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19 results for “southern Central China”
FIGURE 6 in A new species of the genus Oligodon Fitzinger, 1826 (Squamata: Colubridae) from northern Vietnam, southern China and central Laos
FIGURE 6. Distribution of Oligodon nagao sp. nov.: (1) Huu Lien Nature Reserve in Lang Son Province and (2) Ha Lang forest in Cao Bang Province, Vietnam; (3) Nonggang National Nature Reserve in Guangxi Autonomous Region, China; and (4) Ban Nathan in Khammouane Province, Laos.
FIGURE 3 in A new species of the genus Oligodon Fitzinger, 1826 (Squamata: Colubridae) from northern Vietnam, southern China and central Laos
FIGURE 3. Oligodon nagao sp. nov., in life (IEBR A.2012.6, adult male, Vietnam). Photograph by Truong Quang Nguyen.
FIGURE 2 in A new species of the genus Oligodon Fitzinger, 1826 (Squamata: Colubridae) from northern Vietnam, southern China and central Laos
FIGURE 2. Holotype of Oligodon nagao sp. nov. (VNMN A.2012.1, adult male), views of the head: A. Dorsal side. B. Ventral side. C. Left side. D. Right side. Photographs by Truong Quang Nguyen.
FIGURE 5 in A new species of the genus Oligodon Fitzinger, 1826 (Squamata: Colubridae) from northern Vietnam, southern China and central Laos
FIGURE 5. Biotope of Oligodon nagao sp. nov. in Khammouane Province, Laos. Photographs by Alexandre Teynié.
FIGURE 4 in A new species of the genus Oligodon Fitzinger, 1826 (Squamata: Colubridae) from northern Vietnam, southern China and central Laos
FIGURE 4. Oligodon nagao sp. nov., in life (ZFMK 93281, adult male, Laos). A. General view. B. Specimen showing its threatening behaviour. Photographs by Alexandre Teynié.
FIGURE 1 in A new species of the genus Oligodon Fitzinger, 1826 (Squamata: Colubridae) from northern Vietnam, southern China and central Laos
FIGURE 1. Holotype of Oligodon nagao sp. nov. (VNMN A.2012.1, adult male): A. Dorsal view. B. Ventral view. Photographs by Patrick David.
FIGURE. Fruiting heads and peduncles of C. spongifolia. A. Site WP260; two peduncles have lost heads (arrows 1 and 2), the upper part (male zone) of one spadix lies on ground (arrow 3), and six attached heads all touch ground. B–E. Site WP251; a single, detached immature head with bite marks in upper and lower ends, and torn surface at junction with peduncle (at left in D–E). Scale bars: 10 cm with 1 cm units (main image); 8 cm with 2 cm units (lower right); B–C enlarged, without scale. (Bach Ma NP, 2018). Photos: PJM. in Colocasia spongifolia sp. nov. (Araceae) in southern China and central Vietnam
FIGURE. Fruiting heads and peduncles of C. spongifolia. A. Site WP260; two peduncles have lost heads (arrows 1 and 2), the upper part (male zone) of one spadix lies on ground (arrow 3), and six attached heads all touch ground. B–E. Site WP251; a single, detached immature head with bite marks in upper and lower ends, and torn surface at junction with peduncle (at left in D–E). Scale bars: 10 cm with 1 cm units (main image); 8 cm with 2 cm units (lower right); B–C enlarged, without scale. (Bach Ma NP, 2018). Photos: PJM.
FIGURE. Floral habit and structure of C. spongifolia. A. Type specimen in situ with open, spathe limb (apex is reflexed out of view), and green spathe tube (ca. 6 cm long). B. Adjacent plant with inflorescences and prophylls. C. Spadix showing from top: sterile appendix, staminate (male) zone, sterile interstice, and green pistillate (female) zone with tapered, conical form. D. Detail of female zone showing a few basal staminodes. E–G. Berries of the preserved type specimen. G. Dissected berry with orthotropous ovules (some outlined) attached by funicles to parietal placentae (arrows). H. Surface of male zone showing closely-packed synandria. I. Synandria separated to show fused anther sacs beneath apical pores (example in center has 8 pores, 8 anthers) J. Mature fruiting head, with single berry removed to show seed packing and 67 seeds extracted (scale bar units: 1 mm) (Bach Ma NP; type 2020; fruit and seeds 2018). Photos: NVD and PJM. in Colocasia spongifolia sp. nov. (Araceae) in southern China and central Vietnam
FIGURE. Floral habit and structure of C. spongifolia. A. Type specimen in situ with open, spathe limb (apex is reflexed out of view), and green spathe tube (ca. 6 cm long). B. Adjacent plant with inflorescences and prophylls. C. Spadix showing from top: sterile appendix, staminate (male) zone, sterile interstice, and green pistillate (female) zone with tapered, conical form. D. Detail of female zone showing a few basal staminodes. E–G. Berries of the preserved type specimen. G. Dissected berry with orthotropous ovules (some outlined) attached by funicles to parietal placentae (arrows). H. Surface of male zone showing closely-packed synandria. I. Synandria separated to show fused anther sacs beneath apical pores (example in center has 8 pores, 8 anthers) J. Mature fruiting head, with single berry removed to show seed packing and 67 seeds extracted (scale bar units: 1 mm) (Bach Ma NP; type 2020; fruit and seeds 2018). Photos: NVD and PJM.
