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93 results for “species aggregates”

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zenodo32/100

FIGURE. Median network analyses (MNA) of a subset of the C. trilobus aggregate (i.e. those in the clade A from Fig. 11) based on concatenated DNA sequence data from ITS, trnL-trnF and psbJ-petA. Stars and arrow indicate accessions discussed in the text. NI: North Island, SI: South Island. in Five new species of Corybas (Diurideae, Orchidaceae) endemic to New Zealand and phylogeny of the Nematoceras clade

FIGURE. Median network analyses (MNA) of a subset of the C. trilobus aggregate (i.e. those in the clade A from Fig. 11) based on concatenated DNA sequence data from ITS, trnL-trnF and psbJ-petA. Stars and arrow indicate accessions discussed in the text. NI: North Island, SI: South Island.

opennotspecifiedAug 2016View details →
zenodo32/100

FIGURE. Bayesian tree of New Zealand spider orchids (Corybas) based on DNA sequence data from ITS, trnL-trnF and psbJ-petA. Major clades are indicated by open bars and capital letters, members of the C. trilobus aggregate are shaded, and posterior probabilities/ bootstrap percentages (≥50) indicated by numbers near each node. NI: North Island, SI: South Island, MCQI: Macquarie Island, CHI: Chatham Island in Five new species of Corybas (Diurideae, Orchidaceae) endemic to New Zealand and phylogeny of the Nematoceras clade

FIGURE. Bayesian tree of New Zealand spider orchids (Corybas) based on DNA sequence data from ITS, trnL-trnF and psbJ-petA. Major clades are indicated by open bars and capital letters, members of the C. trilobus aggregate are shaded, and posterior probabilities/ bootstrap percentages (≥50) indicated by numbers near each node. NI: North Island, SI: South Island, MCQI: Macquarie Island, CHI: Chatham Island

opennotspecifiedAug 2016View details →
zenodo32/100

FIGURE. Canonical variate analysis of Corybas hypogaeus, C. obscurus ("darkie"), C. wallii ("triwhite") and two variants of the C. trilobus aggregate ("Rimutaka", "Trotters") in Five new species of Corybas (Diurideae, Orchidaceae) endemic to New Zealand and phylogeny of the Nematoceras clade

FIGURE. Canonical variate analysis of Corybas hypogaeus, C. obscurus ("darkie"), C. wallii ("triwhite") and two variants of the C. trilobus aggregate ("Rimutaka", "Trotters")

opennotspecifiedAug 2016View details →
zenodo32/100

FIGURE. Thalictrum tsawarungense in the wild (Zayu in Xizang, China, the type locality). A. Habitat. B. Habit. C. Roots. D. Portion of stem. E. Leaf (left: adaxial side; right: abaxial side). F. Leaflet (adaxial side). G. Portion of adaxial side of leaflet. H. Portion of abaxial side of leaflet. I. Flower. J. Sepal (left: adaxial side; right: abaxial side). K. Stamens. L. Carpels. M. Aggregate fruits. N. Achenes (immature). Photographed by Y.P. Zeng. in Thalictrum hengduanshanense and T. longistipitatum (Ranunculaceae), two new species from southeastern Xizang and northwestern Yunnan, China

FIGURE. Thalictrum tsawarungense in the wild (Zayu in Xizang, China, the type locality). A. Habitat. B. Habit. C. Roots. D. Portion of stem. E. Leaf (left: adaxial side; right: abaxial side). F. Leaflet (adaxial side). G. Portion of adaxial side of leaflet. H. Portion of abaxial side of leaflet. I. Flower. J. Sepal (left: adaxial side; right: abaxial side). K. Stamens. L. Carpels. M. Aggregate fruits. N. Achenes (immature). Photographed by Y.P. Zeng.

opennotspecifiedOct 2022View details →
zenodo32/100

FIGURE. Thalictrum rostellatum in the wild (Zayu in Xizang, China). A. Habitat. B. Habit. C. Roots. D. Portion of stem. E. Leaf (left: adaxial side; right: abaxial side). F. Leaflet (adaxial side). G. Portion of adaxial side of leaflet. H. Portion of abaxial side of leaflet. I. Flower. J. Sepal (left: adaxial side; right: abaxial side). K. Stamens. L. Carpels. M. Aggregate fruit. N. Achenes (immature). Photographed by Y.P. Zeng. in Thalictrum hengduanshanense and T. longistipitatum (Ranunculaceae), two new species from southeastern Xizang and northwestern Yunnan, China

FIGURE. Thalictrum rostellatum in the wild (Zayu in Xizang, China). A. Habitat. B. Habit. C. Roots. D. Portion of stem. E. Leaf (left: adaxial side; right: abaxial side). F. Leaflet (adaxial side). G. Portion of adaxial side of leaflet. H. Portion of abaxial side of leaflet. I. Flower. J. Sepal (left: adaxial side; right: abaxial side). K. Stamens. L. Carpels. M. Aggregate fruit. N. Achenes (immature). Photographed by Y.P. Zeng.

