Two weeks later... back to Woods Hole. This time to discuss the amazingness that are sea urchins. The meeting is small, welcoming... and exhausting. We think, talk, drink starting with the first session at 9 am until the last session at 9 pm and continue on through the poster and social hour till 11 pm .... but it doesn't stop there. People from our conference closed down the Captain Kidd every night - catching up, discussing the latest talk, giving guidance to the burgeoning scientists, and drinking. It is a wonderful group of people, who (for the most part) all really enjoy each others' company.
Conferences are always a time to reconnect with old friends. This conference we also remembered some who are no longer with us, including my postdoctoral El Jefe, Lynne Angerer, and a force of nature in the field, Eric Davidson. Lynne was still well represented with many of her disciples in the audience. We decided to take a belated lab picture - too bad we never took one with Lynne when we were all actually in the lab. -- Mental note... take a lab picture.
Monday, October 12, 2015
Thursday, October 1, 2015
Back to the bottom
I left the deep-sea community after my PhD to learn the most cutting edge molecular techniques at the National Institutes of Health. Now that I'm back in a Marine Science Department (and my kids are a little older), I'm trying to get back out to sea and re-integrate into the deep-sea community.The first formal reintegration step was to attend a DeSSC meeting. DeSSC - Deep Submergence Science Committee - is a group of deep-sea researchers that connect the scientists to the administrators to ensure that the science community has the assets it needs. Each year, there is an early career component to the DeSSC meeting. They will pay for new users and early career scientists to attend this meeting to familiarize them with what is available and make connections within the community. If you're interested, apply to go next year (always in December right before AGU conference).
Second formal step... bootcamp. I recently returned from an Alvin Bootcamp. We got a full tour of the renovated submarine and its amazing new capabilities... and most importantly were schooled on tricks and tips for integrating it into our research projects and proposals. They're really trying to set up the next generation for success and at the same time ensure long term success of the Alvin program.
I'll be putting two proposals/preproposals in this winter... here's hoping that I get back out in this workhorse in the sea. To the bottom of the drink....
Friday, August 14, 2015
Coral spawning take 2
We're back in Hawaii for the new moon - happening today. Don't be too jealous, its raining and 90 degrees F.
Yes - we were just here for coral spawning - the (often mass) reproductive event when corals release their eggs and sperm. We went home to see our families (and dogs) in between because our target coral species, the rice coral Montipora capitata, only spawns the evenings around the new moon. The biggest days are usually the two to three days right after the new moon, but there are dribbles before and after the peak days. All in all, we can usually collect eggs and sperm for five to six days in June, July and August. For those of you who work with model organisms, that probably sounds crazy. For those of you who have worked with other species of coral, you're probably jealous. Many other coral species only spawn once, some for a few days in a row and some only for a single mass event.
So I headed out last night with a bucket and scooper with high hopes for collecting while watching the Perseid meteor shower. One of the advantages of being up at night for collecting is the star gazing - no moon to brighten the sky. I was very disappointed to look up and see nothing but clouds, but it didn't pour down rain and we did manage to find a steady dribble of what look like little styrofoam balls floating on the surface of the water - coral gamete bundles!
So initial success for day 1 of spawning. Here's hoping that they survived the night. The first 12 hours is the most critical for survival in this species. See the next post for why this time matters so much! (And check back for pictures coming soon.)
Yes - we were just here for coral spawning - the (often mass) reproductive event when corals release their eggs and sperm. We went home to see our families (and dogs) in between because our target coral species, the rice coral Montipora capitata, only spawns the evenings around the new moon. The biggest days are usually the two to three days right after the new moon, but there are dribbles before and after the peak days. All in all, we can usually collect eggs and sperm for five to six days in June, July and August. For those of you who work with model organisms, that probably sounds crazy. For those of you who have worked with other species of coral, you're probably jealous. Many other coral species only spawn once, some for a few days in a row and some only for a single mass event.
So I headed out last night with a bucket and scooper with high hopes for collecting while watching the Perseid meteor shower. One of the advantages of being up at night for collecting is the star gazing - no moon to brighten the sky. I was very disappointed to look up and see nothing but clouds, but it didn't pour down rain and we did manage to find a steady dribble of what look like little styrofoam balls floating on the surface of the water - coral gamete bundles!
So initial success for day 1 of spawning. Here's hoping that they survived the night. The first 12 hours is the most critical for survival in this species. See the next post for why this time matters so much! (And check back for pictures coming soon.)
