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1.
锰超富集植物垂序商陆(Phytolacca americana L.)的认定   总被引:7,自引:2,他引:7  
薛生国  叶晟  周菲  田守祥  王钧  徐圣友 《生态学报》2008,28(12):6344-6347
针对目前国内锰超富集植物商陆属(Phytolacca)植物名称混乱的状态,在重新审查锰超富集植物——商陆(Phytolaccaacinosa Roxb.)的野外标本和温室培养植物的基础上,比对中国科学院昆明植物所标本馆的腊叶标本,并查阅相关文献资料。以期正确认定锰超富集累植物的学名。结果表明,湘潭锰矿尾矿废弃地原生的锰超富集植物实为垂序商陆(Phytolacca americana L),国内外相关研究论文中出现的商陆和美洲商陆实为垂序商陆的同物异名。这一植物名称的认定,将对避免锰超富集植物研究重复进行、保证相关研究正常有序开展具有重要意义。  相似文献   

2.
锰对锰超积累植物美洲商陆抗氧化系统的影响   总被引:5,自引:0,他引:5  
采用水培法,研究了美洲商陆在不同锰浓度下的生长、锰积累、H2O2含量、脂质过氧化以及抗氧化系统的响应.结果表明:植株锰含量随锰浓度增大而显著增加,依次为叶>茎>根.低浓度锰(5 mmol·L-1)显著促进植株生长,叶片中H2O2含量明显降低,丙二醛(MDA)含量与对照相当;高浓度锰(≥10 mmol·L-1)抑制植株生长,叶片中H2O2和MDA水平显著增加,表明叶片中发生了明显的氧化损伤.抗坏血酸过氧化物酶、脱氢抗坏血酸还原酶、谷胱甘肽还原酶的活性和还原型抗坏血酸水平随锰处理浓度上升;超氧化物歧化酶活性在低浓度锰时显著降低,高浓度锰时则显著上升;过氧化氢酶和过氧化物酶活性、还原型谷胱甘肽含量在锰浓度为5~10 mmol·L-1时显著上升,而在20 mmol·L-1时明显回落.说明氧化损伤及锰积累可能是高浓度锰下美洲商陆生长受抑的生理原因.锰处理下,抗氧化系统效率提高可以部分解释美洲商陆耐锰和超积累锰的特性,不同抗氧化剂活性或含量随介质锰浓度变化的模式不同,反映了其在美洲商陆耐受不同浓度范围锰时的作用不同.  相似文献   

3.
植物修复——治理土壤重金属污染的新途径   总被引:16,自引:0,他引:16  
介绍了重金属污染土壤的植物修复的概念、原理与研究动态以及重金属超积累植物的特性 ,及其在治理污染土壤中的潜力 ,为土壤重金属污染的整治及其生态的修复提出新途径。  相似文献   

4.
重金属污染土壤植物修复的研究进展和应用前景   总被引:14,自引:0,他引:14  
土壤污染是当今面临的一个严峻的问题。其中重金属污染尤为严重。因此重金属污染土壤的修复日益受到各国政府和学者的重视。植物修复技术作为一种绿色安全的技术以其潜在的高效、经济及生态协调性成为当前国际学术界研究的热点领域。就植物修复技术的概念、方法原理、植物修复技术的研究历史和现状以及优点、应用前景作了系统阐述,并介绍了国内外开展的一些应用性实例。指出了植物修复技术当前还存在的问题。对今后发展的方向。作出了几点展望。  相似文献   

5.
中国商陆属植物的校订   总被引:3,自引:0,他引:3  
校订了我国商陆属植物,计有4种,Phytolacca clavigera W.W.Smith是多雄蕊商陆的异名,Ph.hunanensis Hand.-Mazz和Ph.zhejiangensis W.T.Fan是日本商陆的异名。Ph.esquirolii Levl.不是本属植物,而是崖豆藤野桐(大戟科)。  相似文献   

6.
校订了我国商陆属植物,计有4种。Phytolac caclavigera W.W.Smith是多雄蕊商陆的异名,Ph.hunanensis Hand.-Mazz.和Ph.zhejiangensis W.T.Fan是日本商陆的异名。Ph.Esquirolii Lévl.不是本属植物,而是崖豆藤野桐Mallotus millietii Lévl.(大戟科).  相似文献   

7.
商陆是在中国境内发现的多年生、草本型锰超积累植物。通过室内土培试验,评价商陆对土壤中锰的去除潜力,确定最佳收获时间,以期达到最佳的重金属污染土壤植物修复效果。结果表明:商陆能将土壤中的锰转运到地上部位,叶片中Mn含量最高,平均值为17 043 mg/kg DW,远远大于茎和根的锰含量均值;单株的平均富集量在浓度为500 mg/kg DW时达最高,一棵商陆可富集平均13 mg的Mn;动态修复中确定的最佳收获时间为60 d,不同时间收获的商陆地下部分生物量差异不明显(P0.05),地上部分则差异较大。连续收获不改变其锰生物富集能力。这表明商陆对锰有较强的富集能力,是一种优良的修复锰污染土壤的物种,对土壤重金属污染的治理及植物修复领域数据库的完善具有重要意义。  相似文献   

