排序方式: 共有18条查询结果,搜索用时 31 毫秒
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不同磷水平下丛枝菌根真菌对纳米氧化锌生物效应的影响 总被引:2,自引:2,他引:0
纳米ZnO颗粒是应用最为广泛金属型纳米颗粒(nanoparticles,NPs)之一,对作物和土壤微生物的影响值得关注.丛枝菌根(arbuscular mycorrhizal,AM)是自然界中普遍存在的植物-真菌共生体,对各种环境胁迫具有一定的抵御能力,但菌根效应受土壤和植物磷含量的影响.分别设置0、20、50、100 mg·kg~(-1)这4个磷水平,在接种或不接种AM真菌Funneliformis mosseae、添加或不添加纳米ZnO(500 mg·kg~(-1))条件下在温室中利用玉米进行土壤盆栽试验.结果表明,纳米ZnO没有显著影响玉米生长,但不利于菌根侵染和磷素吸收,并引起锌在植物体内的积累.纳米ZnO和高磷降低玉米菌根侵染,但AM真菌在所有磷水平下均显著促进植物生长.施磷和接菌均可使土壤p H升高、降低纳米ZnO源锌的生物有效性,从而降低锌向玉米地上部分的转运和积累,体现出一定保护作用.接菌在多数情况下显示出积极的菌根效应,尤其在低磷、添加纳米ZnO条件下更为显著.结果首次表明,AM真菌、磷肥均有助于减轻纳米ZnO引起的土壤污染及其所产生的生态和健康风险. 相似文献
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丛枝菌根对盐胁迫的响应及其与宿主植物的互作 总被引:1,自引:0,他引:1
丛枝菌根真菌(Arbuscular Mycorrhizae Fungi,AMF)作为陆地生态系统的组成部分之一,在促进宿主植物对土壤养分和水分的吸收、提高植物生物量生产、调节种群和群落的结构、维持生态系统的稳定性等方面发挥了重要作用。其中,盐渍化是自然生态系统中广泛存在的一种胁迫生境条件,全球盐渍化土地约占耕地总面积的10%,因而探讨AM菌根在此胁迫生境下对宿主植物生长的影响具有重要意义。从以下几个方面,围绕盐胁迫条件、AM菌根和宿主植物三者之间的关系对当前国际上相关领域的研究进展进行了综述:1)AM真菌对盐胁迫的响应,包括菌根共生体形成、菌根侵染率、AM真菌的分布、菌丝体生长发育、孢子的形成和分布等;2)盐胁迫条件下AM菌根对宿主植物的效应,包括AM菌根促进宿主植物对P、N等元素的吸收、降低植物体内Na 的含量、提高光合作用能力,进而提高植物的生物量和对植物的群落结构产生影响等;3)AM菌根提高宿主植物耐盐性的机理,分别从植物根系形态的改变、水分吸收能力的加强、细胞内营养物质的平衡,以及细胞生理代谢的调节等方面对AM菌根促进植物抗盐性的机理进行了剖析。 相似文献
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Dissolved Organic Matter in Forest Soils: Sources, Complexing Properties and Action On Herbaceous Plants 总被引:2,自引:0,他引:2
A. T. Kuiters 《Chemistry and Ecology》1993,8(3):171-184
Dissolved organic matter (DOM) is an important component of plant-soil systems. Its essential role in soil solution chemistry, soil-forming processes and its effects on biota, including soil fauna, bacteria, fungi and plants, is extensively documented in literature. in this contribution several forest leaf litter types are compared as sources of DOM and the released organics are subjected to gel permeation chromatography to reveal their molecular-size distribution. Moreover, complexing properties, as an indication for the podzolization potential of the litter leachates, were established. the occurrence and properties of DOM in different soil horizons were monitored beneath a stand of Scots pine. the effects of the different groups of soluble organics including phenolic, fulvic and humic acids, and of water-extractable humic substances on the performance of herbaceous plants of the forest floor are briefly reviewed. 相似文献
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我国菌根研究进展及展望 总被引:18,自引:0,他引:18
在总结分析1998~2002年期间发表的菌根学文献的基础上,对我国近年来菌根学取得的主要研究成果进行了评述,分析了当前我国菌根学研究的优势与不足之处,阐明了当前我国菌根学研究的主要方向和取得的成果,在此基础上,结合国际上菌根学研究的热点与趋势,提出我国菌根学下一步发展的目标和思路.图1表1参57 相似文献
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The Role of Fungal Symbioses in the Adaptation of Plants to High Stress Environments 总被引:1,自引:0,他引:1
Russell J. Rodriguez Regina S. Redman Joan M. Henson 《Mitigation and Adaptation Strategies for Global Change》2004,9(3):261-272
