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249 results for “MART”
Figure 2 in Life history patterns of coleopteran pollinators of Annona crassiflora Mart. in the Brazilian Cerrado
Figure 2. Study area located in the Cerrado of the municipality of Chapada dos Guimarães, MT, with the positions of the 24 individuals of Annona crassiflora analysed in this research (red circles). Source: Google Earth.
FIGURE 2 in Struthanthus martianus, a replacement name for the illegitimate Struthanthus vulgaris Mart. ex Eichler (Loranthaceae)
FIGURE 2. Struthanthus vulgaris (Vell.) Mart. Reprinted from Vellozo (1831 [1827]), Icones 3, t. 145, as Loranthus vulgaris Vell.
FIGURE 1 in Struthanthus martianus, a replacement name for the illegitimate Struthanthus vulgaris Mart. ex Eichler (Loranthaceae)
FIGURE 1. Struthanthus martianus Dettke & Waechter. Reprinted from Eichler (1868), Flora Brasiliensis 5(2), t. 27, as Struthanthus vulgaris Mart. ex Eichler.
FIGURE 2 A. Encentrum mucronatum, male. B in First record of males of Encentrum mucronatum Wulfert, 1936 and Encentrum martes Wulfert, 1939 (Rotifera: Dicranophoridae) including notes on males across Rotifera Monogononta
FIGURE 2 A. Encentrum mucronatum, male. B. Encentrum martes, male. agg – accessory genital gland; br – brain; da – dorsal antenna; gly – glycogen; gp – genital pore, pg – pedal glands; rco – retrocerebral organ; ros – rostrum; rot – rotatory organ; sp – spermatozoa; st – stomach; tes – testis; to – toe; tr – testicular rods; vd – vas deferens
FIGURE 1 A–B, F. Encentrum mucronatum, male. A in First record of males of Encentrum mucronatum Wulfert, 1936 and Encentrum martes Wulfert, 1939 (Rotifera: Dicranophoridae) including notes on males across Rotifera Monogononta
FIGURE 1 A–B, F. Encentrum mucronatum, male. A: Habitus in lateral view B: Close–up of retrocerebral organ F: Close–up of toe C–E. Encentrum martes, male. C: Habitus in lateral view D: Detail of testis and vas deferens. Arrows point out glycogen inclusions E: Close-up of toe. agg – accessory genital gland; br – brain; da – dorsal antenna; gp – genital pore, pg – pedal glands; rco – retrocerebral organ; ros – rostrum; rot – rotatory organ; sp – spermatozoa; st – stomach; tes – testis; to – toe; tr – testicular rods; vd – vas deferens.
Figure 3 in Aquatic macroinvertebrate assemblages associated with root masses of water hyacinths, Eichhornia crassipes (Mart.) Solms-Laubach, 1883 (Commelinales: Pontederiaceae) in Taabo Lake, Ivory Coast
Figure 3. Hierarchical clustering, based on similarities in aquatic macroinvertebrate assemblages, of the sampling stations with a Ward linkage method and a Euclidian distance; Sa, Sahoua; Ah, Ahondo; Tc, Taabo cité; Co, Courandjourou; Tv, Taabo village.
Figure 5 in Aquatic macroinvertebrate assemblages associated with root masses of water hyacinths, Eichhornia crassipes (Mart.) Solms-Laubach, 1883 (Commelinales: Pontederiaceae) in Taabo Lake, Ivory Coast
Figure 5. Canonical correspondence analysis (CCA) diagram of macroinvertebrates collected from water hyacinth samples in relation to nine independent environmental variables measured: Temp., temperature; NH +, ammonium; pH; Trans., transparency; NO –, nitrate; Turb., 4 3 turbidity; PO 3–, phosphate; O, dissolved oxygen; and CND, conductivity.
Figure 2 in Aquatic macroinvertebrate assemblages associated with root masses of water hyacinths, Eichhornia crassipes (Mart.) Solms-Laubach, 1883 (Commelinales: Pontederiaceae) in Taabo Lake, Ivory Coast
Figure 2. Box-plots showing differences in physical and chemical variables between the two seasons (Rs = rainy season and Ds = dry season); box corresponds to 50% of the values, the square in the box corresponds to the median value and the vertical bars correspond to the minimum/maximum values.
