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1.
甘肃盐碱土植物VA菌根真菌侵染研究   总被引:3,自引:2,他引:1  
对甘肃盐碱土中植物的VA菌根真菌共生状况进行研究,结果表明:在10科17种植物中,除碱蓬(Suaeda glauca Beg.)外均被菌根真菌侵染,占94.1%;盐碱土中孢子密度较高,表明甘肃盐碱土生态系统中植物对菌根真菌具有较高的依赖性,菌根真菌在盐碱土中产孢能力较强;所调查植物的VA菌根结构类型Arum型占68.75%,Pris型占31.25%;菌根结构类型与宿主植物类型有关,禾本科(Poaceae)和鸢尾科(Iridaceae)植物为P型菌根,百合科(Liliaceae)、胡颓子科(Elaeagnaceae)等其它科植物均为A型菌根;土壤类型影响了宿主植物的菌根侵染率和根际土的孢子密度,相同宿主植物在不同类型土壤中的菌根侵染率和孢子密度具有很大的差异.  相似文献   

2.
有些种子植物如莎草科、十字花科、灯心草科、藜科、石竹科等20余科,以往曾被认为不能或不易形成丛枝菌根(郭秀珍等,1989;刘润进等,2000).随着对菌根的深入研究,曾被认为是不易与菌根菌组合的湿地生植物、寄生性植物、或一年生植物都被发现是可以形成内生菌根的(Trappe等,1992).此外,Allen等(1989)研究证实,Salsola kali,Atriplex roseum等生长于沙漠、海滨的藜科植物,进行接种处理后,也能形成丛枝菌根.我们在西双版纳调查热带雨林植物的丛枝菌根状况时,偶然发现刺苋(Amaranthus spinosus Linn.)的根系受到了丛枝菌根真菌的侵染,因此,对苋科植物作了扩大采样调查.本文主要报道从热带采集的5属6种苋科植物的根受丛枝菌根真菌感染形成丛枝菌根(arbuscular mycorrhiza,AM)和这些植物根际士壤中的丛枝菌根真菌(arbuscular mycorrhizal fungi,AMF)的状况.  相似文献   

3.
金沙江干热河谷(元谋段)的丛枝菌根   总被引:11,自引:2,他引:9  
用碱解离、酸性品红染色法对金沙江干热河谷(元谋段)中生长的60种植物的丛枝菌根状况进行了调查。结果发现被调查植物中70%的植物形成丛枝菌根,干热河谷自然植物群落中的建群种大多具有丛枝菌根,一些莎草科、蓼科的植物也形成典型的丛枝菌根。丛枝菌根是干热河谷生态系统中的重要组成成分,在干热河谷的植被恢复中,必须同时考虑对地下植物共生真菌进行恢复。  相似文献   

4.
钦州湾红树林丛枝菌根初步研究   总被引:9,自引:3,他引:6  
海漆 (Excoecaria agallocha)、桐花树 (Aegiceras corniculatum)、秋茄 (Kandlia candel)、白骨壤 (Avi-cennia marina)是钦州湾分布广、生长量大的 4种红树植物 ,该项研究初步调查了丛枝菌根真菌在这四种植物根系的定居情况。在这四种植物的根际土壤均分离到丛枝菌根真菌孢子 ,其孢子密度以海漆根际的最高 ,其次为桐花树、秋茄、白骨壤。同时 ,海漆根系的侵染率和物种丰富度也最高 ,但在所取的白骨壤根样中没有观察到丛枝菌根的侵染。菌根侵染主要是以根内菌丝、胞内菌丝膨大扭曲、泡囊等形态出现。海水和土壤质地是影响菌根侵染率的主要因素。在所采土样中仅发现球囊霉属 (Glomus)、无梗囊霉属 (Acaulospora)丛枝菌根真菌 ,计有 1 7种和多个未确定种。  相似文献   

5.
丛枝菌根(AM)真菌作为一类在全球分布广泛的土壤微生物,能够与陆地上大多数的维管植物形成专性共生关系,对于植物营养吸收和生态系统功能具有重要作用.而较少量的维管植物如苋科、黎科、石竹科、十字花科等植物被认为是非菌根植物.目前,对于这些非菌根植物与AM真菌之间的相互作用关系研究少且分散,缺乏系统总结.本文综述了非菌根植物的类型以及低侵染的原因,邻体植物形成的菌丝网络对AM真菌侵染非菌根植物的影响,并探讨AM真菌和非菌根植物之间可能存在的相互作用,以及植物-AM真菌之间的物质交换及可能存在的生态功能,旨在为进一步发挥非菌根植物在脆弱生态系统的功能潜力提供新思路.  相似文献   

