Natural variation in cross-talk between glucosinolates and onset of flowering in Arabidopsis
Naturally variable regulatory networks control different biological processes including reproduction and defense. This variation within regulatory networks enables plants to optimize defense and reproduction in different environments. In this study we investigate the ability of two enzyme-encoding g...
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2015-09-01
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Online Access: | http://journal.frontiersin.org/Journal/10.3389/fpls.2015.00697/full |
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doaj-4b5e96045777429c96ccfd1a635ccc5c2020-11-24T20:54:10ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2015-09-01610.3389/fpls.2015.00697158391Natural variation in cross-talk between glucosinolates and onset of flowering in ArabidopsisLea Møller Jensen0Henriette Kehlet Sciera Jepsen1Barbara Ann Halkier2Daniel J Kliebenstein3Daniel J Kliebenstein4Meike eBurow5University of CopenhagenUniversity of CopenhagenUniversity of CopenhagenUniversity of CopenhagenUniversity of California, DavisUniversity of CopenhagenNaturally variable regulatory networks control different biological processes including reproduction and defense. This variation within regulatory networks enables plants to optimize defense and reproduction in different environments. In this study we investigate the ability of two enzyme-encoding genes in the glucosinolate pathway, AOP2 and AOP3¸ to affect glucosinolate accumulation and flowering time. We have introduced the two highly similar enzymes into two different AOPnull accessions, Col-0 and Cph-0, and found that the genes differ in their ability to affect glucosinolate levels and flowering time across the accessions. This indicated that the different glucosinolates produced by AOP2 and AOP3 serve specific regulatory roles in controlling these phenotypes. While the changes in glucosinolate levels were similar in both accessions, the effect on flowering time was dependent on the genetic background pointing to natural variation in cross-talk between defense chemistry and onset of flowering. This variation likely reflects an adaptation to survival in different environments.http://journal.frontiersin.org/Journal/10.3389/fpls.2015.00697/fullGlucosinolatesregulationflowering timeCross-talkAOP2AOP3 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Lea Møller Jensen Henriette Kehlet Sciera Jepsen Barbara Ann Halkier Daniel J Kliebenstein Daniel J Kliebenstein Meike eBurow |
spellingShingle |
Lea Møller Jensen Henriette Kehlet Sciera Jepsen Barbara Ann Halkier Daniel J Kliebenstein Daniel J Kliebenstein Meike eBurow Natural variation in cross-talk between glucosinolates and onset of flowering in Arabidopsis Frontiers in Plant Science Glucosinolates regulation flowering time Cross-talk AOP2 AOP3 |
author_facet |
Lea Møller Jensen Henriette Kehlet Sciera Jepsen Barbara Ann Halkier Daniel J Kliebenstein Daniel J Kliebenstein Meike eBurow |
author_sort |
Lea Møller Jensen |
title |
Natural variation in cross-talk between glucosinolates and onset of flowering in Arabidopsis |
title_short |
Natural variation in cross-talk between glucosinolates and onset of flowering in Arabidopsis |
title_full |
Natural variation in cross-talk between glucosinolates and onset of flowering in Arabidopsis |
title_fullStr |
Natural variation in cross-talk between glucosinolates and onset of flowering in Arabidopsis |
title_full_unstemmed |
Natural variation in cross-talk between glucosinolates and onset of flowering in Arabidopsis |
title_sort |
natural variation in cross-talk between glucosinolates and onset of flowering in arabidopsis |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Plant Science |
issn |
1664-462X |
publishDate |
2015-09-01 |
description |
Naturally variable regulatory networks control different biological processes including reproduction and defense. This variation within regulatory networks enables plants to optimize defense and reproduction in different environments. In this study we investigate the ability of two enzyme-encoding genes in the glucosinolate pathway, AOP2 and AOP3¸ to affect glucosinolate accumulation and flowering time. We have introduced the two highly similar enzymes into two different AOPnull accessions, Col-0 and Cph-0, and found that the genes differ in their ability to affect glucosinolate levels and flowering time across the accessions. This indicated that the different glucosinolates produced by AOP2 and AOP3 serve specific regulatory roles in controlling these phenotypes. While the changes in glucosinolate levels were similar in both accessions, the effect on flowering time was dependent on the genetic background pointing to natural variation in cross-talk between defense chemistry and onset of flowering. This variation likely reflects an adaptation to survival in different environments. |
topic |
Glucosinolates regulation flowering time Cross-talk AOP2 AOP3 |
url |
http://journal.frontiersin.org/Journal/10.3389/fpls.2015.00697/full |
work_keys_str_mv |
AT leamøllerjensen naturalvariationincrosstalkbetweenglucosinolatesandonsetoffloweringinarabidopsis AT henriettekehletscierajepsen naturalvariationincrosstalkbetweenglucosinolatesandonsetoffloweringinarabidopsis AT barbaraannhalkier naturalvariationincrosstalkbetweenglucosinolatesandonsetoffloweringinarabidopsis AT danieljkliebenstein naturalvariationincrosstalkbetweenglucosinolatesandonsetoffloweringinarabidopsis AT danieljkliebenstein naturalvariationincrosstalkbetweenglucosinolatesandonsetoffloweringinarabidopsis AT meikeeburow naturalvariationincrosstalkbetweenglucosinolatesandonsetoffloweringinarabidopsis |
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1716795355365900288 |