Figure 1 in Aquatic macroinvertebrate assemblages associated with root masses of water hyacinths, Eichhornia crassipes (Mart.) Solms-Laubach, 1883 (Commelinales: Pontederiaceae) in Taabo Lake, Ivory Coast
Figure 1. Map of the man-made Taabo Lake, showing sampling stations (UTM, Universal Transverse Mercator) (Kouassi 2007).
Figure 4 in Aquatic macroinvertebrate assemblages associated with root masses of water hyacinths, Eichhornia crassipes (Mart.) Solms-Laubach, 1883 (Commelinales: Pontederiaceae) in Taabo Lake, Ivory Coast
Figure 4. Box-plots showing differences in physical and chemical variables between the three clusters (I, II and III) identified on Figure 3; box corresponds to 50% of the values, the square in the box corresponds to the median value and the vertical bars correspond to the minimum/ maximum values; n = 10. (Continued)
FIGURE 5. Persea obovata Nees & Mart. A. Sellow B 1363 c 394 in Redux Sellow: revealing Sellow's collections from the Herbier Impérial du Brésil at the Paris Herbarium
FIGURE 5. Persea obovata Nees & Mart. A. Sellow B 1363 c 394, holotype (B 10 0185211). B. Sellow B 1363 c 394, isotype (B 10 0185210). C. Escola Polytechnica 696, Anonymous 103 = Sellow B 1363 c 394 (LISU [24018]). D. HERB. Dr. A. R. FERREIRA 696 ex LISU [24018] (K). Source: B (A, B), LISU (C), K (D).
FIGURE 2. Persea fuliginosa Nees & Mart. A. Sellow s.n in Redux Sellow: revealing Sellow's collections from the Herbier Impérial du Brésil at the Paris Herbarium
FIGURE 2. Persea fuliginosa Nees & Mart. A. Sellow s.n. [4313] (B 10 0185112), lectotype designated by Kopp (1966: 28, as holotype). B. Sellow 4313 (B†, F neg. 3569). C. Anonymous s.n. [Sellow 4313] = Herbier Impérial du BRÉSIL N.o 9 (P01752039). D. Sellow 4313 (R [61159]). Source: B (A, B), P (C), R (D).
FIGURE 3. Persea rigida Nees & Mart. A. Sellow 652 in Redux Sellow: revealing Sellow's collections from the Herbier Impérial du Brésil at the Paris Herbarium
FIGURE 3. Persea rigida Nees & Mart. A. Sellow 652, holotype (B 10 0185203). B. Isotype (B 10 0185204). C. Anonymous s.n. [Sellow 652] = Herbier Impérial du BRÉSIL N.o 125 (P01991984). D. Anonymous s.n. [Sellow 652] = Herbário Impérial N.o 125 [S. Paulo] (R [30911]). Source: B (A, B), P (C), R (D).
FIGURE 1. Cryptocarya moschata Nees & Mart. A. Sellow s.n in Redux Sellow: revealing Sellow's collections from the Herbier Impérial du Brésil at the Paris Herbarium
FIGURE 1. Cryptocarya moschata Nees & Mart. A. Sellow s.n. [B 1375] (CGE), isolectotype designated by Moraes (2005: 792), likely collected in "Ypanema" (Real Fábrica de Ferro de S"o Jo"o de Ypanema, current Floresta Nacional de Ipanema, Iperó, S"o Paulo). B. Anonymous s.n. = Herbier Impérial du BRÉSIL N.o 213 (P00571416), probable isolectotype. Source: Cambridge University Herbarium (A), MNHN – Paris (B)
Fig. 5 in Evidence of altitudinal gradient modifying genomic and chemical diversity in populations of Lychnophora pinaster Mart.
Fig. 5. Dendrogram and heatmap analysis for Lychnophora pinaster populations located at the North (North 01, North 02, and North 03), Metropolitan region of Belo Horizonte (MrBH, MrBH 01 and MrBH 02), and Campos das Vertentes (CV 01, CV 02, and CV 03) regions based on the fixation index (FST) of Wright's Fstatistics expressed by the full set of SNP markers.
