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Arnet, J.

Publications and source records attributed to Arnet, J..

3 recordsLinked to original sources

Latent gene network expression underlies the reversion of a polyphenic trait in the worker caste of ants

Polyphenisms--where alternative phenotypes develop from a single genome in response to environmental cues--are not only widespread in nature, but also occur at multiple levels of biological organization, from cells to individuals to societies. Polyphenism is thought to promote phenotypic diversification through the gain, loss, and re-evolution of alternative phenotypes. After the origin of a polyphenism, one of the alternative phenotypes often retains the developmental capacity to produce the ancestral trait, thereby permitting the other to evolve rapidly. Yet, little is known about the developmental processes underlying the re-evolution of polyphenic traits and how they may produce phenotypic diversification. Here we address this question by focusing on the caste polyphenism in ant societies, which produces a winged queen caste and a wingless worker caste in a single colony in response to environmental cues. We show, in a hyperdiverse group of ants, that a caste-specific trait called the ocelli (3 simple eyes on the dorsal head) is always present across queen castes but was lost and partially re-evolved multiple times, giving rise to novel patterns (1 ocelli) in the worker castes. Surprisingly, we discovered that a hidden (latent) expression of the ocelli gene regulatory network in worker castes that lost ocelli underlies the partial re-evolution of ocelli in this group. We therefore propose that latent developmental potentials may generally persist across polyphenic systems, including ant castes, and may facilitate the partial re-evolution of novel phenotypic patterns.

evolutionary biology↗

Green alleys in Quebec provide variable biodiversity support and ecosystem services

Green infrastructure is increasing in popularity in cities globally because of its potential to improve urban sustainability and resident quality of life. In this paper, we studied green alleys in two Quebec cities, one with a resident-led green alley program and one with a municipally led program. Green alleys are conceptualized and promoted as green infrastructure that provide many benefits for urban residents. Using mixed social and ecological methods, we assessed 53 green alleys capacity to support biodiversity and provide ecosystem services, alongside 23 grey alleys and 76 streets. We interviewed residents to select the ecosystem services that were most relevant to people living around green alleys and then measured indicators of ecosystem service capacity with traditional ecological techniques, harnessing an interdisciplinary approach to ecosystem service assessment. Green alleys provided more biodiversity support than grey alleys and adjacent street segments but did not consistently increase the capacity for ecosystem services. Vegetative complexity and proportion of native tree species are both higher in green alleys than traditional grey alleys and adjacent streets. The proportion of flowering trees was one indicator of ecosystem services that was consistently higher in green alleys. Resident-led vs municipally led creation and management of green alleys resulted in different results, where resident-led alleys were more able to target the needs of residents but resulted in high levels of variation in both support for biodiversity and ecosystem services. We recommend ongoing funding paired with technical expert support to increase the impact of green alleys.

ecology↗

Physiological Profiles of Male and Female CrossFit Athletes

ObjectiveTo 1) establish extensive physiological profiles of highly-trained CrossFit athletes using gold-standard tests and 2) investigate which physiological markers best correlate with CrossFit(R) Open performance. MethodsThis study encompassed sixty participants (30 males and 30 females), all within the top 5% of the CrossFit(R) Open, including 7 CrossFit(R) Semi-finalists and 3 Games finalists. Isokinetic dynamometers were employed to measure maximum isometric and isokinetic leg and trunk strength. Countermovement jump height and maximum isometric mid-thigh pull strength were assessed on a force plate. V{square}O2peak was measured by a cardiopulmonary exercise test, while critical power and W were evaluated during a 3-minute all-out test, both on a cycle ergometer. ResultsMale and female athletes median (IQR) V{square}O2peak was 4.64 (4.43, 4.80) and 3.21 (3.10, 3.29) (L{middle dot}min-1), critical power 314.5 (285.9, 343.6) and 221.3 (200.9, 238.9) (W) and mid-thigh pull 3158 (2690, 3462) and 2035 (1728, 2347) (N). Linear regression analysis shows strong evidence for associations between different anthropometric variables and CrossFit(R) Open performance in men and women, whereas for markers of cardiorespiratory fitness such as V{square}O2peak this was only true for women but not men. Conventional laboratory evaluations of strength, however, manifest minimal evidence for associations with Open performance across both sexes. ConclusionsThis study provides the first detailed insights into the physiology of high-performing CrossFit(R) athletes and informs training optimization. Further the results emphasize the advantage of athletes with shorter limbs and suggests potential modifications to Open workout designs to level the playing field for athletes across different anthropometrics characteristics.

physiology↗