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37 results on '"Steven J. Rothstein"'

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1. A multivariate Poisson-log normal mixture model for clustering transcriptome sequencing data

2. NIN-like protein 8 is a master regulator of nitrate-promoted seed germination in Arabidopsis

3. Altered Expression of OsNLA1 Modulates Pi Accumulation in Rice (Oryza sativa L.) Plants

4. Exploring the molecular and metabolic factors contributing to the adaptation of maize seedlings to nitrate limitation

5. Alteration of the bZIP60/IRE1 pathway affects plant response to ER stress in Arabidopsis thaliana.

6. The rice R2R3-MYB transcription factor OsMYB55 is involved in the tolerance to high temperature and modulates amino acid metabolism.

7. The APETALA-2-like transcription factor OsAP2-39 controls key interactions between abscisic acid and gibberellin in rice.

8. Genome‐wide binding analysis of AtGNC and AtCGA1 demonstrates their cross‐regulation and common and specific functions

9. NIN-like protein 8 is a master regulator of nitrate-promoted seed germination in Arabidopsis

10. The Arabidopsis Transcription Factor ANAC032 Represses Anthocyanin Biosynthesis in Response to High Sucrose and Oxidative and Abiotic Stresses

11. Asparagine metabolic pathways in arabidopsis

12. Adaptation of Arabidopsis to nitrogen limitation involves induction of anthocyanin synthesis which is controlled by the NLA gene

13. Overexpression of the CC-type glutaredoxin, OsGRX6 affects hormone and nitrogen status in rice plants

14. Role of microRNAs involved in plant response to nitrogen and phosphorous limiting conditions

15. Synergistic repression of the embryonic program by SET DOMAIN GROUP 8 and EMBRYONIC FLOWER 2 in Arabidopsis seedlings

16. The Rice R2R3-MYB Transcription Factor OsMYB55 Is Involved in the Tolerance to High Temperature and Modulates Amino Acid Metabolism

17. MicroRNA–mediated repression of the seed maturation program during vegetative development in Arabidopsis

18. Improving yield potential in crops under elevated CO2: Integrating the photosynthetic and nitrogen utilization efficiencies

19. Exploring the molecular and metabolic factors contributing to the adaptation of maize seedlings to nitrate limitation

20. Genetic Regulation by NLA and MicroRNA827 for Maintaining Nitrate-Dependent Phosphate Homeostasis in Arabidopsis

21. Biological functions of asparagine synthetase in plants

22. Assimilation of excess ammonium into amino acids and nitrogen translocation in Arabidopsis thaliana--roles of glutamate synthases and carbamoylphosphate synthetase in leaves

23. Regulation of the Accumulation and Reduction of Nitrate by Nitrogen and Carbon Metabolites in Maize Seedlings

24. Structure and regulation of ferredoxin-dependent glutamase synthase from Arabidopsis thaliana. Cloning of cDNA, expression in different tissues of wild-type and gltS mutant strains, and light induction

25. Two members of the thioredoxin-h family interact with the kinase domain of a Brassica S locus receptor kinase

26. Global transcription profiling reveals differential responses to chronic nitrogen stress and putative nitrogen regulatory components in Arabidopsis

27. Tissue Specificity of Tobacco Peroxidase Isozymes and Their Induction by Wounding and Tobacco Mosaic Virus Infection

28. Expression of OsMYB55 in maize activates stress-responsive genes and enhances heat and drought tolerance

29. Metabolic and co-expression network-based analyses associated with nitrate response in rice

30. Genome-wide expression profiling of maize in response to individual and combined water and nitrogen stresses

31. The Arabidopsis transcription factor ANAC032 represses anthocyanin biosynthesis in response to high sucrose and oxidative and abiotic stresses

32. Functional characterization of the rice UDP-glucose 4-epimerase 1, OsUGE1: a potential role in cell wall carbohydrate partitioning during limiting nitrogen conditions.

33. Improving yield potential in crops under elevated CO2: Integrating the photosynthetic and nitrogen utilization efficiencies

34. MicroRNA-mediated repression of the seed maturation program during vegetative development in Arabidopsis.

35. Genetic regulation by NLA and microRNA827 for maintaining nitrate-dependent phosphate homeostasis in arabidopsis.

36. Genome-wide identification of microRNAs in response to low nitrate availability in maize leaves and roots.

37. GNC and CGA1 modulate chlorophyll biosynthesis and glutamate synthase (GLU1/Fd-GOGAT) expression in Arabidopsis.

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