Friday, July 24, 2015
Makes sense if you're a Marine Biologist
So there are some things that really sound strange unless you're a Marine Biologist. Over the past 2 weeks doing field work in Hawaii, I've collected a few quotes that exemplify why this is the best profession... and how its easy to forget.
John - "Howzit?"
Diane - "Did any of your girls turn into boys yet?"
John - "Not yet."
Random guy - "That would be a really awkward question in any other place."
[It made perfect sense here though. John is studying a species of fish that changes gender to make sure that there is always a dominant male. In the absence of a male, a female (often the largest) changes into a male - coloration (in this case a stripe), gonads and all.]
Someone in the distance during a night snorkel to collect coral eggs - "Did we just swim through a warm patch or did someone pee?"
[It was actually a warm patch. The coves and lagoons warm up during the day and then flush out the warm water into the cooler ocean mixed waters as the tide receeds. While it wasn't pee, the group would soon be swimming through a milky water filled with coral eggs and sperm. Yum.]
Diane - "I really don't want to go snorkeling today."
Kate - "Suck it up, its the last day."
[Poor us. We have to snorkel in Hawaii for our work, and have the audacity to complain!]
Diane - "I have the worst booty tan lines."
[In this case, my tan lines are on my ankles due to my swim booties that I wear with fins.]
John - "Howzit?"
Diane - "Did any of your girls turn into boys yet?"
John - "Not yet."
Random guy - "That would be a really awkward question in any other place."
[It made perfect sense here though. John is studying a species of fish that changes gender to make sure that there is always a dominant male. In the absence of a male, a female (often the largest) changes into a male - coloration (in this case a stripe), gonads and all.]
Someone in the distance during a night snorkel to collect coral eggs - "Did we just swim through a warm patch or did someone pee?"
[It was actually a warm patch. The coves and lagoons warm up during the day and then flush out the warm water into the cooler ocean mixed waters as the tide receeds. While it wasn't pee, the group would soon be swimming through a milky water filled with coral eggs and sperm. Yum.]
Diane - "I really don't want to go snorkeling today."
Kate - "Suck it up, its the last day."
[Poor us. We have to snorkel in Hawaii for our work, and have the audacity to complain!]
Diane - "I have the worst booty tan lines."
[In this case, my tan lines are on my ankles due to my swim booties that I wear with fins.]
Thursday, June 11, 2015
The salty sea calls the OSTRICH
OSTRICH - Observations on SubTRopical ICHthyoplankton
The ostrich sticks its head in the water rather than the sand to observe the little morsels to eat. The morsels that we care about are LARVAE. The main objective of this research cruise revolves around patches of fish larvae, their predators, and their prey.
I'm tagging along to look at the invertebrate larvae which may also be food for the baby fish.
We're doing a series of tows of an imaging system called ISIIS and also MOCNESS tows to groudtruth the images.
There was a lot of excitement upon leaving port - there was an eddy in the lower Florida Keys that could be generating patches, filaments and streaks of larvae. We steamed ahead...
As my husband said... "Ah the elusive Eddy. Its like the unicorn or the kracken." While I don't hope to see the kracken, it would be nice to find the eddy soon. It seems to be hiding from us... or at least running.
To follow the cruise, check out the cruise blog: http://hmsc.oregonstate.edu/ostrich
The ostrich sticks its head in the water rather than the sand to observe the little morsels to eat. The morsels that we care about are LARVAE. The main objective of this research cruise revolves around patches of fish larvae, their predators, and their prey.
I'm tagging along to look at the invertebrate larvae which may also be food for the baby fish.
We're doing a series of tows of an imaging system called ISIIS and also MOCNESS tows to groudtruth the images.
There was a lot of excitement upon leaving port - there was an eddy in the lower Florida Keys that could be generating patches, filaments and streaks of larvae. We steamed ahead...
As my husband said... "Ah the elusive Eddy. Its like the unicorn or the kracken." While I don't hope to see the kracken, it would be nice to find the eddy soon. It seems to be hiding from us... or at least running.
To follow the cruise, check out the cruise blog: http://hmsc.oregonstate.edu/ostrich
Friday, May 15, 2015
In the lab
I remembered how to do my own lab work this week. It was so nice to sit in lab and pipette, without students interrupting and asking questions, without having to run off to a meeting, and with all of the equipment and reagents I needed. I was productive!
