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211 results for “Mating Systems”
Data from: Mating system variation and gene expression in the male reproductive tract of Peromyscus mice
<p>Genes involved in reproduction often evolve rapidly at the sequence level due to postcopulatory sexual selection (PCSS) driven by male-male competition and male-female sexual conflict, but the impact of PCSS on gene expression has been under-explored. Further, though multiple tissues contribute to male reproductive success, most studies have focused on the testes. To explore the influence of mating system variation on reproductive tract gene expression in natural populations, we captured adult males from monogamous <em>Peromyscus californicus</em> and polygynandrous<em> P. boylii</em> and <em>P. maniculatus</em>. We generated RNAseq libraries, quantified gene expression in the testis, seminal vesicle, epididymis, and liver, and identified 3,627 mating system-associated differentially expressed genes (MS-DEGs), where expression shifted in the same direction in <em>P. maniculatus</em> and <em>P. boylii</em> relative to <em>P. californicus</em>. Gene expression variation was most strongly associated with mating behavior in the seminal vesicles, where 89% of differentially expressed genes were MS-DEGs, including key seminal fluid proteins <em>Svs2</em> and <em>Pate4</em>. We also used published rodent genomes to test for positive and relaxed selection on <em>Peromyscus</em>-expressed genes. Though we did not observe more overlap than expected by chance between MS-DEGs and positively selected genes, 203 MS-DEGs showed evidence of positive selection. Fourteen reproductive genes were under tree-wide positive selection but convergent relaxed selection in <em>P. californicus</em> and <em>Microtus ochrogaster</em>, a distantly related monogamous species. Changes in transcript abundance and gene sequence evolution in association with mating behavior suggest that male mice may respond to sexual selection intensity by altering aspects of sperm motility, sperm-egg binding, and copulatory plug formation.</p>
Study on the mating systems of wild rice Oryza rufipogon and O. nivara and their effects on population genetic variation
<p>As the wild ancestors of Asian cultivated rice,<em> Oryza rufipogon</em> Griff. and <em>O. nivara</em> Sharma et Shastry serve as valuable germplasms for rice breeding. Mating systems are important in shaping the level and pattern of population genetic variation, and are crucial for germplasm conservation. We genotyped 12 simple sequence repeats (SSR) markers for a large number of maternal plants and seeds collected from <em>O</em>.<em> rufipogon</em> and <em>O. nivara</em> populations distributed in Southeast Aisa and South China. Based on the 12 SSR markers, we estimated the outcrossing rates and other parameters of the mixed-mating model for the two wild rice species. We also assessed the level of genetic diversity and population structure for parental populations of <em>O</em>.<em> rufipogon</em> and <em>O. nivara</em>. Our study could facilitate <em>in situ</em> and <em>ex situ</em> conservation, and the utilization of these valuable germplasm resources.</p>
Three sex phenotypes in a haploid algal species give insights into the evolutionary transition to a self-compatible mating system
<p>Mating systems of haploid species such as fungi, algae, and bryophytes are either heterothallic (self-incompatible) with two sex phenotypes (male and female, or mating type <i>minus</i> and <i>plus</i> in isogamous species) or homothallic (self-compatible) with only a bisexual phenotype producing zygotes within a clone. The anisogamous volvocine green alga <i>Pleodorina starrii</i> is a haploid species previously reported to have a heterothallic mating system. Here, we found that two additional culture strains originating from the same water system of <i>P. starrii</i> were taxonomically identified as <i>P. starrii</i> and produced male and female gametes and zygotes within a clone (bisexual). Sequences of rapidly evolving plastid genome regions were identical between the bisexual and unisexual (male or female) <i>P. starrii</i> strains. Intercrossings between the bisexual and unisexual strains demonstrated normal thick-walled zygotes and high survivability of F1 strains. Thus, these strains belong to the same biological species. <i>P. starrii</i> has a new haploid mating system that is unique in having three sex phenotypes; namely, male, female, and bisexual. Genetic analyses suggested the existence of autosomal "bisexual factor" locus independent of volvocine male and female determining regions. The present findings increase our understanding of the initial evolutionary step of transition from heterothallism to homothallism.</p>
Pollinator foraging tactics have divergent consequences for the mating system of a tropical plant
<p>Resolving the consequences of pollinator foraging behaviour for plant mating systems is a fundamental challenge in evolutionary ecology. Pollinators may adopt particular foraging tactics: complete trapline foraging (repeated movements along a fixed route), sample-and-shift trapline foraging (a variable route that incorporates information from previous experiences), and territorial foraging (stochastic movements within a restricted area). Studies that integrate these pollinator foraging tactics with plant mating systems are generally lacking.</p> <p>We investigate the consequences of particular pollinator foraging tactics for <em>Heliconia</em> <em>tortuosa</em>. We combine parentage and sibship inference analysis with simulation modeling to: (1) estimate mating system parameters; (2) infer the foraging tactic adopted by the pollinators; and (3) quantify the impact of pollinator foraging tactics on mating system parameters.</p> <p>We found high outcrossing rates, ubiquitous multiple paternity, and a pronounced departure from near-neighbour mating. We also found that plants repeatedly receive pollen from a series of particular donors. We infer that the pollinators primarily adopt complete trapline foraging and occasionally engage in sample-and-shift trapline foraging. This enhances multiple paternity without a substantial increase in near-neighbour mating.</p> <p>The particular pollinator foraging tactics have divergent consequences for multiple paternity and near-neighbour mating. Thus, pollinator foraging behaviour is an important driver of the ecology and evolution of plant mating systems.</p>
