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1.
Proc Biol Sci ; 291(2028): 20240533, 2024 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-39109969

RESUMEN

Butterflies, like many insects, use gustatory and olfactory cues innately to assess the suitability of an oviposition site and are able to associate colours and leaf shapes with an oviposition reward. Studies on other insects have demonstrated that the quality of the reward is a crucial factor in forming associative memory. We set out to investigate whether the large cabbage white Pieris brassicae (Linnaeus) has the ability to associate an oviposition experience with a neutral olfactory cue. In addition, we tested whether the strength of this association is dependent on the gustatory response to the glucosinolate sinigrin, which is a known oviposition stimulus for P. brassicae. Female butterflies were able to associate a neutral odour with an oviposition experience after a single oviposition experience, both in a greenhouse and in a semi-natural outdoor setting. Moreover, butterflies performed best when trained with concentrations of sinigrin that showed the strongest response by specific gustatory neurons on the forelegs. Our study provides novel insight into the role of both gustatory and olfactory cues during oviposition learning in lepidopterans and contributes to a better understanding of how these insects might be able to adapt to a rapidly changing environment.


Asunto(s)
Mariposas Diurnas , Señales (Psicología) , Aprendizaje , Oviposición , Animales , Mariposas Diurnas/fisiología , Femenino , Glucosinolatos/metabolismo , Olfato , Odorantes/análisis
2.
Commun Biol ; 7(1): 774, 2024 Jul 01.
Artículo en Inglés | MEDLINE | ID: mdl-38951581

RESUMEN

Machine learning (ML) newly enables tests for higher inter-species diversity in visible phenotype (disparity) among males versus females, predictions made from Darwinian sexual selection versus Wallacean natural selection, respectively. Here, we use ML to quantify variation across a sample of > 16,000 dorsal and ventral photographs of the sexually dimorphic birdwing butterflies (Lepidoptera: Papilionidae). Validation of image embedding distances, learnt by a triplet-trained, deep convolutional neural network, shows ML can be used for automated reconstruction of phenotypic evolution achieving measures of phylogenetic congruence to genetic species trees within a range sampled among genetic trees themselves. Quantification of sexual disparity difference (male versus female embedding distance), shows sexually and phylogenetically variable inter-species disparity. Ornithoptera exemplify high embedded male image disparity, diversification of selective optima in fitted multi-peak OU models and accelerated divergence, with cases of extreme divergence in allopatry and sympatry. However, genus Troides shows inverted patterns, including comparatively static male embedded phenotype, and higher female than male disparity - though within an inferred selective regime common to these females. Birdwing shapes and colour patterns that are most phenotypically distinctive in ML similarity are generally those of males. However, either sex can contribute majoritively to observed phenotypic diversity among species.


Asunto(s)
Mariposas Diurnas , Animales , Femenino , Mariposas Diurnas/genética , Mariposas Diurnas/fisiología , Mariposas Diurnas/anatomía & histología , Masculino , Fenotipo , Filogenia , Caracteres Sexuales , Evolución Biológica , Aprendizaje Automático , Alas de Animales/anatomía & histología , Alas de Animales/fisiología
3.
Rev Sci Instrum ; 95(7)2024 Jul 01.
Artículo en Inglés | MEDLINE | ID: mdl-39058364

RESUMEN

This paper introduces a method for measuring wing motion, deformation, and inertial forces in bio-inspired aircraft research using a camera motion capture system. The method involves placing markers on the wing surface and fitting rigid planes to determine the wing's spatial axis. This allows for describing the wing's rigid motion and obtaining deformation characteristics, such as deflection, twist angle, and gap distance of the forewing and hindwing. An image-based method is proposed for determining wing mass distribution, mass blocks, and mass points for inertial force measurement. The study addresses wing motion, deformation, and inertial force measurement in a real butterfly-like flapping wing vehicle and demonstrates the effectiveness of the approach. The results reveal that inertial forces play a negligible role in the generation of lift peaks and contribute minimal lift during the entire flapping cycle. Furthermore, a transitional phase between downstroke and upstroke is found in flexible wing motion, which has high lift production. This measurement approach offers a rapid and effective solution to experimental challenges in bio-inspired aircraft design and optimization.


