نتایج جستجو برای: oomycetes
تعداد نتایج: 1080 فیلتر نتایج به سال:
Saprotrophic and parasitic microorganisms secrete proteins into the environment to breakdown macromolecules and obtain nutrients. The molecules secreted are collectively termed the "secretome" and the composition and function of this set of proteins varies depending on the ecology, life cycle, and environment of an organism. Beyond the function of nutrient acquisition, parasitic lineages must a...
Abstract. The degradation of synthetic plastics in the environment proceeds through stages micro- and nanoparticles. Freshwater fungi fungus-like organisms are key decomposers organic material. most (including oomycetes) feed by osmotrophy, which involves release exoenzymes into to break down complex biological polymers, followed cellular uptake simplified monomers. This article aims cultivate ...
Oomycetes are eukaryotic microorganisms morphologically similar to but phylogenetically distant from true fungi. Most species in the genus Phytophthora of oomycetes are devastating plant pathogens, causing damages to both agricultural production and natural ecosystems. Tremendous progress has been achieved in recent years in diversity, evolution and lifestyles of oomycete plant pathogens, as we...
The spread of photosynthesis is one of the most important but constantly debated topics in eukaryotic evolution. Various hypotheses have been proposed to explain the plastid distribution in extant eukaryotes. Notably, the chromalveolate hypothesis suggested that multiple eukaryotic lineages were derived from a photosynthetic ancestor that had a red algal endosymbiont. As such, genes of plastid/...
Mycorrhizal root endosymbiosis is an ancient property of land plants. Two parallel studies now provide novel insight into the mechanism driving this interaction and how it is used by other filamentous microbes like pathogenic oomycetes.
Oomycetes and filamentous parasitic fungi are plant pathogens that have undergone convergent evolution. A recent study has shown that these microbial eukaryotes have exchanged metabolic genes, which might explain some of their phenotypic similarities.
The genus Pythium was erected by Pringsheim in 1858 and placed in the family Saprolegniaceae. By the end of 19th century taxonomic details of the genus had been clarified and many new species had been described. The relationship with other Oomycetes was established and the genus was included in a new family, Pythiaceae, by Schroter in 1897. The fungus Pythium belongs to the subdivision Mastigom...
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