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101 results for “Musa”
Data for: Diversity of Functional Edaphic Macrofauna in Musa acuminata x Musa balbisiana (AAB) Agroecosystems
<p>The Dataset is linked to the article <strong>Diversity of Functional Edaphic Macrofauna in <em>Musa acuminata x Musa balbisiana</em> (AAB) Agroecosystems.</strong> The collected individuals were analyzed by order, and family and quantified and identified by gender (Database (Oxford). 2020: baaa062. PubMed: 32761142 PMC: PMC7408187.), The collection and taxonomic identification phase is explained in the protocol.i (dx.doi.org/10.17504/protocols.io.rm7vzby75vx1/v1).</p> <p>This dataset was a modification as was indicated for the #GlobalSoilMacroFauna | Official template to report Data to the MACROFAUNA database (<a href="../records/7691884">#GlobalSoilMacroFauna | Official template to report Data to the MACROFAUNA database (zenodo.org)</a>) cited by [Mathieu, J., Antunes, A. C., Barot, S., Bonato Asato, A. E. ., Bartz, M. L. C. ., Brown, G. G., Calderon-Sanou, I., Decaëns, T., Fonte, S. J., Ganault, P., Gauzens, B., Gongalsky, K. B., Guerra, C. A., Hengl, T., Lavelle, P., Marichal, R., Mehring, H., Peña-Venegas, C. P., Castro, D., Potapov, A., Thébault, E., Thuiller, W., Witjes, M., Zhang, C., & Eisenhauer, N. (2022). sOilFauna - a global synthesis effort on the drivers of soil macrofauna communities and functioning: WORKSHOP REPORT . <em>SOIL ORGANISMS</em>, <em>94</em>(2), 111–126. https://doi.org/10.25674/so94iss2id282]</p>
Herbarium specimen image of Musa itinerans Cheesman var. chinensis Häkkinen, part of the collection of Finnish Museum of Natural History LUOMUS, University of Helsinki
Part of a training dataset of scanned herbarium specimens. The data paper and a summary landing page will be published on Zenodo as it gets published.<br><br>Content of this deposition:<br><br>- A JSON-LD datafile listing the label data associated with this herbarium specimen. The Darwin and Dublin Core data standards are used for most values.<br>- A JPEG image file of the scanned herbarium sheet.<br>- A lossless TIFF image from which the JPEG image has been derived.
Fig. 6 in The Taxonomy And Phylogenetic Relationships Of Species In The Bactrocera Musae Complex Of Fruit Flies (Diptera: Tephritidae: Dacinae) In Papua New Guinea
Fig. 6. Neighbour joining tree showing relationships between CO1 haplotypes from species in the Bactrocera musae complex. Values at nodes are for 1000 bootstrap replicates of the maximum likelihood calculations using the Kimura two-parameter model of sequence evolution (left) and Bayesian posterior probability (right). Clade A = B. musae, Clade B = B. rufivitta, Clade C = B. contermina. Note: the numbers at the branch tips represent the field collection codes given to individual specimens.
Fig. 7 in The Taxonomy And Phylogenetic Relationships Of Species In The Bactrocera Musae Complex Of Fruit Flies (Diptera: Tephritidae: Dacinae) In Papua New Guinea
Fig. 7. Diagram showing clustering of individuals at (A) the highest hierarchical level of structuring in the Bactrocera musae complex using STRUCTURE, and (B) the sub-group structuring into two further clusters of the individuals from the red cluster in A. Vertical bars represent individuals and colours denote the proportion of ancestry from each cluster based on eight microsatellite loci. Note at the highest level (A), individuals are clearly assigned to either the B. musae or the 'others' cluster. At the next level (B), individuals from the 'others' cluster are assigned to either the B. rufivitta cluster (red) or the B. contermina cluster (green). Note: The numbers below the vertical bars represent the field collection codes given to individual specimens.
