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23 results for “Panulirus”

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edi52/100

SBC LTER: Reef: Abundance, size and fishing effort for California Spiny Lobster (Panulirus interruptus), ongoing since 2012

Data on abundance, size and fishing pressure of California spiny lobster (Panulirus interruptus) are collected along the mainland coast of the Santa Barbara Channel. Spiny lobsters are an important predator in giant kelp forests off southern California. Two SBC LTER study reefs are located in or near the California Fish and Game Network of Marine Protected Areas (MPA), Naples and Isla Vista, both established as MPAs on 2012-01-01. MPAs provide a unique opportunity to investigate the effects of fishing on kelp forest community dynamics. Sampling began in 2012 and is ongoing. This dataset contains two tables. 1) Abundance and size data collected annually by divers in late summer before the start of the fishing season at five SBC LTER long term kelp forest study sites: two within MPAs (Naples and Isla Vista) and three outside (Arroyo Quemado, Mohawk and Carpinteria). 2) Fishing pressure, as determined by counting the number of commercial trap floats. Data are collected every two to four weeks during the lobster fishing season (October to March) at nine sites along the mainland, eight of which are also SBC LTER long-term kelp forest study reefs. See Methods for more information.

openCC (other)May 2024View details →
zenodo48/100

DATASET: De novo assembly and functional annotation of the heart + hemolymph transcriptome in the Caribbean spiny lobster Panulirus argus

<p>The spiny lobster <em>Panulirus argus</em> is an ecologically relevant species in shallow water coral reefs and target of the most lucrative fishery in the greater Caribbean region. This study reports, for the first time, the heart + hemolymph transcriptome of the Caribbean spiny lobster<em> Panulirus argus</em> assembled from short Illumina 150&thinsp;bp PE raw reads. A total 80,152,094 raw reads were assembled using the Oyster River Protocol pipeline that aspires to become the standard protocol for <em>de novo</em> transcriptome assembly. The assembly resulted in a total of 254,773 transcripts. Functional gene annotation was conducted using the software package &#39;dammit&#39; that also aspires to become the standard protocol for <em>de novo</em> transcriptome annotation. Lastly, gene enrichment analyses were conducted using the Gene Ontology (GO), KEGG pathway analyses (Kaas), and KOG (WebMGA) databases. This resource will be of utmost importance in future research aiming at exploring the effect of local and regional anthropogenic disturbances as well as global climate change on the molecular physiology of this overexploited species.</p>

opencc-by-4.0Dec 2019View details →
zenodo40/100

Fig. 2 in Characterization Of Six Lobster Species Of The Genus Panulirus (Decapoda, Palinuridae) From Aceh Waters, Indonesia Based On Morphometric Analysis

Fig. 2. Map of the research location, where the left is Aceh Jaya Regency and the right is Simeulue Regency (red markers indicate location of the data collection).

opencc-by-4.0Jun 2024View details →
zenodo40/100

Fig. 3 in Characterization Of Six Lobster Species Of The Genus Panulirus (Decapoda, Palinuridae) From Aceh Waters, Indonesia Based On Morphometric Analysis

Fig. 3. Schematic of the morphometric measurement of the genus Panulirus. Measurement designations are given in table 1.

opencc-by-4.0Jun 2024View details →
zenodo40/100

Fig. 1 in Characterization Of Six Lobster Species Of The Genus Panulirus (Decapoda, Palinuridae) From Aceh Waters, Indonesia Based On Morphometric Analysis

Fig. 1. Sample of the genus Panulirus: A — Panulirus penicillatus (local name: Lobster Batu), B — Panulirus homarus (L. Pasir), C — Panulirus longipes (L. Batik), D — Panulirus ornatus (L. Mutiara), E — Panulirus versicolor (L. Bambu), F —Panulirus polyphagus (L. Pakistan). Scale bar 2 cm.

opencc-by-4.0Jun 2024View details →
zenodo32/100

FIGURE 5 in Recognizing Panulirus meripurpuratus sp. nov. (Decapoda: Palinuridae) in Brazil—Systematic and biogeographic overview of Panulirus species in the Atlantic Ocean

FIGURE 5. Map of the Atlantic Ocean with details of the American Continent (North and South), Africa and Oceanic Islands; and the distribution of the species within genus Panulirus: [red] P. arg us; [purple] P. meripurpuratus; [brown] P. guttatus; [orange] P. echinatus; [green] P. regius; and [yellow] P. laevicauda.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 4 in Recognizing Panulirus meripurpuratus sp. nov. (Decapoda: Palinuridae) in Brazil—Systematic and biogeographic overview of Panulirus species in the Atlantic Ocean

FIGURE 4. Species of Panulirus from the Atlantic Ocean. A, P. a rgu s (Latreille, 1804) in Cuba; B, P. meripurpuratus sp. nov. in Bahia, Brazil; C, P. guttatus (Latreille, 1804) in Cuba; D, P. echinatus Smith, 1869 in Pernambuco, Brazil; E, P. regius De Brito Capello, 1864 in Cape Verde; F, P. laevicauda (Latreille, 1817) in Bahia, Brazil. The colours of the textbox correspond to the colour in the distribution map in Fig 5. Photographic Credits: Wolfram Sander (A, C); Claudio Sampaio (B, F); Bruno W. Giraldes (D); Rui Freitas (E).

