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1.
[目的]研究接菌紫穗槐对矿区退化植被的恢复生态效应,以期为丛枝菌根真菌应用于西部干旱半干旱煤矿区生态重建提供理论基础和野外试验基础数据。[方法]以紫穗槐为宿主植物,在野外大田条件下研究接种丛枝菌根真菌和紫穗槐的共生状况,以及对煤矿开采沉陷区植物根际土壤的改良作用。[结果]4a的连续监测结果表明,接菌促进了紫穗槐的生长,接菌紫穗槐成活率比对照高30%以上;接菌紫穗槐菌根侵染率和菌丝密度显著高于对照;接种菌根提高了紫穗槐根际土壤有效磷含量且降低了pH值,取得较好的生态修复效应。[结论]在野外大田条件下,接种菌根真菌能够促进植物—菌根共生关系的形成,改善植物—菌根共生体的营养环境。  相似文献   

2.
培养基质对丛枝菌根(AM)真菌生长发育的影响   总被引:5,自引:0,他引:5       下载免费PDF全文
温室条件下,以盆栽培养方法研究不同培养基质对丛枝菌根(Arbuscular Mycorrhizae,AM)真菌Glomus mosseae生长发育的影响。结果表明:不同理化性质的基质对菌根共生体生长发育的影响不同,综合考虑菌根长度、根外菌丝量及孢子数3项指标,以沙土混合物(体积比3∶1)对G. mosseae菌剂的生长发育最为有利。宿主植物菌根长度及根中的可溶性糖浓度与根外孢子数有正相关关系,而宿主植物中磷浓度与菌根真菌的生长发育也有类似的关系。说明培养基质的养分状况、水分状况、通气状况等诸多因素都会影响菌根共生体的建立和发展。宿主植物的菌根长度、根中可溶性糖浓度以及宿主植物磷浓度对菌根真菌的生长发育有显著影响。因此,工厂化AM菌剂生产中,应以沙土混合物(体积比3∶1)为生产G. mosseae菌剂的培养基质。  相似文献   

3.
试验研究 3种丛枝菌根真菌根内菌丝碱性磷酸酶活性与菌根共生效应的结果表明 ,3种丛枝菌根真菌对宿主植物的效应不同 ,与接种G .spp处理和未接种对照相比 ,接种G .m和G .i处理显著增加玉米地上部和根系干物质量、P浓度和吸P量 ,但后两者间无显著差异 ;而接种G .spp处理与对照无显著差异。播种后 35d时接种G .m和G .i处理根内菌丝碱性磷酸酶活性显著高于接种G .spp处理 ,而前二者间无显著差异 ,且随生长时间的变化趋势相似 ,35d时酶活性最高 ,35~ 5 0d呈迅速下降趋势 ,至 70d时酶活性仍下降且趋于平缓。G .spp酶活性则一直处于较低水平 ,随生长时间的延长略有起伏。即接种不同丛枝菌根真菌时 ,根内菌丝碱性磷酸酶活性高的菌根真菌对玉米生长促进作用较大 ,可提高玉米P营养状况 ;反之则对玉米生长和P营养状况无明显促进作用 ,且与对照无显著差异。出苗后 35d时根内菌丝碱性磷酸酶活性是预测丛枝菌根真菌对玉米生长效应的有效生理指标之一。  相似文献   

4.
补光光源对AM真菌生长发育的影响   总被引:1,自引:0,他引:1  
温室条件下,研究不同补光光源对丛枝菌根(Arbuscular mycorrhizae,AM)真菌Glomus mosseae生长发育的影响。结果表明:不同补光光源的光谱不同,对菌根共生体生长发育的影响不同,以农艺钠灯作为补光光源处理的宿主植物的光合速率及可溶性糖含量高于其它两种光源处理,综合比较菌根长度、根外菌丝量及孢子数三项指标,以农艺钠灯作为补充光源对真菌G. mosseae的生长发育最为有利。金属卤灯、荧光灯两处理宿主植物中氮、磷浓度高于农艺钠灯处理,可能对菌根真菌的生长发育有不利影响。因此,工厂化AM菌剂生产中,如果需要补充光照,应以农艺钠灯作为补光光源。  相似文献   