opennotspecifiedOct 2022View details →
zenodo32/100

FIGURE. Specimens of Thalictrum longistipitatum (previously misidentified as T. rostellatum or T. wangii). A. China, Xizang, Zayu, B.S. Li, Z.C. Ni & S.Z. Cheng 7224 (PE); inset: aggregate fruits. B. China, Yunnan, Dêqên, L. Xie & J.F. Mao 136 (PE01569411); inset: aggregate fruits. C. Same locality, L. Xie & J.F. Mao 137 (PE01569412); inset: aggregate fruits. D. Same locality, L. Xie & J.F. Mao 138 (PE01569413); inset: aggregate fruits. in Thalictrum hengduanshanense and T. longistipitatum (Ranunculaceae), two new species from southeastern Xizang and northwestern Yunnan, China

FIGURE. Specimens of Thalictrum longistipitatum (previously misidentified as T. rostellatum or T. wangii). A. China, Xizang, Zayu, B.S. Li, Z.C. Ni & S.Z. Cheng 7224 (PE); inset: aggregate fruits. B. China, Yunnan, Dêqên, L. Xie & J.F. Mao 136 (PE01569411); inset: aggregate fruits. C. Same locality, L. Xie & J.F. Mao 137 (PE01569412); inset: aggregate fruits. D. Same locality, L. Xie & J.F. Mao 138 (PE01569413); inset: aggregate fruits.

opennotspecifiedOct 2022View details →
zenodo32/100

FIGURE. Specimens of Thalictrum hengduanshanense (previously misidentified as T. rostellatum or T. wangii). A. China, Xizang, Zayu, Anonymous 75 (HITBC); inset: aggregate fruit (immature). B. China, Yunnan, Dêqên, K.M. Feng 5214 (KUN0690504); inset: aggregate fruit (immature). C. China, Yunnan, Dêqên, L. Xie & J.F. Mao 133 (PE01569465); inset: aggregate fruit. D. China, Yunnan, Weixi, K.M. Feng 4833 (KUN0690086); inset: aggregate fruit. in Thalictrum hengduanshanense and T. longistipitatum (Ranunculaceae), two new species from southeastern Xizang and northwestern Yunnan, China

FIGURE. Specimens of Thalictrum hengduanshanense (previously misidentified as T. rostellatum or T. wangii). A. China, Xizang, Zayu, Anonymous 75 (HITBC); inset: aggregate fruit (immature). B. China, Yunnan, Dêqên, K.M. Feng 5214 (KUN0690504); inset: aggregate fruit (immature). C. China, Yunnan, Dêqên, L. Xie & J.F. Mao 133 (PE01569465); inset: aggregate fruit. D. China, Yunnan, Weixi, K.M. Feng 4833 (KUN0690086); inset: aggregate fruit.

opennotspecifiedOct 2022View details →
zenodo32/100

FIGURE. Thalictrum hengduanshanense in the wild (Dêqên in northwestern Yunnan, China, the type locality). A. Habitat. B. Habit. C. Roots. D. Portion of stem. E. Leaf (left: adaxial side; right: abaxial side). F. Leaflet (adaxial side). G. Portion of adaxial side of leaflet. H. Portion of abaxial side of leaflet. I. Flower. J. Sepal (left: adaxial side; right: abaxial side). K. Stamens. L. Carpels. M. Aggregate fruits. N. Achenes (immature). Photographed by Y.P. Zeng. in Thalictrum hengduanshanense and T. longistipitatum (Ranunculaceae), two new species from southeastern Xizang and northwestern Yunnan, China

FIGURE. Thalictrum hengduanshanense in the wild (Dêqên in northwestern Yunnan, China, the type locality). A. Habitat. B. Habit. C. Roots. D. Portion of stem. E. Leaf (left: adaxial side; right: abaxial side). F. Leaflet (adaxial side). G. Portion of adaxial side of leaflet. H. Portion of abaxial side of leaflet. I. Flower. J. Sepal (left: adaxial side; right: abaxial side). K. Stamens. L. Carpels. M. Aggregate fruits. N. Achenes (immature). Photographed by Y.P. Zeng.

opennotspecifiedOct 2022View details →
zenodo32/100

FIGURE. Thalictrum wangii in the wild (Lijiang in northwestern Yunnan, China, the type locality). A. Habitat. B. Habit. C. Roots. D. Portion of stem. E. Leaf (left: adaxial side; right: abaxial side). F. Leaflet (adaxial side). G. Portion of adaxial side of leaflet. H. Portion of abaxial side of leaflet. I. Flower. J. Sepal (left: adaxial side; right: abaxial side). K. Stamens. L. Carpels. M. Aggregate fruit. N. Achenes (immature). Photographed by Y.P. Zeng. in Thalictrum hengduanshanense and T. longistipitatum (Ranunculaceae), two new species from southeastern Xizang and northwestern Yunnan, China

