2-oxoglutarate (2OG)和Fe(II)-dependent oxygenase超家族蛋白在小麦中的研究进展:

  1. Licausi, F., et al. (2011). "Hypoxia responsive gene expression is mediated by various subsets of transcription factors and miRNAs that are determined by the actual oxygen availability." New Phytol 190(2): 442-456.
  2. Gibbs, D. J., et al. (2011). "Homeostatic response to hypoxia is regulated by the N-end rule pathway in plants." Nature 479(7373): 415-418.
  3. Bhattacharjee, S., et al. (2017). "The 2-oxoglutarate-dependent dioxygenase superfamily: essential enzymes and versatile catalysts for epigenetic and metabolic regulation." Plant Cell Physiol 58(7): 1187-1204.
  4. Durand, T. C., et al. (2016). "A duplicated NUCLEOSOME ASSEMBLY PROTEIN 1-like 1 (NAP1L1)-like gene, NAP1L4L, plays roles in cell division, growth, and development in wheat." J Exp Bot 67(2): 495-509.
  5. Zhang, Y., et al. (2019). "The wheat 2-oxoglutarate-dependent dioxygenase gene family: identification, characterization, and expression patterns." BMC Genomics 20(1): 1020.
  6. Wang, Y., et al. (2020). "The wheat (Triticum aestivum) TaASR1 gene positively regulates drought tolerance by modulating leaf growth and stomatal development." Plant Sci 298: 110571.
  7. Kumar, R. R., et al. (2018). "TaTGW6-A1, an ortholog of rice TGW6, is associated with grain weight and yield in bread wheat." Mol Breed 38(3): 1-14.
  8. Yu, J., et al. (2019). "Wheat yield-related traits and their association with SNP markers in a wheat MAGIC population." Euphytica 215(7): 1-16.
  9. Wang, Z., et al. (2019). "Genome-wide association study for grain yield and related traits in elite wheat varieties and advanced lines using SNP markers." PLoS One 14(3): e0213112.
  10. Liu, G., et al. (2019). "Genome-wide association analysis of nitrogen-use efficiency and nitrogen-deficiency tolerance traits in wheat (Triticum aestivum L.)." PLoS Genet 15(5): e1007995.

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