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1.
伊贝根际微生物   总被引:3,自引:0,他引:3  
邱并生 《微生物学通报》2010,37(8):1252-1252
<正>土壤微生物是土壤中最活跃的因子,一方面是土壤天然有机体的转化者,另一方面是土壤养分的源和库,与植物营养和土壤肥力密切相关,在土壤物质和能量循环转化过程中起着重要作用。在植物的整个生长期间,根系进行着活跃的代谢作用,向根外不断分泌有机物质,这些分泌物是根际微生物的重要营养和能量来源,其成分和数量影响着根际微生物的种类和繁殖。根际微生物的数量、活性和群落结构及其变化直接影响到植物吸收水分和养分。因此,植物、土壤和微生物之间存在着相互依赖、相互作用的复杂的三边关系[1-2]。  相似文献   

2.
[目的] 不同植物对外来入侵植物的抵御能力不同,研究不同植物对入侵植物根际土壤生态的影响可为筛选入侵植物的竞争替代植物提供科学依据。[方法] 利用同质园试验,以入侵植物黄顶菊为研究对象,设置黄顶菊单种、黄顶菊与不同植物(地肤、苘麻、苏丹草、反枝苋)混种处理,采用磷脂脂肪酸分析方法来研究不同植物对黄顶菊根际土壤微生物群落结构的影响,并结合土壤养分的变化探究不同植物对黄顶菊根际土壤生态的影响。[结果] 与黄顶菊单种相比,地肤和苘麻降低了黄顶菊根际微生物的总含量,改变了黄顶菊根际微生物群落结构。地肤、苘麻能竞争性抑制黄顶菊对铵态氮的吸收,从而抑制黄顶菊的生长。[结论] 不同植物的抵御能力与其土壤生态有关,替代植物通过改变黄顶菊根际土壤微生物,抑制黄顶菊对氮的吸收,从而抑制黄顶菊的生长,实现对黄顶菊的替代控制。  相似文献   

3.
植物根系对根际微环境扰动机制研究进展   总被引:1,自引:0,他引:1  
根际微环境是构建植物与土壤交流沟通的桥梁,也是植物遭受胁迫时优先作出响应的区域。植物根系作为根际的主要调控者,根构型和根系分泌物种类、数量的改变均可对根际微生物和土壤动物种群分布及其结构造成影响。然而,土壤动物的扰动、微生物的分解作用也可改善根际土壤特性,提高植物抗逆性及养分利用效率,从而促进植物根系生长。可见,植物根系-根际动物-根际微生物之间存在复杂的互作关系。本文从根际内、外微环境出发,分析了根际外植物根系对微环境的物理和化学扰动、根际内植物根系与微生物的互作扰动、根际内植物根系和土壤动物的物理扰动、以植物根系分泌物为介质的化学扰动等方面研究进展,在此基础上,论述了根际微环境主要影响因子之间的互作机制,并对该领域的研究方向进行了展望。  相似文献   

4.
健壮植物的根部,为了保存根际微生物群落,提供了大量分泌物。对于不同种类植物来说,可分泌出糖类、氨基酸、维生素等化学物质。因而,对根际微生物的变化给予很大影响。影响植物根分泌物组成和数量的因素,有植物的种类,生育阶段,营养状态或植物根的损伤等等。所谓根际效应对微生物的选择性增殖,是受植物根部细胞和组织碎片脱落或根的分泌物,以及土壤环  相似文献   

5.
土壤微生物拥有高度多样化的群落结构,其通过与植物发生复杂的相互作用影响植物健康,也被称为植物的第二基因组。最近研究表明植物能通过改变根际分泌物的组成影响根际微生物群落的组装,反之,根际微生物群落组成的改变能够通过影响植物营养吸收和抵御生物及非生物胁迫的能力影响植物健康。除此之外,农艺管理也是影响土壤微生物群落组装方式的重要因素。但到目前为止,根际微生物与宿主植物及土壤微生物之间互作机制的研究尚不清楚。本文将从农艺管理和宿主植物对微生物群落组装的影响及根际微生物组对植物健康的影响进行总结,为增加作物产量提供机会。  相似文献   