Fig. 6 in Evidence of altitudinal gradient modifying genomic and chemical diversity in populations of Lychnophora pinaster Mart.
Fig. 6. The population structure of Lychnophora pinaster populations. Populations structure is based on the total SNP set (A), neutral SNP set (B), and positive SNP set (C). The selection of neutral and positive SNP sets was performed by BayeScan analysis. North: North region; Met. Reg. Belo Horizonte: Metropolitan region of Belo Horizonte; MrBH 01 and MrBH 02: populations of L. pinaster found on Metropolitan region of Belo Horizonte.
Fig. 1 in Evidence of altitudinal gradient modifying genomic and chemical diversity in populations of Lychnophora pinaster Mart.
Fig. 1. The Population distribution and collection sites of Lychnophora pinaster at Minas Gerais state, Brazil.
Fig. 4 in Evidence of altitudinal gradient modifying genomic and chemical diversity in populations of Lychnophora pinaster Mart.
Fig. 4. Principal component analysis (PCA) of leaf essential oils of Lychnophora pinaster populations and climatic factors located at the North region (North 01, North 02, and North 03), and Metropolitan region of Belo Horizonte (MrBH, MrBH 01 and MrBH 02). α-thujene (s01); α-pinene (s02); 4Z-hepten-1-ol (s03); ethyl-3-methyl pentanoate (s04); sabinene (s05); β-pinene (s06); dehydroxy-trans-linalool oxide (s07); o-cymene (s08); limonene (s09); terpinene (s10); terpinolene (s11); linalool (s12); n-nonanal (s13); trans-pinocarveol (s14); terpinen-4-ol (s15); α-terpineol (s16); mirtenal (s17); n-decanal (s18); undecanal (s19); geranyl acetate (s20); β-elemene (s21); α-cyperene (s22); cis-caryophyllene (s23); trans-caryophyllene (s24); α-humulene (s25); cumacrene (s26); tridecanal (s27); 4-oxo-15-nor-eudesman-11-ene (s28); Z-nerolidol (s29); sesquiterpene 1 (s30); α-copaen-11-ol (s31); epi-longipinanol (s32); spathulenol (s33); caryophyllene oxide (s34); β-copaen-4α-ol (s35); viridiflorol (s36); sesquiterpene 2 (s37); sesquiterpene 3 (s38); allo-aromadendrene epoxide (s39); cedr-8(15)-en-9-α-ol (s40); 14-hydroxy-(Z)-caryophyllene (s41); 14-hydroxy-9-epi-(E)- caryophyllene (s42); germacrone (s43); (2E)-tridecenol acetate (s44); 14-hydroxy-α-humulene (s45); 14- hydroxy-4,5-dihydro-caryophyllene (s46); benzyl benzoate (s47); γ-curcumen-15-al (s48); sesquiterpene 4 (s49); 14-acetoxy-α-humulene (s50); alt: altitude; cld: cloud cover; dtr: diurnal temperature range; pet: evapotranspiration; pre: precipitation; tmn: minimum temperature; tmx: maximum temperature; tmp: mean temperature; vap: vapor pressure; wet: wet day frequency.
Fig. 3 in Evidence of altitudinal gradient modifying genomic and chemical diversity in populations of Lychnophora pinaster Mart.
Fig. 3. Heatmap analysis of leaf essential oils of Lychnophora pinaster populations and climatic factors located at the North region (North 01, North 02, and North 03), and Metropolitan region of Belo Horizonte (MrBH, MrBH 01 and MrBH 02).
Fig. 2 in Evidence of altitudinal gradient modifying genomic and chemical diversity in populations of Lychnophora pinaster Mart.
Fig. 2. Hierarchical cluster analysis (HCA) of leaf essential oils of Lychnophora pinaster populations and climatic factors located at the North region (North 01, North 02, and North 03), and Metropolitan region of Belo Horizonte (MrBH, MrBH 01 and MrBH 02).
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