Effects of adaptation to crowded larval environment on the evolution of sperm competitive ability in males of Drosophila melanogaster.

IF 2.4 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Fly Pub Date : 2025-12-01 Epub Date: 2024-12-18 DOI:10.1080/19336934.2024.2437204
Rohit Kapila, Komal Maggu, Neetika Ahlawat, Nagaraj Guru Prasad
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Abstract

Two of the most important environmental factors that affect the sperm competitive ability in males are the availability of resources and the socio-sexual environment. Numerous studies have investigated the individual effects of these factors, but their combined effect on the evolution of sperm competitive ability remains untested. A crowded larval environment is unique because it simultaneously affects the fitness of the organism through both resource availability and the socio-sexual environment. In this study, we used a set of four laboratory populations of D. melanogaster, evolved under a crowded larval environment for more than 165 generations and their respective controls to investigate how the sperm competitive ability of the males is affected by a single generation of larval crowding versus evolution under a crowded larval environment for more than 165 generations. Our results show that larval crowding negatively affects the sperm defence ability of males evolved in a crowded larval environment, while it has no effect on the sperm defence ability of control males. Additionally, larval crowding negatively impacts the sperm offence ability in both control and evolved populations. Males from populations adapted to a crowded larval environment exhibit lower sperm offence ability at an older age compared to control populations.

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适应拥挤的幼虫环境对雄性黑腹果蝇精子竞争能力进化的影响。
影响男性精子竞争能力的两个最重要的环境因素是资源的可用性和社会性环境。许多研究已经调查了这些因素的个体影响,但它们对精子竞争能力进化的综合影响仍未得到检验。拥挤的幼虫环境是独特的,因为它同时通过资源可用性和社会性环境影响生物体的适应性。本研究以在165代以上的拥挤幼虫环境下进化而来的4个黑腹田鼠实验种群为研究对象,研究了在165代以上的拥挤幼虫环境下,雄鼠精子竞争能力与雄鼠精子竞争能力的差异。结果表明,幼虫拥挤对在拥挤环境中进化的雄虫的精子防御能力有负面影响,而对对照雄虫的精子防御能力没有影响。此外,幼虫拥挤对控制种群和进化种群的精子攻击能力都有负面影响。与对照种群相比,适应了拥挤幼虫环境的种群中的雄性在老年时表现出较低的精子攻击能力。
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来源期刊
Fly
Fly 生物-生化与分子生物学
CiteScore
2.90
自引率
0.00%
发文量
17
审稿时长
>12 weeks
期刊介绍: Fly is the first international peer-reviewed journal to focus on Drosophila research. Fly covers a broad range of biological sub-disciplines, ranging from developmental biology and organogenesis to sensory neurobiology, circadian rhythm and learning and memory, to sex determination, evolutionary biology and speciation. We strive to become the “to go” resource for every researcher working with Drosophila by providing a forum where the specific interests of the Drosophila community can be discussed. With the advance of molecular technologies that enable researchers to manipulate genes and their functions in many other organisms, Fly is now also publishing papers that use other insect model systems used to investigate important biological questions. Fly offers a variety of papers, including Original Research Articles, Methods and Technical Advances, Brief Communications, Reviews and Meeting Reports. In addition, Fly also features two unconventional types of contributions, Counterpoints and Extra View articles. Counterpoints are opinion pieces that critically discuss controversial papers questioning current paradigms, whether justified or not. Extra View articles, which generally are solicited by Fly editors, provide authors of important forthcoming papers published elsewhere an opportunity to expand on their original findings and discuss the broader impact of their discovery. Extra View authors are strongly encouraged to complement their published observations with additional data not included in the original paper or acquired subsequently.
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A fast in situ hybridization chain reaction method in Drosophila embryos and ovaries. Effects of adaptation to crowded larval environment on the evolution of sperm competitive ability in males of Drosophila melanogaster. A history of studies of reproductive isolation between Drosophila pseudoobscura and D. persimilis. A face-off between Smaug and Caspar modulates primordial germ cell count and identity in Drosophila embryos. Exploring the versatility of Drosophila melanogaster as a model organism in biomedical research: a comprehensive review.
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