Drought Stress Responses in Soybean Roots and Nodules

scientific article

Drought Stress Responses in Soybean Roots and Nodules is …
instance of (P31):
review articleQ7318358
scholarly articleQ13442814

External links are
P5530Altmetric DOI10.3389/FPLS.2016.01015
P6409CORE ID87995780
P6179Dimensions Publication ID1031040666
P356DOI10.3389/FPLS.2016.01015
P953full work available at URLhttp://eprints.whiterose.ac.uk/102012/
https://doi.org/10.3389/fpls.2016.01015
P6366Microsoft Academic ID2464291858
P3181OpenCitations bibliographic resource ID4576888
P932PMC publication ID4941547
P698PubMed publication ID27462339
P1154Scopus EID2-s2.0-84978828117

P50authorChristine FoyerQ18686184
Giuseppe DionisioQ56439969
P2093author name stringBarend J Vorster
Berhanu A Fenta
Karl J Kunert
Tsholofelo Kibido
P2860cites workPlant peptides govern terminal differentiation of bacteria in symbiosis.Q53339654
Developing X-ray Computed Tomography to non-invasively image 3-D root systems architecture in soilQ57209429
Soybean ureide transporters play a critical role in nodule development, function and nitrogen exportQ84439662
Drought resistance - is it really a complex trait?Q96114677
Genome sequence of the palaeopolyploid soybeanQ22122200
Aging in legume symbiosis. A molecular view on nodule senescence in Medicago truncatulaQ24547892
Enhancing drought tolerance in C(4) cropsQ26809994
Nitrogen-fixing Rhizobium-legume symbiosis: are polyploidy and host peptide-governed symbiont differentiation general principles of endosymbiosis?Q26860150
Thiol-based redox signaling in the nitrogen-fixing symbiosisQ27024401
Cysteine protease and cystatin expression and activity during soybean nodule development and senescenceQ28251738
Medicago truncatula and Glycine max: Different Drought Tolerance and Similar Local Response of the Root Nodule ProteomeQ28606559
RNA-Seq Atlas of Glycine max: a guide to the soybean transcriptomeQ28743618
Infection and invasion of roots by symbiotic, nitrogen-fixing rhizobia during nodulation of temperate legumesQ28775827
Rhizo-lysimetry: facilities for the simultaneous study of root behaviour and resource use by agricultural crop and pasture systemsQ30586799
Redox markers for drought-induced nodule senescence, a process occurring after drought-induced senescence of the lowest leaves in soybean (Glycine max)Q30926353
Protection of Sinorhizobium against host cysteine-rich antimicrobial peptides is critical for symbiosis.Q31032199
The rules of engagement in the legume-rhizobial symbiosis.Q33351989
Identification of new up-regulated genes under drought stress in soybean nodules.Q33372025
Phytaspase, a relocalisable cell death promoting plant protease with caspase specificity.Q33752354
Predicting gene regulatory networks of soybean nodulation from RNA-Seq transcriptome dataQ34993206
Genome-wide transcriptional analysis of two soybean genotypes under dehydration and rehydration conditionsQ35007837
Early transcriptional response of soybean contrasting accessions to root dehydrationQ35070976
Improved plant resistance to drought is promoted by the root-associated microbiome as a water stress-dependent traitQ35103324
New aspect of plant-rhizobia interaction: alkaloid biosynthesis in Crotalaria depends on nodulationQ35279851
PLANT MICROBIOME. Salicylic acid modulates colonization of the root microbiome by specific bacterial taxaQ35694155
Role of cysteine residues and disulfide bonds in the activity of a legume root nodule-specific, cysteine-rich peptideQ35879663
Genome-wide transcriptome analysis of soybean primary root under varying water-deficit conditionsQ35894636
A toolbox of genes, proteins, metabolites and promoters for improving drought tolerance in soybean includes the metabolite coumestrol and stomatal development genesQ35918890
Vacuolar processing enzyme: an executor of plant cell deathQ36154033
Neglecting legumes has compromised human health and sustainable food productionQ36285987
Loss of the nodule-specific cysteine rich peptide, NCR169, abolishes symbiotic nitrogen fixation in the Medicago truncatula dnf7 mutantQ36371528
Natural genetic variation in Arabidopsis for responsiveness to plant growth-promoting rhizobacteriaQ36762419
What happened to plant caspases?Q37084072
Root traits contributing to plant productivity under droughtQ37280880
Differential expression analysis of a subset of drought-responsive GmNAC genes in two soybean cultivars differing in drought tolerance.Q37420898
A novel membrane fusion-mediated plant immunity against bacterial pathogens.Q37426749
Physiological and molecular approaches to improve drought resistance in soybeanQ37527420
Molecular analysis of legume nodule development and autoregulation.Q37674924
Senescence-associated proteases in plantsQ37975539
Speak, friend, and enter: signalling systems that promote beneficial symbiotic associations in plantsQ38089533
Nuclear calcium signaling in plantsQ38113196
Soybean proteomics for unraveling abiotic stress response mechanismQ38135523
A paradigm for endosymbiotic life: cell differentiation of Rhizobium bacteria provoked by host plant factors.Q38136269
Underground tuning: quantitative regulation of root growthQ38335058
Proteomic analysis of the soybean symbiosome identifies new symbiotic proteinsQ38415587
Characteristics of a root hair-less line of Arabidopsis thaliana under physiological stressesQ38533823
Native plant growth promoting bacteria Bacillus thuringiensis and mixed or individual mycorrhizal species improved drought tolerance and oxidative metabolism in Lavandula dentata plants.Q38879718
Evaluation of drought tolerance of the Vietnamese soybean cultivars provides potential resources for soybean production and genetic engineeringQ38937422
Gene expression profiling of soybean leaves and roots under salt, saline-alkali and drought stress by high-throughput Illumina sequencingQ38998689
Comparative analysis of root transcriptomes from two contrasting drought-responsive Williams 82 and DT2008 soybean cultivars under normal and dehydration conditions.Q39038886
The auxin response factor transcription factor family in soybean: genome-wide identification and expression analyses during development and water stressQ39038895
Drought stress provokes the down-regulation of methionine and ethylene biosynthesis pathways in Medicago truncatula roots and nodules.Q39161036
Carbon metabolism and bacteroid functioning are involved in the regulation of nitrogen fixation in Medicago truncatula under drought and recovery.Q39161054
Organ-specific proteomic analysis of drought-stressed soybean seedlingsQ39258908
Characterization of proteins in soybean roots under flooding and drought stressesQ39318343
Ectopic phytocystatin expression leads to enhanced drought stress tolerance in soybean (Glycine max) and Arabidopsis thaliana through effects on strigolactone pathways and can also result in improved seed traitsQ39374229
Evidence for a rhizobia-induced drought stress response strategy in Medicago truncatulaQ39487644
DT2008: a promising new genetic resource for improved drought tolerance in soybean when solely dependent on symbiotic N2 fixationQ39497187
Inhibition of cathepsin B by caspase-3 inhibitors blocks programmed cell death in Arabidopsis.Q41517657
An integrated transcriptome atlas of the crop model Glycine max, and its use in comparative analyses in plantsQ43090452
Proteasome activity profiling: a simple, robust and versatile method revealing subunit-selective inhibitors and cytoplasmic, defense-induced proteasome activitiesQ43204858
A novel family in Medicago truncatula consisting of more than 300 nodule-specific genes coding for small, secreted polypeptides with conserved cysteine motifsQ44440658
Identification of nodule-specific cysteine-rich plant peptides in endosymbiotic bacteria.Q46283346
A nodule-specific plant cysteine proteinase, AsNODF32, is involved in nodule senescence and nitrogen fixation activity of the green manure legume Astragalus sinicusQ46471577
Proteomics approach for identifying osmotic-stress-related proteins in soybean rootsQ50450444
The proteasome is responsible for caspase-3-like activity during xylem development.Q50802872
Ectopic phytocystatin expression increases nodule numbers and influences the responses of soybean (Glycine max) to nitrogen deficiency.Q52837829
P407language of work or nameEnglishQ1860
P921main subjectdroughtQ43059
P304page(s)1015
P577publication date2016-01-01
P1433published inFrontiers in Plant ScienceQ27723840
P1476titleDrought Stress Responses in Soybean Roots and Nodules
P478volume7

