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1.
温杨雪  赵博  罗巧玉  贾云龙  冯涛  王强 《菌物学报》2021,40(10):2562-2578
超载过牧以及全球气候变化等导致大部分青藏高原高寒草地呈现持续退化态势。青藏高原高寒草地退化致使地上植物群落逐渐发生更替,地下土壤微生物群落多样性和丰富度发生改变。本文旨在探析青藏高原高寒草地丛枝菌根(arbuscular mycorrhizal,AM)真菌的分布特征、对近自然恢复的生理生态效应及其作用机制。青藏高原高寒草地中已报道4目14属61种AM真菌,约占已知AM真菌物种的20%。高寒草地禾本科植物根围AM真菌物种丰度最高,而莎草科植物根围AM真菌孢子密度最高。3种高寒草地植被类型中,高寒草原AM真菌丰度最高(33种),山地灌丛草原次之(32种),高寒草甸最低(22种)。高寒草原以光壁无梗囊霉Acaulospora laevis和闪亮和平囊霉Pacispora scintillans为优势种,山地灌丛草原以摩西斗管囊霉Funneliformis mosseae为优势种,高寒草甸以光壁无梗囊霉A. laevis、近明球囊霉Claroideoglomus claroideum和闪亮和平囊霉P. scintillans为优势种。高寒草地土著AM真菌与植物构建的菌根网络可以通过调节营养元素吸收、分配,促进植物建植和生长;但是毒杂草入侵可以改变土著AM真菌物种多样性和菌根网络,限制本地植被的实际生态位扩张。退化高寒草地中,AM真菌群落具有高的环境适应性和恢复力,其不仅调控地上植物群落建植和多样性,同时AM真菌建植也增加了代谢产物-球囊霉素相关土壤蛋白产生,进而协同改善地下土壤微生态系统,为退化高寒草地早期植被恢复塑造土壤生境。因此,AM真菌在退化高寒草地近自然恢复中具有较大的应用潜力。  相似文献   

2.
西藏高山草原AM真菌生态分布   总被引:4,自引:1,他引:3  
对西藏高原37种草地植物(建群种或常见种)70个带根土样的AM真菌进行了研究.结果表明:1)在所分离到的5属35种AM真菌中,球囊霉属、无梗囊霉属、盾巨孢囊霉属真菌分别为18、9、6种,内养囊霉属、类球囊霉属各1种.其中,藏南、藏北草原AM真菌分别为4属23种、4属22种,Shannon指数分别为2.31和2.75,但藏北草原AM真菌孢子密度、种的丰度显著高于藏南.2)不同生态区域AM真菌呈共有种较少、特有种较多、优势种差异较大的分布特征.3)高寒草原、山地草甸、高寒草甸草原AM真菌Shannon指数分别为1.91、1.83、1.80,呈严重退化态势的温性草原仅为1.64;海拔4000~4600 m地带,种的丰度最高,海拔4600~5220 m 地带,真菌Shannon指数和物种均匀度最高,分别为2.42和0.79;4)球-囊霉属真菌在不同海拔段均为优势属,但在海拔<4000 m地带相对多度较高;无梗囊霉属主要分布于海拔>4000 m地带;盾巨孢囊霉属主要分布于海拔3500~5220 m地带;类球囊霉属主要见于海拔4000~5220 m的藏北高寒草甸草原,少量见于高寒草原环境;内养囊霉属仅见于海拔3500~3700 m的藏南温性草原.  相似文献   