Asunto(s)
Mariposas Diurnas , Alas de Animales , Alas de Animales/fisiología , Mariposas Diurnas/fisiología , Animales , Biomimética/instrumentación , Vuelo Animal/fisiología , Fenómenos Biomecánicos , Fenómenos Mecánicos , Materiales Biomiméticos , Movimiento (Física)
4.
J R Soc Interface ; 21(216): 20240156, 2024 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-39044626

RESUMEN

Animals, most notably insects, generally seem to accumulate electrostatic charge in nature. These electrostatic charges will exert forces on other charges in these animals' environments and therefore have the potential to attract or repel other objects, for example, pollen from flowers. Here, we show that butterflies and moths (Lepidoptera) accumulate electrostatic charge while in flight. Then, using finite element analysis, we demonstrate that when within millimetres of a flower, the electrostatic charge of a lepidopteran generates an electric field in excess of 5 kV m-1, and that an electric field of this magnitude is sufficient to elicit contactless pollen transfer from flowers across air gaps onto the body of a butterfly or moth. Furthermore, we see that phylogenetic variations exist in the magnitude and polarity of net charge between different species and families and Lepidoptera. These phylogenetic variations in electrostatic charging correlate with morphological, biogeographical and ecological differences between different clades. Such correlations with biogeographical and ecological differences may reflect evolutionary adaptations towards maximizing or minimizing charge accumulation, in relation to pollination, predation and parasitism, and thus we introduce the idea that electrostatic charging may be a trait upon which evolution can act.


Asunto(s)
Mariposas Diurnas , Mariposas Nocturnas , Polinización , Electricidad Estática , Animales , Mariposas Diurnas/fisiología , Polinización/fisiología , Mariposas Nocturnas/fisiología , Filogenia
5.
Proc Biol Sci ; 291(2027): 20240627, 2024 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-39045691

RESUMEN

The extent to which evolution is repeatable has been a debated topic among evolutionary biologists. Although rewinding the tape of life perhaps would not lead to the same outcome every time, repeated evolution of analogous genes for similar functions has been extensively reported. Wing phenotypes of butterflies and moths have provided a wealth of examples of gene re-use, with certain 'hotspot loci' controlling wing patterns across diverse taxa. Here, we present an example of convergent evolution in the molecular genetic basis of Batesian wing mimicry in two Hypolimnas butterfly species. We show that mimicry is controlled by variation near cortex/ivory/mir-193, a known butterfly hotspot locus. By dissecting the genetic architecture of mimicry in Hypolimnas misippus and Hypolimnas bolina, we present evidence that distinct non-coding regions control the development of white pattern elements in the forewing and hindwing of the two species, suggesting independent evolution, and that no structural variation is found at the locus. Finally, we also show that orange coloration in H. bolina is associated with optix, a well-known patterning gene. Overall, our study once again implicates variation near the hotspot loci cortex/ivory/mir-193 and optix in butterfly wing mimicry and thereby highlights the repeatability of adaptive evolution.


Asunto(s)
Mimetismo Biológico , Mariposas Diurnas , Alas de Animales , Mariposas Diurnas/genética , Mariposas Diurnas/fisiología , Animales , Alas de Animales/anatomía & histología , Pigmentación/genética , MicroARNs/genética , Evolución Biológica , Fenotipo
6.
Biol Lett ; 20(7): 20240303, 2024 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-39079677

RESUMEN

Dynamic flash coloration is a type of antipredator coloration where intermittently appearing colour patterns in moving animals misdirect predator attacks by obscuring the precise location and trajectory of the moving prey. Birds and butterflies with differing dorsoventral wing coloration or iridescent surface structures may potentially benefit from such effects. However, we lack an understanding of what makes for an effective dynamic flash colour design and how much it benefits the carrier. Here, we test the effect of colour flashing using small passerine birds preying upon colourful, moving, virtual 'prey' stimuli on a touchscreen. We show that at fast speeds, green-to-blue flashing colour patterns can reduce the likelihood of pecks hitting the target, induce greater error in targeting accuracy and increase the number of pecks at a stimulus relative to similarly coloured non-flashing targets. Our results support the idea that dynamic flash coloration can deflect predatory attacks at fast speeds, but the effect may be the opposite when moving slowly.