8.
超积累植物吸收重金属的根际效应研究进展   总被引:21,自引:2,他引:21  
阐述近年来国内外在超积累植物吸收重金属的根际微生态效应这一领域的最新研究成果 ,介绍了根际微生态效应在植物修复中的应用 ,并对当前超积累植物在根际微生态效应研究中的不足之处和需要进一步深入研究的方向进行讨论。  相似文献   

9.
重金属超富集植物及植物修复技术研究进展   总被引:306,自引:7,他引:306  
韦朝阳  陈同斌 《生态学报》2001,21(7):1196-1203
植物修复技术(Phytoremediation)是近年来发展起来的一种主要用于清除土壤重金属污染的绿色生态技术,重金属超富集植物(hyperaccumulator)及植物修复技术是当前学术界研究的热点领域,目前虽已有Cd、Co、Cr、Cu、Mn、Ni、Pb、Zn等超富集植物发现的报道,但尚无一例报道来自于中国,中国具有广袤的国土面积、丰富的植物类型和多种(处)古老的矿山开采与冶炼场所,在中国开展超富集植物的寻找,研究与开发工作,将会有重要突破,并具有重要的理论与实践意义,本文拟就国内外在这一领域的研究进展作一简要综述。  相似文献   

10.
超积累植物的金属配位体及其在植物修复中的应用   总被引:8,自引:0,他引:8  
综述了超积累植物体内金属配位体(包括植物螯合肽、植物金属硫蛋白、有机酸和氨基酸)的生物合成,参与的植物体内金属的吸收、运输、积累的解毒过程的生理及分子机制,并对金属配位体在植物修复中的应用作了评述。  相似文献   

11.
The distribution and mobility of manganese (Mn) in the hyperaccumulator plant species Phytolacca acinosa Roxb. (Phytolaccaceae) were investigated in a hydroponic system. The plants were exposed to 2 or 5 mM Mn for up to 28 days. For any given plant, the Mn content in the mature leaves (nos. 5–9) was always higher than that in the old (nos. 1–4) and young leaves (nos. 10–14). Within the different parts of a leaf, Mn was preferentially accumulated in the leaf marginal area, where the observed level was threefold higher than that in the midrib. Cross-sectional analysis of the leaf revealed that the concentration of Mn was higher in the leaf epidermis than in the mesophyll. Cell fractionation analysis with P. acinosa leaves showed that most of the Mn (78.4%) was present in the final supernatant fraction (following centrifugation at 20,000 g for 45 min). The distribution of Mn in the leaves of P. acinosa was controlled mainly by the transpiration rate. Our investigation demonstrated that Mn was readily transported from the roots to shoots of P. acinosa but that it could not be remobilized readily after it reached leaves.  相似文献   

12.
为了研究高钾植物商陆高亲和性K+吸收机制,本试验选用野生商陆为材料,以拟南芥、冰叶日中花、小麦、大麦和水稻等多种植物的HAK家族基因的保守序列,设计简并引物,获得了981bp的PaHAK1的基因片段。然后应用RACE技术克隆到PaHAK1基因序列,其cDNA全长为2337bp,编码771个氨基酸。该编码蛋白质分子量为86.66kDa,等电点为7.54。蛋白质疏水性和拓扑结构分析显示该氨基酸序列共有12-13个跨膜区。该cDNA序列与冰叶日中花HAK1基因序列相似性高达88%。Real-TimePCR分析表明PaHAK1主要在商陆根中表达,低钾状态可以诱导PaHAK1的高表达。  相似文献   

13.
The growth and metal-extraction efficiency of plants when exposed to toxic metals can be enhanced by inoculating with certain bacteria, but the mechanisms of this process remain unclear. We report results from glasshouse experiments on the effect of Arthrobacter echigonensis MN1405 in promoting Phytolacca acinosa Roxb. growth when exposed to 100 mg/L Mn solution. Mn removal efficiency in solution was significantly enhanced by bacterial inoculation; Mn was accumulated in the root of P. acinosa Roxb. plant. The bacteria oxidized the Mn on root surface, which formed a Mn plaque to serve as a barrier or a containment to prevent metal toxicity. In this process, pH condition was an important factor on the effects of microbial-assisted heavy metal phytoremediation. Our finding suggests that A. echigonensis MN1405 assisted P. acinosa to achieve high remediation efficiency of Mn removal and accumulation in Mn contamination area.  相似文献   

