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28 results for “Angophora”
FIGURE 6 in A new pupillarial scale insect (Hemiptera: Coccoidea: Eriococcidae) from Angophora in coastal New South Wales, Australia
FIGURE 6. Adult male of Aolacoccus angophorae sp. nov. A, dorsal view of antenna with ventral view of apical segments on left; B, apical segments of abdomen.
FIGURE 4 in A new pupillarial scale insect (Hemiptera: Coccoidea: Eriococcidae) from Angophora in coastal New South Wales, Australia
FIGURE 4. First-instar nymph of Aolacoccus angophorae sp. nov. A, apical antennal segments; B, spiracle with enlargement of quinquelocular pore; C, enlargement of ventral posterior of abdomen showing anal area; D, robust microtubular duct; E, dorsal seta; F, small microtubular duct.
FIGURE 3 in A new pupillarial scale insect (Hemiptera: Coccoidea: Eriococcidae) from Angophora in coastal New South Wales, Australia
FIGURE 3. Second-instar female of Aolacoccus angophorae sp. nov. with body outline of adult female indicated by dashed line just inside body. A, antenna; B, pore-like structure, possibly opening of a microduct; C, spiracle with enlargement of quinquelocular pore; D, abdominal operculum; E, ventral seta; F, quinquelocular pores from operculum; G, dorsal seta.
FIGURE 2 in A new pupillarial scale insect (Hemiptera: Coccoidea: Eriococcidae) from Angophora in coastal New South Wales, Australia
FIGURE 2. Adult female of Aolacoccus angophorae sp. nov. A, antenna; B, spiracle with enlargements of quinquelocular pore and minute seta; C, ventral setae; D, quinquelocular pore from near vulva; E, disc-like structure, perhaps a cicatrix; F, dorsal setae.
FIGURE 5 in A new pupillarial scale insect (Hemiptera: Coccoidea: Eriococcidae) from Angophora in coastal New South Wales, Australia
FIGURE 5. Second-instar male of Aolacoccus angophorae sp. nov. A, antenna; B, quinquelocular pores; C, anus and associated setae; D, dorsal seta; E, macrotubular duct.
FIGURE 1 in A new pupillarial scale insect (Hemiptera: Coccoidea: Eriococcidae) from Angophora in coastal New South Wales, Australia
FIGURE 1. Underside of bark from trunk of Angophora costata showing seven bumps (indicated by arrows), each 0.7–0.8 mm across, and under each of which is a single female insect of Aolacoccus angophorae sp. nov. [Photograph by T. Kondo].
Looks can be deceiving: speciation dynamics of co-distributed Angophora (Myrtaceae) species in a varying landscape
<p>Understanding the mechanisms underlying species divergence remains a central goal in evolutionary biology. Landscape genetics can be a powerful tool for examining evolutionary processes. We used genome-wide scans to genotype samples from populations of eight <i>Angophora</i> species. <i>Angophora</i> is a small genus within the eucalypts comprising common and rare species in a heterogeneous landscape, making it an appropriate group to study speciation. We found <i>A. hispida</i> was highly differentiated from the other species. Two subspecies of <i>A. costata</i> (subsp. <i>costata</i> and subsp. <i>euryphylla</i>) formed a group, while the third (subsp. <i>leiocarpa, </i>which is only distinguished by its smooth fruits and provenance) was supported as a distinct pseudocryptic species. Other species that are morphologically distinct could not be genetically differentiated (e.g., <em>A. floribunda </em>and <em>A. subvelutina</em>). Distribution and genetic differentiation within <i>Angophora</i> were strongly influenced by temperature and humidity, as well as biogeographic barriers, particularly rivers and higher elevation regions. While extensive introgression was found between many populations of some species (e.g., <i>A. bakeri</i> and <i>A. floribunda</i>), others only hybridized at certain locations. Overall, our findings suggest multiple mechanisms drove evolutionary diversification in <em>Angophora</em> and highlight how genome-wide analyses of related species in a diverse landscape can provide insights into speciation. </p>
Looks can be deceiving: speciation dynamics of co-distributed Angophora (Myrtaceae) species in a varying landscape
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