3.
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   

4.
何荣健  明燕  姚莉梅  朱青青  江龙 《菌物学报》2021,40(10):2843-2853
为探析和比较梵净山国家自然保护区矮林生态系统中丛枝菌根(arbuscular mycorrhizal,AM)真菌群落特征,对6种山顶苔藓矮林群落(山樱-山矾Prunus-Symplocos、杜鹃-槭树Rhododendron-Acer、花楸-杜鹃Sorbus-Rhododendron、槭树Acer、黔稠Cyclobalanopsis stewardiana、杜鹃Rhododendron)土壤进行AM真菌分离、鉴定和分析。结果表明:梵净山山顶苔藓矮林群落共有13属32种AM真菌,包括无梗囊霉属Acaulospora 13种、球囊霉属Glomus 5种、近明球囊霉属Claroideoglomus 2种、多样孢囊霉属Diversispora 2种、隔球囊霉属Septoglomus 2种、原囊霉属Archaeospora 1种、双型囊霉属Ambispora 1种、内养囊霉属Entrophospora 1种、和平囊霉属Pacispora 1种、硬囊霉属Sclerocystis 1种、西维丁囊霉属Sieverdingia 1种、盾巨孢囊霉属Scutellospora 1种和巨孢囊霉属Gigaspora 1种,其中无梗囊霉属的分离频率、相对多度和重要值最高,分别是100%、65.90%和82.95%,为矮林区域的优势属,柯氏无梗囊霉为该区域的优势种;不同矮林间AM真菌群落结构组成差异显著,槭树矮林的孢子密度、菌根侵染率和Shannon-Wiener指数显著高于其他5种植物群落,黔稠矮林的孢子密度和物种丰富度最低,杜鹃矮林的AM真菌Shannon-Wiener指数和Simpson指数均为所有植物群落中最低,表明不同矮林类型对AM真菌群落结构具有重要影响。  相似文献   

5.
为了解我国北方不同草原类型中针茅根部内生真菌的群落结构及多样性变化,从新疆、甘肃、内蒙古3省(区)选择了6种不同草原类型(亚高山草甸、高山草甸、戈壁、荒漠草原、典型草原和草甸草原),进行针茅根部组织内生真菌的研究.共分离得到针茅根部内生真菌213株,根据序列的相似性(以97%为阈值),共获得51个真菌分类操作单元(OTUs),覆盖了4门7纲23科27属.在门的水平上子囊菌门真菌为绝对优势菌群,占分离真菌总数的93.4%,在各草原类型中均有分布;6种草原类型中针茅根部内生真菌的优势属差别较大,仅子囊菌门的镰孢菌属为各草原类型共有优势属,占分离真菌总数的41.3%,亚高山草甸的微结节霉属、高山草甸的Saccharicola和短梗霉属、戈壁的弯孢属和根霉属以及草甸草原的木霉属,为各草原类型中针茅根部内生真菌的优势属.高山草甸针茅根部内生真菌群落覆盖的门和属最多,Margalef丰富度指数和香农多样性指数最高,均匀度指数仅次于荒漠草原;而荒漠草原的Margalef丰富度指数最低,典型草原的多样性指数和均匀度指数最低.高山草甸和荒漠草原的内生真菌群落结构与其他草原类型之间的相似性系数都较低,分别为0.12~0.25和0.13~0.22,其他几种草原类型之间相似性相对较高,尤其是典型草原和草甸草原之间相似性系数为0.60.冗余分析(RDA)表明,海拔和纬度是影响6种草原类型中针茅根部内生真菌群落结构变化的主要环境因子.  相似文献   

