Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
320
datasets available to search
ShareScore release 0.7.1
Dataset results
320 results for “Cyprinid”
Figure 2 in Capoeta raghazensis, a new species of algae-scraping cyprinid from the Raghaz Canyon in Hormuz basin, southern Iran (Teleostei: Cyprinidae)
Figure 2. Capoeta raghazensis sp. n., paratypes; A, IMNRF-UT-1105-7; 231 mm SL; B, IMNRF-UT-1105-6; 200 mm SL; C, IMNRF-UT- 1105-4; 114 mm SL.
Figure 2 in Capoeta raghazensis, a new species of algae-scraping cyprinid from the Raghaz Canyon in Hormuz basin, southern Iran (Teleostei: Cyprinidae)
Figure 2. Capoeta raghazensis sp. n., IMNRF-UT-1105-4, holotype, 112 mm SL. Iran: Hormuzgan prov., Darab City, Raghaz Canyon, Hormuz basin.
Figure 4 in Capoeta raghazensis, a new species of algae-scraping cyprinid from the Raghaz Canyon in Hormuz basin, southern Iran (Teleostei: Cyprinidae)
Figure 4. Raghaz Canyon, near Darab City, Hormuz basin, type locality of Capoeta raghazensis, sp. n..
Figure 1 in Length-weight, length-length and a proposed empirical standard weight equations for the Italian endemic cyprinid species Sarmarutilus rubilio
Figure 1. - Area of distribution of Sarmarutilus rubilio (in grey) (from IUCN, 2013 modified) and localization of sampling stations (black points).
Neglected patterns of variation in transgenerational plasticity: The importance of different sources of environmental variation differs across ages and sexes in a cyprinid fish
Open the record for dataset details and reuse information.
Figure 1 in Alburnoides qanati, a new species of cyprinid fish from southern Iran (Actinopterygii, Cyprinidae)
Figure 1. Alburnoides qanati sp. n., female holotype, 65.0 mm SL.
Under the radar: genetic assessment of Rio Grande Shiner (Notropis jemezanus) and Speckled Chub (Macrhybopsis aestivalis), two Rio Grande basin endemic cyprinids that have experienced recent range contractions
<p>The Rio Grande drainage of the southwestern United States and Mexico has undergone intense anthropogenic alteration by water diversions, extraction and associated habitat changes. These alterations have disproportionately impacted the pelagic broadcast spawning guild of minnows (pelagophils). Several Rio Grande endemic pelagophils, including the co-occurring Rio Grande Shiner (<i>Notropis jemezanus</i>) and Speckled Chub (<i>Macrhybopsis aestivalis</i>), have experienced dramatic recent range-wide declines yet have slipped under the radar of conservation efforts. The status of <i>N. jemezanus </i>and <i>M. aestivalis </i>in the Rio Grande and Pecos River was evaluated and standing genetic variation were characterized. Genetic evidence indicates that populations of both species found in the Rio Grande and Pecos River are genetically distinct. Additionally, 159 outlier loci were identified in <i>M. aestivalis </i>suggesting possible local adaptation in the Rio Grande and Pecos River populations. Though range-wide genetic data are limited, <i>N. jemezanus </i>populations in both rivers harbor considerable genetic diversity. Mitochondrial data from both taxa are consistent with a history of secondary contact between formerly isolated populations with deeply divergent haplotypes found within the Rio Grande and Pecos River populations of <i>N. jemezanus </i>and within the Rio Grande population of <i>M. aestivalis.</i> Extensive survey efforts in the lower Rio Grande and its tributaries in Texas document significant range contraction and near extirpation of <i>N. jemezanus </i>from this part of the basin; highlighting the need for immediate action to protect the species. </p>
Data from: Substantially adaptive potential in polyploid cyprinid fishes: evidence from biogeographic, phylogenetic and genomic studies