14.
Two new flavones, 6,7‐methylenedioxy‐4‐hydroxypeltogynan‐7′‐one ( 1 ), cochliophilin B ( 2 ), as well as two known ones, cochliophilin A ( 3 ) and 6‐methoxy‐7‐hydroxy flavone ( 4 ), were isolated from the ethanol extract of the root of Phytolacca acinosa Roxb . Compound 1 is a flavanol framework with one δ‐lactone unit, which is rather rare in nature. The structures of the new compounds were determined on the basis of extensive spectroscopic (IR, MS, 1D‐ and 2D‐NMR) analyses, the absolute configuration of 1 was established by comparing experimental and calculated electronic circular dichroism spectra. The structures of known compounds were fixed by comparison with literatures data. Compounds 2 and 4 showed modest inhibitory activities against BEL‐7402 cell line, with IC50 values of 28.22 and 39.16 μmol/L, respectively.  相似文献   

15.
Phytolacca acinosa Roxb. is a Mn hyperaccumulating plant. In the present study, the chemical forms of Mn in the leaves of P. acinosa were investigated using chemical analyses and X-ray absorption spectroscopy (XAS). P. acinosa plants were grown hydroponically with 2 mM Mn for 28 days. About 80% of the Mn in the leaves of P. acinosa was found in the supernatant fraction after centrifugation at 20,000g for 45 min. The supernatant fraction was then used to identify the chemical forms of Mn. Gel filtration analysis (Sephadex G-10) showed that oxalate and Mn appeared in the same fraction of the supernatant and the molar ratio of oxalic acid to Mn was 1.12, indicating that there was sufficient oxalic acid in P. acinosa leaves to complex Mn. XAS was employed to investigate the chemical species of Mn in leaves of P. acinosa. Results showed that Mn in leaves was bivalent and almost 90% of the total Mn was Mn-oxalate. The oxalate concentration in the leaves of P. acinosa was not affected by increasing Mn concentration in the solution, suggesting that oxalate biosynthesis was not induced by Mn.  相似文献   

16.
Phytolacca acinosa Roxb. (Phytolaccaceae) was reported in 2004 to be a manganese-hyperaccumulating plant. Phytolacca americana L., growing at the same site was then independently reported in 2007 to have the same property. An apparent confusion in the taxonomy of the genus Phytolacca and interest in the Mn hyperaccumulative trait reported in P. acinosa has led to an extended field sampling, glasshouse cultivation and comparison with herbarium materials of P. americana s.l. Our specific aim was to identify and name the Mn hyperaccumulator plant correctly. P. acinosa is closely related to P. americana but it differs from the former in having an erect infructescence with usually eight distinct carpels, while from the latter has a nutant infructescence usually with 10 concrescent carpels. Our study indicated that the Mn hyperaccumulator plant P. acinosa which we first reported from the Xiangtan Mn tailings wasteland must now be reduced to P. americana as a synonym in order to prevent further confusion in identity and nomenclatural redundancy.  相似文献   

17.
Pokeweed ( Phytolacca americana ) has recently received much attention because of its ability to hyperaccumulate manganese (Mn). The internal mechanism of detoxification of Mn, however, is not fully understood. In the present study, we investigated Mn accumulation, subcellular distribution, chemical speciation and detoxification through oxalate in pokeweed. The plant accumulated excess Mn in the leaves, mainly in the water-soluble fraction, and over 80% of Mn was in a water-soluble form, while accumulation of excess Mn in the cellular organelle and membrane fraction caused phytotoxicity. In addition, pokeweed has an intrinsically high oxalate content. In all experiments, there was sufficient oxalate to chelate Mn in leaf water extracts at all different levels of Mn application. Phase analysis of X-ray diffraction detected oxalate–Mn chelate complexes, and gel chromatography further confirmed the chelation of Mn by oxalate. In conclusion, pokeweed accumulates excess Mn in the soluble fraction of leaf cells, most likely in vacuoles, in which detoxification of Mn could be achieved by chelation with oxalate.  相似文献   

18.
为进一步研究商陆科的系统位置提供花器官发生和发育的证据,在扫描电子显微镜下观察了商陆Phytolacca acinosa、多雄蕊商陆P. polyandra和垂序商陆P. americana的花器官发生.结果表明: 商陆属植物花被的发生均为2/5型螺旋发生.在同一个种不同的花蕾中,花被的发生有两种顺序:逆时针方向和顺时针方向.远轴侧非正中位的1枚先发生.雄蕊发生于环状分生组织.在单轮雄蕊的种中8-10枚雄蕊为近同时发生;两轮雄蕊的种8枚内轮雄蕊先发生,6-8枚外轮雄蕊随后发生,内轮雄蕊为同时发生,外轮雄蕊发生次序不规则.心皮原基也发生于环状分生组织,8-10枚心皮原基为同时发生.在后来的发育过程中,商陆的心皮发育成近离生心皮雌蕊;其他2种心皮侧壁联合发育成合生心皮雌蕊.对商陆属植物花器官发生的类型及发育形态学做了分析,结果支持商陆科在石竹目系统发育中处于原始地位的观点.  相似文献   

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