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Dendritic and axonal morphology reflects the input and output of neurons and is a defining feature of neuronal types, yet our knowledge of its diversity remains limited. Here, to systematically examine complete single-neuron morphologies on a brain-wide scale, we established a pipeline encompassing sparse labelling, whole-brain imaging, reconstruction, registration and analysis. We fully reconstructed 1,741 neurons from cortex, claustrum, thalamus, striatum and other brain regions in mice. We identified 11 major projection neuron types with distinct morphological features and corresponding transcriptomic identities. Extensive projectional diversity was found within each of these major types, on the basis of which some types were clustered into more refined subtypes. This diversity follows a set of generalizable principles that govern long-range axonal projections at different levels, including molecular correspondence, divergent or convergent projection, axon termination pattern, regional specificity, topography, and individual cell variability. Although clear concordance with transcriptomic profiles is evident at the level of major projection type, fine-grained morphological diversity often does not readily correlate with transcriptomic subtypes derived from unsupervised clustering, highlighting the need for single-cell cross-modality studies. Overall, our study demonstrates the crucial need for quantitative description of complete single-cell anatomy in cell-type classification, as single-cell morphological diversity reveals a plethora of ways in which different cell types and their individual members may contribute to the configuration and function of their respective circuits.
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http://dx.doi.org/10.1038/s41586-021-03941-1 | DOI Listing |
Biodivers Data J
August 2025
Institute of Biology of the Karelian Research Centre of the Russian Academy of Sciences, Petrozavodsk, Russia Institute of Biology of the Karelian Research Centre of the Russian Academy of Sciences Petrozavodsk Russia.
Mosquitoes of the genus were collected in the Republic of Karelia, St. Petersburg, Leningrad Region, Novgorod Region and Pskov Region (Russia) in order to clarify their distribution and genetic and morphological diversity. ITS2 sequence analysis of s.
View Article and Find Full Text PDFFront Plant Sci
August 2025
Botany Area, Department of Plant Biology and Ecology, Faculty of Biology, University of Seville, Seville, Spain.
Understanding the relationship between macro- and microevolutionary processes and their delimitation remains a challenge. This review focuses on the role of chromosomal rearrangements in plant population differentiation and lineage diversification resulting in speciation, helping bridge the gap between macro- and microevolution through chromosomal evolution. We focus on angiosperms, a group that comprises the majority of extant plant species diversity and exhibits the largest chromosomal and genomic variations.
View Article and Find Full Text PDFCureus
September 2025
Department of Paediatric Histopathology, Alder Hey Children's Hospital, Liverpool, GBR.
Congenital heart disease (CHD) is the most common congenital anomaly. While surgical and interventional advancements have improved survival, the management of associated complications and comorbidities remains complex and would benefit from a personalised approach that more accurately predicts individualised risks and prognoses. Recently, next-generation sequencing has uncovered diverse genetic factors, including epigenetic modifications, somatic mosaicism and regulatory non-coding variants.
View Article and Find Full Text PDFMycoKeys
August 2025
Fungal Biology and Systematics Research Laboratory, Institute of Botany, University of the Punjab, Quaid-e-Azam Campus 54590, Lahore, Pakistan Chongqing Three Gorges Medical College Wanzhou Chongqing China.
In this study, four new species of the genus are described from Pakistan. Based on morphological and multi-locus phylogenetic analyses, we confirmed the distinction of these taxa. The newly identified species are designated as , , , and .
View Article and Find Full Text PDFIntegr Org Biol
July 2025
Department of Earth Sciences, University of Cambridge, Cambridge CB2 3EQ, UK.
Phylogenetic analyses of phenotypic characters in crown-group birds often recover results that are strongly incongruous with the findings of recent phylogenomic analyses. Furthermore, existing morphological datasets for crown birds are frequently limited by restricted taxon or character sampling, inconsistent character construction, incorrect scoring, or a combination of several of these factors. As part of an effort to address these limitations, in this study we focus on identifying phylogenetically informative characters of the avian pectoral girdle and forelimb skeleton, elements of which are commonly preserved as avian fossils.
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