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Biomedical subjects

Kay Lucek

Publications and source records attributed to Kay Lucek.

10 recordsLinked to original sources

Beauty bias in butterfly research and conservation.

Conservation biases have been documented since the first emergence of the concept of biodiversity in the 1980s,1,2,3 showing a systematic disproportion in the allocation of research and conservation efforts among taxa.4,5,6,7,8,9,10,11 One factor underlying this disproportion, gaining prominence in recent literature, is species' perceived beauty, shaped by human visual preferences.12,13,14,15,16,17 Here, we integrate a large-scale survey of the perceived beauty of European butterflies yielding >21,000 survey completions from >100 countries into a time-explicit network linking species' beauty, public attention, research and conservation efforts, and the EU regulatory framework. We found that species beauty is consistently associated with public attention, research, and conservation efforts in a temporally structured pattern compatible with a cumulative beauty bias. Research effort and public attention concentrate on widespread and visually attractive species, whereas species included in the legal conservation framework, particularly the Convention on the Conservation of European Wildlife and Natural Habitats (hereafter, Bern Convention, BC, 1979)18 and the EU Habitats Directive (hereafter, HD, 1992)19 are disproportionately represented by visually appealing and historically protected taxa. Because these frameworks guide funding and management actions, early associations between species beauty and BC/HD inclusion have contributed to long-lasting institutional patterns in butterfly research and conservation. By contrast, European IUCN Red Lists20,21 do not overrepresent beautiful species and identify more inconspicuous taxa as threatened. This mismatch reveals a tension between scientific assessments of extinction risk and historically embedded conservation priorities. Our findings suggest that recognizing beauty bias is vital for aligning conservation with actual ecological urgency. VIDEO ABSTRACT.

Animals

The genome sequence of the Shepherd's Fritillary, Boloria pales (Denis & Schiffermüller), 1775 (Lepidoptera: Nymphalidae).

We present a genome assembly from a female specimen of Boloria pales (Shepherd's Fritillary; Arthropoda; Insecta; Lepidoptera; Nymphalidae). The assembly contains two haplotypes with total lengths of 382.99 megabases and 364.88 megabases. Most of haplotype 1 (99.96%) is scaffolded into 30 chromosomal pseudomolecules, including the Z sex chromosome. Haplotype 2 was assembled to scaffold level. The mitochondrial genome has also been assembled, with a length of 15.17 kilobases. Gene annotation of this assembly on Ensembl identified 12,117 protein-coding genes.

Boloria pales

The genome sequence of the Red-underwing Skipper, Spialia sertorius (Hoffmannsegg, 1804) (Lepidoptera: Hesperiidae).

We present a genome assembly from a female specimen of Spialia sertorius (Red-underwing Skipper; Arthropoda; Insecta; Lepidoptera; Hesperiidae). The assembly contains two haplotypes with total lengths of 364.57 megabases and 323.91 megabases. Most of haplotype 1 (99.92%) is scaffolded into 32 chromosomal pseudomolecules, including the W and Z sex chromosomes. Haplotype 2 was assembled to scaffold level. The mitochondrial genome has also been assembled, with a length of 15.34 kilobases. Gene annotation of this assembly on Ensembl identified 12,823 protein-coding genes.

Lepidoptera

The genome sequence of the Southern Grizzled Skipper, Pyrgus malvoides (Elwes & Edwards, 1897) (Lepidoptera: Hesperiidae).

We present a genome assembly from a male specimen of Pyrgus malvoides (Southern Grizzled Skipper; Arthropoda; Insecta; Lepidoptera; Hesperiidae). The assembly contains two haplotypes with total lengths of 746.71 megabases and 747.11 megabases. Most of haplotype 1 (99.8%) is scaffolded into 31 chromosomal pseudomolecules, including the Z sex chromosome. Haplotype 2 was assembled to scaffold level. The mitochondrial genome has also been assembled, with a length of 15.41 kilobases. Gene annotation of this assembly on Ensembl identified 14,715 protein-coding genes.

Lepidoptera

The genome sequence of the Golden Plusia, Polychrysia moneta (Fabricius, 1787) (Lepidoptera: Noctuidae).

