نتایج جستجو برای: rhizobial inoculant

تعداد نتایج: 1901  

2007
Raiha QADRI Mohammad ATHAR

Ultrastructural studies were conducted on Pithecellobium dulce (Roxb) Benth. root nodules collected from trees growing under natural conditions. Rhizobial infection on root surface of P. dulce started with curling of root hair. Both curled and straight root hairs were observed. Th e internal structure of a mature nodule showed an epidermis, cortex, vascular region and a bacteriod region. Vascul...

Journal: :Microbial Cell Factories 2006
Anna Skorupska Monika Janczarek Małgorzata Marczak Andrzej Mazur Jarosław Król

Specific complex interactions between soil bacteria belonging to Rhizobium, Sinorhizobium, Mesorhizobium, Phylorhizobium, Bradyrhizobium and Azorhizobium commonly known as rhizobia, and their host leguminous plants result in development of root nodules. Nodules are new organs that consist mainly of plant cells infected with bacteroids that provide the host plant with fixed nitrogen. Proper nodu...

2016
Yohei Tatsukami Mitsuyoshi Ueda

In legume-rhizobia symbiosis, the nodule number is controlled to ensure optimal growth of the host. In Lotus japonicus, the nodule number has been considered to be tightly regulated by host-derived phytohormones and glycopeptides. However, we have discovered a symbiont-derived phytohormonal regulation of nodule number in Mesorhizobium loti. In this study, we found that M. loti synthesized gibbe...

2017
Irene Jiménez-Guerrero Sebastián Acosta-Jurado Pablo Del Cerro Pilar Navarro-Gómez Francisco Javier López-Baena Francisco Javier Ollero José María Vinardell Francisco Pérez-Montaño

Simultaneous quantification of transcripts of the whole bacterial genome allows the analysis of the global transcriptional response under changing conditions. RNA-seq and microarrays are the most used techniques to measure these transcriptomic changes, and both complement each other in transcriptome profiling. In this review, we exhaustively compiled the symbiosis-related transcriptomic reports...

Journal: :Molecules and cells 2012
Hojin Ryu Hyunwoo Cho Daeseok Choi Ildoo Hwang

Legumes have evolved symbiotic interactions with rhizobial bacteria to efficiently utilize nitrogen. Recent progress in symbiosis has revealed several key components of host plants required for nitrogen-fixing nodule organogenesis, in which complicated metabolic and signaling pathways in the host plant are reprogrammed to generate nodules in the cortex upon perception of the rhizobial Nod facto...

Journal: :FEMS microbiology letters 2008
Yong Fa Zhang En Tao Wang Chang Fu Tian Feng Qin Wang Li Li Han Wen Feng Chen Wen Xin Chen

Cowpea (Vigna unguiculata) and mung bean (Vigna radiata) are important legume crops yet their rhizobia have not been well characterized. In the present study, 62 rhizobial strains isolated from the root nodules of these plants grown in the subtropical region of China were analyzed via a polyphasic approach. The results showed that 90% of the analyzed strains belonged to or were related to Brady...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2012
Fang Xie Jeremy D Murray Jiyoung Kim Anne B Heckmann Anne Edwards Giles E D Oldroyd J Allan Downie

To allow rhizobial infection of legume roots, plant cell walls must be locally degraded for plant-made infection threads (ITs) to be formed. Here we identify a Lotus japonicus nodulation pectate lyase gene (LjNPL), which is induced in roots and root hairs by rhizobial nodulation (Nod) factors via activation of the nodulation signaling pathway and the NIN transcription factor. Two Ljnpl mutants ...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2017
Shengming Yang Qi Wang Elena Fedorova Jinge Liu Qiulin Qin Qiaolin Zheng Paul A Price Huairong Pan Dong Wang Joel S Griffitts Ton Bisseling Hongyan Zhu

The legume-rhizobial symbiosis results in the formation of root nodules that provide an ecological niche for nitrogen-fixing bacteria. However, plant-bacteria genotypic interactions can lead to wide variation in nitrogen fixation efficiency, and it is not uncommon that a bacterial strain forms functional (Fix+) nodules on one plant genotype but nonfunctional (Fix-) nodules on another. Host gene...

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