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The following term was not found in PubMed: melinonis
Page 1
Chemical composition of extracts and fractions from Miconia ibaguensis (MELASTOMATACEAE) leaves and evaluation of biological activities.
Sehnem GS, Silva TDC, Prado DG, Silva JA, Santiago MB, Santos ALO, Martins MM, Cunha LCS, Sousa RMF, Romero R, Bittar VP, Borges ALS, Martins CHG, Espindola FS, de Oliveira A. Sehnem GS, et al. Chem Biodivers. 2024 May 15:e202400680. doi: 10.1002/cbdv.202400680. Online ahead of print. Chem Biodivers. 2024. PMID: 38748618
The study aimed to assess the chemical composition of Miconia ibaguensis leaves extracts and fractions obtained from the ethanolic extract (EE), along with evaluating their antifungal, antibacterial, antidiabetic, and antioxidant activities. ...
The study aimed to assess the chemical composition of Miconia ibaguensis leaves extracts and fractions obtained from the ethanolic ex …
High floral disparity without pollinator shifts in buzz-bee-pollinated Melastomataceae.
Kopper C, Schönenberger J, Dellinger AS. Kopper C, et al. New Phytol. 2024 Jun;242(5):2322-2337. doi: 10.1111/nph.19735. Epub 2024 Apr 17. New Phytol. 2024. PMID: 38634161
In addition, we employ multivariate statistics and phylogenetic comparative analyses to test whether pollinator shifts are the main source of floral disparity in Melastomataceae. We find strong support for four well-differentiated pollination syndromes ('buzz-bee', 'nectar …
In addition, we employ multivariate statistics and phylogenetic comparative analyses to test whether pollinator shifts are the main source o …
MelastomaTRAITs 1.0: A database of functional traits in Melastomataceae, a large pantropical angiosperm family.
Reginato M, Ordónez-Parra CA, Messeder JVS, Brito VLG, Dellinger A, Kriebel R, Marra C, Melo L, Cornelissen T, Fuzessy L, Sperotto P, Calderón-Hernández M, Guerra TJ, Kopper C, Mancipe-Murillo C, Pizo MA, Posada-Herrera JM, Hasui É, Silva WR, Silveira FAO. Reginato M, et al. Ecology. 2024 Apr 17:e4308. doi: 10.1002/ecy.4308. Online ahead of print. Ecology. 2024. PMID: 38629131
Here, we present MelastomaTRAITs 1.0, a comprehensive and updatable database of functional traits for the pantropical Melastomataceae, the ninth-largest angiosperm family with 177 genera and more than 5800 species. Melastomataceae encompass species with a wide diver …
Here, we present MelastomaTRAITs 1.0, a comprehensive and updatable database of functional traits for the pantropical Melastomataceae
The sequential direct and indirect effects of mountain uplift, climatic niche and floral trait evolution on diversification dynamics in an Andean plant clade.
Dellinger AS, Lagomarsino L, Michelangeli F, Dullinger S, Smith SD. Dellinger AS, et al. Syst Biol. 2024 Mar 30:syae011. doi: 10.1093/sysbio/syae011. Online ahead of print. Syst Biol. 2024. PMID: 38554255
We here combine assessments of historical biogeography, geomorphology, climatic niche, vegetative and floral trait evolution to test whether these factors jointly, or in isolation, explain diversification dynamics of a Neotropical plant clade (Merianieae, Melastomataceae). …
We here combine assessments of historical biogeography, geomorphology, climatic niche, vegetative and floral trait evolution to test whether …
Plant regeneration capacity in seeds of three species of Miconia (Melastomataceae) may be related to endogenous polyamine profiles.
Ziemmer JK, Dos Reis de Oliveira T, Santa-Catarina C, do Nascimento Vieira L, Goldenberg R, Pacheco de Freitas Fraga H. Ziemmer JK, et al. Protoplasma. 2024 Mar 26. doi: 10.1007/s00709-024-01945-y. Online ahead of print. Protoplasma. 2024. PMID: 38530427
In this study, for the first time, we aimed to assess the impact of varying endogenous PAs levels in seeds from distinct reproductive modes in Miconia spp. (Melastomataceae), on their in vitro regenerative capacity. We quantified the free PAs endogenous content in s …
In this study, for the first time, we aimed to assess the impact of varying endogenous PAs levels in seeds from distinct reproductive modes …
An updated and extended version of the Melastomataceae probe set for target capture.
Dagallier LMJ, Michelangeli FA. Dagallier LMJ, et al. Appl Plant Sci. 2024 Jan 18;12(1):e11564. doi: 10.1002/aps3.11564. eCollection 2024 Jan-Feb. Appl Plant Sci. 2024. PMID: 38369977 Free PMC article.
This raised concerns regarding the use of this probe set for sequence recovery in Melastomataceae. METHODS: In order to correct these issues, we cleaned the Melastomataceae probe set, extended it with additional sequences, and compared its performance with the origi …
This raised concerns regarding the use of this probe set for sequence recovery in Melastomataceae. METHODS: In order to correct these …
Resurrection of Perilimnastes (Sonerileae, Melastomataceae) with description of a new species P.nana.
Liu Y, Dai JH, Zhuang QY, Zou CY, Ma KN. Liu Y, et al. PhytoKeys. 2024 Feb 1;238:11-31. doi: 10.3897/phytokeys.238.116168. eCollection 2024. PhytoKeys. 2024. PMID: 38344432 Free PMC article.
Recent research has indicated that the Phyllagathis (raphides) clade (Sonerileae, Melastomataceae) is only distantly related to the type of Phyllagathis and should be separated as a distinct genus. ...
Recent research has indicated that the Phyllagathis (raphides) clade (Sonerileae, Melastomataceae) is only distantly related to the t …
524 results