Reverse relations

cites work (P2860)
Q42828557A Biosensor-Based Leaf Punch Assay for Glutamine Correlates to Symbiotic Nitrogen Fixation Measurements in Legumes to Permit Rapid Screening of Rhizobia Inoculants under Controlled Conditions
Q47726238Comparative Analysis of the Combined Effects of Different Water and Phosphate Levels on Growth and Biological Nitrogen Fixation of Nine Cowpea Varieties.
Q52817163Differential expression of leaf proteins in four cultivars of peanut (Arachis hypogaea L.) under water stress.
Q93196235Drought stress has transgenerational effects on soybean seed germination and seedling vigor
Q64115297Evaluation of soybean [Glycine max (L.) Merr.] genotypes for yield, water use efficiency, and root traits
Q61803828Genetic Analysis and Mapping of QTLs for Soybean Biological Nitrogen Fixation Traits Under Varied Field Conditions
Q33630893Growth and Yield Responses of Cowpea to Inoculation and Phosphorus Fertilization in Different Environments
Q92860407Magnetic Resonance Microscopy at Cellular Resolution and Localised Spectroscopy of Medicago truncatula at 22.3 Tesla
Q37595221Mycorrhizal trifoliate orange has greater root adaptation of morphology and phytohormones in response to drought stress
Q90345372Pea Efficiency of Post-drought Recovery Relies on the Strategy to Fine-Tune Nitrogen Nutrition
Q64886341Research Progress and Perspective on Drought Stress in Legumes: A Review.
Q90439269Role of ureides in source-to-sink transport of photoassimilates in non-fixing soybean
Q36349719Virus-induced down-regulation of GmERA1A and GmERA1B genes enhances the stomatal response to abscisic acid and drought resistance in soybean

Search more.