FIGURE. Stem, roots, and buds of C. spongifolia. A. Cross section of stem in B, showing clear, gummy exudate. B. Mature stem with decumbent part at left, erect part at right, roots and rootlets, brown leaf scars, and single adaxial buds (arrows). C. Young stem, with single, adaxial bud revealed. Scale bars = 2 cm (Bach Ma NP, 2018, 2021). Photos: NVD and PJM. in Colocasia spongifolia sp. nov. (Araceae) in southern China and central Vietnam
FIGURE. Stem, roots, and buds of C. spongifolia. A. Cross section of stem in B, showing clear, gummy exudate. B. Mature stem with decumbent part at left, erect part at right, roots and rootlets, brown leaf scars, and single adaxial buds (arrows). C. Young stem, with single, adaxial bud revealed. Scale bars = 2 cm (Bach Ma NP, 2018, 2021). Photos: NVD and PJM.
FIGURE. Blades of C. spongifolia. A. Sub-marginal and marginal collective veins, with laminal tissue (2–4 mm) between. B. Marginal collective veins fused below shallow sinus. C. Underside with spongy appearance produced by "false pores"; and thick, rubbery texture indicated by axial wrinkles formed in crease. D. Underside showing primary vein and pinnate lateral veins surrounded by spongy tissue. E. Sub-stomatal cavities revealed by transmitted light (scale unit 0.25 mm), F. Sub-stomatal cavities revealed by removing lower epidermis (A–D: Mengla County, 2018. E–F: Bach Ma NP seedling, ex situ). Photos: PJM. in Colocasia spongifolia sp. nov. (Araceae) in southern China and central Vietnam
FIGURE. Blades of C. spongifolia. A. Sub-marginal and marginal collective veins, with laminal tissue (2–4 mm) between. B. Marginal collective veins fused below shallow sinus. C. Underside with spongy appearance produced by "false pores"; and thick, rubbery texture indicated by axial wrinkles formed in crease. D. Underside showing primary vein and pinnate lateral veins surrounded by spongy tissue. E. Sub-stomatal cavities revealed by transmitted light (scale unit 0.25 mm), F. Sub-stomatal cavities revealed by removing lower epidermis (A–D: Mengla County, 2018. E–F: Bach Ma NP seedling, ex situ). Photos: PJM.
FIGURE 4 in Lactarius vividus sp. nov. (Russulaceae, Russulales), a widely distributed edible mushroom in central and southern China
FIGURE 4. Lactarius vividus (all from holotype except for C from KUN-HKAS 73591). A: basidiospores, B. hymenium, C: pleuromacrocystidia, D: pleuropseudocystidia; E. lamellar edge, F. pileipellis. (A: scale bar = 5 μm, B–F: scale bars = 20 μm).
FIGURE 3 in Lactarius vividus sp. nov. (Russulaceae, Russulales), a widely distributed edible mushroom in central and southern China
FIGURE 3. Basidiocarps of Lactarius vividus, L. akahatsu and L. deliciosus, showing the subdistant to distant lamellae in L. vividus in contrast with the crowded lamellae in the other two species. A: L. vividus (KUN-HKAS 73591, holotype); B: L. vividus, in dry habitat (KUN-HKAS 61742); C: L. vividus, old basidiocarps (KUN-HKAS 61725); D: L. vividus, undiscoloring basidiocarps (KUN-HKAS 61965); E: L. vividus, undiscoloring basidiocarp (KUN-HKAS 61325); F: L. vividus, with rich-colored subdistant lamellae and evenly colored stipe (KUN-HKAS 73576); G: L. akahatsu, with crowded lamellae (KUN-HKAS 61764); H: L. deliciosus, with crowded lamellae (KUN-HKAS 61910).