6.
青岛胶州湾四种类型湿地AM真菌多样性   总被引:1,自引:0,他引:1  
对青岛胶州湾4种类型湿地(盐田、滩涂、湖泊和河口)中芦苇Phragmites communis、香蒲Typha orientalis和碱蓬Suaeda glauca 根围土壤中丛枝菌根(arbuscular mycorrhizal,AM)真菌进行孢子分离与鉴定,分析湿地生态系统中植物根围AM真菌群落特征。共分离到AM真菌5属10种,包括斗管囊霉属Funneliformis 2种、无梗囊霉属Acaulospora 3种、近明球囊霉属Claroideoglomus 2种、球囊霉属Glomus 1种、巨孢囊霉属Gigaspora 2种,其中,斗管囊霉属Funneliformis及地斗管囊霉Funneliformis geosporum的分离频度和相对多度最高,分别为湿地中AM真菌优势属和优势种。滩涂和河口湿地中植物AM真菌侵染率显著高于湖泊和盐田湿地植物,AM真菌孢子密度以滩涂湿地最高(572个/20mL),湖泊湿地最低(220个/20mL);滩涂湿地的种丰度和Shannon-Wiener指数最高,分别为3.8和1.2。从植物种类来看,AM真菌侵染率总体呈现出香蒲>碱蓬>芦苇,AM真菌孢子密度以香蒲最高,芦苇最低,植物种类对AM真菌种丰度和Shannon-Wiener指数影响不显著(P>0.05)。二因素方差分析和典型RDA相关分析表明,寄主植物种类对AM真菌孢子密度有一定影响,但湿地类型对AM真菌多样性的影响更为显著(P<0.05),胶州湾湿地土壤因子Ca 2+、速效P含量与AM真菌孢子密度、物种丰度和多样性指数显著负相关,而速效K、Na +、pH与其显著正相关。结果表明植物种类主要影响AM真菌孢子密度,AM真菌多样性受植物种类和湿地类型综合影响,滩涂湿地较丰富的AM真菌多样性可能与该湿地较良好的理化性质有关。  相似文献   

7.
在对西藏高原北部针茅草地根围土壤中的丛枝菌根(AM)真菌种类分离鉴定基础上,研究了藏北针茅草地的土壤质地、pH、有机质和有效磷含量对AM真菌孢子密度、分离频度、相对多度、重要值、物种多样性指数和均匀度的影响.结果表明: 针茅草地根围土壤中共分离鉴定出AM真菌3属15种,其中,球囊霉属9种、无梗囊霉属6种、盾巨孢囊霉属1种.球囊霉属和无梗囊霉属为藏北针茅草地AM真菌的优势属;近明球囊霉和光壁无梗囊霉为藏北高寒草原针茅属植物根围AM真菌的优势种.不同质地土壤中AM真菌孢子密度、分离频度、相对多度和重要值均表现出球囊霉属>无梗囊霉属>盾巨孢囊霉属的趋势;土壤pH值对AM真菌种群组成无明显影响,球囊霉属和无梗囊霉属真菌分离频度、相对多度和重要值随土壤pH升高而增加,盾巨孢囊霉属则呈现相反趋势;不同土壤有机质含量范围内,AM真菌孢子密度等各项指标均呈球囊霉属>无梗囊霉属>盾巨孢囊霉属,而AM真菌属的分布没有明显规律;土壤有效磷含量对AM真菌种丰度和孢子密度影响较小.研究区域内AM真菌物种多样性指数和均匀度随着土壤有效磷含量升高而增加.  相似文献   

8.
蒙古沙冬青伴生植物AM真菌的空间分布   总被引:1,自引:0,他引:1  
进一步探究荒漠植物与AM(arbuscular mycorrhiza)真菌共生关系及其生态适应性,为以蒙古沙冬青为建群种适生区的植被恢复与生态改良提供依据。于2013年6月在内蒙古荒漠带选取以蒙古沙冬青为建群种的3个样地乌海、磴口和阿拉善,从每个样地选择2种主要伴生植物,按0—10、10—20、20—30、30—40、40—50 cm共5个土层采集土样和根样,研究了蒙古沙冬青伴生植物AM真菌空间分布及其与土壤因子的关系。从梭梭(Haloxylon ammodendron)、油蒿(Artemisia ordosica)、柠条锦鸡儿(Caragana korshinskii)和蒙古扁桃(Amygdalus mongolica)4种伴生植物根围土壤共分离鉴定4属25种AM真菌,其中球囊霉属(Glomus)14种,无梗囊霉属(Acaulospora)7种,管柄囊霉属(Funneliformis)3种,盾巨孢囊霉属(Scutellospora)1种,优势菌种为网状球囊霉(Glomus reticulatum),AM真菌属种分布具有不均衡性和地域性。4种伴生植物根系均能与AM真菌形成I-型(intermediate type)丛枝菌根,其共生程度和定殖规律具有明显空间异质性。AM真菌种数随土层深度增加而下降。AM真菌最大定殖率在10—30 cm土层,最大孢子密度在10—20 cm土层。相关性分析表明,AM真菌菌丝与土壤有机C极显著正相关(P0.01),与易提取球囊霉素(EEG)显著负相关(P0.05);孢子密度与有机C、碱性磷酸酶极显著负相关(P0.01),与碱解N极显著正相关(P0.01)。主成分分析表明,土壤有效P、酸性磷酸酶、碱性磷酸酶和总球囊霉素(TEG)等土壤因子能综合反映内蒙古荒漠带营养状况。TEG和EEG平均含量分别为4.76 mg/g和1.62 mg/g,占土壤有机C平均含量为61.26%和20.8%,说明在贫瘠荒漠环境中球囊霉素是土壤有机碳库重要来源和组成部分。  相似文献   