I successfully troubleshooted some RACE PCRs that we need for some summer fieldwork. Yeah.
And I did my first Western Blot. Now, at this point one might think that I should have already done a Western. But alas, I came into molecular biology from, well, ecology, so I skipped the requisite western done in a molecular biology teaching lab. Besides, I can detect changes in gene expression using RT-qPCR, whole mount in situ hybridizations, fluorescent and histochemical immunostains. Why use more techniques?
In this case, the answer is because the antibodies aren't good enough for immunostaining in cells, tissues or the organism. So, I got to learn Westerns. And the best part is that, though preliminary, it looks like I was able to knock down a gene in corals! Fabulous... now to be able to repeat it!
I successfully troubleshooted some RACE PCRs that we need for some summer fieldwork. Yeah.
And I did my first Western Blot. Now, at this point one might think that I should have already done a Western. But alas, I came into molecular biology from, well, ecology, so I skipped the requisite western done in a molecular biology teaching lab. Besides, I can detect changes in gene expression using RT-qPCR, whole mount in situ hybridizations, fluorescent and histochemical immunostains. Why use more techniques?
In this case, the answer is because the antibodies aren't good enough for immunostaining in cells, tissues or the organism. So, I got to learn Westerns. And the best part is that, though preliminary, it looks like I was able to knock down a gene in corals! Fabulous... now to be able to repeat it!
Friday, May 8, 2015
Close of Class
So maybe my silence this semester was in part due to the fact that I taught my first full class. Or maybe not... either way I learned a lot about how I like (and don't like) to teach.
Step 1) Choose a great topic. Done. Ecological Developmental Biology. What a great thing to discuss! We dove into fascinating ideas and hypotheses that spanned multiple biological disciplines. How do new phenotypes come about? What determines an individual's fitness? Is everything that determines who we are really in the genome?
Step 2) Teach with people you like. Done. I got to co-teach the course with Dr. Henry John-Alder, the chair of the Ecology and Evolution Department. As a seasoned vet at teaching, I felt comfortable diving into a new course - my first new course. He also knew all of the endocrinology that I glaze over.
Step 3) Let the learning begin... hum. My goals for the course were not to memorize content or understand the mechanics of gene expression. My goals for the course were more a change in perspective - introducing a new way of thinking about old problems. The environment doesn't just work as an agent of SELECTION on existing variation, it can also contribute to CREATING VARIATION. While an amputated limb will not be inherited between generations, there are some traits acquired within a lifespan that CAN be inherited. The genome is a set of bases (ATGC) that serves as a starting point for something more dynamic - the development of an individual - with methylation, acetylation, transcription factor binding, microRNAs, long RNAs, and a mix of other things we don't even know about yet.
How do we teach new perspectives? Pedagogically, I don't know the answer. Our approach, right or wrong, was exposure followed by synthesis and application to their own research areas. I think some of it may have actually worked.
Step 4) Wait in the silence. A discussion based course requires, well... discussion. It is easy for us professors to fill any silence by listening to ourselves talk. Oh, how professors love to listen to themselves! It took me a while to accept the silence and wait for a student to fill it. But by the end, we had some excellent discussions that convinced me that the students were actually listening, reading and learning throughout the semester!
Step 5) What I think we (or at least I) failed on was teaching some of the non-technical skills - presentations, writing summaries, meeting deadlines, promptness. Throughout the semester, these were things that drove me crazy... and I enabled. Any student reading this -- for all future courses, a deadline is a deadline. Miss it and I might not accept the assignment or I might dock a grade. Why should I have do something on the weekend or at night because you missed your deadline? No more. On a more positive note, tips and tricks for writing and presenting will become part of all future courses as well. Feedback, feedback, feedback. I think having a multi-step final paper/proposal with drafts that received extensive feedback was valuable to everyone involved.
Step 6) A glass of wine to read through the final products of a good semester.
Step 1) Choose a great topic. Done. Ecological Developmental Biology. What a great thing to discuss! We dove into fascinating ideas and hypotheses that spanned multiple biological disciplines. How do new phenotypes come about? What determines an individual's fitness? Is everything that determines who we are really in the genome?
Step 2) Teach with people you like. Done. I got to co-teach the course with Dr. Henry John-Alder, the chair of the Ecology and Evolution Department. As a seasoned vet at teaching, I felt comfortable diving into a new course - my first new course. He also knew all of the endocrinology that I glaze over.
