Pages that link to "Q36550865"
Jump to navigation
Jump to search
The following pages link to Long-distance signaling to control root nodule number (Q36550865):
Displaying 50 items.
- Computational complementation: a modelling approach to study signalling mechanisms during legume autoregulation of nodulation (Q28473027) (← links)
- Using an ecophysiological analysis to dissect genetic variability and to propose an ideotype for nitrogen nutrition in pea (Q28750677) (← links)
- Community shifts of soybean stem-associated bacteria responding to different nodulation phenotypes and N levels. (Q30893988) (← links)
- Full-length de novo assembly of RNA-seq data in pea (Pisum sativum L.) provides a gene expression atlas and gives insights into root nodulation in this species (Q30988819) (← links)
- EFD Is an ERF transcription factor involved in the control of nodule number and differentiation in Medicago truncatula (Q33346258) (← links)
- A functional-structural modelling approach to autoregulation of nodulation (Q33349744) (← links)
- Wuschel-related homeobox5 gene expression and interaction of CLE peptides with components of the systemic control add two pieces to the puzzle of autoregulation of nodulation (Q33352814) (← links)
- The Function of the CLE Peptides in Plant Development and Plant-Microbe Interactions (Q33352957) (← links)
- CLE peptides and their signaling pathways in plant development (Q33363228) (← links)
- Development of a bacterial cell enrichment method and its application to the community analysis in soybean stems. (Q33491597) (← links)
- Distinct changes in soybean xylem sap proteome in response to pathogenic and symbiotic microbe interactions (Q33505796) (← links)
- Genetic analysis of ethylene regulation of legume nodulation (Q33576133) (← links)
- Community- and genome-based views of plant-associated bacteria: plant-bacterial interactions in soybean and rice (Q33649472) (← links)
- Interplay of Pathogen-Induced Defense Responses and Symbiotic Establishment in Medicago truncatula (Q33736747) (← links)
- Autoregulation of Nodulation Interferes with Impacts of Nitrogen Fertilization Levels on the Leaf-Associated Bacterial Community in Soybeans (Q33794730) (← links)
- The Genotype of the Calcium/Calmodulin-Dependent Protein Kinase Gene ( CCaMK ) Determines Bacterial Community Diversity in Rice Roots under Paddy and Upland Field Conditions (Q33892153) (← links)
- How many peas in a pod? Legume genes responsible for mutualistic symbioses underground. (Q34124289) (← links)
- Function and evolution of nodulation genes in legumes (Q34168914) (← links)
- Analysis of two potential long-distance signaling molecules, LjCLE-RS1/2 and jasmonic acid, in a hypernodulating mutant too much love (Q34219398) (← links)
- An RNA-Seq based gene expression atlas of the common bean (Q34333041) (← links)
- Two microRNAs linked to nodule infection and nitrogen-fixing ability in the legume Lotus japonicus (Q34446562) (← links)
- Influence of environmental factors on stomatal development (Q34749022) (← links)
- Long-distance transport of signals during symbiosis: are nodule formation and mycorrhization autoregulated in a similar way? (Q35124509) (← links)
- Shoot HAR1 mediates nitrate inhibition of nodulation in Lotus japonicus (Q36213426) (← links)
- Genetic basis of cytokinin and auxin functions during root nodule development. (Q36671775) (← links)
- Translocation in legumes: assimilates, nutrients, and signaling molecules. (Q36843609) (← links)
- Microbial community analysis of field-grown soybeans with different nodulation phenotypes (Q36899067) (← links)
- Rhizobial gibberellin negatively regulates host nodule number (Q37010483) (← links)
- NIN Is Involved in the Regulation of Arbuscular Mycorrhizal Symbiosis (Q37416119) (← links)
- Plant hormonal regulation of nitrogen-fixing nodule organogenesis (Q37461953) (← links)
- Hormonal control of nitrogen acquisition: roles of auxin, abscisic acid, and cytokinin (Q37825346) (← links)
- Lipo-chitooligosaccharide Signaling in Endosymbiotic Plant-Microbe Interactions (Q37862243) (← links)
- Biogenic Amines in Rhizobia and Legume Root Nodules (Q37874881) (← links)
- Molecular characterisation of Ltchi7, a gene encoding a Class III endochitinase induced by drought stress in Lotus spp (Q39511334) (← links)
- The MicroRNA390/TAS3 Pathway Mediates Symbiotic Nodulation and Lateral Root Growth. (Q40153045) (← links)
- Overlap of proteome changes in Medicago truncatula in response to auxin and Sinorhizobium meliloti (Q40218067) (← links)
- Gene expression and localization of a β-1,3-glucanase of Lotus japonicus (Q40764656) (← links)
- GmEXPB2, a Cell Wall β-Expansin, Affects Soybean Nodulation through Modifying Root Architecture and Promoting Nodule Formation and Development. (Q40967911) (← links)
- Shoot-derived cytokinins systemically regulate root nodulation. (Q41733501) (← links)
- Expression analysis of Clavata1-like and Nodulin21-like genes from Pinus sylvestris during ectomycorrhiza formation (Q41939325) (← links)
- Does SUNN-SYMRK Crosstalk occur in Medicago truncatula for regulating nodule organogenesis? (Q42754905) (← links)
- The lss supernodulation mutant of Medicago truncatula reduces expression of the SUNN gene (Q42879247) (← links)
- Enhanced nodulation and nitrogen fixation in the abscisic acid low-sensitive mutant enhanced nitrogen fixation1 of Lotus japonicus (Q43272352) (← links)
- The Clavata2 genes of pea and Lotus japonicus affect autoregulation of nodulation. (Q43895400) (← links)
- Effects of the purL gene expression level on the competitive nodulation ability of Sinorhizobium fredii. (Q46002880) (← links)
- Knockdown of CELL DIVISION CYCLE16 reveals an inverse relationship between lateral root and nodule numbers and a link to auxin in Medicago truncatula (Q46617679) (← links)
- Root-derived CLE glycopeptides control nodulation by direct binding to HAR1 receptor kinase (Q47808405) (← links)
- The NIN Transcription Factor Coordinates Diverse Nodulation Programs in Different Tissues of the Medicago truncatula Root. (Q48280311) (← links)
- A NIN-LIKE PROTEIN mediates nitrate-induced control of root nodule symbiosis in Lotus japonicus (Q48512416) (← links)
- Expression of the CLE-RS3 gene suppresses root nodulation in Lotus japonicus (Q50505311) (← links)