6.
不同林龄杉木人工林菌根侵染特征研究   总被引:2,自引:0,他引:2  
丛枝菌根真菌是一种通过土壤侵染植物根系,与寄主植物互利共生的重要有益真菌。探究不同林龄杉木林中菌根侵染状况与土壤养分的变化规律,有利于深入认识丛枝菌根真菌—杉木相互作用的养分调控因素,从而为改善杉木人工林土壤肥力、促进杉木林可持续经营提供依据。分别选取10a、25a、45a杉木纯林,分析了不同林分菌根侵染率与孢子密度及部分土壤养分因子(全磷、速效磷、全钾、速效钾)的关系。结果表明:(1)菌根侵染率与孢子密度均呈现出随林龄增大而增大的趋势,pH随林龄增大而减少的趋势;(2)根际土中磷的含量总体偏低,而且受到土壤酸化流失和丛枝菌根真菌积累的双重影响呈现出先减少后增加的趋势;(3)虽然有效钾含量随林龄变化趋势不显著,但丛枝菌根真菌能促进土壤钾的积累。因此,丛枝菌根真菌能有效调控根际土的养分动力学特征,减缓土壤酸化造成的养分流失。  相似文献   

7.
云南部分地区湿地植物的丛枝菌根初报   总被引:4,自引:0,他引:4  
用碱解离、酸性品红染色法对昆明、澄江、建水、通海、石屏、东川和禄劝等地的15个科32种湿地植物的丛枝菌根状况进行了调查,共发现有11种植物形成丛枝菌根,占34%。从湿地植物根际土壤中分离、鉴定出分属于4个属的丛枝菌根真菌共16种,无梗囊霉属(Acaulospora)和球囊霉属(Glomus)是湿地土壤中的优势类群(94%)。摩西球囊霉(G.mosseae)占孢子总数的88%,是湿地土壤中的优势种。  相似文献   

8.
山杨苗木的菌根类型及对苗木促生作用的研究   总被引:2,自引:0,他引:2  
孟繁荣  汤兴俊 《菌物系统》2001,20(4):552-555
用Glomus mosseae,G.intraradices,G.versiforme,Sclerocystis sinuosa和Pisolithus tinctorius,Cortinarius russus,Russula foetens,Lactarius insulsus等丛枝菌根真菌和外生菌根真菌各4种,对盆钵播种的山杨实生苗进行接种试验,结果表明,4种丛枝菌根真菌对山杨苗木均未发生侵染,与野外调查结果相符,与报道的杨属既有外生菌根又有丛枝菌根相悖,因此认为山杨属于非丛枝菌根类型。4种外生菌根真菌均与山杨苗木合成菌根,且促生作用明显,其中C.russus最好,苗高,地径,侧根数及整株干物重增长率分别为38.13%,20.27%,70.97%和33.39%,研究结果表明,山杨属外生菌根类型。  相似文献   

9.
都江堰地区丛枝菌根真菌多样性与生态研究   总被引:24,自引:4,他引:20       下载免费PDF全文
 调查了都江堰地区3个不同生境样地(般若寺、馒头山、龙池)中85种优势及常见植物的丛枝菌根真菌侵染率,其中78种植物(91.8%)被丛枝菌根真菌侵染。同时对其中58种植物根围土壤中丛枝菌根真菌的多样性进行分析,共分离到5属47种丛枝菌根真菌,其中球囊霉属(Glomus)35种,无梗囊霉属(Acaulospora)7种,原囊霉属(Archaeospora)1种,内养囊霉属(Entrophospora)2种,巨孢囊霉属(Gigaspora)2种。无梗囊霉属和球囊霉属是3个样地共有的优势属。光壁无梗囊霉(Acaulospora laevis)是龙池的优势种,而地表球囊霉(Glomus versiforme)是般若寺和馒头山的优势种。丛枝菌根真菌的孢子密度和种的丰度显著受到海拔相关因子影响,同时丛枝菌根真菌的种类组成也受较大影响。乔木砍伐没有显著影响丛枝菌根真菌的孢子密度和种的丰度,同时对种类组成影响也较小。根围土壤中丛枝菌根真菌的孢子密度与根系侵染率之间没有显著相关性(R2=0.024 8)。  相似文献   