Figure. Cross-sections of ovaries of Heliconia psittacorum (A,B) and Musa velutina (C,D). Polyethylene glycol–embedded ovaries are on the left (A,C). Paraffin-embedded ovaries are on the right (B,D). Scale bars: 1 mm. Images obtained by Anastasia Romanov (A and C) and Bruce Kirchoff (B and D). in USE OF POLYETHYLENE GLYCOL (PEG, CARBOWAX) AS AN EMBEDDING MEDIUM PRODUCES RESULTS COMPARABLE TO PARAFFIN
Figure. Cross-sections of ovaries of Heliconia psittacorum (A,B) and Musa velutina (C,D). Polyethylene glycol–embedded ovaries are on the left (A,C). Paraffin-embedded ovaries are on the right (B,D). Scale bars: 1 mm. Images obtained by Anastasia Romanov (A and C) and Bruce Kirchoff (B and D).
Fig. 4 in Feeding behavior and activity period of three Neotropical bat species (Chiroptera: Phyllostomidae) on Musa paradisiaca inflorescences (Zingiberales: Musaceae)
Fig. 4. Activity period of (A) two glossophagine species (Anoura caudifer + Glossophaga soricina) and Phyllostomus discolor on Musa paradisiaca inflorescence, and of (B) two approaching strategies (upside landing and hovering) performed by two glossophagine species in an orchard located in the state of São Paulo, Brazil.
Fig. 3 in Feeding behavior and activity period of three Neotropical bat species (Chiroptera: Phyllostomidae) on Musa paradisiaca inflorescences (Zingiberales: Musaceae)
Fig. 3. Phyllostomus discolor (Wagner, 1843) with its wings completely open and its head directed toward the flowers performing the downside landing strategy on the banana inflorescence in an orchard located in the state of SÃo Paulo, Brazil. Photo: Wilson Uieda.
Fig. 2 in Feeding behavior and activity period of three Neotropical bat species (Chiroptera: Phyllostomidae) on Musa paradisiaca inflorescences (Zingiberales: Musaceae)
Fig. 2. Glossophaga soricina (Pallas, 1766) with its wings folded alongside the body performing the upside landing strategy on the banana inflorescence in an orchard located in the state of SÃo Paulo, Brazil. Photo: Wilson Uieda.
Fig. 1 in Feeding behavior and activity period of three Neotropical bat species (Chiroptera: Phyllostomidae) on Musa paradisiaca inflorescences (Zingiberales: Musaceae)
Fig. 1. Anoura caudifer (É. Geoffroy, 1818) with its snout partially inserted in floral tube performing the hovering strategy on the banana inflorescence in an orchard located in the state of SÃo Paulo, Brazil. Photo: Wilson Uieda.
Linked collectors and determiners for: Colección de Microorganismos endófitos aislados de plantas de banano (Musa sp).
Natural history specimen data linked to collectors and determiners held within, "Colección de Microorganismos endófitos aislados de plantas de banano (Musa sp)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/6d9c888a-b651-401a-a59b-edc50be157f1">https://bionomia.net/dataset/6d9c888a-b651-401a-a59b-edc50be157f1</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/6d9c888a-b651-401a-a59b-edc50be157f1">https://gbif.org/dataset/6d9c888a-b651-401a-a59b-edc50be157f1</a>. Formatted as a Frictionless Data package.
FIG. 2 in Musa lawitiensis Nasution & Supard. (Musaceae) and its intraspecific taxa in Borneo
FIG. 2. — Distribution map of Musa lawitiensis Nasution & Supard. varieties: 1, 5-8, var. lawitiensis; 2, var. suratii (Argent) Häkkinen; 3, var. kapitensis Häkkinen; 4, var. sarawakensis Häkkinen. 1-4, author's field observations; 5-7, author's personal observation; 8, after Nasution & Supardiyono 1998.
