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304 results for “eucalyptus”
FIGURE 6. Fergusobia morrisae n in Nematodes from galls on Myrtaceae. III. Fergusobia from flower bud and stigma galls on Eucalyptus, with descriptions of four new species
FIGURE 6. Fergusobia morrisae n. sp. (all in lateral view): A, Entire infective female; B, Head of infective female; C, Tails of infective females; D, Entire parthenogenetic female; E, Head of parthenogenetic female; F, Tails of parthenogenetic females; G, Entire male; H, Head of male; I, Tails of males. Scale bars: A, D, G = 50 μm. B, E, H = 5 μm. Tails not drawn to scale. Line drawings indicate ranges of habitus of the various stages.
Supplementary material 1 from: Pham NQ, Marincowitz S, Chen SF, Rodas CA, Wingfield MJ (2022) Soil-borne Calonectria (Hypocreales, Nectriaceae) associated with Eucalyptus plantations in Colombia. MycoKeys 94: 17-35. https://doi.org/10.3897/mycokeys.94.96301
Phylogenetic tree based on maximum likelihood (ML) analysis of individual gene region (ACT, CMDA, HIS3, TUB2, TEF1 and RBP2)
Fig. 4 in An extensive study on the chemical diversity of lipophilic extractives from Eucalyptus globulus wood
Fig. 4. Radial profile of different chemical families (proportion of chemical families) in the lipophilic DCM along the tree height levels (0%, 35% and 60%) in E. globulus mature wood trees.
Fig. 3 in An extensive study on the chemical diversity of lipophilic extractives from Eucalyptus globulus wood
Fig. 3. Proportion of chemical families in the lipophilic DCM extracts of E. globulus mature wood trees. Average of 36 runs (3 trees × 3 height levels x 2 extractions x 2 injections).
Fig. 2 in An extensive study on the chemical diversity of lipophilic extractives from Eucalyptus globulus wood
Fig. 2. Example of one GC-MS chromatogram of dichloromethane extracts (as TMS derivatives) of Eucalyptus globulus mature wood trees and range of the principal chemical family distribution. Main peaks: 3 - Decanoic acid (C10:0); 5 - Vanillin; 11 - Dodecanoic acid (C12:0); 12 - 4-hydroxy-3,5- dimethoxybenzaldehyde; 13 - homovanillic alcohol; 14 - Vanillic acid; 25 - Syringic acid; 36 - Propiovanillone; 39 - Hexadecanoic acid (C16:0); 52 - Octadeca-9,12-dienoic acid (C18:2); 55 - Octadecanoic acid (C18:0); 66 - ω-hydroxy fatty acid (C18:2); 67 - Icosanoic acid (C20:0) 74 - 1-palmitoylglycerol (G- C16:0); 79 - 2-hydroxy-decane-1,10-dioic acid (C10:0); 86 - Octacosane (C28); 90 -Tetracosanoic acid; 94 - Hexacosan-1-ol (C26); 102 - a-tocopherol; 109 - campesterol; 115 - tritriacontane (C33); 118 - β-Sitosterol; 123 - 2-tetracosanoylglycerol (G-C24:0); 140 - Betulinic acid isomer; 146 - 1-hexacosanoylglycerol (G-C26:0); 147 - Ursolic acid; 161 - Arjunolic acid; 162 - Asiatic acid; 168 - sitosteryl 3-β-D-glucopyranoside. All the identified peaks are listed in Tables 1–6
Fig. 1 in An extensive study on the chemical diversity of lipophilic extractives from Eucalyptus globulus wood
Fig. 1. Schematic drawing of sapwood heartwood outer and inner in the stems of E. globulus trees harvested for these study. Heartwood area and extractives content (average of three trees ± STDEV) (Adapted from Gominho et al., 2015).
Data from: The roles of ecological and evolutionary processes in plant community assembly: the environment, hybridization and introgression influence co-occurrence of Eucalyptus
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Data from: Paternity analysis reveals wide pollen dispersal and high multiple paternity in a small isolated population of the bird-pollinated Eucalyptus caesia (Myrtaceae)
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Data from: Ion Torrent PGM as tool for fungal community analysis: a case study of endophytes in Eucalyptus grandis reveals high taxonomic diversity
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Long-term effects of intercropping on multi-trophic structure and bio-thermodynamic health of mixed Eucalyptus-native tree plantations
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Major biogeographic barriers in eastern Australia have shaped population structure of widely distributed Eucalyptus moluccana and its four putative subspecies
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Data from: Landscape genomics reveals altered genome wide diversity within revegetated stands of Eucalyptus microcarpa (Grey Box)
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Epidermal cell length of <em>Bursera</em> <em>simaruba</em> and <em>Eucalyptus camaldulensis</em> leaves
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Data from: Speciation in the presence of gene flow: population genomics of closely related and diverging Eucalyptus species
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Data from: Transcriptionally active LTR retrotransposons in Eucalyptus genus are differentially expressed and insertionally polymorphic
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Data from: <em>In vitro</em> anti-tick effect of <em>Eucalyptus globulus</em> oil and its nano-emulsion against unfed adults of the brown dog tick <em>Rhipicephalus sanguineus</em> sensu lato (Acari: Ixodidae)
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Data from: Assessing the expected response to genomic selection of individuals and families in Eucalyptus breeding with an additive-dominant model
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Genomic evidence of introgression and adaptation in a model subtropical tree species, Eucalyptus grandis
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Data from: Efficiency of genomic prediction across two Eucalyptus nitens seed orchards with different selection histories
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Data from: Exploration of genetic architecture through sib-ship reconstruction in advanced breeding population of Eucalyptus nitens
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