Asunto(s)
Color , Conducta Predatoria , Animales , Reacción de Fuga/fisiología , Pigmentación , Passeriformes/fisiología , Mariposas Diurnas/fisiología
7.
ACS Biomater Sci Eng ; 10(8): 4855-4864, 2024 Aug 12.
Artículo en Inglés | MEDLINE | ID: mdl-39038266

RESUMEN

Butterflies constitute approximately 10% of lepidopteran insects, and along with silkworms, they can produce silk; however, this feature is often ignored. In the present study, we observed two primary methods used by butterflies to hang pupae on trees using silk: pupa adheraena (Danaus chrysippus) and pupa contigua (Papilio polytes). Anchoring the abdominal ends of pupae with a silk pad was the most common method used in both cases, whereas wrapping silk around the body using a silk girdle was a method unique to pupa contigua. The connection between the cremaster and silk pad was observed to be similar to that between the hook and loop of a Velcro fastener, except that the cremaster hook is anchor-shaped rather than being a single hook. Such a connection will remain secure, ensuring the safety of the pupae during exposure to wind and rain. Through determining the mechanical properties of silk, the performance of butterfly silk was found to be weaker than that of silkworm silk. Therefore, the P. polytes silk girdle adopts the strategy of merging a dozen silk threads to improve its strength and toughness, thereby making it difficult to break. In addition, we explained how the protein sequence and structure of butterfly silk impact its performance. In conclusion, we discovered that butterfly pupae develop unique body features to establish secure bonds with silk. This enables them to effectively undergo metamorphosis and endure harsh weather conditions and surroundings.


Asunto(s)
Mariposas Diurnas , Pupa , Seda , Animales , Mariposas Diurnas/fisiología , Seda/química , Árboles , Bombyx
8.
Curr Biol ; 34(12): R564-R565, 2024 Jun 17.
Artículo en Inglés | MEDLINE | ID: mdl-38889675

RESUMEN

Painted ladies are well-known migratory butterflies, but confirmation of the details of their swarming flights through Europe has evaded scientists until now. It was their role as pollinators, carrying pollen grains on their flights, that helped unlock the secrets of their migrations.


Asunto(s)
Migración Animal , Mariposas Diurnas , Polen , Polinización , Animales , Mariposas Diurnas/fisiología , Migración Animal/fisiología , Europa (Continente) , Vuelo Animal/fisiología
9.
Curr Biol ; 34(12): 2684-2692.e6, 2024 Jun 17.
Artículo en Inglés | MEDLINE | ID: mdl-38848713

RESUMEN

Migratory insects may move in large numbers, even surpassing migratory vertebrates in biomass. Long-distance migratory insects complete annual cycles through multiple generations, with each generation's reproductive success linked to the resources available at different breeding grounds. Climatic anomalies in these grounds are presumed to trigger rapid population outbreaks. Here, we infer the origin and track the multigenerational path of a remarkable outbreak of painted lady (Vanessa cardui) butterflies that took place at an intercontinental scale in Europe, the Middle East, and Africa from March 2019 to November 2019. Using metabarcoding, we identified pollen transported by 264 butterflies captured in 10 countries over 7 months and modeled the distribution of the 398 plants detected. The analysis showed that swarms collected in Eastern Europe in early spring originated in Arabia and the Middle East, coinciding with a positive anomaly in vegetation growth in the region from November 2018 to April 2019. From there, the swarms advanced to Northern Europe during late spring, followed by an early reversal toward southwestern Europe in summer. The pollen-based evidence matched spatiotemporal abundance peaks revealed by citizen science, which also suggested an echo effect of the outbreak in West Africa during September-November. Our results show that population outbreaks in a part of species' migratory ranges may disseminate demographic effects across multiple generations in a wide geographic area. This study represents an unprecedented effort to track a continuous multigenerational insect migration on an intercontinental scale.


