bioRxiv ScienceSearch

Biology subjects

Cobb, J.

Publications and source records attributed to Cobb, J..

2 recordsLinked to original sources

The genomic and molecular basis of response to selection for longer limbs in mice

Evolutionary studies are often limited by missing data that are critical to understanding the history of selection. Selection experiments, which reproduce rapid evolution under controlled conditions, are excellent tools to study how genomes evolve under strong selection. Here we present a genomic dissection of the Longshanks selection experiment, in which mice were selectively bred over 20 generations for longer tibiae relative to body mass, resulting in 13% longer tibiae in two replicate lines. We synthesized evolutionary theory, genome sequences and molecular genetics to understand the selection response and found that it involved both polygenic adaptation and discrete loci of major effect, with the strongest loci likely to be selected in parallel between replicates. We show that selection may favor de-repression of bone growth through inactivation of two limb enhancers of an inhibitor, Nkx3-2. Our integrative genomic analyses thus show that it is possible to connect individual base-pair changes to the overall selection response.

evolutionary biology

Single-cell mRNA profiling reveals heterogeneous combinatorial expression of Hoxd genes during limb development

ABSTRACT (177 words)A global analysis of gene expression during development reveals specific transcription patterns associated with the emergence of various cell types, tissues and organs. These heterogeneous patterns are instrumental to ensure the proper formation of the different parts of our body, as shown by the phenotypic effects generated by functional genetic approaches. However, variations at the cellular level can be observed within each structure or organ. In the developing mammalian limbs, expression of Hoxd genes is differentially controlled in space and time in cells that will pattern the digits and the arms. Here we analyze single-cell transcriptomes of limb bud cells and show that Hox genes are expressed in specific combinations that match particular cell types. In the presumptive digits, we find that the expression of Hoxd gene is unbalanced, despite their common genomic proximity to known global enhancers, often expressing only a subset of the five genes transcribed in these cells. We also report that combinatorial expression follows a pseudo-time sequence, suggesting that a progression in combinatorial expression may be associated with cellular diversity in developing digits.\n\nHIGHLIGHTSO_LICollinear expression of Hox genes is only weaved at the tissue scale\nC_LIO_LIEnhancer-sharing to specific target genes is reduced at the single-cell level\nC_LIO_LIHoxd gene combinatorial expression is linked to distinct transcriptional signatures\nC_LIO_LIIn presumptive digits, Hoxd combinations follow a pseudotime trajectory\nC_LI

developmental biology