5.
本文意在探究外源碳对丛枝菌根(arbuscular mycorrhiza, AM)真菌吸收氮源合成精氨酸(Arg)的影响。采用三室隔离盆栽培养系统,以高粱(Sorghum bicolor L. Moench)为宿主植物,接种AM真菌Glomus intraradices,在菌丝室施加4 mmol/L的NH4NO3,同时在根室施加不同形式的碳源,测定分析不同外源碳条件下根外菌丝体(ERM)、菌根和植物茎叶中的Arg含量和总氮含量。结果表明ERM和菌根中的Arg含量远远高于茎叶中;虽然不同形式外源碳提高了AM真菌的ERM干重和菌根侵染率,但是葡萄糖降低了ERM、菌根和茎叶中的Arg含量,蔗糖和甘油对Arg含量没有显著的影响,只有外源Arg和谷氨酰胺(Gln)使ERM中的Arg含量显著增加;不同外源碳对菌根和茎叶的总氮含量没有显著影响。由上述结果分析可知在根室施加外源碳对AM真菌的氮代谢和宿主植物氮素营养水平没有显著影响,Arg合成所需的碳可能大多来自宿主植物供给的碳水化合物;但是施加外源碳能够促进AM真菌的生长繁殖。  相似文献   

6.
【目的】丛枝菌根是土壤中的丛枝菌真菌(arbuscular mycorrhizal,AM)与大多数陆地植物根系形成的互惠共生体。丛枝菌根的形成过程是一系列信号交换和转导的结果,受到很多基因的程序化表达调控。植物激素作为重要的信号物质被证实能够参与调控植物与AM真菌的互作过程。本文简述了植物激素在调控丛枝菌根形成的作用机理,为激素调控丛枝菌根形成的研究与应用提供理论线索。主要进展外源施加低浓度的生长素和脱落酸能够促进丛枝菌根共生,而外源施加赤霉素能够显著抑制丛枝菌根中丛枝的形成;内源缺失赤霉素,脱落酸以及油菜素内酯会抑制丛枝菌根共生;茉莉酸合成突变体推迟丛枝菌根形成;独脚金内酯合成、转运以及受体突变体都会抑制丛枝菌根共生;生长素以及脱落酸受体表达量降低会抑制丛枝菌根共生。但是生长素信号受体的降低表达不仅能够显著抑制丛枝菌根的形成还能显著抑制丛枝细胞的正常发育,而植物脱落酸信号受体表达降低突变体中丛枝细胞发育正常。研究展望激素如何调控丛枝菌根共生的研究仍处于起步阶段。随着转基因和基因编辑技术(如Crispr/cas9系统介导的基因敲除技术)的快速发展以及通过菌根植物的基因组、转录组、蛋白质和代谢组数据的挖掘,丛枝菌根共生中的众多科学问题以及与其他植物-微生物互作系统等问题都将一一得到解答。  相似文献   

7.
AM真菌与紫云英Ri T-DNA转化根双重培养体系的建立   总被引:1,自引:0,他引:1  
曹玲  赵斌 《土壤学报》2011,48(1):212-216
丛枝菌根(Arbuscular mycorrhiza,AM)真菌是一类古老的植物共生真菌,与植物约有4亿年共生史,能与80%以上的陆生维管植物形成互惠共生体—丛枝菌根,可以改善植物对磷素营养的吸收,增强植物的抗逆性、抗病力或耐病力,与根瘤菌共同作用于豆科植物促进豆科植物正常的生长发育,提高产量,在自然生态系统和实践应用中发挥着重要作用。  相似文献   

8.
刘平  林会  赵斌 《土壤学报》2013,50(1):208-213
丛枝菌根(Arbuscular mycorrhiza,AM)真菌是一种古老的植物共生真菌,与植物约有4亿多年的共生史[1-2],能与80%以上的陆生植物形成共生体一丛枝菌根.它能促进宿主植物吸收土壤中矿质元素,增加植物的抗逆性,提高作物产量,调节宿主的代谢活动,促进植物生长,改善作物品质等[3-4].  相似文献   

9.
烟草与丛枝菌根真菌的共生效应研究进展   总被引:1,自引:0,他引:1       下载免费PDF全文
丛枝菌根(Arbuscular mycorrhiza,AM)真菌是陆地生态系统中广泛存在的一类专性共生土壤微生物,是根系土壤区域中重要的功能菌群之一。AM真菌可侵染植物根系形成丛枝菌根共生体,改变植物根系形态和改善营养状况,从而提高宿主植物的生长发育、产量、质量和抗逆性。目前从烟草根系土壤分离报道的AM真菌已达13属54种,显示出烟草(Nicotiana tobacum L.)栽培的潜在AM真菌资源较为丰富。围绕烟草与AM真菌的共生效应,总结了影响AM真菌侵染和定殖烟草根系的主要因素,阐述了AM真菌对烟草生长、抗性生理及品质的影响,并对PGPR与AM真菌的协同作用进行了简要回顾,最后讨论了该领域存在的不足及今后展望;旨在为菌根技术运用于烟草栽培提供参考。  相似文献   