Asunto(s)
Migración Animal , Mariposas Diurnas , Código de Barras del ADN Taxonómico , Polen , Animales , Mariposas Diurnas/fisiología , Europa (Continente)/epidemiología , Medio Oriente/epidemiología , África/epidemiología , Estaciones del Año
10.
New Phytol ; 243(4): 1571-1585, 2024 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-38922897

RESUMEN

Increased temperature can induce plastic changes in many plant traits. However, little is known about how these changes affect plant interactions with insect pollinators and herbivores, and what the consequences for plant fitness and selection are. We grew fast-cycling Brassica rapa plants at two temperatures (ambient and increased temperature) and phenotyped them (floral traits, scent, colour and glucosinolates). We then exposed plants to both pollinators (Bombus terrestris) and pollinating herbivores (Pieris rapae). We measured flower visitation, oviposition of P. rapae, herbivore development and seed output. Plants in the hot environment produced more but smaller flowers, with lower UV reflectance and emitted a different volatile blend with overall lower volatile emission. Moreover, these plants received fewer first-choice visits by bumblebees and butterflies, and fewer flower visits by butterflies. Seed production was lower in hot environment plants, both because of a reduction in flower fertility due to temperature and because of the reduced visitation of pollinators. The selection on plant traits changed in strength and direction between temperatures. Our study highlights an important mechanism by which global warming can change plant-pollinator interactions and negatively impact plant fitness, as well as potentially alter plant evolution through changes in phenotypic selection.


Asunto(s)
Brassica rapa , Mariposas Diurnas , Flores , Aptitud Genética , Calor , Polinización , Polinización/fisiología , Animales , Flores/fisiología , Abejas/fisiología , Brassica rapa/fisiología , Mariposas Diurnas/fisiología , Herbivoria/fisiología , Semillas/fisiología , Compuestos Orgánicos Volátiles/metabolismo , Compuestos Orgánicos Volátiles/análisis , Fenotipo , Oviposición/fisiología , Temperatura , Carácter Cuantitativo Heredable
11.
Sci Rep ; 14(1): 14920, 2024 06 28.
Artículo en Inglés | MEDLINE | ID: mdl-38942916

RESUMEN

Monarch butterfly (Danaus plexippus L.) populations have declined in North America. The International Union for Conservation of Nature (IUCN) recently classified the species as endangered, sparking public concern and conservation efforts. Our approach to conservation is through cryopreservation of germinal cells and tissue. The goal of this study was to develop a cryopreservation protocol for monarch spermatozoa to ensure successful long-term storage. Cryopreserved sperm cells would provide a reserve of monarch germplasm, which could be utilized in the event of population loss. In this study, sperm cell bundles collected from male monarch butterflies were cryopreserved in a cryoprotective medium and stored in liquid nitrogen. To determine the post-cryopreservation sperm cell viability, a subsample of preserved sperm bundles were thawed rapidly, and their viability was qualified using a sperm live/dead stain. We are presenting a protocol to preserve and store genetic material and viable sperm bundles of the monarch butterfly. To date, this is the first report of successful cryopreservation of monarch germplasm which sets the foundation for cryostorage and could be extensible to other vulnerable lepidopterans.


Asunto(s)
Mariposas Diurnas , Conservación de los Recursos Naturales , Criopreservación , Espermatozoides , Mariposas Diurnas/fisiología , Criopreservación/métodos , Animales , Masculino , Espermatozoides/fisiología , Conservación de los Recursos Naturales/métodos , Especies en Peligro de Extinción , Supervivencia Celular , Crioprotectores/farmacología
13.
Bioinspir Biomim ; 19(4)2024 Jun 28.
Artículo en Inglés | MEDLINE | ID: mdl-38866024