10.
丛枝菌根真菌(AMF)对植物群落调节的研究进展   总被引:1,自引:0,他引:1  
职桂叶  陈欣  唐建军 《菌物学报》2003,22(4):678-682
1 引言 菌根(mycorrhiza)是土壤中的菌根真菌与高等植物营养根系形成的一种共生体,菌根的个主要的类型(即外生菌根Ectomycorrhiza、内生菌根Endomycorrhiza、内外生菌根Ectendomycorrhiza)中,内生性的丛枝状菌根(Vesicular-Arbuscular mycorrhiza,AM)是分布最广泛、最普遍的一类菌根。土壤中的丛枝菌根真菌(Abuscular mycorrhizal fungi, AMF)与高等植物营养根系形成丛枝菌根(abuscular mycorrhiza, AM),能促进宿主对土壤中矿质元素P、NK、Cu、Zn等的吸收,提高宿主根系对根部侵染病菌的抵抗能力和增强植物对干旱、高温、高盐和…  相似文献   

11.
龙脑香科植物对丛枝菌根真菌的影响   总被引:2,自引:0,他引:2  
在天然林地和温室盆栽条件下,比较研究了龙脑香科植物对丛枝菌根(Arbuscular mycorrhizas,AM)真菌孢子密度、相对多度、频度、属的组成、丰度和侵染状况等方面的影响.结果表明,用坡垒作盆栽寄主加富培养后,菌根侵染率、泡囊、丛枝和侵入点都低于原采样植物,以原坡垒土壤中栽植苗木的侵染率为最高,可达20.3%;而以望天树根围土壤栽植的苗木为最低,仅为10.6%;坡垒还不同程度地改变了原采样植物根围土壤中AM真菌孢子的密度、相对多度、频度、属的组成、丰度等.在4种土壤中,栽植坡垒苗木后,AM真菌的孢子密度都有不同程度的增长.采用与原采样相同种类的植物作为AM真菌加富培养的寄主更有利于促进AM真菌的生长发育、保持AM的多样性.  相似文献   

12.
我国北方农田土壤中AM真菌的多样性   总被引:15,自引:3,他引:12  
AM真菌是农业生态系中一类重要的土壤微生物,它在农田土壤中的发生和分布受多种环境因素的影响。为深入了解我国北方农田土壤中AM真菌的多样性规律,于2000年在河北、山东的农田土壤中采集有代表性的土样127个。通过进一步扩繁、纯化,从中分离出AM真菌5属22种,鉴定了20个种,包括一个国内新记录种沾屑球囊霉(Glomus spurcum)。分析AM真菌的多样性特点及其影响因素发现,农田土壤中以球囊霉属(Glomus)的频度最高,其次为无梗囊霉属(Acaulospora);优势种类为幼套球囊霉(Glomus etunicatum)和摩西球囊霉(Glomus mosseae).土壤速效磷含量、pH状况主要对孢子密度产生影响,对种群分布影响不大。宿主植物类型对AM真菌的侵染状况和多样性影响较大;比较玉米(Zea mays)、甘薯(Ipomoea batatas)根区AM真菌的种群组成后发现两者有所不同,但优势种一致.  相似文献   

13.
Meeting a non-host: the behaviour of AM fungi   总被引:9,自引:0,他引:9  
 Arbuscular mycorrhizal (AM) fungi are obligately biotrophic organisms that live symbiotically with the roots of most plants. The establishment of a functional symbiosis between AM fungi and host plants involves a sequence of recognition events leading to the morphological and physiological integration of the two symbionts. The developmental switches in the fungi are triggered by host signals which induce changes in gene expression and a process leading to unequivocal recognition between the two partners of the symbiosis. It has been calculated that about 80% of plant families from all phyla of land plants are hosts of AM fungi. The remaining plant species are either non-mycorrhizal or hosts of mycorrhizas other than the arbuscular type. Non-host plants have been used to obtain information on the factors regulating the development of a functional symbiosis. The aim of this present review is to highlight present-day knowledge of the fungal developmental switches involved in the process of host/non-host discrimination. The following stages of the life cycle of AM fungi are analysed in detail: spore germination, presymbiotic mycelial growth, differential branching pattern and chemotropism, appressorium formation, root colonization. Accepted: 17 June 1998  相似文献   

