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1,069 results for “Allium”
FIG. 3 in Allium izmirense Pirhan, sp. nov. (Amaryllidaceae), a new species of Allium sect. Codonoprasum Rchb. from Turkey
FIG. 3. — Allium izmirense Pirhan, sp. nov.: A, B, pollen grains; C, details of pollen surface in SEM photos; D, seed; E, F, details of seed testa in SEM photos. Scale bars: A, 30 µm; B, 10 µm; C, 3 µm; D, 1 mm; E, 500 µm; F, 200 µm.
FIG. 1 in Allium izmirense Pirhan, sp. nov. (Amaryllidaceae), a new species of Allium sect. Codonoprasum Rchb. from Turkey
FIG. 1. — Allium izmirense Pirhan, sp. nov.: A, habitus; B, early stage of flower; C, perigone with shorter filaments; D, perigone with longer filaments; E, details of the sheath; F, ovary; G, capsule. Drawn by Seval Erdem. Scale bars: A, 3 cm; B, F, 1 mm; C, D, G, 2 mm; E, 1 cm.
FIG. 2 in Allium izmirense Pirhan, sp. nov. (Amaryllidaceae), a new species of Allium sect. Codonoprasum Rchb. from Turkey
FIG. 2. — Allium izmirense Pirhan, sp. nov.: A-E, inflorescence; F, blooming; G, individuals in field; H, leaf and leaf sheath indumentum; I, individuals in fruiting stage.
Figure 5 in Phytophagous mite (Acari) species on garlic (Allium sativum L.) cultivation areas and storages of Kastamonu, Turkey
Figure 5. Percentage distribution of mites collected in garlic cultivation areas according to the localities (Merkez = Centrum).
Figure 1 in Phytophagous mite (Acari) species on garlic (Allium sativum L.) cultivation areas and storages of Kastamonu, Turkey
Figure 1. Localities of phytophagous mite species collected in garlic cultivation areas and storages of Kastamonu.
Figure 2 in Phytophagous mite (Acari) species on garlic (Allium sativum L.) cultivation areas and storages of Kastamonu, Turkey
Figure 2. Distribution of mite samples according with the plant parts and storage Acaridae was most abundant (94.00%) determined mite group from garlic head samples (See Fig 3).
Figure 4 in Phytophagous mite (Acari) species on garlic (Allium sativum L.) cultivation areas and storages of Kastamonu, Turkey
Figure 4. Number of mites collected in garlic cultivation areas (garlic head, garlic leaves) and storage surveys.
Allium cernuum (Liliaceae) - stem - showing leaf bases
Image of Allium cernuum (Liliaceae) - stem - showing leaf bases
Allium cernuum (Liliaceae) - whole plant - in flower - general view
Image of Allium cernuum (Liliaceae) - whole plant - in flower - general view
Allium cernuum (Liliaceae) - inflorescence - whole - unspecified
Image of Allium cernuum (Liliaceae) - inflorescence - whole - unspecified
Allium cernuum (Liliaceae) - leaf - basal or on lower stem
Image of Allium cernuum (Liliaceae) - leaf - basal or on lower stem
Figure 2 in Variations in heterochromatin content reveal important polymorphisms for studies of genetic improvement in garlic (Allium sativum L.)
Figure 2. Idiograms of the accessions "Sussuapara - PI" (A), "Santo Antônio de Lisboa - PI" (B), "Catetinho do Paraná 1254" (C), "Branco Mineiro - PI" (D), "Cateto Roxo 99" (E), "Roxo de Minas" (F), and "Sergipe" (G). Yellow dash and circle represent the CMA+/DAPI- band. Chromosomal order (CO), chromosome morphology (CM), metacentric (M), submetacentric (SM), short arm (p), and long arm (q). Vertical bar in karyogram and ideogram = 10 µm.
Figure 1. Allium sativum L in Variations in heterochromatin content reveal important polymorphisms for studies of genetic improvement in garlic (Allium sativum L.)
Figure 1. Allium sativum L.cytological data obtained by conventional Giemsa staining.Prophase and interphase nucleus (A), prometaphase (B), and metaphase (C) obtained with the use of antimitotic. Mitotic cycle is shown in d-f: anaphase (D), end of anaphase (E), and telophase (F). Dots and red arrow indicate the distended nucleolar organiser region (NOR). Bar = 10 µm.
Figure 1 in Integrative analysis in toxicological assessment of the insecticide Malathion in Allium cepa L. system
Figure 1. Rates of alterations found for Allium cepa cells exposed for 48h to distilled water (H O – negative control), 0.5 mg mL-1, 2 d 1.0 mg mL-1 of Malathion and methyl methanesulfonate (MMS – positive control), concerning: (A) anaphase bridge; (B) chromosome loss; (C) chromosome delay; (D) micronuclei index. KW-H = results of Kruskal-Wallis test and p = value of the statistical probability. Letters on the error bars indicate the result of the statistical Mann-Whitney U test.
Figure 3 in Integrative analysis in toxicological assessment of the insecticide Malathion in Allium cepa L. system
Figure 3. Discriminant canonical function, showing the distribution of the centroids e of the groups of the different treatments; 1: treatment submitted to distilled water; 4: positive control with MMS; 2 and 3: groups exposed to Malathion, for 0.5 e 1.0 mg mL-1 concentrations, respectively.
Figure 2 in Integrative analysis in toxicological assessment of the insecticide Malathion in Allium cepa L. system
Figure 2. Mitotic index at the radicular meristematic region of Allium cepa cells, after exposure for 48 hours to distilled water (H Od – negative control), 0.5 mg mL-1, 1.0 mg mL-1 of Malathion 2 and methyl methanesulfonate (MMS – positive control). KW-H = results of Kruskal-Wallis test and p = value of the statistical probability. Letters on the error bars indicate the result of the statistical Mann-Whitney U test.
Fig. 3 in Allium Paradoxum (M.Bieb.) G. Don (Amaryllidaceae) - A New Invasive Plant Species For The Flora Of Baltic States
Fig. 3. Allium paradoxum (M. Bieb.) G. Don. in Rumbula, Rīga, Latvia with flowers and bulbils. (Photo: A. Bojāre).
Fig. 2 in Variation In Reproductive Modes Of Allium Oleraceum, A. Scorodoprasum And A. Vineale In Field Collection
Fig. 2. Correlations between mean mass of an aerial bulbil and flower number per plant in four Allium scorodoprasum accessions (No. 315, 437, 447 and 604). Ellipses show a 95 % confidence area
Figs 2A-F in Antiproliferative and genotoxic potential from extracts and fractions of Richardia brasiliensis Gomes (Rubiaceae) by the Allium cepa L. test system
Figs 2A-F. Meristem cells of Allium cepa root strain submitted to treatments with extracts and fractions of Richardia brasiliensis. A. Cell binucleada; B. cell with micronucleus (long black arrow); C. Disorganized prophase (short black arrow); D. Break chromosome (short arrow unfilled) in metaphase; E. Anaphase bridge; F. Break chromosome in telophase. Bars = 10 µm.
Allium ampeloprasum L. (BR0000011292029)
Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
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