10.
菌根植物适应低磷胁迫的分子机制   总被引:1,自引:1,他引:0  
丛枝菌根 (AM) 真菌能够和绝大多数陆生植物建立共生体系,对于植物适应低磷胁迫具有重要作用。已有很多研究从不同角度揭示了宿主植物和AM真菌协同适应低磷胁迫的生理机制,并已深入到分子和信号水平。本文归纳了近年来相关研究成果,从磷胁迫信号感知、有机酸分泌、磷酸酶与激素合成相关基因、磷酸盐转运蛋白基因、转录因子与小分子物质miRNA等若干方面讨论了菌根共生体系响应和适应磷胁迫的分子机理,重点介绍了1) 环境磷浓度作为营养信号诱发菌根植物的生理响应过程及其在共生体系建立中的关键作用;2) AM真菌调节植物激素平衡进而影响植物生长发育和根系构型的生理机制;3) 丛枝菌根涉及的植物、真菌以及菌根特异诱导植物产生的磷酸盐转运蛋白基因在磷酸盐摄取中的特殊作用及可能调控机制;4) 转录因子作为感知磷胁迫信号和调控转录表达水平的枢纽,在增强植物适应磷胁迫能力方面的重要贡献。这些因素既单独作用又相互关联,共同构成菌根植物适应磷胁迫的分子调控网络。未来需要着重加强菌根共生界面的磷转运机制、菌根植物适应低磷胁迫的转录因子调节,以及各调控因子相互作用研究,从而全面揭示菌根植物适应低磷胁迫的分子调控网络,为发展和应用菌根技术调控植物磷营养奠定理论基础。  相似文献   

11.
秦华  白建峰  徐秋芳  李永春 《土壤》2015,47(4):704-710
以摩西球囊霉(Glomus mosseae)为供试菌种,在光照培养箱内利用分室根箱研究丛枝菌根真菌菌丝对多氯联苯(polychlorinated biphenyls,PCBs)污染土壤的修复效应及其机理。试验设置接种丛枝菌根真菌的处理以及不接种的对照,选用美国南瓜(Cucurbita pepo L.)为供试植物,在南瓜生长40天后将接种菌根真菌处理的菌丝室土壤从尼龙网向外水平分为4层取样,测定PCBs及磷脂脂肪酸含量。结果表明:菌丝可以穿越尼龙网影响菌丝室土壤,且距离尼龙网越远菌丝量越低;菌丝显著促进了土壤微生物量(P0.05),并改变了不同土层土壤微生物群落结构;接种菌根真菌处理各土层PCBs降解率为35.67%~57.39%,均显著高于对照的17.31%,相关分析结果表明土壤三氯、四氯联苯以及PCBs总量与菌丝量呈极显著负相关(P0.01);菌丝际土壤微生物量,特别是细菌生物量与土壤三氯联苯含量呈显著负相关(P0.05)。可见,菌丝通过影响菌丝际土壤微生物群落结构及生物量,促进三氯及四氯联苯降解,从而提高土壤PCBs修复效率。  相似文献   

12.
The development of communities of arbuscular mycorrhizal fungi (AMF) was investigated in the subalpine foreland of the glacier Morteratsch located at approx. 1900–2100 m a.s.l. near Pontresina (Engiadin’ Ota, Switzerland). In particular, we asked if the succession of AMF communities follows or precedes the primary plant succession, and we checked the mycorrhizal status of the pioneer plant Epilobium fleischeri. Soil samples were taken at pioneer and dense grassland sites established during the last hundred years representing different periods of glacier retreat: 1875–1900, 1940–1950, 1970–1980 and 1990–2000. Extraradical hyphal length densities and AMF spore populations were analyzed in soil samples. Spore formation and mycorrhizal root colonization were monitored in trap cultures grown on Trifolium pratense, Lolium perenne, Plantago lanceolata and Hieracium pilosella or on E. fleischeri over 14 months. We found that E. fleischeri is strongly arbuscular mycorrhizal, but plants in closest distance to the glacier (glacier retreat in the last 4–6 years before sampling) were non-mycorrhizal. Spore densities and root colonization in trap cultures were generally low in samples from glacier stage 1990–2000. Highest spore density and colonization were found for the sites ice-free since 1970–1980, whilst highest AMF species richness and hyphal length densities were found at the sites ice-free since 1875–1900. Our findings show an establishment of a few AMF pioneer species (e.g. Diversispora versiformis and Acaulospora punctata) within 5–10 years and species rich AMF communities at sites ice-free for 100 years (28 species). Their succession generally follows the succession of the plant communities. We conclude that AMF pioneer species might be mainly distributed by wind transport while other AMF fungi (e.g. Glomus rubiforme and Glomus aureum) rather need a below-ground hyphal network to invade new areas.  相似文献   

