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276 results for “calling song”
FIGURE 5 in Crickets of the subfamily Eneopterinae (Orthoptera: Grylloidea) from Sandakan, Sabah: one new species and calling songs of a sympatric species
FIGURE 5. Male genitalia of Lebinthus sandakan sp. nov.: male holotype (A, C, E) and paratype (B, D, F) in dorsal (A, B), ventral (C, D) and lateral (E, F) views.
FIGURE 1 in Crickets of the subfamily Eneopterinae (Orthoptera: Grylloidea) from Sandakan, Sabah: one new species and calling songs of a sympatric species
FIGURE 1. Forests that Lebinthus sandakan sp. nov. lives in: Ulu Dusun Agriculture Research Station (A), and Kebun Cinaforest was affected by windfall in August 2018 (B).
FIGURE 2 in Crickets of the subfamily Eneopterinae (Orthoptera: Grylloidea) from Sandakan, Sabah: one new species and calling songs of a sympatric species
FIGURE 2. Habitus of Lebinthus sandakan sp. nov.: male paratype (A, B) and female allotype (C, D) in dorsal (A, C) and lateral (B, D) views. Scale bar: 5 mm.
FIGURE 7 in Crickets of the subfamily Eneopterinae (Orthoptera: Grylloidea) from Sandakan, Sabah: one new species and calling songs of a sympatric species
FIGURE 7. Lebinthus sandakan sp. nov. males in their natural microhabitats when alive. Holotype is (B).
FIGURE 3 in Crickets of the subfamily Eneopterinae (Orthoptera: Grylloidea) from Sandakan, Sabah: one new species and calling songs of a sympatric species
FIGURE 3. Lebinthus sandakan sp. nov.: male (A, C, E) and female (B, D, F) dorsum of head and pronotum (A, B), face in anterior view (C, D), head and pronotum in lateral view (E, F), male abdominal apex in dorsal view (G), female subgenital plate in ventral view (H), apex of ovipositor (I). Scale bars: 2 mm (A, B, E, F), 1 mm (C, D, G, H), 0.5 mm (I).
FIGURE 3. Calling songs. A & B in New and little-known crickets from Southern Guangxi, China (Orthoptera: Grylloidea: Gryllidae: Phalangopsidae; Trigonidiidae)
FIGURE 3. Calling songs. A & B Polionemobius marblus He sp. nov. in 5s and 0.5 s, respectively, C & D Ornebius panda He sp. nov. in 5s and 0.5 s, respectively.
FIGURE 3. Calling songs. A & B in New and little-known crickets from Southern Guangxi, China (Orthoptera: Grylloidea: Gryllidae: Phalangopsidae; Trigonidiidae)
FIGURE 3. Calling songs. A & B Polionemobius marblus He sp. nov. in 5s and 0.5 s, respectively, C & D Ornebius panda He sp. nov. in 5s and 0.5 s, respectively.
FIGURES 160B–163. Male calling song. 160—P in Poecilimon bosphoricus group (Orthoptera, Phaneropterinae): iteration of morpho-taxonomy by song characteristics 3225
FIGURES 160B–163. Male calling song. 160—P. turcicus (Greece: A-Mytillini, Turkey: B-Kırklareli), 161—P. turciae (Turkey: Çanakk-ale), 162— P. heinrichi (Bulgaria: Strandzha), 163—P. proximus (Turkey: Bolu).
FIGURES 167–169. Male calling song. 167—P in Poecilimon bosphoricus group (Orthoptera, Phaneropterinae): iteration of morpho-taxonomy by song characteristics 3225
FIGURES 167–169. Male calling song. 167—P. miramae (Turkey: A-Sakarya; Bulgaria: B-Rhodopian Mts), 168-P. roseoviridis sp.n. (Bulgaria: Strandzha), 169—P. similis (Turkey: Rize),
FIGURES 173–174. Male calling song. 173—P in Poecilimon bosphoricus group (Orthoptera, Phaneropterinae): iteration of morpho-taxonomy by song characteristics 3225
FIGURES 173–174. Male calling song. 173—P. tauricus (=P. kusnezovi syn.n.) (Ukraine: Crimea), 174—P. pliginskii (Ukraine: Crimea).
FIGURES 170–172. Male calling song. 170—P in Poecilimon bosphoricus group (Orthoptera, Phaneropterinae): iteration of morpho-taxonomy by song characteristics 3225
FIGURES 170–172. Male calling song. 170—P. bischoffi, (Turkey: A-Rize, Ukraine: B-Crimea), 171—P. scythicus (Ukraine: Lugansk), 172—P. tauricus (Ukraine: Crimea).
FIGURES 159–160A. Male calling song. 159—P in Poecilimon bosphoricus group (Orthoptera, Phaneropterinae): iteration of morpho-taxonomy by song characteristics 3225
FIGURES 159–160A. Male calling song. 159—P. sureyanus (= P. anatolicus syn.n. and P. diversus syn. n.) (Turkey: A Bilecik, B-Bursa, Greece: C-Kavalla), 160—P. turcicus (Greece: A-Mytillini).
FIGURE 9. Male calling song. A–C, A in Anterastes davrazensis sp. n. (Orthoptera, Tettigoniidae): morphology, song and 16S rDNA phylogeny
FIGURE 9. Male calling song. A–C, A. davrazensis sp. n.: A—irregular syllable groups, B—a group of syllables, C—opening and closing hemisyllable; D–F, A. uludaghensis: D—regular echemes, E—groups of echemes, F—opening and closing hemisyllable.