6.
胡静  侯向阳  王珍  丁勇  李西良  李平  纪磊 《生态学杂志》2015,26(11):3482-3488
选取内蒙古典型草原大针茅为主要研究对象,研究割草和放牧干扰对其根际与非根际土壤有机碳、全氮、有效氮、全磷、有效磷含量以及微生物数量的影响.结果表明:在割草和放牧干扰下,根际土壤有机碳、全氮、有效氮含量均有不同程度的减少,根际截存效应减弱;土壤全磷由于固定性强不易向植物根部聚集,土壤全磷的根际效应不明显;土壤有效磷异质性较大,在放牧和割草干扰下有不同程度的变化,但根际和非根际间差异不显著;放牧干扰显著减少了土壤微生物的数量;土壤养分的变化与土壤微生物数量的变化关系密切,细菌和真菌的数量变化可能对土壤养分的影响更大;相对于割草,放牧干扰更易造成根际土壤养分的流失及微生物数量的减少.  相似文献   

7.
植物根际微生物群落构建的研究进展   总被引:5,自引:0,他引:5  
植物根际是指植物根系与土壤的交界面,是根系自身生命活动和代谢对土壤影响最直接、最强烈的区域,其物理、化学和生物性质不同于土体土壤。在这个区域里,与植物发生相互作用的大量微生物,被称为根际微生物。根际微生物在植物的生长发育和植物病虫害的生物防治等方面都具有十分重要的意义。本文总结了根际微生物群落构建的研究现状,介绍了根际微生物的经典和最新的研究方法,包括根箱法、同位素技术以及高通量测序、菌群定量分析、高通量分离培养等方法在根际微生物研究中的应用,讨论了植物根系分泌物(碳水化物、氨基酸、黄酮类、酚类、激素及其信号物质)和土壤物理化学性质对根际微生物群落的影响,概述了根际微生物-植物的互作机制,以及根际微生物群落对植物的促生作用、提高植物抗逆性和抑制作用,并对根际微生物群落研究中存在的问题和未来发展方向进行了展望。  相似文献   

8.
马铃薯全生育期内根际微生物组变化规律   总被引:1,自引:0,他引:1  
[目的]陆生植物根际环境与土壤中的微生物菌群关系密切,其根际微生物群落动态极可能直接影响着植物健康及养分高效利用。虽然根际益生菌已被证实可用于提高作物生产力,但由于缺乏对这些菌群组成动态变化规律的认识了解,它们的开发受到限制。研究马铃薯全生育期根际菌群的动态变化规律,探讨根际菌群变化与马铃薯发育时期的相关性,为针对马铃薯不同生长时期开发专用生物益生菌肥奠定理论基础。[方法]本研究着眼于马铃薯田间全生命周期微生物组动态变化,通过Illumina MiSeq高通量测序技术对不同时间点马铃薯根际细菌16S rRNA基因V3-V4区和真菌ITS区测序并对操作分类单位(OTU)进行聚类,分析样品间微生物群落的多样性特征,并通过机器学习的方法建立模型,将根际菌群与田间马铃薯发育时间相关联。[结果]根际菌群在马铃薯各个发育阶段随时间变化明显,营养生长阶段的微生物群落结构发生了显著变化,随着结薯期的开始逐渐稳定,直到块茎成熟后期根际菌群再次出现较大变化,且在不同施肥处理间呈现较大差异。进一步基于模型挖掘了与马铃薯发育时间相关联的22个特征细菌类群和16个特征真菌类群,其中苗期和结薯末期的特征类群分别为梭菌(Clostridium)和放线菌(Actinobacteria)。[结论]马铃薯的生长发育时期是影响根际微生物群落组成的主要因素,益生菌肥的添加主要影响马铃薯结薯末期的细菌微生物菌群结构。  相似文献   

9.
【背景】土壤微生物是草原生态系统的重要组成部分,在调节植物生长、促进土壤结构的形成及维持草原生态系统功能和稳定性等方面有着不可替代的作用。【目的】探究内蒙古自治区四子王旗两种不同草原中5种不同植物根际土壤微生物群落代谢功能的多样性。【方法】利用Biolog-ECO微平板法分析四子王旗荒漠草原中阿德格和格根塔拉2个样地中短花针茅、冷蒿、细叶葱、阿尔泰狗娃花和银灰旋花5种植物根际土壤微生物群落多样性特征。【结果】两种不同草原中5种不同植物根际土壤中可培养微生物数量存在显著性差异(P0.05),阿德格草原中短花针茅根际土壤中可培养微生物总数显著高于其他植物根际,格根塔拉草原中阿尔泰狗娃花根际土壤中可培养微生物总数显著高于其他植物;两样地不同植物根际土壤微生物的平均颜色变化率(average well color development,AWCD)均表现为格根塔拉样地高于阿德格样地,而且呈"S"型变化。培养96 h后格根塔拉草原5种植物的Shannon指数与Simpson指数高于阿德格草原,同时银灰旋花根际土壤微生物多样性指数在两个草原中差异极显著;两个草原不同植物根际土壤微生物对碳源的利用主要是氨基酸类和碳水化合物碳源,对于L-天门冬酰胺、r-羟基丁酸、L-丝氨酸和D-半乳糖醛酸等碳源的功能微生物显著富集,根际土壤微生物的AWCD和多样性指数与细菌、放线菌以及土壤微生物总数呈极显著正相关性(P0.01),均匀度指数与细菌、放线菌以及土壤微生物总数量呈显著负相关性(P0.05)。【结论】不同植物根际土壤微生物对碳源的利用能力和偏好出现差异,而且根际土壤微生物数量越高,微生物碳代谢能力、微生物群落多样性越丰富。  相似文献   