13.
The significance of arbuscular mycorrhizal fungi (AMF) in soil remediation has been widely recognized because of their ability to promote plant growth and increase phytoremediation efficiency in heavy metal (HM) polluted soils by improving plant nutrient absorption and by influencing the fate of the metals in the plant and soil. However, the symbiotic functions of AMF in remediation of polluted soils depend on plant–fungus–soil combinations and are greatly influenced by environmental conditions. To better understand the adaptation of plants and the related mycorrhizae to extreme environmental conditions, AMF colonization, spore density and community structure were analyzed in roots or rhizosphere soils of Robinia pseudoacacia. Mycorrhization was compared between uncontaminated soil and heavy metal contaminated soil from a lead–zinc mining region of northwest China. Samples were analyzed by restriction fragment length polymorphism (RFLP) screening with AMF-specific primers (NS31 and AM1), and sequencing of rRNA small subunit (SSU). The phylogenetic analysis revealed 28 AMF group types, including six AMF families: Glomeraceae, Claroideoglomeraceae, Diversisporaceae, Acaulosporaceae, Pacisporaceae, and Gigasporaceae. Of all AMF group types, six (21%) were detected based on spore samples alone, four (14%) based on root samples alone, and five (18%) based on samples from root, soil and spore. Glo9 (Rhizophagus intraradices), Glo17 (Funneliformis mosseae) and Acau3 (Acaulospora sp.) were the three most abundant AMF group types in the current study. Soil Pb and Zn concentrations, pH, organic matter content, and phosphorus levels all showed significant correlations with the AMF species compositions in root and soil samples. Overall, the uncontaminated sites had higher species diversity than sites with heavy metal contamination. The study highlights the effects of different soil chemical parameters on AMF colonization, spore density and community structure in contaminated and uncontaminated sites. The tolerant AMF species isolated and identified from this study have potential for application in phytoremediation of heavy metal contaminated areas.  相似文献   

14.
Glyphosate is the most widely used herbicide in the world, but its effects on non-target organisms, such as arbuscular mycorrhizal fungi (AMF), are unclear. No studies have been found that made reference to effects of glyphosate on AMF spore viability despite its importance as a source of propagules for the perpetuation and spread of AMF in the system. The objective of this study was to evaluate the effect of glyphosate application on AMF spore viability, and their ability to colonize roots. Soil samples were collected from a grassland area located in the Flooding Pampa region (Argentina). We evaluated three herbicide rates: 0, 0.26 and 1× recommended field rate, 10 and 30 days after application. Part of the soil from each tray was used to estimate the spore viability, and the remainder was used as substrate for growing Lolium multiflorum Lam. One month after sowing, total root colonization and percentage of arbuscules and vesicles were determined. The spore viability in herbicide untreated soils was between 5.8- and 7.7-fold higher than in treated soils. This reduction was detected even when the lower rate was applied. Root colonization was significantly lower in plants grown in glyphosate treated soil than in untreated ones. A decrease in arbuscular colonization (but not in vesicles) was found in plants grown in soils treated with the highest herbicide rate. That would indicate that symbiosis functionality was affected, given that arbuscules are the main site for host–fungus nutrient exchange. The results indicate that soil residence time of glyphosate and/or its degradation products was enough to reduce AMF spore viability and their ability to colonize roots. This decrease in propagules viability may affect plant diversity, taking into account the different degrees of mycorrhizal dependency between plant species that may coexist in grassland communities.  相似文献   

15.
类黄酮对AM真菌孢子萌发和早期生长的影响   总被引:2,自引:0,他引:2  
李杨  赵斌 《土壤学报》2008,45(4):710-717
研究了离体培养条件下Quercetin、Naringin、Rutin、Umbelliferon、Biochanin A、Zeatin Riboside、Fla-vanon、Apigenin、Genistein、Formononetin等10种类黄酮化合物对Gigaspora margarita和Glomus geosporum孢子萌发及菌丝发育的影响。结果表明,Quercetin、Rutin促进Gi.margarita早期发育,在0.5~8.0μmol L-1浓度范围,Quercetin对菌丝生长、菌丝分枝及辅助细胞形成促进作用明显,菌丝长度、菌丝分枝数及辅助细胞群与对照组相比提高到2~3倍,其他类黄酮对Gi.margarita孢子早期生长无明显影响。在一定浓度条件下,Formononetin、Genistein和Naringin促进Gl.geosporum孢子萌发、菌丝生长及分枝,Apigenin、Flavanon和Naringin刺激次生孢子的形成,而Biochanin A仅促进其孢子萌发。类黄酮对AM真菌孢子发育种属差异性影响取决于类黄酮种类及其使用浓度,不同的类黄酮分别在AM真菌孢子萌发、菌丝生长及菌丝分化等不同发育事件中参与作用。研究类黄酮对AM真菌早期发育的影响机制有助于理解微生物与植物之间的相互作用。  相似文献   

