نتایج جستجو برای: medicago truncatula

تعداد نتایج: 4983  

2015
Ji Hyung Jun Chenggang Liu Xirong Xiao Richard A. Dixon

Accumulation of anthocyanins and proanthocyanidins (PAs) is limited to specific cell types and developmental stages, but little is known about how antagonistically acting transcriptional regulators work together to determine temporal and spatial patterning of pigmentation at the cellular level, especially for PAs. Here, we characterize MYB2, a transcriptional repressor regulating both anthocyan...

Journal: :Plant physiology 2007
Juan Zhang Senthil Subramanian Yansheng Zhang Oliver Yu

Flavones are important copigments found in the flowers of many higher plants and play a variety of roles in plant adaptation to stress. In Medicago species, flavones also act as signal molecules during symbiotic interaction with the diazotropic bacterium Sinorhizobium meliloti. They are the most potent nod gene inducers found in root exudates. However, flavone synthase II (FNS II), the key enzy...

Journal: :Journal of Plant Physiology 2021

Cytokinin oxidase/dehydrogenases (CKXs) play a key role in the irreversible degradation of phytohormone cytokinin that is necessary for various plant growth and development processes. However, thus far, detailed investigations CKX gene family model legume Medicago truncatula are limited. In this study, we identified 9 putative homologues with conserved FAD- cytokinin-binding domains M. genome. ...

Journal: :The Plant cell 2015
Ji Hyung Jun Chenggang Liu Xirong Xiao Richard A Dixon

Accumulation of anthocyanins and proanthocyanidins (PAs) is limited to specific cell types and developmental stages, but little is known about how antagonistically acting transcriptional regulators work together to determine temporal and spatial patterning of pigmentation at the cellular level, especially for PAs. Here, we characterize MYB2, a transcriptional repressor regulating both anthocyan...

Journal: :Plant, cell & environment 2006
D Verdoy T Coba De La Peña F J Redondo M M Lucas J J Pueyo

Legume root nodule nitrogen-fixing activity is severely affected by osmotic stress. Proline accumulation has been shown to induce tolerance to salt stress, and transgenic plants over-expressing Delta(1)-pyrroline-5-carboxylate synthetase (P5CS), which accumulates high levels of proline, display enhanced osmotolerance. Here, we transformed the model legume Medicago truncatula with the P5CS gene ...

2017
Tao Chen Liujian Duan Bo Zhou Haixiang Yu Hui Zhu Yangrong Cao Zhongming Zhang

Suppression of host innate immunity appears to be required for the establishment of symbiosis between rhizobia and host plants. In this study, we established a system that included a host plant, a bacterial pathogen and a symbiotic rhizobium to study the role of innate immunity during symbiotic interactions. A pathogenic bacterium, Pseudomonas syringae pv. tomato strain DC3000 (Pst DC3000), was...

Journal: :Plant physiology 2003
Hongyan Zhu Dong-Jin Kim Jong-Min Baek Hong-Kyu Choi Leland C Ellis Helge Küester W Richard McCombie Hui-Mei Peng Douglas R Cook

Arabidopsis and Medicago truncatula represent sister clades within the dicot subclass Rosidae. We used genetic map-based and bacterial artificial chromosome sequence-based approaches to estimate the level of synteny between the genomes of these model plant species. Mapping of 82 tentative orthologous gene pairs reveals a lack of extended macrosynteny between the two genomes, although marker col...

2010
Malick Mbengue Sylvie Camut Fernanda de Carvalho-Niebel Laurent Deslandes Solène Froidure Dörte Klaus-Heisen Sandra Moreau Susana Rivas Ton Timmers Christine Hervé Julie Cullimore Benoit Lefebvre

LYK3 is a lysin motif receptor-like kinase of Medicago truncatula, which is essential for the establishment of the nitrogenfixing, root nodule symbiosis with Sinorhizobium meliloti. LYK3 is a putative receptor of S. meliloti Nod factor signals, but little is known of how it is regulated and how it transduces these symbiotic signals. In a screen for LYK3-interacting proteins, we identified M. tr...

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