All plants studied in natural ecosystemsare symbiotic with fungi that either resideentirely (endophytes) or partially(mycorrhizae) within plants. Thesesymbioses appear to adapt to biotic andabiotic stresses and may be responsible forthe survival of both plant hosts and fungalsymbionts in high stress habitats. Here wedescribe the role of symbiotic fungi inplant stress tolerance and present astrategy based on adaptive symbiosis topotentially mitigate the impacts of globalchange on plant communities. 相似文献
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The presence of high levels of Cu in soil decreases the shoot and root dry weights of Eucalyptus globulus. However, higher plant tolerance of Cu has been observed in the presence of the arbuscular mycorrhizal (AM) fungus Glomus deserticola. The hyphal length of G. deserticola was sensitive to low Cu concentrations, and the percentage of AM root colonisation and the metabolic activity of the AM fungus were also decreased by Cu. Therefore, a direct effect of Cu on the development of the AM fungus inside and outside the root cannot be ruled out. E. globulus colonised by G. deserticola had higher metal concentrations in the roots and shoots than do non-mycorrhizal plants; however, the absence of a higher root to shoot metal ratio in the mycorrhizal plants (1.70 ± 0.11) indicated that G. deserticola did not play a filtering/sequestering role against Cu. The saprobe fungi Coriolopsis rigida and Trametes versicolor were able to remove Cu ions from the asparagine–glucose growth media. However, plants inoculated with C. rigida and T. versicolor did not accumulate more Cu than non-inoculated controls, and the growth of the plant was not increased in the presence of these fungi. However, C. rigida increased the shoot dry weight, AM root length colonisation, and metabolic mycelial activity of plants colonised with G. deserticola in the presence of Cu; only this saprobe-AM fungus combination increased the tolerance of E. globulus to Cu. Inoculation with G. deserticola and C. rigida increased the E. globulus Cu uptake to levels reached by hyperaccumulative plants. 相似文献
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采用温室盆栽试验方法,研究了丛枝菌根真菌(AMF)对菲、芘复合污染土壤中微生物数量和酶活性的影响.结果表明,接种AMF显著增加了三叶草根际和菌丝际土壤中细菌、真菌和放线菌的数量,并对微生物区系有选择性.在供试菲、芘污染浓度范围内,低浓度菲、芘对土壤多酚氧化酶、酸性磷酸酶和过氧化氢酶活性有激活作用;但当菲、芘浓度升高时,3种酶活性受到抑制.与无植物对照土壤相比,接种AMF后三叶草菌根际酸性磷酸酶活性降低了2.4%~23.1%,过氧化氢酶活性增加了12.6%~20.3%,除高浓度处理外多酚氧化酶活性均增加;菌丝际多酚氧化酶活性比菌根际低12.9%~62.9%,酸性磷酸酶活性比菌根际高3.3%~24.0%,过氧化氢酶活性则高于菌根际. 相似文献
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Chantal Hamel 《Agriculture, ecosystems & environment》1996,60(2-3)
The arbuscular mycorrhizal symbiosis is recognized for its multiple positive effects on plant growth and for its important contribution towards the maintenance of soil quality. In spite of these benefits to agriculture, at present, the realization of the full potential of this symbiosis has not yet been reached. The understanding of interactions existing among crops, fungal partners and environmental conditions must improve to allow for the efficient management of the mycorrhizal symbiosis through selected agronomic practices and inoculation of cultivated crops. 相似文献