9.
我国洛阳与菏泽牡丹主栽园区AM真菌多样性研究   总被引:4,自引:1,他引:3  
为探明我国特有花卉牡丹 (Paeonia suffruticosa) 根围内的丛枝菌根(AM)真菌资源状况, 作者对河南省洛阳市与山东省菏泽市牡丹主产区土壤中的AM真菌进行了调查。共分离到AM真菌5属35 种, 其中球囊霉属(Glomus)在各采样点相对多度最高, 其次是无梗囊霉属(Acaulospora)。两地土壤中AM真菌种的丰度、孢子密度和物种多样性指数等存在差异: 菏泽赵楼牡丹园AM真菌种的孢子密度最高,而其种的丰度最低; 洛阳矬里牡丹种苗基地的孢子密度最低; 菏泽种苗基地的Shannon-Wiener指数显著高于其他样地。地球囊霉(Glomus geosporum)是洛阳王城公园和菏泽赵楼牡丹园的优势种; 缩球囊霉(Glomus constrictum)为洛阳土桥花木基地、洛阳牡丹园、菏泽牡丹种苗基地和菏泽赵楼牡丹园的优势种。本研究结果表明我国牡丹主栽园区AM真菌具有丰富的多样性。  相似文献   

10.
青藏高原30个点湖泊的孢粉记录综合研究显示: 在进入全新世之前(12 ka BP以前),除最东南部外,高原从东到西均发育为荒漠草原植被.全新世早期(12.0-9.0 ka BP)高原东南部(104°-98° E)为落叶阔叶林/针阔叶混交林; 中部(98°-92° E)为草甸或灌丛草甸,再向西至80° E左右为草原植被; 全新世中期(9.0-3.2 ka BP)高原由东向西古植被依次发育为针阔混交林和硬叶阔叶林(104°-98° E)→针阔混交林(98°-94° E)→灌丛草甸(94°-92° E)→草原(92°-80° E);全新世晚期(3.2 ka BP以后)由东向西古植被依次为硬叶阔叶林→针阔混交林→草甸→草原→荒漠.  相似文献   

11.
Arbuscular mycorrhizal (AM) fungal spore communities and distribution patterns were surveyed in montane scrub grassland, alpine steppe, and alpine meadow sites at altitudes ranging from 3,500 to 5,200 m a.s.l. on the Tibetan Plateau. Thirty-two representative soil samples were collected from the root zone of the dominant and common plant species in late May 2004. Twenty-three AM fungal species representing six genera (Acaulospora, Entrophospora, Glomus, Pacispora, Paraglomus, and Scutellospora) were detected and species richness varied from 5.3 ± 0.8 to 10.5 ± 2.5 per site. Some AM fungal species were restricted to one vegetation type and Glomus mosseae, Glomus intraradices, and Scutellospora calospora were detected in all three vegetation types. Glomus species were found to be the most frequent and abundant in all three vegetation types. Acaulospora occurred mostly in the alpine steppe and alpine meadow. Scutellospora occurred mostly in montane scrub grassland. At the species level, Glomus mosseae was dominant in the montane scrub, Acaulospora laevis and Pacispora scintillans were dominant in the alpine steppe, and Acaulospora laevis, Pacispora scintillans, and Glomus claroideum dominated the alpine meadow. It was evident from the distribution pattern of AM fungi in the different vegetation types that the abundance and diversity of AM fungal species were lowest in the montane scrub grassland than the other two plant communities. Climatic conditions, especially temperatures, and intensity of land use may be the most important factors influencing the AM fungal community.  相似文献   

