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FIGURE 4 in Synopsis of Amphipoda from two recent Ross Sea voyages with description of a new species of Epimeria (Epimeriidae, Amphipoda, Crustacea)
FIGURE 4. Epimeria larsi sp. nov., male holotype, 39 mm, NIWA 48484: a, gnathopod 1; b, gnathopod 1 dactylus and propodus; c, gnathopod 2; d, gnathopod 2 dactylus and propodus; e, pereopod 3; f, pereopod 4; g, pleopod 1; h, apex of exopod of left pleopod 1. Scale = 1 mm.
FIGURE 2 in Synopsis of Amphipoda from two recent Ross Sea voyages with description of a new species of Epimeria (Epimeriidae, Amphipoda, Crustacea)
FIGURE 2. Epimeria larsi sp. nov., male holotype, 39 mm, NIWA 48484: a, lateral habitus; b, pleonites; c, maxilla 1; d, mandible; e, mandibular palp; f, left side of hypopharynx. Scale = 1 mm.
FIGURE 1 in Synopsis of Amphipoda from two recent Ross Sea voyages with description of a new species of Epimeria (Epimeriidae, Amphipoda, Crustacea)
FIGURE 1. Relative abundance of amphipods, split by family, collected during the BIOROSS and IPY expeditions to the western Ross Sea.
FIGURE 3 in Synopsis of Amphipoda from two recent Ross Sea voyages with description of a new species of Epimeria (Epimeriidae, Amphipoda, Crustacea)
FIGURE 3. Epimeria larsi sp. nov., male holotype, 39 mm, NIWA 48484: a, antenna 2; b, antenna 2, ventral view; c, antenna 1; d, maxilliped; e, maxilla 2. Scale = 1 mm.
FIGURE 11. Bradophila pygmaea Levinsen, 1878 in Enigmas from the past: M'Intosh's (1885) annelidicolous copepods from the voyage of H. M. S. Challenger
FIGURE 11. Bradophila pygmaea Levinsen, 1878 (♂): A, anterior half of cephalothorax, ventral (A1, antennule; A2, antenna;?Mx1, putative maxillule;?Mx2, putative maxilla; pmp., postmaxillary process; Mxp, maxilliped; o., vestigial oral opening). Melinnacheres levinseni (M'Intosh, 1885): B, habitus ♀, dorsal; C, habitus ♀, ventral (A1, antennule; A2, antenna; Mx2, maxilla; g.a., genital apertures).
FIGURE 10. Bradophila pygmaea Levinsen, 1878 in Enigmas from the past: M'Intosh's (1885) annelidicolous copepods from the voyage of H. M. S. Challenger
FIGURE 10. Bradophila pygmaea Levinsen, 1878 (♂). A, habitus, lateral (rudimentary legs 1–3 arrowed); B, antenna, dorsal (modified setae arrowed); C, antennule, dorsal (modified setae arrowed).
FIGURE 12. Trophoniphila bradyi M in Enigmas from the past: M'Intosh's (1885) annelidicolous copepods from the voyage of H. M. S. Challenger
FIGURE 12. Trophoniphila bradyi M'Intosh, 1885 (♀). A, ectosoma and left egg-sac; B, ectosoma, posterior (c.p., copulatory pore; e.s., egg sac string; g.a., genital aperture; g.p., genital papillae; s.r., seminal receptacle; P6, genital operculum derived from sixth leg); C, same, ventral (c.d., copulatory duct; c.p., copulatory pore; s.r., seminal receptacle; P6, genital operculum derived from sixth leg); D, same, lateral (arrow indicating connection with endosoma); E, same, anterior, showing connection with endosome (arrowed stippled area) [inset showing detail of integumental pore].
FIGURE 6. Leaniricola rotundata M in Enigmas from the past: M'Intosh's (1885) annelidicolous copepods from the voyage of H. M. S. Challenger
FIGURE 6. Leaniricola rotundata M'Intosh, 1885 (♀). A, leg 1, anterior; B, leg 2, anterior; C, leg 3, anterior; D, leg 4.
FIGURE 5. Leaniricola rotundata M in Enigmas from the past: M'Intosh's (1885) annelidicolous copepods from the voyage of H. M. S. Challenger
FIGURE 5. Leaniricola rotundata M'Intosh, 1885 (♀). A, antennule; B, antenna; C, maxilla; D, maxilliped. Roman numerals in A referring to ancestral antennulary segments (Huys & Boxshall 1991).
FIGURE 3. Leaniricola rotundata M in Enigmas from the past: M'Intosh's (1885) annelidicolous copepods from the voyage of H. M. S. Challenger
FIGURE 3. Leaniricola rotundata M'Intosh, 1885 (♀). A, habitus, lateral; B, urosome, dorsal; C, urosome, lateral.
FIGURE 1 in Enigmas from the past: M'Intosh's (1885) annelidicolous copepods from the voyage of H. M. S. Challenger
FIGURE 1. Parasitic copepods described by M'Intosh (1885). A, Leaniricola rotundata; B, Praxillinicola kroyeri; C, Oestrella levinseni; D, Trophoniphila bradyi.
