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Natural haplotypes of FLM non-coding sequences fine-tune flowering time in ambient spring temperatures in Arabidopsis.


ABSTRACT: Cool ambient temperatures are major cues determining flowering time in spring. The mechanisms promoting or delaying flowering in response to ambient temperature changes are only beginning to be understood. In Arabidopsis thaliana, FLOWERING LOCUS M (FLM) regulates flowering in the ambient temperature range and FLM is transcribed and alternatively spliced in a temperature-dependent manner. We identify polymorphic promoter and intronic sequences required for FLM expression and splicing. In transgenic experiments covering 69% of the available sequence variation in two distinct sites, we show that variation in the abundance of the FLM-ß splice form strictly correlate (R2 = 0.94) with flowering time over an extended vegetative period. The FLM polymorphisms lead to changes in FLM expression (PRO2+) but may also affect FLM intron 1 splicing (INT6+). This information could serve to buffer the anticipated negative effects on agricultural systems and flowering that may occur during climate change.

SUBMITTER: Lutz U 

PROVIDER: S-EPMC5388537 | biostudies-literature | 2017 Mar

REPOSITORIES: biostudies-literature

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Natural haplotypes of <i>FLM</i> non-coding sequences fine-tune flowering time in ambient spring temperatures in Arabidopsis.

Lutz Ulrich U   Nussbaumer Thomas T   Spannagl Manuel M   Diener Julia J   Mayer Klaus Fx KF   Schwechheimer Claus C  

eLife 20170315


Cool ambient temperatures are major cues determining flowering time in spring. The mechanisms promoting or delaying flowering in response to ambient temperature changes are only beginning to be understood. In <i>Arabidopsis thaliana</i>, <i>FLOWERING LOCUS M</i> (<i>FLM</i>) regulates flowering in the ambient temperature range and <i>FLM</i> is transcribed and alternatively spliced in a temperature-dependent manner. We identify polymorphic promoter and intronic sequences required for <i>FLM</i>  ...[more]

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