12.
The influence of plant functional groups and moderate seasonality on arbuscular mycorrhizal (AM) fungal status (root colonization and spore density) was investigated during 13 consecutive months in a chronosequence of succession in southern Brazil, consisting of grassland field, scrub vegetation, secondary forest and mature forest, in a region of transition from tropical to subtropical zones. AM root colonization and spore density decreased with advancing succession and were highest in early successional sites with grassland and scrub vegetation, intermediary in the secondary forest and lowest in the mature forest. They were little influenced by soil properties, but were sufficiently influenced by the fine root nutrient status and fine root traits among different functional plant groups. AM root colonization and spore density were higher during the favourable plant growth season (spring and summer) than during the less favourable plant growth season (autumn and winter). Spore density displayed significant seasonal variation at all sites, whilst root colonization displayed significant seasonal variation in grassland, scrub and secondary forest, but not in mature forest. The data suggest that (1) different plant functional groups display different relationships with AM fungi, influencing their abundance differentially; (2) plant species from early successional phases are more susceptible to AM root colonization and maintain higher AM sporulation than late successional species; (3) fine root traits and nutrient status influence these AM fungal attributes; and (4) higher AM spore production and root colonization is associated with the season of higher light incidence and temperature, abundant water in soil and higher plant metabolic activity.  相似文献   

13.
Most plant species in mixed grassland vegetation are colonized by arbuscular mycorrhizal (AM) fungi. Previous studies have reported differences in host preferences among AM fungi, although the fungi are known to lack host specificity. In the present study, the distribution of phylogenetic groups of AM fungi belonging to a clade of Glomus species was studied in five plant species from a coastal grassland in Denmark. The occurrence of the fungi was determined by PCR analyses of fungal large subunit ribosomal DNA sequences amplified from root fragments using a specific primer set. The results showed that the dominant Glomus species were able to colonize all the studied plant species, supporting the view that the AM fungi represent a large underground interconnecting mycelial network.  相似文献   

14.
Gai JP  Feng G  Cai XB  Christie P  Li XL 《Mycorrhiza》2006,16(3):191-196
We report for the first time the arbuscular mycorrhizal (AM) status of native plant species and AM fungal diversity in the grasslands of southern Tibet. A total of 51 soil samples were collected from the rhizospheres of the dominant plant species, and AM fungal structures were observed in 18 (82%) of 22 plant species examined. Vesicles and aseptate hyphae were the structures most frequently observed in the plant roots. After trap culture for 5 months, 25 AM fungal taxa were identified in the soil samples collected, of which nine belonged to Glomus, ten to Acaulospora, one to Entrophospora and five to Scutellospora. The frequency of occurrence of different genera and species varied greatly. Glomus was the dominant genus, and the most frequent and abundant species was Glomus mosseae. Over the whole sampling area, spore density in the rhizosphere soil of different host plant species ranged from 2 to 66 per 20 g air-dried soil. Overall AM fungal species richness was 2.10 and species diversity was 2.35. AM fungal diversity was also compared among the four different land use types (farmland and normal, disturbed and highly disturbed montane scrub grassland). Spore densities in the farmland and normal grassland were much higher than in the grasslands that had been degraded to varying degrees. The species richness in normal grassland was the highest of the four land use types examined. Species diversity varied from 1.99 to 0.94 and was highest in normal grassland, intermediate in degraded grassland and farmland, and lowest in the highly disturbed grassland.  相似文献   