Step 3) Let the learning begin... hum. My goals for the course were not to memorize content or understand the mechanics of gene expression. My goals for the course were more a change in perspective - introducing a new way of thinking about old problems. The environment doesn't just work as an agent of SELECTION on existing variation, it can also contribute to CREATING VARIATION. While an amputated limb will not be inherited between generations, there are some traits acquired within a lifespan that CAN be inherited. The genome is a set of bases (ATGC) that serves as a starting point for something more dynamic - the development of an individual - with methylation, acetylation, transcription factor binding, microRNAs, long RNAs, and a mix of other things we don't even know about yet.
How do we teach new perspectives? Pedagogically, I don't know the answer. Our approach, right or wrong, was exposure followed by synthesis and application to their own research areas. I think some of it may have actually worked.
Step 4) Wait in the silence. A discussion based course requires, well... discussion. It is easy for us professors to fill any silence by listening to ourselves talk. Oh, how professors love to listen to themselves! It took me a while to accept the silence and wait for a student to fill it. But by the end, we had some excellent discussions that convinced me that the students were actually listening, reading and learning throughout the semester!
Step 5) What I think we (or at least I) failed on was teaching some of the non-technical skills - presentations, writing summaries, meeting deadlines, promptness. Throughout the semester, these were things that drove me crazy... and I enabled. Any student reading this -- for all future courses, a deadline is a deadline. Miss it and I might not accept the assignment or I might dock a grade. Why should I have do something on the weekend or at night because you missed your deadline? No more. On a more positive note, tips and tricks for writing and presenting will become part of all future courses as well. Feedback, feedback, feedback. I think having a multi-step final paper/proposal with drafts that received extensive feedback was valuable to everyone involved.
Step 6) A glass of wine to read through the final products of a good semester.
Tuesday, May 5, 2015
With Honors
We're very proud of all of our students. With three leaving and another taking a semester off, we are sad... we'll have to try to find more great people at Rutgers to join the lab. Congrats, Seniors! Best of Luck.
Friday, May 1, 2015
Welcome Colette!
Although the time will be short, we're very excited to have recently minted Dr. Colette Feehan join the lab this summer as a postdoc. Dr. Feehan is an expert in disease as a driver of marine community dynamics. Her PhD thesis focused on sea urchin disease in Nova Scotian kelp forests. She is a prolific scientist with more than 10 publications before she even got her PhD!This summer, she'll be leading a new project in the Florida Keys investigating the barriers that are preventing the recovery of Diadema. Diadema is a sea urchin that was wiped out by disease the 1980s (when I was 3!) and again in the early 1990s. The demise of sea urchins has been blamed for an increase of algae on reefs that are out-competing and killing corals. Managers and vacationers, who want to see beautiful coral instead of algae, are very interested in facilitating the recovery of Diadema. Hopefully, the results of our research can help both the public and government understand how to do this successfully.
Friday, January 23, 2015
Women in Oceanography
As I prepared to submit my first proposal, I received an edit back asking to remove the statement in broader impacts that the proposal would support a beginning, mixed race, female faculty member. 'No one cares about gender anymore.' The comment implies that females are equally represented now -- all the programs and efforts to retain women have worked. The job is done.
The December issue of Oceanography revisits the status of women in the field of oceanography ten years after their first special issue on Women in Oceanography. http://www.tos.org/oceanography/archive/27-4_supplement.html
The analyses presented there show that there is definitely progress. Numbers of females in all ranks of the faculty went up ~5%. However, overall, women still comprise only 23% of the faculty in oceanography. My department is right on the average with 7 females in a faculty of 30 - 4 of which are pre-tenure. This means that I spend my committee meetings often surrounded by elder, caucasian males.
The good news is that things are changing... but we're not there yet. Some of it will just take time to reverse the inequalities at the highest level, but some of it will be concerted efforts to keep women in the academy and successful. The Oceanography special edition contains over 200 autobiographical sketches of women in oceanography - included as role models, points of inspiration and connection, others who have or are going through similar experiences. I wrote one... its in there, along side many of my friends and women I've never met. Maybe it will contribute to helping someone to keep on this path or, better yet, truly find their own path here in the academy or elsewhere.
The December issue of Oceanography revisits the status of women in the field of oceanography ten years after their first special issue on Women in Oceanography. http://www.tos.org/oceanography/archive/27-4_supplement.html
The analyses presented there show that there is definitely progress. Numbers of females in all ranks of the faculty went up ~5%. However, overall, women still comprise only 23% of the faculty in oceanography. My department is right on the average with 7 females in a faculty of 30 - 4 of which are pre-tenure. This means that I spend my committee meetings often surrounded by elder, caucasian males.