RESUMEN

The diversity in butterfly morphology has attracted many people around the world since ancient times. Despite morphological diversity, the wing and body kinematics of butterflies have several common features. In the present study, we constructed a bottom-up butterfly model, whose morphology and kinematics are simplified while preserving the important features of butterflies. The present bottom-up butterfly model is composed of two trapezoidal wings and a rod-shaped body with a thorax and abdomen. Its wings are flapped downward in the downstroke and backward in the upstroke by changing the geometric angle of attack (AOA). The geometric AOA is determined by the thorax-pitch and wing-pitch angles. The thorax-pitch angle is actively controlled by abdominal undulation, and the wing-pitch angle is passively determined because of a rotary spring representing the basalar and subalar muscles connecting the wings and thorax. We investigated the effectiveness of abdominal undulation for thorax-pitch control and how wing-pitch flexibility affects aerodynamic-force generation and thorax-pitch control, through numerical simulations using the immersed boundary-lattice Boltzmann method. As a result, the thorax-pitch angle perfectly follows the desired angle through abdominal undulation. In addition, there is an optimal wing-pitch flexibility that maximizes the flying speed in both the forward and upward directions, but the effect of wing-pitch flexibility on thorax-pitch control is not significant. Finally, we compared the flight behavior of the present bottom-up butterfly model with that of an actual butterfly. It was found that the present model does not reproduce reasonable body kinematics but can provide reasonable aerodynamics in butterfly flights.


Asunto(s)
Mariposas Diurnas , Simulación por Computador , Vuelo Animal , Modelos Biológicos , Tórax , Alas de Animales , Alas de Animales/fisiología , Alas de Animales/anatomía & histología , Animales , Mariposas Diurnas/fisiología , Mariposas Diurnas/anatomía & histología , Vuelo Animal/fisiología , Tórax/fisiología , Fenómenos Biomecánicos
14.
Nat Commun ; 15(1): 5205, 2024 Jun 25.
Artículo en Inglés | MEDLINE | ID: mdl-38918383

RESUMEN

The extent of aerial flows of insects circulating around the planet and their impact on ecosystems and biogeography remain enigmatic because of methodological challenges. Here we report a transatlantic crossing by Vanessa cardui butterflies spanning at least 4200 km, from West Africa to South America (French Guiana) and lasting between 5 and 8 days. Even more, we infer a likely natal origin for these individuals in Western Europe, and the journey Europe-Africa-South America could expand to 7000 km or more. This discovery was possible through an integrative approach, including coastal field surveys, wind trajectory modelling, genomics, pollen metabarcoding, ecological niche modelling, and multi-isotope geolocation of natal origins. The overall journey, which was energetically feasible only if assisted by winds, is among the longest documented for individual insects, and potentially the first verified transatlantic crossing. Our findings suggest that we may be underestimating transoceanic dispersal in insects and highlight the importance of aerial highways connecting continents by trade winds.


Asunto(s)
Mariposas Diurnas , Vuelo Animal , Animales , Mariposas Diurnas/fisiología , Vuelo Animal/fisiología , Viento , Ecosistema , América del Sur , Europa (Continente) , Migración Animal/fisiología , Polen , África , Distribución Animal
15.
Behav Processes ; 220: 105071, 2024 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-38908610

RESUMEN

Prey-predator interactions have resulted in the evolution of many anti-predatory traits. One of them is the ability for prey to listen to predators and avoid them. Although prey anti-predatory behavioural responses to predator auditory cues are well described in a wide range of taxa, studies on whether butterflies change their behaviours in response to their predatory calls are lacking. Heliconius butterflies are unpalatable and form Müllerian mimicry rings as morphological defence strategies against their avian predators. Like many other butterflies in the Nymphalidae family, some Heliconius butterflies possess auditory organs, which are hypothesized to assist with predator detection. Here we test whether Heliconius melpomene change their behaviour in response to their predatory bird calls by observing the behaviour of male and female H. m. plessini exposed to calls of Heliconius avian predators: rufous-tailed jacamar, migratory Eastern kingbird, and resident tropical kingbird. We also exposed them to the calls of the toco toucan, a frugivorous bird as a control bird call, and an amplified greenhouse background noise as a noise control. We found that individuals changed their behaviour in response to jacamar calls only. Males increased their walking and fluttering behaviour, while females did not change their behaviour during the playback of the jacamar call. Intersexual behaviours like courtship, copulation, and abdomen lifting did not change in response to bird calls. Our findings suggest that despite having primary predatory defences like toxicity and being in a mimicry ring, H. m. plessini butterflies changed their behaviour in response to predator calls. Furthermore, this response was predator specific, as H. m. plesseni did not respond to either the Eastern kingbird or the tropical kingbird calls. This suggests that Heliconius butterflies may be able to differentiate predatory calls, and potentially the birds associated with those calls.