10.
宁南山区典型植物根际与非根际土壤微生物功能多样性   总被引:8,自引:0,他引:8  
安韶山  李国辉  陈利顶 《生态学报》2011,31(18):5225-5234
选择宁南山区9种典型植物的根际与非根际土壤为研究对象,采用Biolog方法对土壤微生物功能多样性进行了研究。结果表明:9种不同植物根际土壤与非根际土壤的微生物活性(AWCD)、微生物多样性指数和微生物均匀度指数均存在明显差异;除冰草外,其他各种植物的根际土壤的微生物活性AWCD、微生物多样性指数和微生物均匀度指数均比非根际土壤的高;9种典型植物根际土壤微生物主要碳源利用类型是羧酸类和氨基酸类,非根际土壤微生物主要碳源利用类型是羧酸类、胺类、氨基酸类;微生物活性、微生物多样性指数和微生物均匀度指数两两之间均达到了极显著相关,与土壤化学性质各指标之间均未达到显著相关水平。  相似文献   

11.
本溪山樱根际与非根际解磷细菌群落结构及动态变化   总被引:7,自引:0,他引:7  
利用选择性培养基,对不同基质中的本溪山樱(Cerasus sachalinensis) 根际与非根际解磷细菌进行了分离、鉴定和分类,分析了3种不同基质中根际与非根际解磷细菌数量和类群的变化.结果表明,从3种不同配比的基质中分离纯化获得的解磷细菌分别属于13个属,以芽孢杆菌属(Bacillus)、假单胞菌属(Pseudomonas)和沙雷铁氏菌属(Serratia)为主.其中添加炉渣的基质最适于解磷细菌的生长与繁殖,其种群数量最高,但类群的多样性指数低于另外两种土壤.本溪山樱不同生育期根际与非根际解磷细菌种群数量不同,新梢停长期根际中定殖的解磷细菌种群最多(共分离到6个菌属),新梢迅速生长期和落叶期较少,萌芽期最少.根际土壤解磷细菌多样性亦随生育期发生变化,新梢迅速生长期最高,落叶期次之,新梢停长期最低.非根际土壤则有随生育期逐渐减小的趋势.解磷细菌的根际效应较明显  相似文献   

12.
烟草根际微生物研究   总被引:33,自引:1,他引:32  
刘训理  王超  吴凡  薛东红  陈凯 《生态学报》2006,26(2):552-557
利用选择性培养基,对土壤肥力肥沃、中等、贫瘠的烟区根际细菌、真菌和放线菌进行了分离和测数。根据菌体形态及培养特征、生理生化指标及16S rDNA部分序列分析等,对根际自生固氮菌、磷细菌、钾细菌进行了鉴定和分类。主要结果为:土壤肥沃的烟区根际细菌的数量最多,土壤贫瘠的烟区数量最少;土壤贫瘠烟区根际真菌的数量较多,中等和肥沃烟区的较少;根际故线菌的数量随土壤肥力的降低而依次减小。从不同肥力烟区分离的根际自生固氮菌、磷细菌、钾细菌以革兰氏阴性杆菌为主,分别属于10个属。土壤的肥沃程度对根际3类细菌的种类和数量都有影响,总体上看,土壤肥沃和中等的条件下,细菌类群的多样性和丰富度较大,而贫瘠土壤细菌类群的优势度较大。  相似文献   

