Results 101 to 110 of about 522 (155)
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A history of research on arbuscular mycorrhiza
Mycorrhiza, 2004This is not a review paper in the traditional sense, of which there are many. Three of the most influential reviews that summarized well some of the "older" literature include those by Nicolson (1967), Gerdemann (1968) and Mosse (1973). Instead, in this brief and incomplete work, we attempt to show the historical development of research on arbuscular ...
Roger T, Koide, Barbara, Mosse
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Arbuscular mycorrhiza and heavy metal tolerance
Phytochemistry, 2007AbstractChemInform is a weekly Abstracting Service, delivering concise information at a glance that was extracted from about 200 leading journals. To access a ChemInform Abstract, please click on HTML or PDF.
Ulrich, Hildebrandt +2 more
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Establishment and Functioning of Arbuscular Mycorrhizas
2009Located at the interface with the soil, plant roots are the preferred niche for many soil fungi that live in the rhizosphere as saprotrophs or are directly associated to the photosynthetic plants as symbionts. Among the latter, arbuscular mycorrhizal (AM) fungi represent a vital component in plant ecosystems: they have a widespread distribution in very
Bonfante P +3 more
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Biotechnology of arbuscular mycorrhizas
2002Publisher Summary Mycorrhizas are symbiotic associations established between thousands of species of soil-borne fungi and the roots of most terrestrial plant species. This chapter provides an overview and analyzes important data on the main parameters affecting fungal infectivity and efficiency and on fungal ability to survive, multiply and spread in
GIOVANNETTI, MANUELA, AVIO LUCIANO
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Symbiotic phosphate transport in arbuscular mycorrhizas
Trends in Plant Science, 2005Arbuscular mycorrhizal fungi colonize the root systems of most land plants and modulate plant growth by enhancing the availability of nutrients, mainly phosphorus, for plant nutrition. Recently identified genes encoding mycorrhiza-specific plant phosphate transporters have enabled fundamental problems in arbuscular mycorrhizal symbiosis research to be ...
Vladimir, Karandashov, Marcel, Bucher
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Multi-functionality and biodiversity in arbuscular mycorrhizas
Trends in Ecology & Evolution, 1995Plant roots in natural ecosystems are typically colonized by a wide range of fungi. Some of these are pathogenic, others appear to be opportunistic and have no apparent impact, while mycorrhizal fungi are generally regarded as mutualistic. Of the various types of mycorrhizal fungi, the arbuscular mycorrhizal (AM) association is by far the most abundant
K K, Newsham +2 more
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Arbuscular mycorrhizas in cycads of southern India
Mycorrhiza, 2002Root and soil samples of three potted or ground-grown cycads ( Cycas circinalis, C. revoluta, Zamiasp.) were collected between November 1999 and June 2000 and surveyed for arbuscular mycorrhizal (AM) colonization and spore populations. AM fungi were associated with all root systems and rhizosphere samples examined.
T, Muthukumar, K, Udaiyan
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Arbuscular Mycorrhizas: An Overview
2017Almost every plant in natural ecosystem forms association with fungi either intracellularly as in arbuscular mycorrhizal fungi (AMF), or extracellularly as in ectomycorrhizal fungi. Arbuscular mycorrhizas (AMs) represent the most widespread symbiosis with land plants.
Sajid Mahmood Nadeem +5 more
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The distribution of arbuscular mycorrhizas in the British flora
New Phytologist, 1993SUMMARYArbuscular mycorrhizal (AM) associations with higher plants are common in many ecosystems but some plant species are consistently never or rarely infected. These species may differ morphologically or occur in different habitats from species which are usually mycorrhizal. A large data‐set on the ecology of British angiasperms was used to test for
H J, Peat, A H, Fitter
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Vesicular-arbuscular mycorrhizae in relation to plant disease
World Journal of Microbiology & Biotechnology, 1992Vesicular-arbuscular mycorrhizae (VAM) enhance plant growth through increased nutrient uptake, stress tolerance and disease resistance. As an integral part of the root system, they interact with other microorganisms in soil and result in increased root exudation approaching about 25% of the plant dry matter production.
Sharma, A.K. +2 more
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