15.
新疆阿勒泰山两河源自然保护区地面生地衣的物种多样性   总被引:1,自引:0,他引:1  
阿勒泰山地是我国著名水系额尔齐斯河和乌伦古河的发源地,该山地地衣植物的研究在中国乃至中亚都占有非常重要的科学地位。新疆阿勒泰山两河源自然保护区位于阿勒泰山东段,气候在新疆最为潮湿,其地衣植物种类十分丰富。作者在该保护区选择6个植被带类型,即山地荒漠带、山地草原带、针阔混交林带、针叶林带、亚高山草甸带、高山草甸带,研究了其地面生地衣植物的物种多样性特征。结果表明:阿勒泰山两河源自然保护区地衣植物区系成分丰富而且复杂,共有地面生地衣植物5科6属46种,以石蕊科种类最为丰富,约32种。该地区不同植被带类型下地面生地衣植物物种的S?renson相似性系数在0.200–0.739之间,以针阔混交林和针叶林带的相似性为最高(0.739),针阔混交林和高山草甸带地衣植物物种相似性最低(0.200)。各植被带地衣优势种中白边岛衣(Cetrarialaeuigata)、林鹿蕊(Cladoniaarbuscula)、佐木氏珊瑚枝(Stereocaulonsasakii)、鳞地卷(Peltigeralepido-phora)、喇叭粉石蕊(Cladoniachlorophaea)、东方鹿蕊(Cladinagrisea)等的重要值在0.5以上,其余优势种的重要值均在0.5以下;山地森林带地衣植物物种多样性最为丰富,在整个阿勒泰山两河源自然保护区地面生地衣植物群落中占据优势地位,为该地区地衣植物多样性的分布中心,是地衣植物多样性保护的关键地区。  相似文献   

16.
荒漠柠条锦鸡儿AM真菌多样性   总被引:9,自引:2,他引:7  
贺学礼  陈烝  郭辉娟  陈程 《生态学报》2012,32(10):3041-3049
为了阐明荒漠柠条锦鸡儿(Caragana korshinskii Kom.)根围AM真菌群落组成及其分布特点,2010年7月从河北省与内蒙古交界荒漠带选择多伦湖、黑城子和二羊点3个样地,按0—10、10—20、20—30、30—40、40—50 cm 5个土层采集柠条根围土壤样品,研究了柠条根围AM真菌物种组成、生态分布及与土壤因子的相关性。共分离鉴定出4属24种AM真菌,其中球囊霉属(Glomus)16种,是3个样地共同优势属;无梗囊霉属(Acaulospora)5种,是3个样地共有属;盾巨孢囊霉属(Scutellospora)2种;多孢囊霉属(Diversispora)1种;网状球囊霉(G.reticulatum)是黑城子和多伦湖样地优势种,二羊点亚优势种;黑球囊霉(G.melanosporum)是黑城子和二羊点样地优势种,多伦湖亚优势种;二羊点的AM真菌种类和孢子密度最高;黑城子和多伦湖样地无明显差异。AM真菌孢子密度与土壤碱解N、有机质和速效P含量极显著正相关,其中土壤碱解N影响最大。结果表明,柠条根围AM真菌物种多样性丰富,具有明显空间异质性,并与土壤因子关系密切,这为进一步分离筛选优势AM真菌菌种,充分利用AM真菌资源促进荒漠柠条生长提供了依据。  相似文献   

17.
Little is known about the ecology and diversity of arbuscular mycorrhizal (AM) fungi in Arctic ecosystems. Here, the diversity and composition of the AM fungal community and its response to host plant community composition were studied in a low-Arctic meadow habitat. The natural vegetation in two low-Arctic meadow sites was manipulated. Plots with natural vegetation, monoculture and no vegetation were established. Seeds of Solidago virgaurea were sown into the plots and the AM fungal community in the seedling roots was analysed using the terminal restriction fragment length polymorphism (T-RFLP) method. The vegetation manipulation treatments affected the community composition but not the diversity of AM fungi found in S. virgaurea roots. The diversity of AM fungi was higher in S. virgaurea roots in the site with naturally higher plant species diversity. These results show that AM fungi in low-Arctic meadows are able to survive for a period of 2 yr without a host plant. This ability buffers the AM fungal community against short-term changes in host plant community composition and diversity.  相似文献   