13.
A survey of micro-organisms isolated from the root surface, rhizosphere soil and nonrhizosphere soil of pasture grasses (Ryegrass, S23; Timothy, S50; Cocksfoot, S143) was made to determine their ability to attack phenolphthalein diphosphate, sodium glycerophosphate, sodium phytate, lecithin, ribonucleic and deoxyribonucleic acids. The total numbers of organisms capable of decomposing these compounds were higher on the root surface and in the rhizosphere soil of the grasses when compared with the numbers in nonrhizosphere soil. Occasionally, preferential stimulation of organisms hydrolysing some of the compounds was observed in the root regions. The addition of deoxyribonucleic acid to medium inhibited the numbers of colonies developing in dilution plate counts. This inhibition was generally more pronounced on root surface organisms than on those from nonrhizosphere soil.  相似文献   

14.
A total of 220 bacterial isolates were obtained from pea rhizosphere and nonrhizosphere samples. Of these samples, 100 isolates were chosen randomly to test for their agglutinative reaction against pea root exudate. The percentage of positive agglutination of bacteria isolated from the nonrhizosphere sample was significantly lower than that of bacteria isolated from the rhizosphere sample. Moreover, this agglutinative reaction could not be blocked either by treating the bacterial cells or root exudate with different carbohydrates before they were mixed or by boiling the root exudate first. Bacteria that could be agglutinated by pea root exudate followed the downward growth of the pea root through the soil profile. The greater abilities of such bacteria to colonize the pea rhizosphere were indicated by their higher rhizosphere-colonizing (rhizosphere/nonrhizosphere) ratios, whether the bacteria were added alone or together with nonagglutinating bacteria. However, bacteria did show different agglutinative reactions toward root exudates obtained from different plants.  相似文献   

15.
Diversity among 130 strains of Bacillus polymyxa was studied; the bacteria were isolated by immunotrapping from nonrhizosphere soil (32 strains), rhizosphere soil (38 strains), and the rhizoplane (60 strains) of wheat plantlets growing in a growth chamber. The strains were characterized phenotypically by 63 auxanographic (API 50 CHB and API 20B strips) and morphological features, serologically by an enzyme-linked immunosorbent assay, and genetically by restriction fragment length polymorphism (RFLP) profiles of total DNA in combination with hybridization patterns obtained with an rRNA gene probe. Cluster analysis of phenotypic characters by the unweighted pair group method with averages indicated four groups at a similarity level of 93%. Clustering of B. polymyxa strains from the various fractions showed that the strains isolated from nonrhizosphere soil fell into two groups (I and II), while the third group (III) mainly comprised strains isolated from rhizosphere soil. The last group (IV) included strains isolated exclusively from the rhizoplane. Strains belonging to a particular group exhibited a similarity level of 96%. Serological properties revealed a higher variability among strains isolated from nonrhizosphere and rhizosphere soil than among rhizoplane strains. RFLP patterns also revealed a greater genetic diversity among strains isolated from nonrhizosphere and rhizosphere soil and therefore could not be clearly grouped. The RFLP patterns of sorbitol-positive strains isolated from the rhizoplane were identical. These results indicate that diversity within populations of B. polymyxa isolated from nonrhizosphere and rhizosphere soil is higher than that of B. polymyxa isolated from the rhizoplane. It therefore appears that wheat roots may select a specific subpopulation from the soil B. polymyxa population.  相似文献   

16.
Curt Leben 《Plant and Soil》1986,91(1):139-142
Summary Survival ofPseudomonas syringae pv.lachrymans with seedling cucumber roots, root washings, rhizosphere soil, and nonrhizosphere soil was determined 7–8 days after the soil surface was watered with a cell suspension of the bacterium. Plants were in pots in the green-house and soil was not sterilized. Survival was best with roots and root washings, next best in rhizosphere soil, and poor in nonrhizosphere soil.  相似文献   

17.
异丙甲草胺对芹菜根际与非根际生物活性的影响   总被引:5,自引:0,他引:5  
通过根际袋法土培试验,研究了异丙甲草胺对芹菜根际与非根际土壤酶活性、土壤微生物数量的影响以及异丙甲草胺在根际与非根际土壤中的降解特性.结果表明,异丙甲草胺对土壤过氧化氢酶活性有一定的抑制作用,对土壤脱氢酶活性有激活作用.一般情况下根际土壤酶活性均要大于非根际土壤.异丙甲草胺作用45 d后,芹菜根际土壤细菌、真菌数量大于非根际土壤,根际效应R/S在1.76~2.51之间;异丙甲草胺对土壤放线菌数量影响不大,根际效应不明显.异丙甲草胺在根际土壤与非根际土壤中的降解速率分别为0.0217和0.0176,相应的半衰期分别为31.9和39.4 d.在根际土壤中异丙甲草胺更易降解.  相似文献   

