124 results on '"Sinharoy, Senjuti"'
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2. Callus induction and efficient in vitro plant regeneration protocol for Chickpea
3. Understanding of Root Nodule Development at Level of System Biology as Obtained by High Throughput Transcriptomic Approach
4. Transcriptional Networks in Medicago truncatula: Genomic and Functional Overview During Root Nodule Symbiosis
5. The genome sequence of segmental allotetraploid peanut Arachis hypogaea
6. Transcriptional Networks in Medicago truncatula: Genomic and Functional Overview During Root Nodule Symbiosis
7. Understanding of Root Nodule Development at Level of System Biology as Obtained by High Throughput Transcriptomic Approach
8. An Improvised Hairy Root Transformation Method for Efficient Gene Silencing in Roots and Nodules of Arachis hypogaea
9. Genome-wide identification of auxin response factors (ARFs) in three different species of Arachis
10. Root Nodule Development in Model Versus Non-canonical Plants
11. Callus induction and efficient in vitro plant regeneration protocol for Chickpea
12. An Iron-Activated Citrate Transporter, MtMATE67, Is Required for Symbiotic Nitrogen Fixation
13. Optimization of Hairy Root Transformation for the Functional Genomics in Chickpea: A Platform for Nodule Developmental Studies
14. MtSWEET11, a Nodule-Specific Sucrose Transporter of Medicago truncatula
15. A Medicago truncatula Cystathionine- β -Synthase-like Domain-Containing Protein Is Required for Rhizobial Infection and Symbiotic Nitrogen Fixation
16. Editorial: Plant-rhizobia symbiosis and nitrogen fixation in legumes.
17. The mysterious non‐arbuscular mycorrhizal status of Brassicaceae species
18. Nodule INception‐independent epidermal events lead to bacterial entry during nodule development in peanut (Arachis hypogaea)
19. Drought Stress Exacerbates Fungal Colonization and Endodermal Invasion and Dampens Defense Responses to Increase Dry Root Rot in Chickpea
20. The C 2 H 2 Transcription Factor REGULATOR OF SYMBIOSOME DIFFERENTIATION Represses Transcription of the Secretory Pathway Gene VAMP721a and Promotes Symbiosome Development in Medicago truncatula
21. Microscopic and Transcriptomic Analyses of Dalbergoid Legume Peanut Reveal a Divergent Evolution Leading to Nod-Factor-Dependent Epidermal Crack-Entry and Terminal Bacteroid Differentiation
22. Retrotransposon (Tnt1)-Insertion Mutagenesis inMedicagoas a Tool for Genetic Dissection of Symbiosis in Legumes
23. Functional Genomics of Symbiotic Nitrogen Fixation in Legumes with a Focus on Transcription Factors and Membrane Transporters
24. A High-Throughput RNA Interference (RNAi)-Based Approach Using Hairy Roots for the Study of Plant–Rhizobia Interactions
25. AhNGE: A Database for Arachis hypogaea Nodule Developmental Gene Expression
26. The Medicago genome provides insight into the evolution of rhizobial symbioses
27. Root‐specific expression of chickpea cytokinin oxidase/dehydrogenase 6 leads to enhanced root growth, drought tolerance and yield without compromising nodulation
28. A snapshot of functional genetic studies inMedicago truncatula
29. A Tripartite Interaction among the Basidiomycete Rhodotorula mucilaginosa, N2-Fixing Endobacteria, and Rice Improves Plant Nitrogen Nutrition
30. CRISPR-Cas9 system: A new-fangled dawn in gene editing
31. The Nodule-Specific PLAT Domain Protein NPD1 Is Required for Nitrogen-Fixing Symbiosis
32. A Toolbox for Nodule Development Studies in Chickpea: A Hairy-Root Transformation Protocol and an Efficient Laboratory Strain ofMesorhizobiumsp.
33. Tripartite Interaction among the Basidiomycete Rhodotorula mucilaginosa, N2-Fixing Endobacteria, and Rice Improves Plant Nitrogen Nutrition.
34. A toolbox for nodule development studies in chickpea: a hairy-root transformation protocol and an efficient laboratory strain of Mesorhizobium sp
35. An Iron-Activated Citrate Transporter, MtMATE67, Is Required for Symbiotic Nitrogen Fixation
36. Global analysis of the MATE gene family of metabolite transporters in tomato
37. Autophosphorylation of gatekeeper tyrosine by symbiosis receptor kinase
38. A Snapshot of Functional Genetic Studies in Medicago truncatula
39. Global analysis of the MATE gene family of metabolite transporters in tomato.
40. Keel petal incision: a simple and efficient method for genetic crossing in Medicago truncatula
41. PlantTFcat: an online plant transcription factor and transcriptional regulator categorization and analysis tool
42. The C2H2 Transcription Factor REGULATOR OF SYMBIOSOME DIFFERENTIATION Represses Transcription of the Secretory Pathway Gene VAMP721a and Promotes Symbiosome Development in Medicago truncatula
43. A Snapshot of Functional Genetic Studies in Medicago truncatula.
44. RNA Interference Highlights the Role of CCaMK in Dissemination of Endosymbionts in the Aeschynomeneae Legume Arachis
45. Transformed Hairy Roots of Arachis hypogea: A Tool for Studying Root Nodule Symbiosis in a Non–Infection Thread Legume of the Aeschynomeneae Tribe
46. C2H2 Transcription Factor REGULATOR OF SYMBIOSOME DIFFERENTIATION Represses Transcription of the Secretory Pathway Gene VAMP721a and Promotes Symbiosome Development in Medicago truncatula.
47. Retrotransposon (Tnt1)-Insertion Mutagenesis in Medicago as a Tool for Genetic Dissection of Symbiosis in Legumes
48. Regulation of Leaf Blade Development in Medicago truncatula
49. Whole Genome Sequencing Identifies a Medicago truncatula Tnt1 Insertion Mutant in the VTL8 Gene that is Essential for Symbiotic Nitrogen Fixation
50. Medicago truncatula as a Model to Decipher Powdery Mildew Resistance in Legumes
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