Starbucks Coffee Company - store #3379 since Jul 2009
Shift Supervisor
One World Cafe Jul 2007 - May 2009
Barista and Keyholder
University Dining Services, Washington State University Aug 2005 - Jul 2007
Student Manager/Barista
Education:
Washington State University 2003 - 2008
BA, Communications (emphasis in advertising), Fine Arts, Political Science
Woodinville High School 2000 - 2003
Skills:
Customer Service Time Management Visual Merchandising Retail Sales Advertising Art Direction Inventory Management Social Media Facebook Microsoft Office Event Planning Store Management PowerPoint Social Networking Social Media Marketing Microsoft Excel Microsoft Word
Interests:
Print Design, Cause Marketing, Digital Photography, Art Direction, Coffee, Pop Culture, Politics, Interior Design, Cooking
- San Diego CA, US Nicholas Brideau - San Diego CA, US Joshua Britton - San Diego CA, US Erik Holtzapple - San Diego CA, US
International Classification:
C12N 9/02 C12P 17/06
Abstract:
The invention is directed to methods involved in the production of flavonoids, anthocyanins and other organic compounds. The invention provides cells engineered for the production of flavonoids, anthocyanins and other organic compounds, where the engineered cells include one or more genetic modifications that increase flavonoid production by increasing metabolic flux to flavonoid precursors and/or reducing carbon losses resulting from the production of byproducts.
Flavonoid And Anthocyanin Bioproduction Using Microorganism Hosts
The invention is directed to methods involved in the production of flavonoids, anthocyanins and other organic compounds. The invention provides cells engineered for the production of flavonoids, anthocyanins and other organic compounds, where the engineered cells include one or more genetic modifications that increase flavonoid production by increasing metabolic flux to flavonoid precursors and/or reducing carbon losses resulting from the production of byproducts.
Flavonoid And Anthocyanin Bioproduction Using Microorganism Hosts
The invention is directed to methods involved in the production of flavonoids, anthocyanins and other organic compounds. The invention provides cells engineered for the production of flavonoids, anthocyanins and other organic compounds, where the engineered cells include one or more genetic modifications that increase flavonoid production by increasing metabolic flux to flavonoid precursors and/or reducing carbon losses resulting from the production of byproducts.
Flavonoid And Anthocyanin Bioproduction Using Microorganism Hosts
- San Diego CA, US Nicholas Brideau - San Diego CA, US Joshua Britton - San Diego CA, US Erik Holtzapple - San Diego CA, US
International Classification:
C12N 15/70 C12N 15/04 C12N 15/82
Abstract:
The invention is directed to methods involved in the production of flavonoids, anthocyanins and other organic compounds. The invention provides cells engineered for the production of flavonoids, anthocyanins and other organic compounds, where the engineered cells include one or more genetic modifications that increase flavonoid production by increasing metabolic flux to flavonoid precursors and/or reducing carbon losses resulting from the production of byproducts.
Flavonoid And Anthocyanin Bioproduction Using Microorganism Hosts
- San Diego CA, US Nicholas Brideau - San Diego CA, US Joshua Britton - San Diego CA, US Erik Holtzapple - San Diego CA, US
International Classification:
C12N 15/82 C12P 17/06
Abstract:
The invention is directed to methods involved in the production of flavonoids, anthocyanins and other organic compounds. The invention provides cells engineered for the production of flavonoids, anthocyanins and other organic compounds, where the engineered cells include one or more genetic modifications that increase flavonoid production by increasing metabolic flux to flavonoid precursors and/or reducing carbon losses resulting from the production of byproducts.
Jesse Walker, Nicole Mead, Rv Wilder, Matthew Byrum, Elizabeth Ulrich, Kevin Stapleton, Julia Pleskach, Jamey Stapleton, Michael Hines, Matt Waldren, Jacinta Perez