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Titlebook: Endosymbiosis; Wolfgang L?ffelhardt Book 2014 Springer-Verlag Wien 2014 Endosymbiosis.Eukaryotes.Evolution.Gene transfer.Mitochondria.Orga

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發(fā)表于 2025-3-21 16:27:52 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Endosymbiosis
編輯Wolfgang L?ffelhardt
視頻videohttp://file.papertrans.cn/310/309933/309933.mp4
概述Comprehensively describes the origin of eukaryotes with a focus on phototrophs.Has an interdisciplinary approach.Is written by experts in the fields coming from different backgrounds.Clearly depicts t
圖書封面Titlebook: Endosymbiosis;  Wolfgang L?ffelhardt Book 2014 Springer-Verlag Wien 2014 Endosymbiosis.Eukaryotes.Evolution.Gene transfer.Mitochondria.Orga
描述.The origin of energy-conserving organelles, the mitochondria of all aerobic eukaryotes and the plastids of plants and algae, is commonly thought to be the result of endosymbiosis, where a? primitive eukaryote engulfed a respiring α-proteobacterium or a phototrophic cyanobacterium, respectively. While present-day heterotrophic protists can serve as a model for the host in plastid endosymbiosis, the situation is more difficult with regard to (the preceding) mitochondrial origin: Two chapters describe these processes and theories and inherent controversies. However, the emphasis is placed on the evolution of phototrophic eukaryotes: Here, intermediate stages can be studied and the enormous diversity of algal species can be explained by multiple secondary and tertiary (eukaryote-eukaryote) endosymbioses superimposed to the single primary endosymbiotic event. Steps crucial for the establishment of a stable, mutualistic relationship between host and? endosymbiont, as metabolic symbiosis, recruitment of suitable metabolite transporters, massive gene transfer to the nucleus, development of specific translocases for the re-import of endosymbiont proteins, etc. are discussed in individual c
出版日期Book 2014
關(guān)鍵詞Endosymbiosis; Eukaryotes; Evolution; Gene transfer; Mitochondria; Organelles
版次1
doihttps://doi.org/10.1007/978-3-7091-1303-5
isbn_softcover978-3-7091-1961-7
isbn_ebook978-3-7091-1303-5
copyrightSpringer-Verlag Wien 2014
The information of publication is updating

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Modifications and Innovations in the Evolution of Mitochondrial Protein Import Pathwaysrial endosymbiont required establishment of effective protein import pathways so that much of the genetic capacity of the bacterium could be relocated to the host cell. Two realms of study have delivered insight into the early evolution of these mitochondrial pathways: (1) considering the “starting
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The Single Primary Endosymbiotic Eventecial and complex process, the cyanobacterium and the heterotrophic cell complemented each other that well to change the predator–prey relationship to a mutualistic one: the cyanobacterium was converted into an obligate endosymbiont allowing phototrophy of the host cell and ultimately into an organe
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Evolution of the Protein Translocons of the Chloroplast Envelopetrophic host cell. In the course of evolution these once autonomous bacteria became increasingly integrated into their host’s cellular environment. The permanent transfer of large portions of genetic information from the endosymbiont to the host’s genome was essential for the establishment of a trul
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: The First Steps in the Birth of a Novel Organelle?y transmitted to the next generation and provide nitrogen autonomy to their host cell. Morphological observations and phylogenetic analyses revealed a cyanobacterial origin of these obligate endosymbionts. Phylogenetic data and fossil records suggest that the origin of this endosymbiosis dates back
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et al.: Novel Photosynthetic Alveolates and Apicomplexan Relatives membranes. The amount of membranes already pointed towards the secondary evolutionary origin of the organelle, and phylogenetic analysis then showed it to be of rhodophyte origin. The discovery of . now provides the link that connects the parasitic phylum with its algal past. Other chromerids have
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