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 2 in Recognizing Panulirus meripurpuratus sp. nov. (Decapoda: Palinuridae) in Brazil—Systematic and biogeographic overview of Panulirus species in the Atlantic Ocean

FIGURE 2. Details of Panulirus meripurpuratus sp. nov. A, the male paratype #3 (CL = 92 mm) with lighter colour; B, antennular plate of holotype highlighting the four spines in square; C, lateral view of the right second maxillipeds of holotype; D, lateral view of the right third maxillipeds of holotype; E, abdominal somites 2–4 of holotype highlighting the end of the groove in each somite; F, abdominal somites 2–4 of female paratype #6 (CL = 81mm) highlighting the end of the separated groove even with spotted line in transverse groove merged; G, abdomen of female paratype #4 (CL = 78 mm) highlighting the pleopods with endopod and exopod; H, details of pleopods with endopod and exopod of female paratype #6 (CL = 81 mm). Scales: A = 5 cm; B–G = 2 cm; H = 1 cm. Photographic Credits: Jesser Fidelis.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 1 in Recognizing Panulirus meripurpuratus sp. nov. (Decapoda: Palinuridae) in Brazil—Systematic and biogeographic overview of Panulirus species in the Atlantic Ocean

FIGURE 1. Holotype of Panulirus meripurpuratus sp. nov. captured in Pernambuco—Brazil. Scales: 5cm. Photographic credits: Jesser Fidelis.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 3 in Recognizing Panulirus meripurpuratus sp. nov. (Decapoda: Palinuridae) in Brazil—Systematic and biogeographic overview of Panulirus species in the Atlantic Ocean

FIGURE 3. Panulirus meripurpuratus sp. nov. photographed at night in-situ in different habitats according to life stage. A, puerulus alone on reef fringe (reef surface) at shallow coastal reefs; B–C, juveniles upside down in groups in cavity in the caves at shallow reefs; D, F, large juveniles or pre-adults in the interface between soft substrate and reef in shallow coastal reefs; E, pre-adults foraging in the bottom among the reef structures, G–H, adults in deep zones in soft bottom and near the reefs. Images: specimens from Salvador-BA photographed by Claudio Sampaio (A, D–F); specimen from Fernando de Noronha-PE photographed by Bruno Welter Giraldes (B, C); specimens from Fernando de Noronha-PE photographed by Ronaldo Guillen (G–H).

opennotspecifiedDec 2016View details →
dryad32/100

Data from: Oceanographic currents and local ecological knowledge indicate, and genetics does not refute, a contemporary pattern of larval dispersal for the ornate spiny lobster, Panulirus ornatus in the South-East Asian archipelago

Here we utilize a combination of genetic data, oceanographic data, and local ecological knowledge to assess connectivity patterns of the ornate spiny lobster Panulirus ornatus (Fabricius, 1798) in the South-East Asian archipelago from Vietnam to Australia. Partial mitochondrial DNA control region and 10 polymorphic microsatellites did not detect genetic structure of 216 wild P. ornatus samples from Australia, Indonesia and Vietnam. Analyses show no evidence for genetic differentiation among populations (mtDNA control region sequences ΦST = -0.008; microsatellite loci FST = 0.003). A lack of evidence for regional or localized mtDNA haplotype clusters, or geographic clusters of microsatellite genotypes, reveals a pattern of high gene flow in P. ornatus throughout the South-East Asian Archipelago. This lack of genetic structure may be due to the oceanography-driven connectivity of the pelagic lobster larvae between spawning grounds in Papua New Guinea, the Philippines and, possibly, Indonesia. The connectivity cycle necessitates three generations. The lack of genetic structure of P. ornatus population in the South-East Asian archipelago has important implications for the sustainable management of this lobster in that the species within the region needs to be managed as one genetic stock.

opencc-zeroDec 2014View details →
dryad32/100

Data from: Seascape genetics of the spiny lobster Panulirus homarus in the Western Indian Ocean: understanding how oceanographic features shape the genetic structure of species with high larval dispersal potential

Open the record for dataset details and reuse information.

publicNov 2018View details →
dryad32/100

Data from: High levels of polyandry, but limited evidence for multiple paternity, in wild populations of the western rock lobster (Panulirus cygnus)

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publicFeb 2019View details →
dryad32/100

Data from: Oceanographic currents and local ecological knowledge indicate, and genetics does not refute, a contemporary pattern of larval dispersal for the ornate spiny lobster, Panulirus ornatus in the South-East Asian archipelago

Open the record for dataset details and reuse information.

publicAug 2015View details →
edi32/100

Data pertaining to lobster phyllosoma, Panulirus interruptus, collection methods, locations, identification and staging (1951-2008, months of July and August)