16.
To capitalize on the benefits offered by arbuscular mycorrhizal fungi (AMF) in agricultural systems, the effect of low soil temperature has to be taken into consideration over large areas of the planet. However, the effect of suboptimal root‐zone temperatures on AMF colonization is poorly understood. It has been suggested that it depends on the host plant species. We hypothesized that this interdependence is a function of the parameter used to assess the presence of AMF in the roots. In a pot experiment with non‐sterilized soil, we investigated the influence of three soil temperatures (10, 15, and 20°C) on the progress of root colonization of four host plant species (Ornithopus compressus, Lolium rigidum, Triticum aestivum, and Zea mays) by indigenous AMF. Plant root density, arbuscular colonization rate (AC) and colonized root density (CRD) were assessed 14, 28, and 42 d after sowing. Based on CRD, the effect of temperature on the progress of root colonization by AMF was independent of the host plant species. The apparent influence of the host plant species was only due to the species‐specific effect of soil temperature on root growth and therefore on AC. The host plant species only determined the minimum temperature for the AM colonization initiation, possibly due to species‐specific response of root growth and exudation to cool temperatures.  相似文献   

17.
《Applied soil ecology》2007,35(2-3):200-208
The temporal and spatial dynamics of arbuscular mycorrhizal fungi (AMF) were investigated in Indian Thar Desert. Soil samples under Mitragyna parvifolia were collected from July 2003 to June 2004. AMF colonization and spore density were used to compare the responses of AMF to different abiotic parameters. The mean percent colonization and spore density of AMF reached maximal values in rainy and summer seasons, respectively. Vesicular and hyphal colonizations were positively correlated with soil organic carbon content. AMF spore density was positively correlated with soil pH and negatively correlated with Olsen P content. A high Shannon–Weiner diversity index of AMF was observed in Thar Desert. A total of fifteen AMF species were associated with M. parvifolia. Percent spore density and species richness suggest that the genus Glomus was the predominant AMF under Thar Desert environment. The reasons for the observed variations are discussed.  相似文献   

18.
目前人工湿地在污水处理中的应用日益广泛,围绕丛枝菌根真菌(arbuscular mycorrhiza fungi,AMF)对提高人工湿地除磷、除氮、降解有机物以及运行稳定性等方面的潜力进行了评述,同时结合当前AMF研究现状,针对如何使AMF在人工湿地中发挥最优作用,从人工湿地的类型、运行方式、植物种类、菌种组成及污水水质与湿地基质等5个方面进行了系统分析。  相似文献   

19.
以菲和芘为多环芳烃(PAHs)代表物,以紫花苜蓿(Medicago sativa L.)为宿主植物,选用幼套球囊霉(Glomus etunicatum, Ge)、摩西球囊霉(Glomus mosseae,Gm)和层状球囊霉(Glomus lamellosum,Gla)3种丛枝菌根真菌(AMF),研究了接种AMF下土壤中AMF菌丝密度、球囊霉素含量与PAHs去除率的关系。35~75 d,接种Ge、Gm、Gla处理的土壤中菌丝密度、总球囊霉素含量、易提取球囊霉素含量均随时间延长而显著增大,与不接种对照相比,75 d时接种Ge、Gm、Gla处理的土壤中易提取球囊霉素含量提高了48.58%、55.99%和50.23%,总球囊霉素含量则提高了38.75%、50.95%和46.12%。接种AMF促进了土壤中菲和芘的去除,随着时间(35~75 d)延长,接种Ge、Gm、Gla处理的土壤中菲去除率分别高达83.4%~92.7%、82.1%~93.8%、86.9%~93.4%,芘去除率达42.2%~63.5%、43.7%~69.2%、44.6%~66.4%。接种Ge、Gm和Gla处理土壤中AMF菌丝密度、总球囊霉素含量均与土壤中菲和芘的去除率之间存在极显著正相关关系,表明接种AMF提高了土壤中AMF菌丝密度和总球囊霉素含量,并促进了土壤中PAHs的去除。研究结果为阐明丛枝菌根修复PAHs污染土壤的规律及机理提供了依据。  相似文献   

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