000 05894cam a2200433Mi 4500
001 95441
003 ES-MaUEC
005 20230102112704.0
006 m o d
007 cr cnu---unuuu
008 170225s2017 sz o 001 0 eng d
020 _a3319513656
_q(electronic bk.)
020 _a9783319513652
_q(electronic bk.)
020 _z331951363X
020 _z9783319513638
_q(print)
040 _aEBLCP
_cEBLCP
_dN$T
_dGW5XE
_dIDEBK
_dUAB
_dYDX
_dNJR
_dOCLCO
_dOCLCF
_dOCLCO
_dCOO
_dOCLCO
_dMERUC
_dOCLCO
_dIOG
_dAZU
_dUPM
_dOCLCO
_dMERER
_dESU
_dZ5A
_dOCLCO
_dJBG
_dIAD
_dOCLCO
_dICW
_dOCLCO
_dICN
_dOCLCQ
_dOCLCO
_dOTZ
_dOCLCQ
_dVT2
_dOCLCO
_dU3W
_dOCLCO
_dES-MaUEC
_bspa
050 4 _aQR41.2
_bM634 2017 EB
245 0 0 _aModern topics in the phototrophic prokaryotes :
_bmetabolism, bioenergetics, and omics
_cPatrick C. Hallenbeck, editor.
264 1 _aCham
_bSpringer
_c2017.
300 _a1 recurso en línea (351 páginas)
336 _aTexto
_btxt
_2rdacontent
337 _aelectrónico
_bc
_2rdamedia
338 _arecurso electrónico
_bcr
_2rdacarrier
347 _atext file
_bPDF
_2rda
500 _aGeranylgeranyl Reductase ChlP/BchP.
500 _aIncluye índice
500 _aSpringerLink
_bSpringer Biomedical and Life Sciences eBooks 2017 English+International
505 0 _aRegulation of Nitrogen Fixation in Photosynthetic Purple Nonsulfur Bacteria; Introduction to Biological Nitrogen Fixation; Organization of Nitrogen Fixation Genes in Purple Nonsulfur Bacteria; Cascade Activation of Nitrogen Fixation in Rhodobacter capsulatus; Ammonium Inhibition of Nitrogen Fixation in Rhodobacter capsulatus; Ammonium Regulation of Nitrogen Fixation in Rhodopseudomonas palustris; Ammonium Regulation of Nitrogen Fixation in Rhodospirillum rubrum; Darkness Regulation of Nitrogenase; Iron Regulation of Electron Transport to Nitrogenase.
505 8 _aCommon Pathway 1: 5-Aminolevulinate Formation Common Pathway 2: From 5-Aminolevulinate to Uroporphyrinogen III; Common Pathway 3: From Uroporphyrinogen III to Protoporphyrin; A Core Pathway of the Mg Branch: Protoporphyrin IX to Chlorophyllide a; Mg Chelatase; The I Subunit (BchI/ChlI); The D Subunit (BchD/ChlD); The H Subunit (BchH/ChlH); Interactions of the H Subunit with Other Enzymes for Substrate/Product Channeling; GUN4; Mg-Protoporphyrin IX Methyltransferase; Mg-Protoporphyrin IX Monomethyl Ester Oxidative Cyclase; Oxygen-Independent MPE Cyclase BchE.
505 8 _aOxidation of Thiosulfate to Sulfate Oxidation of Sulfide; Oxidation of Polysulfides; Oxidation of External Sulfur; Properties of Sulfur Globules; Oxidation of Stored Sulfur to Sulfite; The Dsr System of Sulfur Oxidation; The Hdr-Like System of Sulfur Oxidation; Oxidation of Sulfite to Sulfate; Oxidation of Sulfite in the Periplasm; Oxidation in the Cytoplasm; Indirect Pathway via Adenosine 52 Phosphosulfate; Direct Pathway via SoeABC; Sulfate Assimilation; References; Biochemistry of Chlorophyll Biosynthesis in Photosynthetic Prokaryotes; Introduction; Common Pathway.
505 8 _aOxygen-Dependent MPE Cyclase AcsF/ChlA 3,8-Divinyl (Proto)chlorophyllide a 8-Vinyl Reductase; (NADPH-Dependent 8-Vinyl Reductase) BciA; Ferredoxin-Dependent 8-Vinyl Reductase BciB; COR: A Third 8-Vinyl Reductase; Protochlorophyllide Oxidoreductase; Light-Independent (Dark-Operative) Pchlide Oxidoreductase DPOR; Light-Dependent Protochlorophyllide Oxidoreductase; Functional Differentiation of DPOR and LPOR and Evolutionary Implications; Final Two Steps from Chlorophyllide a to Chlorophyll a; Chlorophyll Synthase ChlG and Bacteriochlorophyll Synthase BchG.
505 8 _aRegulation of Molybdate Uptake and Alternative Nitrogenases Nitrogenase Protection Against Oxygen Damage; Nitrogenase Protection Against Carbon Monoxide Inhibition; References; Sulfur Metabolism in Phototrophic Bacteria; Introduction; Sulfur Oxidation Capabilities of Phototrophic Bacteria; Purple Sulfur Bacteria; Green Sulfur Bacteria; Purple Non-sulfur Bacteria; Aerobic Bacteriochlorophyll-Containing Bacteria; Acidobacteria; Phototrophic Gemmatimonadetes; Sulfur Oxidation Pathways; Oxidation of Thiosulfate; Oxidation of Thiosulfate to Tetrathionate.
520 3 _aThis book offers authoritative contributions by world experts actively working on different aspects of phototrophic prokaryotes. Providing up-to-date information in this rapidly advancing field, it covers the range of topics that are currently the focus of research with this group of organisms. As essentially single-celled organisms, phototrophic prokaryotes process many environmental signals and use this information to optimize their metabolism, growth rate, DNA replication and cell division. Phototrophic prokaryotes are collectively of great interest for a number of different fundamental and applied perspectives and have long served as models for understanding such basic fundamental biological processes as photosynthesis and respiration. On an ecological/environmental level they are extremely important, being the most abundant photosynthetic organisms on earth and responsible for the majority of the primary productivity in the oceans. They also hold great promise as biotechnological catalysts, being able to couple solar energy conversion through photosynthesis and carbon fixation to the production of biofuels, commodity chemicals and nutraceuticals. The book is recommended to advanced students and scientists dealing with life sciences, especially in genetics, microbiology and molecular biology.
650 7 _aBacterias
_2embne
_0(OCoLC)fst01062127
_0
_9138901
700 1 _aHallenbeck, Patrick C.
856 4 0 _uhttps://go.openathens.net/redirector/universidadeuropea.es?url=http://link.springer.com/10.1007/978-3-319-51365-2
_zAcceso a este recurso digital (usuarios Universidad Europea de Madrid)
988 _aEBOOK, asignarmaterias, EBSPRINGER_2017C
998 _b02/2018
_dz
_e-
_zSI
999 _c95441
_d95441
_x1