18.
贺兰山不同海拔典型植被带土壤微生物多样性   总被引:40,自引:14,他引:26  
刘秉儒  张秀珍  胡天华  李文金 《生态学报》2013,33(22):7211-7220
土壤微生物多样性在海拔梯度的分布格局研究近年来受到和植物动物一样的重视程度,但是干旱风沙区微生物多样性在海拔梯度上的多样性分布规律尚未揭示。本研究以处于干旱风沙区的贺兰山不同海拔的六个典型植被带(荒漠草原带、山地旱生灌丛带、温性针叶林带、针阔混交林带、寒温性针叶林带和亚高山草甸带)土壤为研究对象,利用Biolog微平板法和磷脂脂肪酸甲酯法(FAMEs)系统研究微生物多样性群落特征以及在不同植被带分布规律。结果表明:土壤微生物功能多样性随海拔增加发生变化,且微生物群落结构存在显著差异。Biolog分析显示土壤微生物群落代谢活性依次是:亚高山草甸>寒温性针叶林>针阔混交林>温性针叶林>山地旱生灌丛>荒漠草原,随海拔的升高土壤微生物群落物种丰富度指数(H)和均匀度指数(E)总体上均表现出增大的趋势,差异显著(P<0.05);FAMEs分析表明不同海拔的微生物区系发生了一定程度的变化,寒温性针叶林土壤微生物磷酸脂肪酸生物标记的数量和种类均最高,且细菌、真菌特征脂肪酸相对含量也最高;土壤微生物群落结构多样性次序是:寒温性针叶林带>针阔混交林带>温性针叶林带>亚高山草甸>山地旱生灌丛>荒漠草原。本研究结果表明贺兰山海拔梯度的微生物多样性分布规律不同于已有的植物多样性“中部膨胀”研究结果,这说明在高海拔地区有更多的适合该生境的微生物存在,这对维持干旱风沙区的生态系统功能稳定性具有重要意义。  相似文献   

19.
新疆东部天山蝶类多样性及其垂直分布   总被引:5,自引:0,他引:5  
张鑫  胡红英  吕昭智 《生态学报》2013,33(17):5329-5338
2006-2008年研究了新疆东部天山蝶类多样性和垂直分布.结果表明:研究区域内共记录蝴蝶7科43属63种,占新疆已记录蝶类种数的24.80%,区系组成主要是古北种,占73%;其次是广布种,占27%,没有发现东洋种.其中蛱蝶科的物种数最多,为11属19种,蚬蝶科的物种数最少,只有1属1种.按海拔将生境分为5个垂直自然带,包括低山灌木草原带、山地森林草原带、亚高山草甸带、高山草甸带、垫状植被带.蝶类物种数和个体数排序为亚高山草甸带>山地森林草原带>低山灌木草原带>高山草甸带>垫状植被带.采用Shannon-Wiener指数和G-F指数对蝶类物种和科、属的多样性进行了分析评价,结果显示亚高山草甸带的蝶类多样性最为丰富,其次是山地森林草原带和低山灌木草原带,而高山草甸带和垫状植被带的蝶类多样性相对较低,物种和科、属多样性分析结果均一致.蝶类垂直分布明显,物种数和个体数随海拔变化的趋势类似,均为先增加后下降.蝶类区系成分随着海拔升高发生改变,广布种的比例逐渐降低,高山草甸带和垫状植被带只有古北种分布.研究结果显示,生境改变对蝴蝶群落影响明显,保护生境是保护蝴蝶生存的最主要措施.  相似文献   

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