FIGURE 2 in Lactarius vividus sp. nov. (Russulaceae, Russulales), a widely distributed edible mushroom in central and southern China
FIGURE 2. Maximum Likelihood (ML) phylograms of Lactarius vividus and its relatives based on the ITS region and the gpd gene, rooted with L. rufus. Bootstrap proportions higher than 70% in the ML analysis and Posterior probabilities higher than 95% in the Bayesian Inference analysis are indicated above and below the branches respectively. Initials of the sample numbers correspond to the collectors or herbaria in Table 1. Samples of L. vividus are in bold.
FIGURE 2. Arachniodes vietnamensis Liang Zhang, N.T in Arachniodes libingii sp. nov. and A. vietnamensis sp. nov. (Dryopteridaceae), two new ferns from southern China and central Vietnam
FIGURE 2. Arachniodes vietnamensis Liang Zhang, N.T. Lu & T.T. Nguyen,—A. Abaxial surface of frond.—B. Portion of upper lamina.—C. Abaxial surface of pinnules.—D. Lateral pinnae.—E. Sori and portion of rachis showing densely appressed subulate/filiform scales.—F. Scales on stipe.—G. Scale on rachis.—H. Sparse, echinulate, perforate spore.—I. Perispore.—J. Indusia. Photo credit: Xinmao Zhou & Ngan Thi Lu.
FIGURE 1. Arachniodes libingii Liang Zhang, N.T in Arachniodes libingii sp. nov. and A. vietnamensis sp. nov. (Dryopteridaceae), two new ferns from southern China and central Vietnam
FIGURE 1. Arachniodes libingii Liang Zhang, N.T.Lu & T.T.Nguyen,—A. Habit.—B. Stipe base with darkish brown scales.—C. Young rhizome.—D. Upper pinnae with lamina apex.—E. Pinnules with young sori.—F. Pinnules with mature sori.—G. Portion of abaxial lamina with apex.—H. Portion of middle pinnae.—I. Portion of basal most pairs of pinnae. Photo credit: Liang Zhang.
FIGURE 1 in Lactarius vividus sp. nov. (Russulaceae, Russulales), a widely distributed edible mushroom in central and southern China
FIGURE 1. Localities of specimens of Lactarius vividus collected in China.
FIGURE. Habit and habitat of C. spongifolia. A. Single plant ca. 1 m tall, on road bank, at 962 m elevation. B. Scatter of adult plants (arrow heads) in upper area of a recent slip face, above road, at 676 m. C. Plants collected from roadside at 854 m; blades pale, milky-green on underside. D. Same site as B, with young seedling emerging from a bed of moss and liverwort. Photos: PJM. in Colocasia spongifolia sp. nov. (Araceae) in southern China and central Vietnam
FIGURE. Habit and habitat of C. spongifolia. A. Single plant ca. 1 m tall, on road bank, at 962 m elevation. B. Scatter of adult plants (arrow heads) in upper area of a recent slip face, above road, at 676 m. C. Plants collected from roadside at 854 m; blades pale, milky-green on underside. D. Same site as B, with young seedling emerging from a bed of moss and liverwort. Photos: PJM.
FIGURE 3.—A-C in Arachniodes libingii sp. nov. and A. vietnamensis sp. nov. (Dryopteridaceae), two new ferns from southern China and central Vietnam
FIGURE 3.—A-C. Fronds showing the differences in laminae and pinnae between three species (A. Arachniodes chinensis, B. A.libingii, C. A. vietnamensis).—D-F. Portion of laminae, showing the basal most pinnae with elongated pinnules (D. A. chinensis, E. A. libingii, F. A. vietnamensis).
Differential crustal modification mechanism across the central-southern segment of Tanlu fault zone, eastern China
<div> <p>The folder contains: RFs, Discontinuities.txt and Velocity_model.</p> <p>RFs:<br>Receiver function waveforms.</p> <p>Discontinuities.txt:<br>This text file contains data related to discontinuities, with the meaning of each column listed in the first row of the file.</p> <p>Velocity_model:<br>This folder contains text files named station names, each representing the inverted velocity model for the corresponding station. The first line of each text file indicates the latitude and longitude of the station. From the second line to the last line, the velocity model is represented as follows: the first column indicates depth, the second column represents Vs (shear wave velocity), the third column indicates the error of Vs, the fourth column represents Vp, and the fifth column indicates the ratio Vp/Vs.</p> <p> </p> </div>
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OpenNeuro
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