Asunto(s)
Mariposas Diurnas , Conducta Predatoria , Animales , Mariposas Diurnas/fisiología , Conducta Predatoria/fisiología , Masculino , Femenino , Vocalización Animal/fisiología , Aves/fisiología , Mimetismo Biológico/fisiología , Conducta Animal/fisiología
16.
Naturwissenschaften ; 111(4): 34, 2024 Jun 24.
Artículo en Inglés | MEDLINE | ID: mdl-38913166

RESUMEN

With ongoing insect declines, species expanding in distribution and abundance deserve attention, as understanding their success may help design conservation strategies for less successful species. Common causes of these successes include warmer climates, novel resources, and exploiting land use change, including land abandonment. These factors affect the nymphalid butterfly Neptis rivularis, developing on Spiraea spp. shrubs and reaching the north-western limits of its trans-Palearctic distribution in Central Europe. We combined mark-recapture, behaviour analysis, and distribution modelling to study N. rivularis in wetlands of the Trebonsko Protected Landscape (IUCN category V). The long-living adults (up to 4 weeks) spent a considerable amount of time searching for partners, ovipositing and nectaring at Spiraea shrubs, alternating this with stays in tree crowns, where they located cool shelters, spent nights, and presumably fed on honeydew. They formed high-density populations (310 adults/ha), exploiting high host plant abundance. They adhered to floodplains and to conditions of relatively mild winters. The ongoing Spiraea encroachment of abandoned alluvial grasslands is, thus, a transient situation, ultimately followed by forest encroachment. Rewilding the habitats by introducing native ungulates presents an opportunity to restore the disturbance regime of the sites. The increased resource supply combined with a warming climate has opened up temperate Europe to colonization by N. rivularis.


Asunto(s)
Mariposas Diurnas , Humedales , Animales , Mariposas Diurnas/fisiología , República Checa
17.
J Anim Ecol ; 93(8): 1160-1171, 2024 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-38922857

RESUMEN

Species are often expected to shift their distributions either poleward or upslope to evade warming climates and colonise new suitable climatic niches. However, from 18-years of fixed transect monitoring data on 88 species of butterfly in the midwestern United States, we show that butterflies are shifting their centroids in all directions, except towards regions that are warming the fastest (southeast). Butterflies shifted their centroids at a mean rate of 4.87 km year-1. The rate of centroid shift was significantly associated with local climate change velocity (temperature by precipitation interaction), but not with mean climate change velocity throughout the species' ranges. Species tended to shift their centroids at a faster rate towards regions that are warming at slower velocities but increasing in precipitation velocity. Surprisingly, species' thermal niche breadth (range of climates butterflies experience throughout their distribution) and wingspan (often used as metric for dispersal capability) were not correlated with the rate at which species shifted their ranges. We observed high phylogenetic signal in the direction species shifted their centroids. However, we found no phylogenetic signal in the rate species shifted their centroids, suggesting less conserved processes determine the rate of range shift than the direction species shift their ranges. This research shows important signatures of multidirectional range shifts (latitudinal and longitudinal) and uniquely shows that local climate change velocities are more important in driving range shifts than the mean climate change velocity throughout a species' entire range.


