Blog entry by Fidelia Quinlivan

โดย Fidelia Quinlivan - วันศุกร์, 3 มกราคม 2025, 5:14AM
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Borevitz J. O., Xia Y., Blount J., Dixon R. A., Lamb C. (2000). Activation tagging identifies a conserved MYB regulator of phenylpropanoid biosynthesis. Murphy A., Peer W. A., Taiz L. (2000). Regulation of auxin transport by aminopeptidases and endogenous flavonoids. Peer W. A., Murphy A. S. (2007). Flavonoids and auxin transport: modulators or regulators? Trends Plant Sci. Chandler S., Tanaka Y. (2007). Genetic modification in floriculture. Johnson E. T., Berhow M. A., Dowd P. F. (2007). Expression of a maize myb transcription factor driven by a putative silk-specific promoter significantly enhances resistance to Helicoverpa zea in transgenic maize. Kim S. S., Grienenberger E., חופשת קזינו בבאטומי Lallemand B., Colpitts C. C., Kim S. Y., Souza Cde A., Geoffroy P., Heintz D., Krahn D., Kaiser M., Kombrink E., Heitz T., Suh D. Y., Legrand M., Douglas C. J. (2010). LAP6/POLYKETIDE SYNTHASE A and LAP5/POLYKETIDE SYNTHASE B encode hydroxyalkyl alpha-pyrone synthases required for pollen growth and sporopollenin biosynthesis in Arabidopsis thaliana. Owens D. K., Alerding A. B., Crosby K. C., Bandara A. B., Westwood J. H., Winkel B. S. J. (2008). Functional analysis of a predicted flavonol synthase gene household in Arabidopsis. Czemmel S., Stracke R., Weisshaar B., Cordon N., Harris N. N., Walker A. R., Robinson S. P., Bogs J. (2009). The grapevine R2R3-MYB transcription factor VvMYBF1 regulates flavonol synthesis in creating grape berries.

Thomas-Jefferson-statue-Rudolph-Evans-Washington-DC.jpgDeluc L., Bogs J., Walker A. R., Ferrier T., Decendit A., Merillon J. M., Robinson S. P., Barrieu F. (2008). The transcription issue VvMYB5b contributes to the regulation of anthocyanin and proanthocyanidin biosynthesis in creating grape berries. Butelli E., Titta L., Giorgio M., Mock H.-P., Matros A., Peterek S., Schijlen E. G., Hall R. D., Bovy A. G., Luo J., Martin C. (2008). Enrichment of tomato fruit with health-promoting anthocyanins by expression of choose transcription factors. Chemler J. A., Koffas M. A. (2008). Metabolic engineering for plant natural product biosynthesis in microbes. Feller A., Machemer K., Braun E. L., Grotewold E. (2011). Evolutionary and comparative evaluation of MYB and bHLH plant transcription components. Ortega A., Vasal S. K., Mihm J., Hershey C. (1980). Breeding for Insect Resistance in Maize. Hichri I., Barrieu F., Bogs J., Kappel C., Delrot S., Lauvergeat V. (2011). Recent advances in the transcriptional regulation of the flavonoid biosynthetic pathway.

Mahajan M., Ahuja P. S., Yadav S. K. (2011). Post-transcriptional silencing of flavonol synthase mRNA in tobacco leads to fruits with arrested seed set. Lloyd A. M., Walbot V., Davis R. W. (1992). Arabidopsis and Nicotiana anthocyanin manufacturing activated by maize regulators R and C1. Marrs K. A., Alfenito M. R., Lloyd A. M., Walbot V. (1995). A glutathione S-transferase involved in vacuolar transfer encoded by the maize gene Bronze-2. Galway M. E., Masucci J. D., Lloyd A. M., Walbot V., Davis R. W., Schiefelbein J. W. (1994). The TTG gene is required to specify epidermal cell fate and cell patterning in the Arabidopsis root. Koes R., Verweij W., Quattrocchio F. (2005). Flavonoids: a colorful model for the regulation and evolution of biochemical pathways. Byrne P. F., Mcmullen M. D., Wiseman B. R., Snook M. E., Musket T. A., Theuri J. M., Widstrom N. W., Coe E. H. (1997). Identification of maize chromosome areas associated with antibiosis to corn earworm (Lepidoptera: Noctuidae) larvae. Byrne P. F., Darrah L. L., Snook M. E., Wiseman B. R., Widstrom N. W., Moellenbeck D. J., Barry B. D. (1996). Maize silk-browning, maysin content material, and antibiosis to the corn earworm, Helicoverpa zea (Boddie).

Izaguirre M. M., Scopel A. L., Baldwin I. T., Ballare C. L. (2003). Convergent responses to stress. Cornell H. V., Hawkins B. A. (2003). Herbivore responses to plant secondary compounds: a check of phytochemical coevolution concept. Hwang E. I., Kaneko M., Ohnishi Y., Horinouchi S. (2003). Production of plant-particular flavanones by Escherichia coli containing an artificial gene cluster. Horinouchi S. (2009). Combinatorial biosynthesis of plant medicinal polyketides by microorganisms. Jung C. S., Griffiths H. M., De Jong D. M., Cheng S., Bodis M., Kim T. S., De Jong W. S. (2009). The potato developer (D) locus encodes an R2R3 MYB transcription factor that regulates expression of a number of anthocyanin structural genes in tuber skin. Mandal S. M., Chakraborty D., Dey S. (2010). Phenolic acids act as signaling molecules in plant-microbe symbioses. Goodman C. D., Casati P., Walbot V. (2004). A multidrug resistance-associated protein concerned in anthocyanin transport in Zea mays. Ferreyra M. L. F., Rius S. P., Emiliani J., Pourcel L., Feller A., Morohashi K., Casati P., Grotewold E. (2010). Cloning and characterization of a UV-B-inducible maize flavonol synthase. Casati P., Walbot V. (2005). Differential accumulation of maysin and rhamnosylisoorientin in leaves of high-altitude landraces of maize after UV-B publicity.