Data from: Climate change consequences for differential adult survival and the mating system of a temperate breeding shorebird
<p>Managing for the effects of climate change on species whose populations are currently imperiled requires detailed knowledge of the relationship between their demographic rates and climate variables. We sought this information for the West Coast breeding population of snowy plover (<em>Charadrius nivosus</em>), which was federally listed as threatened in 1993 due to substantial declines in the numbers of plovers breeding along the coast and in the number of sites occupied for breeding. Snowy plovers employ a serially polygamous breeding system in which the male typically tends chicks to independence. This unusual breeding system is favored by male-biased sex ratios in local populations. As part of a multi-species study of the effect of climate change on population growth, we used mark-capture models to examine climate drivers of adult survival for 1,219 snowy plovers banded at Monterey Bay over 38 years and known to overwinter on the surrounding north-central California outer coast. Non-climate variables, including sex and unmeasured annual mortality risks (e.g., predator abundance) were the primary factors affecting adult survival. However, there is evidence that cold weather, particularly extended cold snaps with daily low temperatures below 2˚C and daily high temperatures below 10˚C, decreases overwinter survival. Exceptionally cold winters had a particularly strong effect on adult female plovers, contributing to the male-biased adult sex ratios. Future winter climate on the north-central California coast is projected to be generally warmer with fewer and shorter cold snaps. Reduced mortality from cold winter weather may mitigate other threats faced by plovers, such as anthropogenically enhanced predator populations, habitat loss, and accelerated sea level rise, while altering the adult sex ratio and potentially shifting the evolutionary landscape maintaining the plover's unusual breeding system.</p>
Data for: Complex cross incompatibility in morning glories is consistent with a role for mating system in plant speciation
<p><span>Reproductive isolation between selfing and outcrossing species can arise through diverse mechanisms, some of which are directly associated with differences in mating system. We dissected cross incompatibility between the highly selfing morning glory <em>Ipomoea</em> <em>lacunosa</em> and its mixed-mating sister species <em>I. cordatotriloba</em>. We found that cross incompatibility is complex, with contributions acting both before and after fertilization. We then investigated whether the transition in mating system may have facilitated the evolution of these reproductive barrier components through mismatched floral morphology, differences in reproductive context, or both. We found evidence that morphological mismatch likely contributes to reproductive isolation in at least one cross direction and that other pollen-pistil interactions are present. We also identified hybrid seed inviability consistent with the predictions of the weak-inbreeder, strong-outbreeder hypotheses, suggesting endosperm misregulation plays an important role in cross incompatibility. In contrast, we did not find evidence consistent with the pre-zygotic weak-inbreeder, strong-outbreeder hypothesis. Our study highlights the complexity of reproductive isolation between outcrossing and selfing species and the extent to which evolutionary consequences of mating system transitions can facilitate speciation.</span></p>
Correlated evolution of sex allocation and mating system in wrasses and parrotfishes
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Facultative polyandry under heat stress and the evolutionary potential for climate-driven shifts in mating systems
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Data from: Allometric constraints and the modulation of weapon evolution by mating system in fiddler crabs
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A global analysis of aerial displays in passerines revealed an effect of habitat, mating system and migratory traits
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Data from: Populations with greater flexibility in floral traits modify mating system in response to the pollinator environment
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Data from: A low-latitude species pump: Peripheral isolation, parapatric speciation and mating-system evolution converge in a marine radiation
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Data from: Complex cross incompatibility in morning glories is consistent with a role for mating system in plant speciation
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Thermal conditions alter the mating behavior of males in a polygynous system
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Data from: Genetic analysis provides insight into the mating system of <em>Meleagris gallopavo</em> (wild turkey) and reveals frequent extra-pair paternity
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Data from: Mating consequences of contrasting hermaphroditic plant sexual systems
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Data from: Mating system variation and gene expression in the male reproductive tract of Peromyscus mice
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Data from: Molecular sibship reconstruction reveals a promiscuous mating system in brood parasitic little bronze-cuckoos (Chalcites minutillus)
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An atypical mating system in a neotropical manakin
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Population genomic consequences of life history and mating system adaptation to a geothermal soil mosaic in yellow monkeyflowers (common garden phenotype data)
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.