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Search Results to Yoav Gilad

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overview The Gilad lab focuses on studying genetic and regulatory differences between humans and our close evolutionary relatives. Our long term goal is to identify the genetic basis of human-specific traits, including genetic variation that underlies higher susceptibility to certain diseases and disorders in humans than in other primates.

One or more keywords matched the following items that are connected to Gilad, Yoav

Item TypeName
Concept Biological Evolution
Concept Evolution, Molecular
Concept Microbial Consortia
Academic Article Characterizing natural variation using next-generation sequencing technologies.
Academic Article Genomics: ENCODE explained.
Academic Article Using genomic tools to study regulatory evolution.
Academic Article Comparative studies of gene expression and the evolution of gene regulation.
Academic Article A genome sequence resource for the aye-aye (Daubentonia madagascariensis), a nocturnal lemur from Madagascar.
Academic Article Comparative RNA sequencing reveals substantial genetic variation in endangered primates.
Academic Article Social environment is associated with gene regulatory variation in the rhesus macaque immune system.
Academic Article Gene regulation in primates evolves under tissue-specific selection pressures.
Academic Article Taxonomic classification of bacterial 16S rRNA genes using short sequencing reads: evaluation of effective study designs.
Academic Article Comparative studies of gene regulatory mechanisms.
Academic Article Co-binding by YY1 identifies the transcriptionally active, highly conserved set of CTCF-bound regions in primate genomes.
Academic Article Primate transcript and protein expression levels evolve under compensatory selection pressures.
Academic Article Comparative metabolomics in primates reveals the effects of diet and gene regulatory variation on metabolic divergence.
Academic Article Silencing of transposable elements may not be a major driver of regulatory evolution in primate iPSCs.
Academic Article Reorganization of 3D genome structure may contribute to gene regulatory evolution in primates.
Academic Article Prime time for primate functional genomics.
Academic Article Gene expression variability in human and chimpanzee populations share common determinants.
Academic Article A TAD Skeptic: Is 3D Genome Topology Conserved?
Academic Article Evolutionary insights into primate skeletal gene regulation using a comparative cell culture model.

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  • microbial
  • evolution