By distorting Mendelian transmission to their own advantage, X-linked meiotic drive elements can rapidly spread in natural populations, generating a sex-ratio bias. One expected consequence is the triggering of a co-evolutionary arms race between the sex chromosome that carries the distorter and suppressors counteracting its effect. Such an arms race has been theoretically and experimentally established and can have many evolutionary consequences. However, its dynamics in contemporary populations is still poorly documented. Here, we investigate the fate of the young X-linked Paris driver in Drosophila simulans from sub-Saharan Africa to the Middle East. We provide the first example of the early dynamics of distorters and suppressors: we find consistent evidence that the driving chromosomes have been rising in the Middle East during the last decade. In addition, identical haplotypes are at high frequencies around the two co-evolving drive loci in remote populations, implying that the driving X chromosomes share a recent common ancestor and suggesting that East Africa could be the cradle of the Paris driver. The segmental duplication associated with drive presents an unusual structure in West Africa, which could reflect a secondary state of the driver. Together with our previous demonstration of driver decline in the Indian Ocean where suppression is complete, these data provide a unique picture of the complex dynamics of a co-evolutionary arms race currently taking place in natural populations of D. simulans.
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http://dx.doi.org/10.1111/mec.12492 | DOI Listing |
BMC Biol
January 2025
Department of Biology, Section of Zoophysiology, Aarhus University, Aarhus, 8000, Denmark.
Background: Echolocating bats face an intense arms race with insect prey that can detect bat calls and initiate evasive maneuvers. Their high closing speeds and short biosonar ranges leave bats with only a few 100 ms between detection and capture, suggesting a reactive sensory-motor operation that might preclude tracking of escaping prey. Here we test this hypothesis using greater mouse-eared bats (Myotis myotis) as a model species.
View Article and Find Full Text PDFJ Gen Intern Med
January 2025
Center for Health Equity Research and Promotion, Crescenz VA Medical Center, Philadelphia, PA, USA.
Background: Healthcare-based social need screening and referral (S&R) among adult populations has produced equivocal results regarding social need resource connection.
Objective: Assess the efficacy of S&R on resource connection (primary outcome) and unmet need reduction (secondary outcome).
Design: Intention-to-treat randomized controlled trial.
AJOG Glob Rep
February 2025
Department of Obstetrics and Gynecology, Northwestern University Feinberg School of Medicine, Chicago, IL (Steinberg, Young, Strom, Andebrhan, Perry, Barry, Holder, Roque, and Yee).
Background: In obstetrics and gynecology (OBGYN) research, gender disparities permeate through leadership, funding, promotion, mentorship, publishing, compensation, and publicity. Few studies have investigated OBGYN clinical trial leadership as it relates to investigator gender. Thus, we undertook an investigation of principal investigator (PI) gender and clinical trial success.
View Article and Find Full Text PDFInt Urogynecol J
January 2025
Department of Urogynecology and Reconstructive Pelvic Surgery, Atlantic Health System, 435 South Street, Suite 370, Morristown, NJ, 07960, USA.
Introduction And Hypothesis: The objective of our study was to evaluate the need for antibiotic prophylaxis for urinary tract infection (UTI) prevention before Onabotulinum toxin A injection for overactive bladder (OAB). We hypothesize that the lack of antibiotic prophylaxis might not be inferior to administering prophylaxis.
Methods: This was a multi-centered, nonblinded, randomized controlled trial conducted between August 2022 and September 2024.
bioRxiv
January 2025
Department of Plant and Microbial Biology, University of California, Berkeley, Berkeley, California, USA.
Bacteria are constantly threatened by their viral predators (phages), which has resulted in the development of defense systems for bacterial survival. One family of defense systems found widely across bacteria are OLD (for overcoming lysogeny defect) family nucleases. Despite recent discoveries regarding Class 2 and 4 OLD family nucleases and how phages overcome them, Class 1 OLD family nucleases warrant further study as there has only been one anti-phage Class 1 OLD family nuclease described to date.
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