We present a genome assembly from a male specimen of Polychrysia moneta (Golden Plusia; Arthropoda; Insecta; Lepidoptera; Noctuidae). The assembly contains two haplotypes with total lengths of 430.64 megabases and 425.60 megabases. Most of haplotype 1 (98.46%) is scaffolded into 31 chromosomal pseudomolecules, including the Z sex chromosome. Haplotype 2 was assembled to scaffold level. The mitochondrial genome has also been assembled, with a length of 15.26 kilobases. This work is part of Project Psyche, a collaborative programme generating genomes for European butterflies and moths.

Polychrysia moneta; Golden Plusia; genome sequence

The genome sequence of the Large Wall Brown, Lasiommata maera (Linnaeus, 1758) (Lepidoptera: Nymphalidae).

We present a genome assembly from a female specimen of Lasiommata maera (Large Wall Brown; Arthropoda; Insecta; Lepidoptera; Nymphalidae). The assembly contains two haplotypes with total lengths of 480.89 megabases and 424.47 megabases. Most of haplotype 1 (99.88%) is scaffolded into 29 chromosomal pseudomolecules, including the W and Z sex chromosomes. Haplotype 2 was assembled to scaffold level. The mitochondrial genome has also been assembled, with a length of 15.77 kilobases.

Large Wall Brown

The genome sequence of the Dusky Grizzled Skipper, Pyrgus cacaliae (Rambur, 1839) (Lepidoptera: Hesperiidae).

We present a genome assembly from a female specimen of Pyrgus cacaliae (Dusky Grizzled Skipper; Arthropoda; Insecta; Lepidoptera; Hesperiidae). The assembly contains two haplotypes with total lengths of 808.81 megabases and 696.79 megabases. Most of haplotype 1 (94.63%) is scaffolded into 31 chromosomal pseudomolecules, including the W and Z sex chromosomes. Haplotype 2 was assembled to scaffold level. The mitochondrial genome has also been assembled, with a length of 15.43 kilobases.

Dusky Grizzled Skipper

The genome sequence of the Camberwell Beauty, Nymphalis antiopa (Linnaeus, 1758) (Lepidoptera: Nymphalidae).

We present a genome assembly from a male specimen of Nymphalis antiopa (Camberwell Beauty; Arthropoda; Insecta; Lepidoptera; Nymphalidae). The assembly contains two haplotypes with total lengths of 392.57 megabases and 391.53 megabases. Most of haplotype 1 (99.42%) is scaffolded into 31 chromosomal pseudomolecules, including the Z sex chromosome. Haplotype 2 was assembled to scaffold level. The mitochondrial genome has also been assembled, with a length of 15.26 kilobases.

Camberwell Beauty

The genome sequence of the de Prunner's Ringlet, Erebia triaria von Prunner, 1798 (Lepidoptera: Nymphalidae).

We present a genome assembly from a female specimen of Erebia triaria (de Prunner's Ringlet; Arthropoda; Insecta; Lepidoptera; Nymphalidae). The assembly contains two haplotypes with total lengths of 521.30 megabases and 412.03 megabases. Most of haplotype 1 (99.7%) is scaffolded into 17 chromosomal pseudomolecules, including the Z 1, Z 2, and W sex chromosomes. Haplotype 2 was assembled to scaffold level. The mitochondrial genome has also been assembled, with a length of 15.26 kilobases.

Erebia triaria

The genome sequence of the Garden Tiger, Arctia caja (Linnaeus, 1758) (Lepidoptera: Erebidae).

We present a genome assembly from a male specimen of Arctia caja (Garden Tiger; Arthropoda; Insecta; Lepidoptera; Erebidae). The assembly contains two haplotypes with total lengths of 700.59 megabases and 699.20 megabases. Most of haplotype 1 (99.63%) is scaffolded into 31 chromosomal pseudomolecules, including the Z sex chromosome. Haplotype 2 was assembled to scaffold level. The mitochondrial genome has also been assembled, with a length of 15.41 kilobases.

Arctia caja