FIGURE. Thalictrum wangii in the wild (Lijiang in northwestern Yunnan, China, the type locality). A. Habitat. B. Habit. C. Roots. D. Portion of stem. E. Leaf (left: adaxial side; right: abaxial side). F. Leaflet (adaxial side). G. Portion of adaxial side of leaflet. H. Portion of abaxial side of leaflet. I. Flower. J. Sepal (left: adaxial side; right: abaxial side). K. Stamens. L. Carpels. M. Aggregate fruit. N. Achenes (immature). Photographed by Y.P. Zeng.

opennotspecifiedOct 2022View details →
zenodo32/100

FIGURES 1–3. 1 in Observation of a mixed-sex, mixed-species aggregation of velvet ants, genus Timulla Ashmead, 1899 (Hymenoptera: Mutillidae) in the Brazilian Amazon, Roraima, with a new synonymy

FIGURES 1–3. 1. Single males of T. rufogastra; 2. Single male of T. rufogastra and mating pair of Timulla rufogastra on adaxial surface of dry leaf; 3. Single male of Timulla rufogastra on adaxial surface of dry leaf.

opennotspecifiedDec 2017View details →
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FIGURES 4–5. 4 in Observation of a mixed-sex, mixed-species aggregation of velvet ants, genus Timulla Ashmead, 1899 (Hymenoptera: Mutillidae) in the Brazilian Amazon, Roraima, with a new synonymy

FIGURES 4–5. 4. Mating pair of T. rufogastra on dry twig at aggregation site; 5. Captured mating pair of T. suspensa (Gerstaecker), credits: G.C.W.

opennotspecifiedDec 2017View details →
dryad32/100

Not a melting pot: plant species aggregate in their non-native range

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publicDec 2020View details →
dryad32/100

Data from: Discovery of a multi-species shark aggregation and parturition area in the Ba Estuary, Fiji Islands

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publicMay 2019View details →
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Data from: Species-specific responses to island connectivity cycles: refined models for testing phylogeographic concordance across a Mediterranean Pleistocene Aggregate Island complex

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publicJul 2015View details →
dryad32/100

Raw images for bead aggregation assays - Heterophilic and homophilic cadherin interactions in intestinal intermicrovillar links are species dependent

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publicOct 2021View details →
zenodo28/100

FIGURE 3 in Hieracium boratynskii (Asteraceae), a new species in the H. canescens aggregate from the Sudetes in Poland

FIGURE 3. Hieracium boratynskii in cultivation (synflorescence).

opennotspecifiedMar 2022View details →
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FIGURE 2 in Hieracium boratynskii (Asteraceae), a new species in the H. canescens aggregate from the Sudetes in Poland

FIGURE 2. Hieracium boratynskii in cultivation (rosette, capitulum).

opennotspecifiedMar 2022View details →
zenodo28/100

FIGURE 1 in Hieracium boratynskii (Asteraceae), a new species in the H. canescens aggregate from the Sudetes in Poland

FIGURE 1. Holotype of Hieracium boratynskii (KRAM).

opennotspecifiedMar 2022View details →
zenodo28/100

Figure 4 in Phylogenetic analysis of the Niphargus orcinus species- aggregate (Crustacea: Amphipoda: Niphargidae) with description of new taxa

Figure 4. Distribution of characters ''coxa II-shape'' (character 30, CI50.5, RI50.86; left) and ''coxa III shape'' (character 40, CI50.33, RI50.78; right). The difference in the distribution of the two characters contradicts the notion that they might be serial homologues.

opencc-by-4.0Dec 2006View details →
dryad28/100

Data for: Aggregation in an heterospecific population of blowfly larvae: social behaviour is impacted by species-specific thermal requirements and settlement order

<p><span>Larvae of several blow fly species grow on carcasses and actively aggregate together. They face harsh developmental conditions resulting in a strong pressure to reduce development time: this is achieved either through thermoregulation or aggregation. We investigate how these two developmental strategies are modulated within heterospecific groups. In the first experiment, larvae of two species with different thermal requirements were deposited simultaneously on a thermal gradient. This resulted in the formation of two monospecific groups, each located at the species-specific thermal preferendum. However, when <em>Calliphora</em> <em>vomitoria</em> (Linnaeus) larvae were placed first, the later coming <em>Lucilia</em> <em>sericata</em> (Meigen) larvae attracted the whole group to its own thermal preferendum. In the reverse experiment, a half of the replicates resulted in single dense heterospecific groups observed at temperatures ranging from <em>C. vicina</em> to <em>L. sericata</em> preferendum. The other half of the replicates resulted in loose groups spread out on the thermal gradient. These results highlight the emergence of collective decisions ranging from thermal optimization to heterospecific aggregation at suboptimal temperatures. They demonstrate that species settlement order strongly affects self-organization processes and mixed-species group formation. We conclude that thermal optimization and heterospecific niche construction are two developmental strategies of carrion fly larvae.</span></p>

opencc-zeroApr 2023View details →

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Last verified 2026-04-29Open record

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Last verified 2026-04-29Open record