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Author

Patricia J. Wittkopp

2 papers indexed here

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Jul 2026

microRNAs affecting development of body pigmentation in adult Drosophila melanogaster.

Phenotypic development is regulated by multiple mechanisms that ensure tight control of gene expression. Post-transcriptional regulation, including the silencing or degradation of messenger RNAs by microRNAs (miRNAs), is an important component of this process. Here, we use gain-of-function and loss-of-function screens to examine the effects of miRNAs on cuticular pigmentation in adult Drosophila melanogaster. We found that 48 of 166 miRNAs ectopically expressed in a stripe along the dorsal side of developing flies were each sufficient to affect pigmentation. We also found that 22 of 41 miRNAs competitively inhibited in the same tissue visibly altered pigmentation, showing that they were necessary for adult pigmentation development. For each of the 15 miRNAs with opposing effects in the gain- and loss-of-function screens, computational tools identified possible targets among 93 genes previously reported to affect adult pigmentation. Using cell culture, we found that one of these miRNAs (miR-8) was able to regulate gene expression through 3' UTR sequences from at least three pigmentation genes: ebony, bric-a-brac 1, and bric-a-brac 2. All three of these genes reduce development of black pigments, suggesting that miR-8 coordinately regulates expression of multiple genes with similar effects on pigmentation. These data show that miRNAs are developmental regulators of body pigmentation, which could also allow them to contribute to pigmentation divergence, as has been shown for miR-193 in butterflies.

Abigail Lamb, Jennifer A. Kennell, Eden W. McQueen et al. · 0 citations
Open access Aug 2026

Cis- and trans-regulatory factors contributing to divergent activity of the TDH3 promoter in Saccharomyces yeast

Abstract Changes in regulatory sequences controlling the timing and activity of gene products underlie much of natural phenotypic variation. Yet, identifying which divergent sites matter and how they impact gene expression remains challenging. Here, we investigate how transcriptional activity and homeostatic responsiveness of orthologous promoters of the metabolic gene TDH3 evolved among Saccharomyces yeast. We found that promoter expression level increased specifically in the Saccharomyces cerevisiae lineage and that a substantial part of this increase was caused by genetic variants located between the well-characterized, conserved binding sites for two direct transcriptional regulators. These nucleotide changes altered the promoters’ expression levels while leaving the expression dynamics conserved. Further, the effects of these nucleotide changes were only seen in the presence of a third transcription factor, TYE7p, which is known to be recruited by the other transcription factors through protein–protein interactions. These results suggest that the cis-regulatory changes act through their influence on the collective assembly/activation of a transcription factor complex and that changes acting through such a mechanism can allow distinct parts of gene expression, such as expression level and dynamics, to separately diverge.

Mohammad A. Siddiq, Hannah P. Kania, N. J. Brown et al. · 0 citations

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