FIG. 5 in Musa lawitiensis Nasution & Supard. (Musaceae) and its intraspecific taxa in Borneo
FIG. 5. — Musa lawitiensis Nasution & Supard. var. sarawakensis Häkkinen: A, female flower with ovary; B, compound tepal of female flower; C, style with stigma; D, free tepal of female flower; E, compound tepal of male flower; F, stamens with pistil; G, free tepal of male flower; H, cross-section of petiole. M. Häkkinen et al. 997-1. Scale bar: 4 cm.
FIG. 3. — A in Musa lawitiensis Nasution & Supard. (Musaceae) and its intraspecific taxa in Borneo
FIG. 3. — A, Musa lawitiensis Nasution & Supard. var. lawitiensis, male bud; B, Musa lawitiensis var. suratii (Argent) Häkkinen, male bud; C, Musa lawitiensis var. kapitensis Häkkinen, inflorescence; D, Musa lawitiensis var. sarawakensis Häkkinen, female bud with female basal flowers.
Fig. 11. Schistura musa, CMK 24319 in Three new species of loaches of the genus Schistura from the Nam Ngiep drainage, central Laos (Teleostei: Nemacheilidae)
Fig. 11. Schistura musa, CMK 24319, paratypes; Laos:Saysomboune Prov.: Nam Ngiep drainage: Nam Khai; a, 31.3 mm SL; b, 38.5 mm SL.
Fig. 10. Schistura musa, MHNG 2768.032 in Three new species of loaches of the genus Schistura from the Nam Ngiep drainage, central Laos (Teleostei: Nemacheilidae)
Fig. 10. Schistura musa, MHNG 2768.032, holotype, 42.3 mm SL; Laos: Saysomboune Prov.: Nam Ngiep drainage: Nam Khai; right side, reversed.
Data_Synthesis_Musa_Trials_BLSD: v1.0.0
<p>Companion code and data for the paper "Rank-based data synthesis of heterogeneous trials to identify the effects of climatic factors on the reaction of <em>Musa</em> genotypes to black leaf streak disease".</p>
Examining ozone susceptibility in the genus Musa (bananas)
<p>Tropospheric ozone (O<sub>3</sub>) is a global air pollutant that adversely affects plant growth and productivity. <span>While the </span>impacts of <span>O<sub>3</sub> </span>have previously been examined for some tropical commodity crops, no information is available for the pantropical crop,<span> banana (<em>Musa</em> spp.). In this study, we exposed Australia's major banana cultivar, Williams, to a range of </span>[O<sub>3</sub>] <span>in open-top chambers. In addition</span>, we examined 46 diverse <em>Musa</em> lines growing in a common garden for variation in traits that are hypothesized to shape responses to O<sub>3</sub>: leaf mass per area, intrinsic water-use-efficiency, and total antioxidant capacity. <span>Banana cv. Williams </span>showed substantial susceptibility to O<sub>3</sub>. Combined our results from <span>open-top chambers and common garden conditions</span> suggest a substantial risk of O<sub>3</sub> to banana production and food security throughout the tropics.</p>
Fig. 1 in The Taxonomy And Phylogenetic Relationships Of Species In The Bactrocera Musae Complex Of Fruit Flies (Diptera: Tephritidae: Dacinae) In Papua New Guinea
Fig. 1. Bactrocera (Bactrocera) balagawii, new species.
Fig. 2 in The Taxonomy And Phylogenetic Relationships Of Species In The Bactrocera Musae Complex Of Fruit Flies (Diptera: Tephritidae: Dacinae) In Papua New Guinea
Fig. 2. Bactrocera (Bactrocera) parabancroftii, new species.
Fig. 4 in The Taxonomy And Phylogenetic Relationships Of Species In The Bactrocera Musae Complex Of Fruit Flies (Diptera: Tephritidae: Dacinae) In Papua New Guinea
Fig. 4. Bactrocera (Bactrocera) rufivitta, new species.
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International Brain Laboratory public data
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