Asunto(s)
Distribución Animal , Evolución Biológica , Mariposas Diurnas , Cambio Climático , Animales , Mariposas Diurnas/fisiología , Filogenia , Medio Oeste de Estados Unidos
18.
Nat Commun ; 15(1): 4073, 2024 May 20.
Artículo en Inglés | MEDLINE | ID: mdl-38769302

RESUMEN

Vivid structural colours in butterflies are caused by photonic nanostructures scattering light. Structural colours evolved for numerous biological signalling functions and have important technological applications. Optically, such structures are well understood, however insight into their development in vivo remains scarce. We show that actin is intimately involved in structural colour formation in butterfly wing scales. Using comparisons between iridescent (structurally coloured) and non-iridescent scales in adult and developing H. sara, we show that iridescent scales have more densely packed actin bundles leading to an increased density of reflective ridges. Super-resolution microscopy across three distantly related butterfly species reveals that actin is repeatedly re-arranged during scale development and crucially when the optical nanostructures are forming. Furthermore, actin perturbation experiments at these later developmental stages resulted in near total loss of structural colour in H. sara. Overall, this shows that actin plays a vital and direct templating role during structural colour formation in butterfly scales, providing ridge patterning mechanisms that are likely universal across lepidoptera.


Asunto(s)
Citoesqueleto de Actina , Actinas , Mariposas Diurnas , Pigmentación , Alas de Animales , Animales , Mariposas Diurnas/metabolismo , Mariposas Diurnas/fisiología , Mariposas Diurnas/ultraestructura , Alas de Animales/ultraestructura , Alas de Animales/metabolismo , Citoesqueleto de Actina/metabolismo , Citoesqueleto de Actina/ultraestructura , Actinas/metabolismo , Color , Escamas de Animales/metabolismo , Escamas de Animales/ultraestructura
19.
Curr Biol ; 34(10): R490-R492, 2024 05 20.
Artículo en Inglés | MEDLINE | ID: mdl-38772333

RESUMEN

The causes and consequences of sex-ratio dynamics constitutes a pivotal subject in evolutionary biology1. Under conditions of evolutionary equilibrium, the male-to-female ratio tends to be approximately 1:1; however, this equilibrium is susceptible to distortion by selfish genetic elements exemplified by driving sex chromosomes and cytoplasmic elements2,3. Although previous studies have documented instances of these genetic elements distorting the sex ratio, studies specifically tracking the process with which these distorters spread within populations, leading to a transition from balanced parity to a skewed, female-biased state, are notably lacking. Herein, we present compelling evidence documenting the rapid spread of the cytoplasmic endosymbiont Wolbachia within a localized population of the pierid butterfly Eurema hecabe (Figure 1A). This spread resulted in a shift in the sex ratio from near parity to an exceedingly skewed state overwhelmingly biased toward females, reaching 93.1% within a remarkably brief period of 4 years.


Asunto(s)
Mariposas Diurnas , Razón de Masculinidad , Simbiosis , Wolbachia , Animales , Wolbachia/fisiología , Wolbachia/genética , Mariposas Diurnas/microbiología , Mariposas Diurnas/fisiología , Mariposas Diurnas/genética , Femenino , Masculino
20.
PLoS One ; 19(5): e0289742, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-38748698

RESUMEN

Pollinator losses threaten ecosystems and food security, diminishing gene flow and reproductive output for ecological communities and impacting ecosystem services broadly. For four focal families of bees and butterflies, we constructed over 1400 ensemble species distribution models over two time periods for North America. Models indicated disproportionally increased richness in eastern North America over time, with decreases in richness over time in the western US and southern Mexico. To further pinpoint geographic areas of vulnerability, we mapped records of potential pollinator species of conservation concern and found high concentrations of detections in the Great Lakes region, US East Coast, and southern Canada. Finally, we estimated asymptotic diversity indices for genera known to include species that visit flowers and may carry pollen for ecoregions across two time periods. Patterns of generic diversity through time mirrored those of species-level analyses, again indicating a decline in pollinators in the western U.S. Increases in generic diversity were observed in cooler and wetter ecoregions. Overall, changes in pollinator diversity appear to reflect changes in climate, though other factors such as land use change may also explain regional shifts. While statistical methods were employed to account for unequal sampling effort across regions and time, improved monitoring efforts with rigorous sampling designs would provide a deeper understanding of pollinator communities and their responses to ongoing environmental change.


Asunto(s)
Biodiversidad , Mariposas Diurnas , Polinización , Mariposas Diurnas/fisiología , Animales , Abejas/fisiología , América del Norte , Ecosistema
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