295 results on '"Su, Yachun"'
Search Results
2. Molecular identification and functional characterization of a transcription factor GeRAV1 from Gelsemium elegans
3. Sugarcane ScOPR1 gene enhances plant disease resistance through the modulation of hormonal signaling pathways
4. Genome-wide identification of Saccharum Sec14-like PITP gene family reveals that ScSEC14-1 is positively involved in disease resistance
5. Sugarcane transcription factor ScWRKY4 negatively regulates resistance to pathogen infection through the JA signaling pathway
6. Aquaporin-mediated stress signaling cascade in plants
7. Dissecting the features of TGA gene family in Saccharum and the functions of ScTGA1 under biotic stresses
8. Genome-wide characterization of sugarcane catalase gene family identifies a ScCAT1 gene associated disease resistance
9. The allene oxide synthase gene family in sugarcane and its involvement in disease resistance
10. Characterization of the sugarcane MYC gene family and the negative regulatory role of ShMYC4 in response to pathogen stress
11. A comprehensive survey of the aldehyde dehydrogenase gene superfamily in Saccharum and the role of ScALDH2B-1 in the stress response
12. Systematic identification of miRNA-regulatory networks unveils their potential roles in sugarcane response to Sorghum mosaic virus infection
13. Genome-wide identification and expression analysis of the coronatine-insensitive 1 (COI1) gene family in response to biotic and abiotic stresses in Saccharum
14. Genome-wide identification, characterization and expression analysis of the carotenoid cleavage oxygenase (CCO) gene family in Saccharum
15. Molecular insights into OPR gene family in Saccharum identified a ScOPR2 gene could enhance plant disease resistance.
16. Sugarcane ScCAX4 is a Negative Regulator of Resistance to Pathogen Infection
17. Transcriptional Regulation of SugarCane Response to Sporisorium scitamineum: Insights from Time-Course Gene Coexpression and Ca2+ Signaling
18. Improved Drought and Salt Tolerance in Transgenic Nicotiana benthamiana by Overexpressing Sugarcane ScSEC14p Gene
19. ScAOC1, an allene oxide cyclase gene, confers defense response to biotic and abiotic stresses in sugarcane
20. The CaCA superfamily genes in Saccharum: comparative analysis and their functional implications in response to biotic and abiotic stress
21. A PIP-mediated osmotic stress signaling cascade plays a positive role in the salt tolerance of sugarcane
22. Transcripts and low nitrogen tolerance: Regulatory and metabolic pathways in sugarcane under low nitrogen stress
23. Corrigendum to “Genome-wide characterization of sugarcane catalase gene family identifies a ScCAT1 gene associated disease resistance” [Int. J. Biol. Macromol. 232 (2023) 123398]
24. Identification of cold-related miRNAs in sugarcane by small RNA sequencing and functional analysis of a cold inducible ScmiR393 to cold stress
25. Sugarcane ScCAX4is a Negative Regulator of Resistance to Pathogen Infection
26. A class III WRKY transcription factor in sugarcane was involved in biotic and abiotic stress responses
27. New insights into the evolution and functional divergence of the CIPK gene family in Saccharum
28. The alcohol dehydrogenase gene family in sugarcane and its involvement in cold stress regulation
29. Transcriptional Regulation of SugarCane Response to Sporisorium scitamineum: Insights from Time-Course Gene Coexpression and Ca2+ Signaling.
30. A Small GTP-Binding Gene ScRan from Sugarcane is Involved in Responses to Various Hormone Stresses and Sporisirium scitamineum Challenge
31. Transcriptional Insights into the Sugarcane-Sorghum mosaic virus Interaction
32. Transcription factor ScWRKY4 in sugarcane negatively regulates the resistance to pathogen infection through the JA signaling pathway
33. Sugarcane calcineurin B-like (CBL) genes play important but versatile roles in regulation of responses to biotic and abiotic stresses
34. A dynamic degradome landscape on miRNAs and their predicted targets in sugarcane caused by Sporisorium scitamineum stress
35. A sugarcane pathogenesis-related protein, ScPR10, plays a positive role in defense responses under Sporisorium scitamineum, SrMV, SA, and MeJA stresses
36. Ectopic Expression of Sugarcane ScAMT1.1 Has the Potential to Improve Ammonium Assimilation and Grain Yield in Transgenic Rice under Low Nitrogen Stress
37. Research advances on the structure, function and regulation of NIP aquaporins in plants
38. Assembly of the Complete Mitochondrial Genome of Gelsemium elegans Revealed the Existence of Homologous Conformations Generated by a Repeat Mediated Recombination
39. Screening of Candidate Genes Associated with Brown Stripe Resistance in Sugarcane via BSR-seq Analysis
40. Foreign cry1Ac gene integration and endogenous borer stress-related genes synergistically improve insect resistance in sugarcane
41. Identification and evaluation of PCR reference genes for host and pathogen in sugarcane-Sporisorium scitamineum interaction system
42. Identification of Low-Nitrogen-Related miRNAs and Their Target Genes in Sugarcane and the Role of miR156 in Nitrogen Assimilation
43. Genome-Wide Identification of Auxin-Responsive GH3 Gene Family in Saccharum and the Expression of ScGH3-1 in Stress Response
44. Genetic identification of SNP markers and candidate genes associated with sugarcane smut resistance using BSR-Seq
45. Genome-Wide Identification, Characterization, and Expression Analysis of Glutamate Receptor-like Gene (GLR) Family in Sugarcane
46. WGCNA Identifies a Comprehensive and Dynamic Gene Co-Expression Network That Associates with Smut Resistance in Sugarcane
47. Deciphering the Atlas of Post-Translational Modification in Sugarcane.
48. Sugarcane ScDREB2B-1 Confers Drought Stress Tolerance in Transgenic Nicotiana benthamiana by Regulating the ABA Signal, ROS Level and Stress-Related Gene Expression
49. Characterization and Functional Implications of the Nonexpressor of Pathogenesis-Related Genes 1 (NPR1) in Saccharum
50. Corrigendum to “Characterization of the sugarcane MYC gene family and the negative regulatory role of ShMYC4 in response to pathogen stress” [Ind. Crops Prod. 176 (2022) 114292]
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