The very large collection of plankton hauls taken in connection with the California Cooperative Oceanic Fisheries Investigations (CalCOFI) has afforded a unique opportunity to study the occurrence and distribution of the phyllosoma larvae of the spiny lobster. JOHNSON, MARTIN W. 1960. The Distribution of Larvae of the Spiny Lobster, Panulirus interruptus (Randall) with Records on P. Gracilis Streets. California Cooperative Fisheries Investigation 7: 413-46.

openCustomMar 2017View details →
zenodo28/100

Figure 2 from: Landa-Jaime V, Aguilar-Palomino B, Michel-Morfín JE, Lozano MS (2018) First report of partial albinism in the blue lobster Panulirus inflatus (Bouvier, 1895) from the Mexican Pacific (Crustacea, Decapoda, Palinuridae). ZooKeys 784: 1-6. https://doi.org/10.3897/zookeys.784.25082

Figure 2 Blue Lobster Panulirusinflatus. a Complete dorsal view b Partial dorsal view c Partial ventral view.

opencc-by-4.0Sep 2018View details →
zenodo28/100

Figure 6 from: Briones-Fourzán P (2014) Differences in life-history and ecological traits between co-occurring Panulirus spiny lobsters (Decapoda, Palinuridae). In: Wehrtmann IS, Bauer RT (Eds) Proceedings of the Summer Meeting of the Crustacean Society and the Latin American Association of Carcinology, Costa Rica, July 2013. ZooKeys 457: 289-311. https://doi.org/10.3897/zookeys.457.6669

Figure 6 - Diet of Panulirus argus and Panulirus guttatus from Puerto Morelos, Mexico. For each food item the index of relative importance (IRI) is estimated as IRI = (% frequency × % weight)/100. (Data from Colinas-Sánchez and Briones-Fourzán 1990).

opencc-by-4.0Nov 2014View details →
zenodo28/100

Figure 3 from: Briones-Fourzán P (2014) Differences in life-history and ecological traits between co-occurring Panulirus spiny lobsters (Decapoda, Palinuridae). In: Wehrtmann IS, Bauer RT (Eds) Proceedings of the Summer Meeting of the Crustacean Society and the Latin American Association of Carcinology, Costa Rica, July 2013. ZooKeys 457: 289-311. https://doi.org/10.3897/zookeys.457.6669

Figure 3 - Diet of Panulirus gracilis and Panulirus inflatus from Zihuatanejo, Mexico. For each food item the index of relative importance (IRI) is estimated as IRI = (% frequency × % weight)/100. (Data from Lozano-Álvarez and Aramoni-Serrano 1996).

opencc-by-4.0Nov 2014View details →
zenodo28/100

Figure 2 from: Briones-Fourzán P (2014) Differences in life-history and ecological traits between co-occurring Panulirus spiny lobsters (Decapoda, Palinuridae). In: Wehrtmann IS, Bauer RT (Eds) Proceedings of the Summer Meeting of the Crustacean Society and the Latin American Association of Carcinology, Costa Rica, July 2013. ZooKeys 457: 289-311. https://doi.org/10.3897/zookeys.457.6669

Figure 2 - Differences in some life-history traits between Panulirus gracilis and Panulirus inflatus from Zihuatanejo, Mexico. A carapace length (CL) distribution (n Panulirus gracilis: 2162, n Panulirus inflatus: 1873) B mean size C growth rate of males (mm CL week–1, n Panulirus gracilis: 148, n Panulirus inflatus: 34) D brood size (number of eggs per clutch) versus CL relationship. Error bars denote 95% confidence intervals. (Data from A, B Briones-Fourzán and Lozano-Álvarez 1992, C Briones-Fourzán and Lozano-Álvarez 2003, D Gracia 1985, Fernández-Lomelín 1992).

opencc-by-4.0Nov 2014View details →
zenodo28/100

Figure 5 from: Briones-Fourzán P (2014) Differences in life-history and ecological traits between co-occurring Panulirus spiny lobsters (Decapoda, Palinuridae). In: Wehrtmann IS, Bauer RT (Eds) Proceedings of the Summer Meeting of the Crustacean Society and the Latin American Association of Carcinology, Costa Rica, July 2013. ZooKeys 457: 289-311. https://doi.org/10.3897/zookeys.457.6669

Figure 5 - Differences in some life-history traits between Panulirus argus and Panulirus guttatus from Puerto Morelos, Mexico. A carapace length (CL) distribution (n Panulirus argus: 717, n Panulirus guttatus: 450) B mean size C growth rate of males (mm CL week–1, n Panulirus argus: 148, n Panulirus guttatus: 57) D brood size (number of eggs per clutch) versus CL relationship. Error bars denote 95% confidence intervals. (Data from A, B Lozano-Álvarez et al. 2007, Briones-Fourzán and Lozano-Álvarez 2013, C Negrete-Soto et al. 2002, D Fonseca-Larios and Briones-Fourzán 1998, Briones-Fourzán and Contreras-Ortiz 1999).

opencc-by-4.0Nov 2014View details →

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