Molecular recognition by a polymorphic cell surface receptor governs cooperative behaviors in bacteria.
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Myxobacteria: Moving, Killing, Feeding, and Surviving TogetherMolecular recognition in myxobacterial outer membrane exchange: functional, social and evolutionary implicationsSibling Rivalry in Myxococcus xanthus Is Mediated by Kin Recognition and a Polyploid ProphageHow Myxobacteria CooperateOn the evolution of bacterial multicellularityContact- and Protein Transfer-Dependent Stimulation of Assembly of the Gliding Motility Machinery in Myxococcus xanthus.Myxobacteria produce outer membrane-enclosed tubes in unstructured environmentsAll in the family: kin contact leads to outer membrane exchange.A Combinatorial Kin Discrimination System in Bacillus subtilisCell rejuvenation and social behaviors promoted by LPS exchange in myxobacteriaRapid and widespread de novo evolution of kin discrimination.Multifaceted Interfaces of Bacterial Competition.Transient Duplication-Dependent Divergence and Horizontal Transfer Underlie the Evolutionary Dynamics of Bacterial Cell-Cell Signaling.Kin Discrimination in Protists: From Many Cells to Single Cells and BackwardsInterbacterial signaling via Burkholderia contact-dependent growth inhibition system proteins.Kin Recognition in Bacteria.Social interactions in bacterial cell-cell signaling.Infectious polymorphic toxins delivered by outer membrane exchange discriminate kin in myxobacteria.Bacillus subtilis Protects Public Goods by Extending Kin Discrimination to Closely Related Species.Two Proteins Form a Heteromeric Bacterial Self-Recognition Complex in Which Variable Subdomains Determine Allele-Restricted BindingThe origins of microbial adaptations: how introgressive descent, egalitarian evolutionary transitions and expanded kin selection shape the network of life.Tissue repair in myxobacteria: A cooperative strategy to heal cellular damage.A genetic screen in Myxococcus xanthus identifies mutants that uncouple outer membrane exchange from a downstream cellular responseSelf-identity reprogrammed by a single residue switch in a cell surface receptor of a social bacterium.Mechanism of Kin-Discriminatory Demarcation Line Formation between Colonies of Swarming Bacteria.Cell-cell recognition and social networking in bacteria.Physiological Heterogeneity Triggers Sibling Conflict Mediated by the Type VI Secretion System in an Aggregative Multicellular Bacterium.Experimental demonstration of the benefits of somatic fusion and the consequences for allorecognition.
P2860
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P2860
Molecular recognition by a polymorphic cell surface receptor governs cooperative behaviors in bacteria.
description
2013 nî lūn-bûn
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2013年の論文
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2013年論文
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2013年論文
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2013年論文
@zh-hk
2013年論文
@zh-mo
2013年論文
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2013年论文
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2013年论文
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2013年论文
@zh-cn
name
Molecular recognition by a pol ...... erative behaviors in bacteria.
@en
type
label
Molecular recognition by a pol ...... erative behaviors in bacteria.
@en
prefLabel
Molecular recognition by a pol ...... erative behaviors in bacteria.
@en
P2093
P2860
P1433
P1476
Molecular recognition by a pol ...... perative behaviors in bacteria
@en
P2093
Darshankumar T Pathak
Xueming Wei
P2860
P304
P356
10.1371/JOURNAL.PGEN.1003891
P50
P577
2013-11-07T00:00:00Z