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Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research lead by Sam Fox and Dr. Todd Mockler
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Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Dec 18, 2015

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Page 1: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Analysis of Physiological Characteristics and Gene Expression Associated with Different

Light Conditions in Brachypodium distachyon

By Jared Streich,Research lead by

Sam Fox and Dr. Todd Mockler

Page 2: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Introduction

• Light sensitive proteins called phytochromes and cryptochromes regulate and or trigger certain biochemical and cellular processes.

Page 3: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Phytochromes and Cryptochromes

• What is a phytochrome and cryptochrome?

Page 4: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Brachypodium distachyon

• Grass model organism for monocot plants

• Ideal for research

• Accession Bd21 used

Page 5: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Arabidopsis thaliana vs. Brachypodium distachyon

• Arabidopsis is limited in modeling monocots plants

• Brachypodium is a monocot

Page 6: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Question• What are the affects of light quality on

Brachypodium distachyon growth, development and regulation of gene expression?

Page 7: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Goals

• Identified physiological differences

• Create lists of up and down regulated genes

• Mapped metabolic pathways

• Identified phytochrome and cryptochrome genes

Page 8: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Hypothesis

• Plants grown in certain colors of light will have differences in physiology and gene expression.

Page 9: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Experiment Composition

–Analyze gene expression characteristics

–Analyze growth and development

–Conclude relations of both

Page 10: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Gene Expression

Red

Blue

White + Far-red

White

Vs.

Dark (Control)

Page 11: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Gene Expression

Page 12: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Gene Data Analysis• Microarray technology used to analyze cDNA

Page 13: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Gene Data Analysis

• Create clusters of up and down regulated genes via p-value

Page 14: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Conclusion: Gene Count Analysis

• Shared genes in red and white light

• Shared genes in blue light and white light

• Most down regulated genes in white light

• Most up regulated genes in blue light

Page 15: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Gene Data Analysis

Page 16: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Conclusion: Genes Isolated as Likely Candidates for Phytochrome and Cryptochromes in BD21

• Phytochrome A Bradi1g10520.1

• Phytochrome B Bradi1g64360.1

• Phytochrome C Bradi1g08400.1

• Cryptochrome A Cry1a Bradi3g46590.1

• Cryptochrome B Cry1b Bradi5g11990.1

• Cryptochrome C Cry2 Bradi3g49204.1

Page 17: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Physical Measurements

Tissues length–Root length

–Above ground tissue

Page 18: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Conclusion: Physiological

• Red: Most overall growth

• White: Most root growth

• White + far-red: Longest leaves

• Blue: slowed growth in all tissue types.

Page 19: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Biomass and Physiological Growth

Page 20: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Flowering Time• All conditions flowered within all standard

deviations

Page 21: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Summary

• Possibly identified phytochrome and cryptochrome genes

• Biomass varies by light condition

• Physiological growth varies by light condition

• Flowering time is not effected by light conditions

Page 22: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Future Directions:

• Continue with gene expression analysis

• Isolate and over express genes of interest

• Transgenic plants of other genus with isolated genes

• Affects of adding far-red on white light condition

• Research flowering time regulation

Page 23: Analysis of Physiological Characteristics and Gene Expression Associated with Different Light Conditions in Brachypodium distachyon By Jared Streich, Research.

Acknowledgements

• Ernest and Pauline Jaworski• Howard Hughes Medical Institute• Dr. Kevin Ahern• Dr. Todd Mockler• Sam Fox• Erik Rowley• Jessica Murray• Dr. Serge Filichkin