18.
The effects on plant growth of "bacterial fertilizers" prepared from Azotobacter spp. and phosphate-solubilizing bacteria ("phosphobacteria") have been the subject of much controversy. Cases where no plant-growth stimulation occurred may often be accounted for by the failure to establish the bacterial inocula in the rhizosphere. Three factors that may influence inocula establishment, i.e. soil fertility, manuring, and interactions between Azotobacter and "phosphobacteria," were examined in pot experiments, designed for statistical analysis, in two neutral-alkaline soils, using lavender plants (Lavandula spica L.). During the experiments the numbers of Azotobacter and "phosphobacteria" were counted. Dry weights of roots and shoots were recorded after 16 weeks of growth. At the end of the experiments there were always more Azotobacter and "phosphobacteria" in the rhizospheres when plants were inoculated with both groups of organisms together than when they were inoculated singly. Addition of 2% farmyard manure to the richer soil enhanced this effect. Plant growth was greatest when seedlings were inoculated with both Azotobacter and the "phosphobacteria".  相似文献   

19.
Metal hyperaccumulator plants like Thlaspi caerulescens J. & C. Presl. are used for phytoremediation of contaminated soils. Since little is known about the rhizosphere of hyperaccumulators, the influence of T. caerulescens was compared with the effects of Trifolium pratense L. on soil microbes. High- and low-metal soils were collected near a zinc smelter in Palmerton, Penn. Soil pH was adjusted to 5.8 and 6.8 by the addition of Ca(OH)2. Liming increased bacterial populations and decreased metal toxicity to levels allowing growth of both plants. The effects of the plants on total (culturable) bacteria, total fungi, as well as cadmium- and zinc-resistant populations were assessed in nonrhizosphere and rhizosphere soil. Both plants increased microbial populations in rhizosphere soil compared with nonrhizosphere soil. Microbial populations were higher in soils planted with T. pratense, but higher ratios of metal-resistant bacteria were found in the presence of T. caerulescens. We hypothesize that T. caerutescens acidifies its rhizosphere. Soil acidification in the rhizosphere of T. caerulescens would affect metal uptake by increasing available metals around the roots and consequently, increase the selection for metal-resistant bacteria. Soil acidification may be part of the hyperaccumulation process enhancing metal uptake from soil.  相似文献   

20.
Although at least 13 antigenically distinct serotypes of Rhizobium leguminosarum bv. trifolii exist in an Abiqua silty clay loam soil, one serotype, AS6, occupies ≥50% of the root nodules formed on field-grown subclover and between 33 and 78% of the nodules formed on five annual clover species grown in the same soil under laboratory conditions. The dominance of subclover nodules by serotype AS6 was reproducible over a 4-year sampling period and throughout the entire 200- by 100-m pasture examined. Serotype AS6 was composed of three antigenically distinct subtypes (AS6-a, AS6-b, and AS6-c). Each subtype contributed about one-third of the AS6 isolates recovered from nodules of field-grown subclover plants and maintained similar population densities in nonrhizosphere and rhizosphere soil. Rhizobia with the AS6 antigenic signature accounted for from 20 to 100% of the soil populations of R. leguminosarum in arable and pasture soils under legumes throughout the state of Oregon. Over a 12-month period, the population densities of the serotype AS6 complex and three minor nodule-occupying serotypes (AG4, AP17, and AS21) were measured in the rhizospheres of field-grown subclover and orchard grass and in nonrhizosphere Abiqua soil. Regardless of season or serotype, the orchard grass rhizosphere effect was minimal, with the ratio between rhizosphere and nonrhizosphere serotype population densities ranging between 2.5 (midsummer) and 10.5 (spring). In contrast, the magnitude of the subclover rhizosphere effect varied seasonally and among serotypes. Between October and December the ratios for all serotypes were similar (12.5 to 25.5). However, in the spring (April and May), the magnitude of the rhizosphere effect varied among the indigenous serotypes (ratios, 10.5 to 442) and for minor nodule-occupying serotypes AS21 (ratio, 442) and AP17 (ratio, 47) was as great as, or even greater than, the magnitude of the rhizosphere effect observed with the AS6 complex (ratio, 65.5).  相似文献   

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