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14 results for “Chenopodioideae”
FIGURE 2 in A new species of Dysphania (Chenopodioideae, Chenopodiaceae) from South-West Tibet and East Himalaya
FIGURE 2. Perianth, fruit and seed of D. geoffreyi. A, B) perianth with stout and long simple hairs (sh), simple hairs with concrescent bases (csh), subsessile glands (sg) and scattered glandular hairs (gh); C) pericarp surface; D) seed with remnants of pericarp (p). Voucher specimens: A, C, D) China, Tibet [Xizang prov.], Lhasa, Daxika, 4150 m, 5 September 1965, Yong-tian Zhang & Kai-yong Lang 2663 (PE- 00510980!); B) Bhutan, Upper Mo Chu distr. [Punakha distr.], Gangyvel Chu below Gangyvel, ca. 3820 m, 27 September 1984, Sinclair & Long 5364 (E-00151629).
FIGURE 2 in Neotypification of the name Atriplex pentandra (Amaranthaceae, Chenopodioideae)
FIGURE 2. Atriplex pentandra: (A) Habit, (B) Leaf, (C) Fruiting bracteole, dorsal view, (D) Fruiting bracteole, internal view and seed (drawn from the neotype by F. Rojas).
Figure 6 from: Sukhorukov AP, Nilova MV, Krinitsina AA, Zaika MA, Erst AS, Shepherd KA (2018) Molecular phylogenetic data and seed coat anatomy resolve the generic position of some critical Chenopodioideae (Chenopodiaceae – Amaranthaceae) with reduced perianth segments. PhytoKeys 109: 103-128. https://doi.org/10.3897/phytokeys.109.28956
Figure 6 Habit of Blitumasiaticum showing the senescing leaf rosette. Photographer: Igor Pospelov (Russia, Krasnoyarsk prov., Taymyr, Khatanga, August 2014).
Figure 7 from: Sukhorukov AP, Nilova MV, Krinitsina AA, Zaika MA, Erst AS, Shepherd KA (2018) Molecular phylogenetic data and seed coat anatomy resolve the generic position of some critical Chenopodioideae (Chenopodiaceae – Amaranthaceae) with reduced perianth segments. PhytoKeys 109: 103-128. https://doi.org/10.3897/phytokeys.109.28956
Figure 7 Shoot of Micromonolepispusilla showing the characteristic fleshy leaves. Photographer: Steve Matson (USA, California, Mono County, Long Valley, 2007).
Figure 5 from: Sukhorukov AP, Nilova MV, Krinitsina AA, Zaika MA, Erst AS, Shepherd KA (2018) Molecular phylogenetic data and seed coat anatomy resolve the generic position of some critical Chenopodioideae (Chenopodiaceae – Amaranthaceae) with reduced perianth segments. PhytoKeys 109: 103-128. https://doi.org/10.3897/phytokeys.109.28956
Figure 5 Cross-section of the seed of Neomonolepisspathulata. Abbreviations: T – testa, TE – tegmen, PE – perisperm, ST – stalactites in the outer walls of the testa cells.
Figure 4 from: Sukhorukov AP, Nilova MV, Krinitsina AA, Zaika MA, Erst AS, Shepherd KA (2018) Molecular phylogenetic data and seed coat anatomy resolve the generic position of some critical Chenopodioideae (Chenopodiaceae – Amaranthaceae) with reduced perianth segments. PhytoKeys 109: 103-128. https://doi.org/10.3897/phytokeys.109.28956
Figure 4 Cross-section of the seed of Blitumantarcticum. Abbreviations: T – testa, TE- tegmen, PE – perisperm.
Figure 1 from: Sukhorukov AP, Nilova MV, Krinitsina AA, Zaika MA, Erst AS, Shepherd KA (2018) Molecular phylogenetic data and seed coat anatomy resolve the generic position of some critical Chenopodioideae (Chenopodiaceae – Amaranthaceae) with reduced perianth segments. PhytoKeys 109: 103-128. https://doi.org/10.3897/phytokeys.109.28956
Figure 1 Best tree from the BEAST analysis of the ITS Chenopodioideae dataset. Bayesian posterior probabilities are given above the branches, jackknife values (left) and bootstrap percentages of the maximum likelihood analyses (right) are given below branches.
Figure 2 from: Sukhorukov AP, Nilova MV, Krinitsina AA, Zaika MA, Erst AS, Shepherd KA (2018) Molecular phylogenetic data and seed coat anatomy resolve the generic position of some critical Chenopodioideae (Chenopodiaceae – Amaranthaceae) with reduced perianth segments. PhytoKeys 109: 103-128. https://doi.org/10.3897/phytokeys.109.28956
Figure 2 Best tree from the BEAST analysis of the combined trnL-trnF + rbcL + atpB-rbcLChenopodioideae dataset. Bayesian posterior probabilities are given above the branches, jackknife values (left) and bootstrap percentages of the maximum likelihood analyses (right) are given below branches.
Figure 8 from: Sukhorukov AP, Nilova MV, Krinitsina AA, Zaika MA, Erst AS, Shepherd KA (2018) Molecular phylogenetic data and seed coat anatomy resolve the generic position of some critical Chenopodioideae (Chenopodiaceae – Amaranthaceae) with reduced perianth segments. PhytoKeys 109: 103-128. https://doi.org/10.3897/phytokeys.109.28956
Figure 8 SEM detail of the inflorescence of Neomonolepisspathulata. Abbreviations: B – bract (stained in green), FF – female flowers (orange), MF –male flower (perianth stained in blue, stamen in yellow), S – stem.
FIGURE 3 in A new species of Dysphania (Chenopodioideae, Chenopodiaceae) from South-West Tibet and East Himalaya
FIGURE 3. Distribution patterns of D. geoffreyi (asterisks) and D. himalaica (dots).
FIGURE 4 in A new species of Dysphania (Chenopodioideae, Chenopodiaceae) from South-West Tibet and East Himalaya
FIGURE 4. Distribution patterns of D. bhutanica (dots) and D. tibetica (asterisks).
FIGURE 1 in A new species of Dysphania (Chenopodioideae, Chenopodiaceae) from South-West Tibet and East Himalaya
FIGURE 1. Holotype of Dysphania geoffreyi (PE-00510980!).
FIGURE 1 in Neotypification of the name Atriplex pentandra (Amaranthaceae, Chenopodioideae)
FIGURE 1. Neotype of Atriplex pentandra (US-01274701!).
Figure 3 from: Sukhorukov AP, Nilova MV, Krinitsina AA, Zaika MA, Erst AS, Shepherd KA (2018) Molecular phylogenetic data and seed coat anatomy resolve the generic position of some critical Chenopodioideae (Chenopodiaceae – Amaranthaceae) with reduced perianth segments. PhytoKeys 109: 103-128. https://doi.org/10.3897/phytokeys.109.28956
Figure 3 Pericarp of Blitumantarcticum. Scale bar: 200 μm.
ScienceDex guides
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OpenNeuro
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