Sunday, March 9, 2014

Trip to Helsinki, Finland

Kaisaniemi Botanic Garden at Luomos, the Finnish Museum of Natural History
I've just returned from Helsinki! It's a beautiful city, even in wintry March, and I had a great time working with fern colleagues at the Finnish Museum of Natural History. Aino Juslén and Henry Väre were my hosts, and we have some big projects on Dryopteris, among other things, planned together. We had never met before, despite having co-authored a paper, so it was wonderful to spend a whole week with them. We poured over herbarium specimens they had received on loan from Kew, Berlin, and Stockholm, as well as Helsinki's own great collections, I gave a talk on reticulate evolution in ferns, and we ate some delicious food. I thought I'd share some photos reflecting most of these activities, as well as Helsinki itself.

The entrance to the herbarium
Beautiful wooden cabinets 

Carvings on each of the doors (not necessarily representative of the plants inside...)
Henry, Aino, and me
Sorry vegetarians, but there were lots of delicious sausages to be had...

A sunny day!
Main University of Helsinki building
Finnish Museum of Natural History
Finnish National Theater
Waterfront
Senate Square
Helsinki Cathedral
Statue of Alexander II, who established the Diet of Finland in 1863.



Friday, February 28, 2014

UF campus plants, part IV

More photos from walks around the UF campus with Walt Judd (see part I for more information). These are from February 27, 2014, in the area around the Reitz Union.
Asparagus sp. (hard to believe, right?!)
Callistemon viminalis
Callistemon viminalis 
Dietes biocolor
Grewia occidentalis
Morus alba
Myrica cerifera
Myrica cerifera
Pleopeltis polypodioides
Viburnum obovatum
Viburnum suspensum
Viburnum tinus

Saturday, February 22, 2014

UF campus plants, part III

More photos from walks around the UF campus with Walt Judd (see part I for more information). These are from Harmonic Woods on February 20, 2014.
Carex striatula
Carex striatula
Prunus caroliniana
Prunus caroliniana
Smilax bona-nox
Trillium macrocarpa
Trillium macrocarpa
Trillium macrocarpa
Viola palmata
Viola palmata
Viola walteri

Thursday, February 20, 2014

Baby fern gametophytes!

Ceratopteris richardii
The spores that we plated just a couple short weeks ago are doing very nicely – some have already germinated into (adorable) baby gametophytes! Above is a C-fern gametophyte, professionally known as Ceratopteris richardii. Below are shots of their comfy growth chamber home, and one other species that's growing quite well, Pitryogramma calomelanos. 


Pityrogramma calomelanos
Pityrogramma calomelanos
Pityrogramma calomelanos 
Pityrogramma calomelanos


Friday, January 24, 2014

Fern spores


This was an exciting week in the lab! I have two undergraduates working with me this semester, and they just started a project on fern mating systems, the first big project I'm undertaking since coming to UF. The goal is to determine how often ferns undergo an extreme form of selling, called intragametophytic selfing, and whether the tendency to do so has any ecological or phylogenetic correlates. Ferns (and some lycophytes) are the only plants that can do this extreme form of selfing, which leads to homozygosity at all genetic loci (basically, a tremendous loss of variation that leaves them vulnerable to the effects of deleterious alleles).

The first step in the project was to gather a bunch of spores from different fern species, which has been facilitated by many colleagues and collaborators over the last few weeks. Next, the spores are plated onto a nutrient-rich agar medium, and place in a growth chamber, where hopefully they will germinate into gametophytes. The spores that you see in the pictures (the little triangular-shaped structures) are haploid, having developed via meiosis while inside the sporangia (the larger structures that appear to be cracked open in some cases – that's how the spores got out). The sporangia were attached to the leaves of the adult, sporophyte ferns. The gametophytes that develop from these spores will eventually produce eggs and/or sperm that will undergo fertilization, restoring the diploid state and leading to development of the adult sporophyte. That's the fern life cycle in a nutshell!