The good news is that things are changing... but we're not there yet. Some of it will just take time to reverse the inequalities at the highest level, but some of it will be concerted efforts to keep women in the academy and successful. The Oceanography special edition contains over 200 autobiographical sketches of women in oceanography - included as role models, points of inspiration and connection, others who have or are going through similar experiences. I wrote one... its in there, along side many of my friends and women I've never met. Maybe it will contribute to helping someone to keep on this path or, better yet, truly find their own path here in the academy or elsewhere.
Thursday, October 2, 2014
Kick'em Jenny LIVE
As the cost of research at sea rises and the push to include more students and citizens continues, telepresence is becoming more common. What is telepresence? Its like watching an unedited and interactive IMAX movie on your computer screen. Live feed from the remotely-operated vehicle (ROV) streams from the sea floor through a satellite dish to your screen. Scientists, students, and even citizens associated with the cruise can log in and help guide and describe the work being done. The rest of us can watch how it all unfolds -- the first glimpse of the vent as well as the ship steaming to the site, the ROV deployment and the drive to find the vent.
Sound interesting? Well check out the livestream as my good friend Dr. Anna Michel (and colleagues) helps execute undergraduate projects at Kick'em Jenny, a submarine volcano in the Caribbean from now until Oct 8th.
http://nautiluslive.org/
| Shrimp @ Kick'em Jenny (c) Ocean Exploration Trust |
Sound interesting? Well check out the livestream as my good friend Dr. Anna Michel (and colleagues) helps execute undergraduate projects at Kick'em Jenny, a submarine volcano in the Caribbean from now until Oct 8th.
http://nautiluslive.org/
Official?
The semester is in full swing now with the first round of exams starting. I am lucky to have a light teaching load and no full time class this semester. Instead I'm helping out with a couple of other courses as a guest lecturer. I gave my first lecture at Rutgers yesterday. The students were very interactive, had new ideas and insightful questions. A promising start. Does this mean I'm officially a Rutgers professor?
Tuesday, August 12, 2014
Time flies
Its amazing how fast a summer can fly.
A summer gone and what is to show for it? Three poster presentations full of excellent science.
A summer gone and what is to show for it? Three poster presentations full of excellent science.
Monday, August 4, 2014
Floating styrofoam balls
Tiny pinkish bundles of sperm and egg aggregate on the surface of the ocean in cycles with the moon. Fish start a feeding frenzy. Marine biologists start a different frenzy - they don their headlights, lie on their bellies to look over the dock, or hop into a kayak with a scoop.
I temporarily traded in my sea urchins to try my hand at manipulating corals. Its a lot harder to work with corals that only spawn when they want to and where they want to. So this adventure took me to Hawaii in this summer.
![]() |
| Injected embryo (FITC, green) next to uninjected embryos. The symbiotic algae are autofluorescent (red) |
The corals were definitely a challenge. But miracles happened, and we developed techniques to inject them and even got some to settle. Yeah.
Next year will be even better.
Friday, April 11, 2014
Faces of the lab
The lab is now humming with a group of students and a 'borrowed' tech constantly in and out - checking out their larvae, snapping pictures on the microscope, and grooving to music playing on the '80s boombox we inherited from who knows who! Its great to see the empty shelves and benches filled with boxes, instruments, and PEOPLE.
| Adam Christman, PIV technician, learning how to culture sea urchin larvae. |
| Angela Coccagna, undergraduate researcher, taking pictures of her experiments |
| Christian Diliberto, undergraduate researcher, getting ready to spawn the variegated sea urchin, Lytechinus variegatus |
| Ryan Buttone, work study and undergraduate researcher, watching cells divide. |
Wednesday, February 26, 2014
Ocean Sciences
About half of IMCS building (probably more) hopped on the 11 hour non-stop flight from Newark to Honolulu to meet, greet, eat, and present at the 2014 Ocean Sciences Meeting. A gathering of over 5,000 ocean scientists to share their research and ideas.
There are a lot of white men with beards in Hawaiian shirts!! But, I'm also pleased to see increasing diversity and gender balance.