FIGURE 2. Leaniricola rotundata M in Enigmas from the past: M'Intosh's (1885) annelidicolous copepods from the voyage of H. M. S. Challenger
FIGURE 2. Leaniricola rotundata M'Intosh, 1885 (♀). A, habitus, dorsal (left egg-sac removed); B, cephalothoracic region, ventral (distal portion of labrum and mandibular gnathobases omitted).
FIGURE 8. Praxillinicola kroyeri M in Enigmas from the past: M'Intosh's (1885) annelidicolous copepods from the voyage of H. M. S. Challenger
FIGURE 8. Praxillinicola kroyeri M'Intosh, 1885 (♀). A, right antennule (A1) and antenna (A2, in reflexed condition); B, same on left side (antennulary claw broken); C, right antennule; D, antennary endopod (right side); E, oral area, showing rostral projection (r.p.), labral retractor muscles (r.m.; only one of three pairs drawn), labral hooks (l.h.) and sensilla (s.); F, maxilliped, anterior; G, maxillipedal endopod, posterior; H, anal somite, showing right genital aperture (g.a.) and anal slit (a.s.), dorsal.
FIGURE 7. Praxillinicola kroyeri M in Enigmas from the past: M'Intosh's (1885) annelidicolous copepods from the voyage of H. M. S. Challenger
FIGURE 7. Praxillinicola kroyeri M'Intosh, 1885 (♀). A, habitus, dorsal; B, same, ventral, showing position of rostral projection (r.p.), socket containing antennule and antenna (A1 + A2), labrum (Lb.) and maxilliped (Mxp); C, median copulatory pores (c.p.) with remnant of spermatophore neck (r.s.) indicated, ventral.
FIGURE 4. Leaniricola rotundata M in Enigmas from the past: M'Intosh's (1885) annelidicolous copepods from the voyage of H. M. S. Challenger
FIGURE 4. Leaniricola rotundata M'Intosh, 1885 (♀). A, Oral area showing labrum (Lb.), labium (Lm.), mandible (G.: gnathobase) and maxillule (Mx1) [left gnathobase omitted], posterior view; B, same, left lateral view (A2: coxobasis of antenna); C, right caudal ramus, lateral; D, distal portion of left caudal ramus, dorsal.
FIGURE 2 in Dates of publication of the Zoology parts of the Report of the Scientific Results of the Voyage of H.M.S. Challenger During the Years 1873-76
FIGURE 2. The title-page of the fourth volume of the Zoology of the Report on the Scientific Results of the H.M.S. Challenger During the Years 1873–76. Image from a work no longer in copyright held by the library of the Woods Hole Oceanographic Institute and digitised under the Biodiversity Heritage Library initiative (see text for details). Note, the first line "(Provisional Title)" was removed from the title page of this and successive volumes (see Fig. 1).
FIGURE 1 in Dates of publication of the Zoology parts of the Report of the Scientific Results of the Voyage of H.M.S. Challenger During the Years 1873-76
FIGURE 1. The title-page of the first volume of the Zoology of the Report on the Scientific Results of the H.M.S. Challenger During the Years 1873–76. Image from a work no longer in copyright held by the library of the Woods Hole Oceanographic Institute and digitised under the Biodiversity Heritage Library initiative (see text for details). Note, the first line "(Provisional Title)" was removed from the title page for volume IV and successive volumes (see Fig. 2).
Voyager NASA
Voyager downloaded from NASA 3D Resources and little modified by me in 3Ds Max and textured Substance Painter Source: Objaverse 1.0 / Sketchfab
Unlocking the grain quality enigma: A KASP-driven voyage through bread wheat's quantitative trait nucleotides under heat adversity
<p>Heat stress is a critical factor affecting global wheat production and productivity. In this study, out of 500 studied accessions a diverse panel of 126 wheat genotypes grown under twelve distinct environmental conditions was analyzed. Using 35K single-nucleotide polymorphism (SNP) genotyping assays and trait data on five biochemical parameters, including grain protein content (GPC), grain amylose content (GAC), grain total soluble sugars (TSS), grain iron (Fe), and zinc (Zn) content, six multi-locus GWAS models were employed for association analysis. This revealed 67 significantly associated QTNs linked to grain quality parameters, explaining phenotypic variations ranging from 3% to 44% under heat stress conditions. By considering the results in consensus to at least three GWAS models and three locations, the final QTNs were reduced to 17, with 14 being novel findings. Notably, two novel markers, AX-94461119 (chromosome 6A) and AX-95220192 (chromosome 7D), associated with grain iron and zinc, respectively, were validated through KASP approach. Candidate genes, such as chaperonin Cpn60/GroEL/TCP-1 family, P-loop containing nucleoside triphosphate hydrolases (NTPases), Bowman-Birk type proteinase inhibitor (BBI), and NPSN13 protein, were identified from the associated genomic regions, which could be potentially targeted for improving quality traits and heat tolerance in wheat.</p>
Vert 10 of Muffin Bones for Voyager Story
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OpenNeuro
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