FIGURE 59 in <p class="HeadingRunIn" align="left"><strong>A revision of the <em>Pauropsalta annulata </em>Goding & Froggatt species group (Hemiptera: Cicadidae) based on morphology, calling songs and ecology, with investigations into calling song structure, molecular phylogenetic relationships and a case of hybridisation between two subspecies</strong></p>
FIGURE 59. Chronogram showing an estimated phylogeny with divergence times for the Pauropsalta annulata species group, along with outgroups from the tribe Cicadettini, based on CO1 and dynamin data (modelled independently). The topology is a maximum clade credibility from an MCMC search, enforcing a relaxed molecular clock with branch lengths modelled using a GTR + I + G model in *BEAST. Node support is indicated by black closed circles (BPP=1.00) and grey closed circles (BPP=0.95–0.99) from BEAST. Clock calibration is based on a rate of 0.0115s/s/myr for CO1 (see Phylogenetic Analysis Methodology section).
FIGURE 55 in <p class="HeadingRunIn" align="left"><strong>A revision of the <em>Pauropsalta annulata </em>Goding & Froggatt species group (Hemiptera: Cicadidae) based on morphology, calling songs and ecology, with investigations into calling song structure, molecular phylogenetic relationships and a case of hybridisation between two subspecies</strong></p>
FIGURE 55. Results of two Non-metric Multidimensional Scaling ordination analyses using the durations of the four song segments (Fig. 54) for Pauropsalta annulata (red), Pauropsalta tremula (purple), Pauropsalta notialis notialis (orange), Pauropsalta notialis incitata (blue) and Pauropsalta notialis notialisxincitata (green) (n=532). Closed points denote individuals recorded in sympatry with other species in the P. annulata species complex, whereas open outlined points are individuals recorded in allopatry. A cluster analysis revealed five clusters among the data, as indicated, and the composition of each is detailed in the text.
FIGURE 52 in <p class="HeadingRunIn" align="left"><strong>A revision of the <em>Pauropsalta annulata </em>Goding & Froggatt species group (Hemiptera: Cicadidae) based on morphology, calling songs and ecology, with investigations into calling song structure, molecular phylogenetic relationships and a case of hybridisation between two subspecies</strong></p>
FIGURE 52. Male calling song structure of Pauropsalta ayrensis Ewart illustrated in expanded waveform plots (explained in Fig. 8), showing both buzzing and lilting components. The spectrogram at the bottom of the figure displays song frequency, which exhibits no modulation between the song components in this species. This specimen was recorded in the field at Eidsvold (25°22'S 151°07'E).
FIGURE 51 in <p class="HeadingRunIn" align="left"><strong>A revision of the <em>Pauropsalta annulata </em>Goding & Froggatt species group (Hemiptera: Cicadidae) based on morphology, calling songs and ecology, with investigations into calling song structure, molecular phylogenetic relationships and a case of hybridisation between two subspecies</strong></p>
FIGURE 51. Map of eastern Australia showing the geographical distribution of Pauropsalta ayrensis Ewart. Large triangles represent specimen records (see material examined) and small triangles represent aural records (some recorded).
FIGURE 50 in <p class="HeadingRunIn" align="left"><strong>A revision of the <em>Pauropsalta annulata </em>Goding & Froggatt species group (Hemiptera: Cicadidae) based on morphology, calling songs and ecology, with investigations into calling song structure, molecular phylogenetic relationships and a case of hybridisation between two subspecies</strong></p>
FIGURE 50. Waveform plots illustrating the lilting component of the male calling song of Pauropsalta rubristrigata (Goding and Froggatt) from four different localities, including: (i) Penola (37°24'S 140°50'E), (ii) Nimmitabel (36°31'S 149°14'E), (iii) Napoleon Reef (33°26'S149°45'E), and (iv) Woods Reserve (35°28'S 148°57'E). Recording (iv) is shown in two fragments from the same individual recording. Mean phrase repetition rates (PRR) for each recording are provided to the right of each plot for reference. The upper fragment shows the typical lilting component and the lower fragment illustrates a transition into the extended lilting component (a grey dashed line indicates the point of transition). Recording (i) was made with RS6 by B. Haywood, while all other recordings were made by LWP using RS5 (see methods).
FIGURE 49 in <p class="HeadingRunIn" align="left"><strong>A revision of the <em>Pauropsalta annulata </em>Goding & Froggatt species group (Hemiptera: Cicadidae) based on morphology, calling songs and ecology, with investigations into calling song structure, molecular phylogenetic relationships and a case of hybridisation between two subspecies</strong></p>
FIGURE 49. Male calling song structure of Pauropsalta rubristrigata (Goding and Froggatt) illustrated in expanded waveform plots (explained in Fig. 8), showing both buzzing and lilting components. The spectrogram at the bottom of the figure displays song frequency, which exhibits no modulation between the song components in this species. This specimen was recorded in the field at Nimmitabel (36°31'S 149°14'E) using RS5 (see methods).
FIGURE 56 in <p class="HeadingRunIn" align="left"><strong>A revision of the <em>Pauropsalta annulata </em>Goding & Froggatt species group (Hemiptera: Cicadidae) based on morphology, calling songs and ecology, with investigations into calling song structure, molecular phylogenetic relationships and a case of hybridisation between two subspecies</strong></p>
FIGURE 56. Phylogram showing an estimated phylogeny for the Pauropsalta annulata species group, along with outgroups from the tribe Cicadettini, based on CO1 data. The topology is a majority rule consensus tree from an MCMC search, with branch lengths simulated using a GTR + I + G model in MrBayes. Node support values to the left of each node are from a RAxML reconstruction, with Bayesian Posterior Probabilities (BPP) from MrBayes represented by small closed circles (BPP=0.95–0.99) and large closed circles (BPP=1.00) on the relevant nodes.
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