraspecies difference of this plant in metal accumulation. Although they grew in the Pb/Zn spoils with relatively similar levels of Zn,Cd and Pb, remarkable differences among the four populations in tissue heavy metal concentrations were observed. The shoot Zn concentration of QZ population (11 116 mg/kg) was highest and nearly five times higher than that of the JCT population (1930 mg/kg). Furthermore, the shoot Cd concentration observed in the QZ population (1 090 mg/kg) was also highest and 144 times higher than that found in the JCT population (7.5 mg/kg). As for Pb concentrations In the shoot of different populations, a fourfold difference between the highest and the lowest was also found. Such difference on metal accumulation was opulation-specific and may be significantly explained by differences in the soil properties such as pH, organic matter (OM), and electrical conductivity (EC). Taking biomass and metal concentration in plants into consideration, the QZ, YJW and QK populations may have high potential for Zn phytoremediation, the QZ population may have the highest potential in Cd phytoremediation, and the QK population may be the most useful in Pb phytoremediation. 相似文献
18.
东南景天对锌、镉复合污染的反应及其对锌、镉的吸收和积累特性 总被引:11,自引:0,他引:11
东南景天(Sedum alfredii Hance)已被鉴定为一种中国原生的新的锌超积累植物。 本文主要研究了锌(Zn)、镉(Cd)复合处理水平对东南景天的生长及其对锌、镉的吸收积累特性的影响。 结果表明,在Zn/Cd复合水平为500/100 祄ol/L时,植物生长最佳。Zn/Cd在东南景天叶片、茎部和根系中含量随着Zn/Cd处理水平的提高而增高。在Zn/Cd 复合水平为50/400 祄ol/L时茎叶中Cd含量达最高,其中叶片Cd含量达12.1 g/kg;在Zn/Cd 复合水平为1 000/50 祄ol/L时茎叶中Zn含量达最高, 其中茎中Zn含量达 23.2 g/kg。 植株各部位Cd含量的分布为:叶片>茎>>根系,而Zn在体内的分布为: 茎>叶片>>根系。 Zn、Cd在地上部和根部的积累量也随着处理水平的提高而增加,分别在Zn/Cd复合水平为250/400和500/100 祄ol/L下达高峰值。 东南景天地上部积累最高Zn和Cd的量分别达11和5 g/plant, 其比根系的积累量分别大10和25余倍。 Zn、Cd对东南景天的生长、吸收积累的相互作用依赖于Zn/Cd复合水平和植物部位。 在适宜Zn/Cd 处理水平范围内,Zn和Cd的吸收和积累具有相互促进作用。 高Zn或高Cd处理均抑制了植物对Zn和Cd的吸收和积累。 本研究结果表明,东南景天不仅具有忍耐高Zn/Cd复合污染,而且具有超量积累Zn和Cd的特异能力。 它为进一步研究植物Zn、Cd 相似文献