<p>Whole genome duplication is commonly believed to play key roles in vertebrate evolution. However, nowadays polyploidy exists in a few fish, amphibian, and reptile groups only, and seems to be an evolutionary dead-end in vertebrates. We investigate the evolutionary significance of polyploidization in Cyprinidae – a fish family that contains more polyploid species than any other vertebrate groups with integrating biogeographic, phylogenetic, and genomic analyses. First, polyploid species are found to be significantly frequent in higher altitude and lower mean annual temperature areas compared to diploid species in Cyprinidae. Second, a polyploidy-related diversification rate shift is observed in Cyprinidae. It is that increased net diversification rate is only seen in three polyploid lineages, and other polyploid lineages have similar net diversification rate as well as diploid lineages in Cyprinidae. Interestingly, significant 'lag-times' existed between polyploidization and radiation in Cyprinidae. Multiple polyploid lineages were established ~15 Mya through recurrent allopolyploidization events but net diversification rate did not start to increase until ~5 Mya – long after polyploidization events. Environmental changes associated with the continuous uplift of Tibetan Plateau and climate change have likely promoted the initial establishment and subsequent radiation of polyploidy in Cyprinidae. Finally, unique retention of duplicated genes in polyploid cyprinids adapted to harsh environments is found. Taken together, our results suggest that polyploidy in Cyprinidae is far more than an evolutionary dead-end, but rather shows substantially adaptive potential. Polyploid cyprinids thus constitute an ideal model system for unveiling largely unexplored consequences of whole genome duplication in vertebrates, from genomic evolution to species diversification.</p>
Image 2 in Garra kalpangi, a new cyprinid fish species (Pisces: Teleostei) from upper Brahmaputra basin in Arunachal Pradesh, India
Image 2. Garra kalpangi sp. nov., holotype. a - ventral view of disc; b - dorsal view of head.
Image 2 in Barilius profundus, a new cyprinid fish (Teleostei: Cyprinidae) from the Koladyne basin, India
Image 2. Koladyne River at Kolchaw, Mizoram, habitat of Barilius profundus sp. nov.
Image 1 in Garra kalpangi, a new cyprinid fish species (Pisces: Teleostei) from upper Brahmaputra basin in Arunachal Pradesh, India
Image 1. Garra kalpangi sp. nov., holotype, RGUMF-0006, 60mm SL.; Lateral view
Figure 1 in Barilius profundus, a new cyprinid fish (Teleostei: Cyprinidae) from the Koladyne basin, India
Figure 1. Map showing type locality of Barilius profundus sp. nov. indicated as a star.
Image 1 in Barilius profundus, a new cyprinid fish (Teleostei: Cyprinidae) from the Koladyne basin, India
Image 1. Barilius profundus sp. nov., side view of paratype, MUMF 27021, 69.9mm SL
Fig. 6 in Brevibora Cheeya, A New Species Of Cyprinid Fish From Malay Peninsula And Sumatra
Fig. 6: Type locality of Brevibora cheeya at Rantau Abang, Terengganu, Malaysia (February 2009).
Figure 1 in Parapsilorhynchus odishaensis, a new cyprinid fish (Teleostei: Cyprinidae) from Odisha, India
Figure 1. Parapsilorhynchus odishaensis sp. nov. (ZSI FF 4625), holotype, 35.0 mm SL.
Figure 3 in Parapsilorhynchus odishaensis, a new cyprinid fish (Teleostei: Cyprinidae) from Odisha, India
Figure 3. Map showing type locality of Parasilorhynchus odishaensis sp. nov.
Figure 3 in Garra chindwinensis, a new species of cyprinid fish (Teleostei: Cypriniformes) from Manipur, Northeastern India
Figure 3. Mental adhesive disc of Garra chindwinensis, (Paratype, PCZM F 1050, 104 mm SL).
Figure 4 in Garra chindwinensis, a new species of cyprinid fish (Teleostei: Cypriniformes) from Manipur, Northeastern India
Figure 4. Map showing type locality of Garra chindwinensis ().
Fig. 1 in Occurrence Of Dactylogyrus Infection Linked To Seasonal Changes And Host Fish Size On Four Cyprinid Fishes In Lake Manyas, Turkey
Fig. 1. Location of Lake Manyas in Northwest Turkey
Figure 2 in Development of empirical standard weight equation for Pursak chub Squalius pursakensis, an endemic cyprinid species of Northwest Anatolia
Figure 2. Area of distribution of Squalius pursakensis (dark gray area).
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.