4.7 Article

Natural variation in the maternal and zygotic mRNA complements of the early embryo in Drosophila melanogaster

期刊

BMC GENOMICS
卷 23, 期 1, 页码 -

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BMC
DOI: 10.1186/s12864-022-08839-4

关键词

Early embryonic development; Maternal gene expression; Early zygotic gene expression; Expression variation

资金

  1. National Institutes of Health, National Institute of General Medical Sciences [R01GM111362]

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Overall, maternal transcripts are more conserved while zygotic transcripts evolve at a higher rate. Within-population variation in transcript abundance is greater than between populations, and expression variation is highest post-MZT between African lines.
Background Maternal gene products supplied to the egg during oogenesis drive the earliest events of development in all metazoans. After the initial stages of embryogenesis, maternal transcripts are degraded as zygotic transcription is activated; this is known as the maternal to zygotic transition (MZT). Recently, it has been shown that the expression of maternal and zygotic transcripts have evolved in the Drosophila genus over the course of 50 million years. However, the extent of natural variation of maternal and zygotic transcripts within a species has yet to be determined. We asked how the maternal and zygotic pools of mRNA vary within and between populations of D. melanogaster. In order to maximize sampling of genetic diversity, African lines of D. melanogaster originating from Zambia as well as DGRP lines originating from North America were chosen for transcriptomic analysis. Results Generally, we find that maternal transcripts are more highly conserved, and zygotic transcripts evolve at a higher rate. We find that there is more within-population variation in transcript abundance than between populations and that expression variation is highest post- MZT between African lines. Conclusions Determining the natural variation of gene expression surrounding the MZT in natural populations of D. melanogaster gives insight into the extent of how a tightly regulated process may vary within a species, the extent of developmental constraint at both stages and on both the maternal and zygotic genomes, and reveals expression changes allowing this species to adapt as it spread across the world.

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