<p>Flowering time of mutants with defects in flowering time genes in 23 °C short days (black bars) and 27 °C short days (white bars). L<i>er</i> and Col controls are included both panels.</p> <p>(A) Mutants with defects in the photoperiod pathway, and <i>eds16–1. co-1</i> is in a mixed background of Col-0 and L<i>er</i>.</p> <p>(B) Mutants with defects in floral integrators. <i>ft-2</i> and <i>ft-7</i> are two independently isolated alleles with the same mutation.</p
<p>The response of mutant females maintained in long (left column) and short (right column) days (th...
<p>(A) Predicted vs. experimentally observed flowering time for mutants used in training the model (...
To identify new naturally occurring genetic variants affecting flowering time, we have crossed domin...
<p>Shoots were harvested ten days after germination, 12 h into the 16 h photoperiod. Gene expression...
<p>(A) The late-flowering phenotype of <i>rrp6l1</i> and <i>rrp6l2</i> mutants grown under long day ...
<p>Flowering time was recorded as the number of rosette leaves at bolting, thus late flowering plant...
<p><b>(A)</b> Representative photographs and <b>(B)</b> quantitative flowering time analysis (days t...
<p>(A) The early flowering phenotype of <i>mms19</i> mutants in standard long-day conditions (16-h-l...
<p>Experiment_1 was carried out in a heated, lit glasshouse with supplementary lighting giving an 18...
• Circadian clock proteins play key roles in adaptations of plants to diurnal environ-mental conditi...
Many plant species exhibit seasonal variation of flowering time in response to daylength. Arabidopsi...
<p>Comparison of flowering time among single mutant lines for flowering time: A) <i>hd1</i>, B) <i>g...
To investigate the genetic mechanisms regulating the transition from the vegetative to reproductive ...
<p>(A): Temperature-responsive expression of photoperiodic pathway components at ZT0. Expression of ...
<p>(<b>a</b>)WT and <i>SUC2<sub>prom</sub>::MYB30</i> expressing Col plants were grown in LDs (16 h ...
<p>The response of mutant females maintained in long (left column) and short (right column) days (th...
<p>(A) Predicted vs. experimentally observed flowering time for mutants used in training the model (...
To identify new naturally occurring genetic variants affecting flowering time, we have crossed domin...
<p>Shoots were harvested ten days after germination, 12 h into the 16 h photoperiod. Gene expression...
<p>(A) The late-flowering phenotype of <i>rrp6l1</i> and <i>rrp6l2</i> mutants grown under long day ...
<p>Flowering time was recorded as the number of rosette leaves at bolting, thus late flowering plant...
<p><b>(A)</b> Representative photographs and <b>(B)</b> quantitative flowering time analysis (days t...
<p>(A) The early flowering phenotype of <i>mms19</i> mutants in standard long-day conditions (16-h-l...
<p>Experiment_1 was carried out in a heated, lit glasshouse with supplementary lighting giving an 18...
• Circadian clock proteins play key roles in adaptations of plants to diurnal environ-mental conditi...
Many plant species exhibit seasonal variation of flowering time in response to daylength. Arabidopsi...
<p>Comparison of flowering time among single mutant lines for flowering time: A) <i>hd1</i>, B) <i>g...
To investigate the genetic mechanisms regulating the transition from the vegetative to reproductive ...
<p>(A): Temperature-responsive expression of photoperiodic pathway components at ZT0. Expression of ...
<p>(<b>a</b>)WT and <i>SUC2<sub>prom</sub>::MYB30</i> expressing Col plants were grown in LDs (16 h ...
<p>The response of mutant females maintained in long (left column) and short (right column) days (th...
<p>(A) Predicted vs. experimentally observed flowering time for mutants used in training the model (...
To identify new naturally occurring genetic variants affecting flowering time, we have crossed domin...