On 17 July, after sunset,
sw remained relatively high and exceeded 0.15–0.2m s1 while
at the same time the relative humidity was well below 100%
(Fig. 10a), thereby setting the right conditions for anther
dehiscence and pollen emission/dispersal. However, also in
this case no airborne pollen was sampled. Apparently, the
corn anthers did not emit any pollen, raising questions as to
how anther maturation is linked to the diurnal solar cycle.
 
On 17 July, after sunset,sw remained relatively high and exceeded 0.15–0.2m s 1 whileat the same time the relative humidity was well below 100%(Fig. 10a), thereby setting the right conditions for antherdehiscence and pollen emission/dispersal. However, also inthis case no airborne pollen was sampled. Apparently, thecorn anthers did not emit any pollen, raising questions as tohow anther maturation is linked to the diurnal solar cycle.
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On 17 July, After sunset,. 
SW remained relatively High and exceeded 0.15-0.2ms? 1 while. 
at The Same time The relative humidity was Well Below 100%. 
(Fig. 10a), thereby Setting The Right conditions for Anther. 
dehiscence and pollen Emission / dispersal. However, also in 
this Case no Airborne pollen was sampled. Apparently, The 
Corn anthers did Not Emit any pollen, Raising Questions As to. 
How Anther maturation is linked to The diurnal Solar Cycle.
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On, 17 July after sunset 
 SW, remained relatively high and exceeded 0.15 - 0.2m s  1 while 
 at the same time the relative humidity. Was well below 100% 
 (Fig. 10a), thereby setting the right conditions for anther 
 dehiscence and pollen emission / dispersal.? However also, in 
 this case no airborne pollen was sampled. Apparently the 
 corn, anthers did not emit, any pollen raising. Questions as to 
.How anther maturation is linked to the diurnal solar cycle.
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