The ASLO Minority Program (http://aslo.org/mas/) has brought some of the best and brightest minority students to Ocean Sciences and ASLO meetings for decades. The program seems to be thriving at Ocean Sciences this year. It could be the desire to go to Hawaii was appealing, but I'd like to believe that there are more students than ever interested in and pursuing ocean science careers. Over a decade ago, I was one of those undergraduates attending a scientific meeting for the first time. Now I'm on the other side... trying to recruit some of them to join my lab. Isn't life grand!
Aloha from Hawaii!
Sunday, February 9, 2014
New Faces
There are new faces in the lab for the Spring Semester. We welcome two new undergraduates, Angela Coccagna (Class of 2015, Marine Science & Sociology) and Christian Diliberto (Class of 2015, Biological Sciences and Marine Science)! Angela will be working on the evolution of phenotypic plasticity. Christian will be diving into the world of transcriptomics to identify genes that are involved in the phenotypic plasticity mechanism. Adam Christman is also joining us as a technician for the semester throwing our larvae into turbulence. Full introductions and pictures to come.
We also have new urchins in the lab to play with from the tropics to the frigid north.
| Lytechinus variegatus variegatus, the variegated urchin (Florida Keys, Fla) |
| Lytechinus pictus, the painted urchin (Goleta, Cali) |
| Strongylocentrotus droebachiensis, the green urchin (Cape Cod, Mass) |
Saturday, January 25, 2014
Website
The lab has an official website! Check it out: http://adams.marine.rutgers.edu/
Lab name is still pending vote by the students in the lab. We have two new undergraduates joining the lab this semester. Let the science begin!
Lab name is still pending vote by the students in the lab. We have two new undergraduates joining the lab this semester. Let the science begin!
Thursday, January 23, 2014
Spring Semester starts with a blast
Between holidays and winter break, its been lonely and quiet on the Rutgers' campuses the past few weeks. The cold, snowy blast delivered by Winter Storm Janus ushered in 'Spring'. The first day of the spring semester was called off early and the second day started late. Today is the first full day of 'Spring' topping out at 18 degrees F. Welcome back!
While I'm excited to have everyone back, the quiet and break was nice - we enjoyed sledding in the snow; family came to visit from California; I submitted my first preproposal (ever) to NSF Integrative Organismal Systems Division; and we got in two new species of sea urchins in from the Florida Keys - Lytechinus variegatus and Arbacia punctulata. Both of these species are successful across a large geographic range - are there local adaptations? Does development change in response to the environment? So many questions about how they can thrive under such variable conditions.
A. punctulata is found along the Western Atlantic Ocean from Massachusetts to Cuba and throughout the Caribbean and Gulf of Mexico. They are found in shallow water with rocky, sandy or shelly bottoms.
L. variegatus is also found along the US eastern seaboard from North Carolina around Florida into the Gulf of Mexico and Caribbean. However, L. variegatus prefers sea grass beds.
While I'm excited to have everyone back, the quiet and break was nice - we enjoyed sledding in the snow; family came to visit from California; I submitted my first preproposal (ever) to NSF Integrative Organismal Systems Division; and we got in two new species of sea urchins in from the Florida Keys - Lytechinus variegatus and Arbacia punctulata. Both of these species are successful across a large geographic range - are there local adaptations? Does development change in response to the environment? So many questions about how they can thrive under such variable conditions.
| (c) Florida Museum of Natural History, Arbacia punctulata |
A. punctulata is found along the Western Atlantic Ocean from Massachusetts to Cuba and throughout the Caribbean and Gulf of Mexico. They are found in shallow water with rocky, sandy or shelly bottoms.
L. variegatus is also found along the US eastern seaboard from North Carolina around Florida into the Gulf of Mexico and Caribbean. However, L. variegatus prefers sea grass beds.
Friday, January 3, 2014
Whats in a NAME? Part II
Here are some suggestions that have been put forth. Chuckle, giggle and then vote in the poll to the right! Additional suggestions are still welcome.
MEDDLe Lab Marine
Ecology, Dispersal and Development of Larvae
LED Lab Larval Ecology and Development
ILE Lab Integrated
Larval Ecology
MADD Lab Marine
Adaptation, Dispersal and Development
MEDDLe Lab Molecular
Ecology, Dispersal and Development of Larvae
DevEL Lab Development
and Ecology of Larvae
DADS Lab Disperal
and Development in the Sea
LEAD Lab Larval
Ecology and Development
La Da Dee Larval
Dispersal and Developmental Ecology
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