14.
Under defined laboratory conditions it was shown that two glucosinolate-containing plant species, Tropaeolum majus and Carica papaya , were colonized by arbuscular mycorrhizal (AM) fungi, whereas it was not possible to detect AM fungal structures in other glucosinolate-containing plants (including several Brassicaceae). Benzylglucosinolate was present in all of the T. majus cultivars and in C. papaya it was the major glucosinolate. 2-Phenylethylglucosinolate was found in most of the non-host plants tested. Its absence in the AM host plants indicates a possible role for the isothiocyanate produced from its myrosinase-catalysed hydrolysis as a general AM inhibitory factor in non-host plants. The results suggest that some of the indole glucosinolates might also be involved in preventing AM formation in some of the species. In all plants tested, both AM hosts and non-hosts, the glucosinolate pattern was altered after inoculation with one of three different AM fungi ( Glomus mosseae , Glomus intraradices and Gigaspora rosea ), indicating signals between AM fungi and plants even before root colonization. The glucosinolate induction was not specifically dependent on the AM fungus. A time-course study in T. majus showed that glucosinolate induction was present during all stages of mycorrhizal colonization.  相似文献   

15.
Changes in soil nutrient availability during long‐term ecosystem development influence the relative abundances of plant species with different nutrient‐acquisition strategies. These changes in strategies are observed at the community level, but whether they also occur within individual species remains unknown. Plant species forming multiple root symbioses with arbuscular mycorrhizal (AM) fungi, ectomycorrhizal (ECM) fungi, and nitrogen‐(N) fixing microorganisms provide valuable model systems to examine edaphic controls on symbioses related to nutrient acquisition, while simultaneously controlling for plant host identity. We grew two co‐occurring species, Acacia rostellifera (N2‐fixing and dual AM and ECM symbioses) and Melaleuca systena (AM and ECM dual symbioses), in three soils of contrasting ages (c. 0.1, 1, and 120 ka) collected along a long‐term dune chronosequence in southwestern Australia. The soils differ in the type and strength of nutrient limitation, with primary productivity being limited by N (0.1 ka), co‐limited by N and phosphorus (P) (1 ka), and by P (120 ka). We hypothesized that (i) within‐species root colonization shifts from AM to ECM with increasing soil age, and that (ii) nodulation declines with increasing soil age, reflecting the shift from N to P limitation along the chronosequence. In both species, we observed a shift from AM to ECM root colonization with increasing soil age. In addition, nodulation in A. rostellifera declined with increasing soil age, consistent with a shift from N to P limitation. Shifts from AM to ECM root colonization reflect strengthening P limitation and an increasing proportion of total soil P in organic forms in older soils. This might occur because ECM fungi can access organic P via extracellular phosphatases, while AM fungi do not use organic P. Our results show that plants can shift their resource allocation to different root symbionts depending on nutrient availability during ecosystem development.  相似文献   

16.
In view of the recently reported role of arbuscular mycorrhizas (AM) in plant invasions, we examined 63 alien plant species representing 26 families, collected from diverse habitat types in the Kashmir Himalaya, India, for the extent and type of their AM association. Based on the percent AM fungal root length colonization (% RLC), the investigated plants were categorized into five classes (class A = 0–5% RLC, class B = 6–25%, class C = 26–50%, class D = 51–75%, and class E = 76–100%). The number of species belonging to each of these classes was 7, 6, 22, 19, and 9, respectively. The AM colonization in 33 plant species was of Arum-type, 18 species was of Paris-type, and eight species harbored an intermediate type. Such baseline information on a large number of alien plants inhabiting diverse habitats in different biogeographical regions is needed for elucidating the role of AM fungi in alien plant invasions.  相似文献   

