Medicago truncatula is a model or reference species for legume genetics, genomics, and breeding.

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Lotus uliginosus, Medicago italica, Medicago littoralis, Medicago murex, Medicago polymorpha, Medicago rugosa, Medicago scutelatta, Medicago truncatula, 

Front Plant Sci. 2021 Apr 8;12:659061. doi: 10.3389/fpls.2021.659061. eCollection 2021. Authors Medicago truncatula Gaertn. Show All Show Tabs barrelclover General Information; Symbol: METR10 Group: Dicot Family: Fabaceae Duration: Growth Habit: Native Status: None Other Common Names: barrel medic Data Source and Documentation: About our new maps 2021-04-07 The model legume Medicago truncatula (Medicago) forms indeterminate nodules, so their nodule tissues are of graded age with the youngest cells near the meristem.

Medicago truncatula

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doi: 10.3389/fpls.2021.659061. eCollection 2021. Authors Medicago truncatula Gaertn. Show All Show Tabs barrelclover General Information; Symbol: METR10 Group: Dicot Family: Fabaceae Duration: Growth Habit: Native Status: None Other Common Names: barrel medic Data Source and Documentation: About our new maps 2021-04-07 The model legume Medicago truncatula (Medicago) forms indeterminate nodules, so their nodule tissues are of graded age with the youngest cells near the meristem. The central tissue of the nodule is composed of two cell types: the infected cells that harbour … General information about Medicago truncatula (MEDTR) Name Language; barrel medick: English (AU) strong-spined medick: English: gestutzder Schneckenklee Medicago truncatula Yellow Stripe‐Like7 encodes a peptide transporter participating in symbiotic nitrogen fixation Rosario Castro‐Rodríguez. Centro de Biotecnología y Genómica de Plantas (UPM‐INIA). Universidad Politécnica de Madrid, Campus de Montegancedo, Madrid, Spain.

Medicago sativa L. Foderlosta. Bromus inermis Medicago littoralis Rohde ex Loisel. Mattlusern. TG 228/1 Medicago truncatula Gaertn. Tornlusern. TG 228/1 

2(3): 350, pl. 155 [near lower right].

Medicago truncatula (Barrel Medic) is a small annual legume native to the Mediterranean region. As other legumes, it forms symbioses with nitrogen-fixing rhizobia and arbuscular mycorrhizal fungi. This species has been chosen as a model organism for legume biology because it has a small diploid genome, is self-fertile, has a rapid generation time and prolific seed production, and is amenable

Medicago truncatula

Genetic data available at LegumeInfo for Medicago Here we describe a quantitative proteomic atlas of the model legume Medicago truncatula and its rhizobial symbiont Sinorhizobium meliloti, which includes more than 23,000 proteins, 20,000 phosphorylation sites, and 700 lysine acetylation sites. Our analysis provides insight into the symbiosis regulatory mechanism. 2021-01-28 The legume Medicago truncatula forms a symbiosis with Sinohizobium meliloti but not Mesorhizobium loti.

2014-04-27 · Background Medicago truncatula, a close relative of alfalfa, is a preeminent model for studying nitrogen fixation, symbiosis, and legume genomics. The Medicago sequencing project began in 2003 with the goal to decipher sequences originated from the euchromatic portion of the genome. The initial sequencing approach was based on a BAC tiling path, culminating in a BAC-based assembly (Mt3.5) as General information about Medicago truncatula (MEDTR) Name Language; barrel medick: English (AU) strong-spined medick: English: gestutzder Schneckenklee Medicago truncatula—Stained Nodule and Infection Thread.png 2,256 × 1,496; 2.17 MB Metr10 001 lhp.jpg 900 × 600; 73 KB Metr11 001 lhp.jpg 900 × 600; 119 KB Legumes form symbiotic associations with both mycorrhizal fungi and nitrogen-fixing soil bacteria called rhizobia.
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This server runs NCBI Blast+2.2.28. (You can access the WU-BLAST server here.).

2021-01-28 The legume Medicago truncatula forms a symbiosis with Sinohizobium meliloti but not Mesorhizobium loti. Based on your understanding of selective enrichment, if you make just one mutation in M. loti so that it now expresses the S. meliloti NodD then would you now expect your mutant to form nitrogen-fixing nodules on M. truncatula?
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Medicago truncatula and Lotus japonicus have emerged during the last decade as two major model systems for legume biology. Initially developed to dissect plant 

red spot markings). It has been reported that the M. truncatula leaf with a red/purple mark have anthocyanins in the upper epidermis, while the yellow color is probably due to reduced Chls and carotenoids (McComb, 1974). Whole-genome landscape of Medicago truncatula symbiotic genes. Nat. Plants. 4.