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Messer, F.

Publications and source records attributed to Messer, F..

2 recordsLinked to original sources

CLUSTERING SPERM: A STATISTICAL APPROACH TO IDENTIFY SPERM MORPH NUMBERS IN THE DROSOPHILA OBSCURA SPECIES GROUP

The Drosophila obscura species group is sperm heteromorphic. Sperm heteromorphism is production of multiple sperm types, or morphs, within a single male. In the case of the obscura species, males produce two or three sperm morphs of different sizes, simultaneously, within the same testis, and throughout their lifetime. A long sperm morph, the eusperm is fertile, whereas shorter sperm morphs, the parasperm, are non-fertilising and protect the eusperm within the female reproductive tract. Many studies over the past 55 years have measured sperm length of eusperm and parasperm in obscura species. One recent study found that D. pseudoobscura produces three sperm morphs, two parasperm and one eusperm, in contrast to the two morphs described in older studies of this species. Thus, the number of morphs made by some species in this clade is still in dispute. Here, we review sperm length data from previous studies and re-measure sperm of eight species including D. pseudoobscura. We used two statistical cluster analysis approaches to identify sperm morphs based on sperm and nucleus length, to test whether multiple parasperm morphs are present in more species than previously identified. We confirmed the presence of two parasperm morphs in D. pseudoobscura, and found that two closely related species, D. persimilis and D. miranda, also produce two parasperm morphs. D. affinis, D. azteca, D. bifasciata, D. guanche and D. subobscura produce a single parasperm morph, indicating that the presence of two parasperm is a derived feature in the pseudoobscura species subgroup.

zoology↗

Differential gene expression underpinning production of distinct sperm morphs in the wax moth Galleria mellonella.

Male Lepidoptera makes two distinct sperm types; each ejaculate contains both eupyrene sperm, which can fertilise the egg, and apyrene sperm, which are not fertilisation competent. These sperm have distinct morphologies, unique functions, and different proteomes. Their production is highly regulated, however very few genes with specific roles in production of one or other morph have been described. We present the first comparative transcriptomics study of precursors of eupyrene and apyrene sperm to identify genes potentially implicated in regulating or enacting the distinct differentiation programmes. Differentially expressed genes included genes with potential roles in transcriptional regulation, cell cycle and sperm morphology. We identified gene duplications generating paralogues with functions restricted to one or other morph. However phylogenetic analysis also revealed evolutionary flexibility in expression patterns of duplicated genes between different Lepidopteran species. Improved understanding of Lepidopteran reproduction will be vital in targeting prevalent pests in agriculture, and on the flip side, ensuring the fertility and thus survival of pollinator populations in response to environmental stress.

developmental biology↗