17.
以绢蒿荒漠草地的优势种绢蒿、羊茅(针茅)、苔草为研究材料,探究其根际AM真菌和根系侵染率及季节性动态变化对放牧的响应。结果表明:随放牧压力的增大,AM真菌孢子密度、物种丰富度和根系侵染率显著降低(P<0.05),多样性指数在过度放牧的条件下显著(P<0.05)降低;在同一放牧条件下,0~10 cm土壤层的孢子密度、物种丰富度和根系侵染率均显著(P<0.05)高于10~20 cm和20~30 cm土壤层,多样性指数随土壤深度的增大差异性不显著(P>0.05);不同的宿主植物对AM真菌的依赖性不同,即侵染率高低依次为绢蒿>羊茅>苔草;AM真菌孢子密度、物种丰富度和植物根系侵染率随季节的变化表现出一定的变化规律,三者均呈现"双峰"现象,在6月和9月分别达到峰值,与绢蒿荒漠草地植被的生长节律几乎同步;温度对AM真菌孢子密度、丰富度和侵染率的影响不显著,但降雨量对植物根系的侵染率有极显著(P<0.01)的影响,随降雨量的增加侵染率极显著升高。  相似文献   

18.
Abstract

Members of the Australian native perennial Fabaceae have been little explored with regard to their root biology and the role played by arbuscular mycorrhizal (AM) fungi in their establishment, nutrition and long-term health. The ultimate goal of our research is to determine the dependency of native perennial legumes on their co-evolved AM fungi and conversely, the impact of AM fungal species in agricultural fields on the productivity of sown native perennial legume pastures. In this paper we investigate the colonisation morphology in roots and the AMF, identified by spores extracted from rhizosphere soil, from three replicate plots of each of the native legumes, Cullen australasicum, C. tenax and Lotus australis and the exotic legumes L. pedunculatus and Medicago sativa. The plants were grown in an agricultural field. The level and density of colonisation by AM fungi, and the frequency of intraradical and extraradical hyphae, arbuscules, intraradical spores and hyphal coils all differed between host plants and did not consistently differ between native and exotic species. However, there were strong similarities between species in the same genus. The three dominant species of AM fungi in rhizosphere soil also differed with host plant, but one fungus (Glomus mosseae) was always the most dominant. Sub-dominant AM species were the same between species in the same genus. No consistent differences in dominant spores were observed between the exotic and native Fabaceae species. Our results suggest that plant host influences the mycorrhizal community in the rhizosphere soil and that structural and functional differences in the symbiosis may occur at the plant genus level, not the species level or due to provenance.  相似文献   

19.
Arbuscular mycorrhizae, ubiquitous mutualistic symbioses between plant roots and fungi in the order Glomales, are believed to be important controllers of plant responses to global change, in particular to elevated atmospheric CO2. In order to test if any effects on the symbiosis can persist after long-term treatment, we examined root colonization by arbuscular mycorrhizal (AM) and other fungi of several plant species from two grassland communities after continuous exposure to elevated atmospheric CO2 for six growing seasons in the field. For plant species from both a sandstone and a serpentine annual grassland there was evidence for changes in fungal root colonization, with changes occurring as a function of plant host species. We documented decreases in percentage nonmycorrhizal fungal root colonization in elevated CO2 for several plant species. Total AM root colonization (%) only increased significantly for one out of the five plant species in each grassland. However, when dividing AM fungal hyphae into two groups of hyphae (fine endophyte and coarse endophyte), we could document significant responses of AM fungi that were hidden when only total percentage colonization was measured. We also documented changes in elevated CO2 in the percentage of root colonized by both AM hyphal types simultaneously. Our results demonstrate that changes in fungal root colonization can occur after long-term CO2 enrichment, and that the level of resolution of the study of AM fungal responses may have to be increased to uncover significant changes to the CO2 treatment. This study is also one of the first to document compositional changes in the AM fungi colonizing roots of plants grown in elevated CO2. Although it is difficult to relate the structural data directly to functional changes, possible implications of the observed changes for plant communities are discussed.  相似文献   

20.
中国盐碱土壤中AM菌的生态分布   总被引:14,自引:0,他引:14  
对我国盐碱土壤中丛枝菌根(Arbuscular Mycorrhiza,AM) 菌的种属构成、生态分布状况进行了研究.结果表明,不同地区AM 菌种属构成不同,其种属组成、分布与土壤类型、碱化度和土壤有机质含量有关.盐渍化砂土、壤土和粘土中,Glomus 属的真菌数量最多,Acaulospora 属次之,而Glomus 属中的G.mosseae 则是分布最为广泛的菌种.随土壤碱化度的增加,Glomus mosseae 出现频率随之相对增加.在一定范围内有机质含量越高,土壤中AM 菌种和属的种类就越多.AM 菌的种属组成因不同寄主植物而异,其中豆科植物根围中AM 菌分布的种属数量最多.  相似文献   

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