Pre_GI: SWBIT SVG BLASTP

Query: NC_010125:955863 Gluconacetobacter diazotrophicus PAl 5, complete genome

Lineage: Gluconacetobacter diazotrophicus; Gluconacetobacter; Acetobacteraceae; Rhodospirillales; Proteobacteria; Bacteria

General Information: Gluconacetobacter diazotrophicus strain PAL5 (ATCC 49037) was isolated from sugarcane roots in Brazil and will be used for comparative analysis. Nitrogen-fixing plant symbiont. This acid-tolerant organism is endophytic and colonizes internal plant tissues, establishing a symbiotic relationship with its host. This bacterium has been found in sugarcane, coffee, rice, tea, and other plants. The nitrogen-fixation systems of the bacterium provide the plant with essential nitrogenous compounds while the plant provides a protected environment for the bacterium to grow in. Nitrogen-fixation is important for sugarcane production, and this organism can fix nitrogen even in the presence of nitrate.

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Subject: NC_005861:2120633 Candidatus Protochlamydia amoebophila UWE25, complete genome

Lineage: Protochlamydia amoebophila; Protochlamydia; Parachlamydiaceae; Chlamydiales; Chlamydiae; Bacteria

General Information: An endosymbiont of free-living amoebae (Acanthamoeba sp. endosymbiont UWE25) and implicated as a potential human pathogen this strain is an environmental isolate. Amoeba endosymbiont. Bacteria belonging to the Chlamydiales group are obligate intracellular parasites of eukaryotic cells. They are found within vertebrates, invertebrate cells, and amoebae hosts. Chlamydiae are one of the commonest causes of sexually transmitted diseases (STDs) and if left untreated may cause infertility in women. They are transmitted by direct contact or aerosols, and can cause various diseases, while also being able to coexist with the host in an apparently asymptomatic state. Candidatus Protochlamydia amoebophila, originally Parachlamydia is an endosymbiont of free-living amoebae (Acanthamoeba). This organism is an obligate intracellular endosymbiont and lives in small inclusions dispersed throughout the host cell.