Diatom of the Month April 2019 - Public (Un)awareness of Diatoms
by
Shelly Wu*
Shelly
Wu explains to us how her research may educate the general public about diatoms
in a variety of learning environments: the power of teaching beyond the
classrooms!
As diatomists,
we are thrilled by the wonders of diatoms. It is no secret to us that they produce
anywhere from 25-40% of the oxygen that we breathe 1 (yet, trees get
all or most of the credit) and sustain aquatic food webs 2. We value
the numerous uses of diatoms such as biofuel production 3,
commercial use in household products 4, forensic science 5,
and water quality assessment 6. We also admire the remnants of their
glass cell walls in artistic arrangements
7. Although we
know their inherent worth, the general public often does not and so we are
asked: “What is a diatom”?
Over the
years, I began to wonder why diatoms are not well known to the general public. I
began my search for diatom information in practitioner journals associated with
the National Science Teacher Association (NSTA) and the National Association of
Biology Teachers (NABT). I found that most of the articles were oriented
towards high school and college students in the context of broader topics such
as biodiversity and ecology. I found very few lessons and activities for elementary
and middle school children 8-12. Furthermore, only 9 articles
focused on diatoms, either consisting of informational articles or
inquiry-based investigations 2,11,13-19. These findings did not give
me much hope that formal schooling will educate our citizens about diatoms
(Fig. 1). What about informal learning environments?
Fig. 1. Diatoms are often
excluded from science education
curriculum, yet these algae are instrumental storytellers to ecologists about
our past, present, and future of the environment (Image Credits: Christensen, 1971 2; Hungerford, 1988 13;
Sadava, Hillis, Heller, & Berenbaum, 2011 20).
Diatoms in the Informal Learning Environment
It has been
suggested that in our lifetime, 5% of learning occurs at school. The remaining 95%
of learning stems from informal learning environments such as aquariums, museums,
nature, and zoos 21. We also consume scientific information through
free-choice learning and use ‘funds of knowledge’ such as books, magazines, the
internet, and television 22. Therefore, informal environments and
free-choice learning can be attractive avenues for disseminating diatom
knowledge. We can capture the public’s attention through informal settings, such
as diatom displays at a science and art exhibit 23, an interactive
touchscreen at a museum 24, or sculptures on a sidewalk (Fig. 2) 25.
For free-choice learning, I encourage you to connect with children in your own
family or local community by reading The Hidden World of Diatoms 26 or go watch One Strange Rock episode 1 on
Netflix in which the famous actor Will Smith conceptualizes our ability to
breath because of “those little fellas under the sea” 27.
Fig. 2. Human-sized diatom sculptures near Portland
State University (Image Credit: Trimet 28).
In addition to
informal settings and free-choice learning, we also need to engage the public in
the diatom world. In my past experience, I brought diatom outreach to programs
such as Bioblitz. Bioblitz is an event where scientists and citizen scientists document the
biodiversity in a given area in a short time span 29. During my one-hour
time slot with the public, I led participants to the edge of Lake Texoma (at
the University of Oklahoma Biological Field Station, USA) to sample diatoms
with simple spoons and turkey basters. When people came back inside to observe
their samples, they asked questions like “Why does this one have squiggles”?
Not only is Bioblitz beneficial in fostering an appreciation of natural history,
but it can result in new scientific discoveries. For example, a Bioblitz in New
Zealand led to the description of a novel diatom genus and species, Skeletomastus and Pleurosigma inscriptura, respectively 30. So
the diatom community’s participation in educational activities can and does benefit
the public and lay people can help diatomists in improving our collective understanding
of diatom diversity.
Diatoms: The Cherished Algae?
Although much
of our lifetime learning occurs in informal settings, school is still important
because learners from elementary children to preservice teachers develop stereotypical
views of scientists 31 and myths about science 32-33.
Their misconceptions of science are perpetuated by boring ‘cookbook labs’ in
the classroom which can lead to disinterest in science 34-35. I think
we can address some of these issues by infusing diatom education and finding a balance
between formal and informal learning (Fig. 3).
Fig. 3. Five ways that you can use diatom education
to contribute to the public’s knowledge of diatoms (Image Credits: The Hidden
World of Diatoms 26; The Microscopic World of Diatoms 19;
One Strange Rock 27).
Essentially, if
we want the general public to better value and understand science, we need
people to get more exposure to authentic science. Diatom education provides opportunities
to involve the public in understanding the relationship between diatoms and
society. As science education has largely excluded diatoms from the narrative, the
diatoms need you, diatom friends all over the world, to advocate for them. I
know that participating in diatom education takes time, effort, and strong commitment.
However, the diatoms are depending on you to become better appreciated and
understood by present and future generations.
*Andrews
Institute of Mathematics and Science Education, Texas Christian University, USA
Email Shelly or drop a message if you have questions about her post, or visit her website to know more about her research.
References
1. What are Diatoms? (n.d.). Retrieved from: https://diatoms.org/what-are-diatoms
2. Christensen, C. L. (1971).
Diatoms, the neglected organisms. The
American Biology Teacher, 33(2),
98-105.
3. Hildebrand, M., Davis, A. K., Smith, S. R., Traller, J.
C., & Abbriano, R. (2012). The place of diatoms in the biofuels industry. Biofuels, 3(2), 221-240.
4. Armbrust, E. V. (2009). The life of diatoms in the
world’s oceans. Nature, 459(7244), 185-192.
5. Siver, P. A., Lord,
W. D., & McCarthy, D. J. (1994). Forensic limnology: the use of freshwater algal community ecology to
link suspects to an aquatic crime scene in southern New England. Journal of
Forensic Science, 39(3), 847-853.
6. Dixit, S. S., Smol, J. P., Kingston, J. C., &
Charles, D. F. (1992). Diatoms: powerful indicators of environmental change. Environmental
Science & Technology, 26(1), 22-33.
7. Killip, M. (Director). (2017). These kaleidoscopic masterpieces are invisible to the naked eye [Video].
Retrieved from: https://www.youtube.com/watch?v=qxkbSk--EUY
8. Tessmer, M., & Cowlishaw, R. (2011). Time for
slime. Science and Children, 49(4), 38-41.
9. Frazier,
W. (2006). Magnifying students’ interest in science. Science Scope, 29(8), 32-35.
10. Bourdeau,
V., & Arnold, M. E. (2008). Inquiry goes outdoors: What can we learn at the
pond?. Science
Scope, 32(1), 64-67.
11. Hoffer,
J., Mayama, S., Lingle, K., Conroy, K., & Julius, M. (2011). SimRiver:
Environmental modeling software for the science classroom. Science Scope, 34(5),
29-33.
12. Marrero,
M. E., & Stevens, N. (2011). Earth’s most important producers: Meet the
phytoplankton!. Science
Scope, 34(8), 25-31.
13. Hungerford, J. J.
(1988). Diatoms: The ignored alga in high school biology. The American Biology Teacher, 50(7), 449-449.
14. Conger, P. S. (1956).
Lesson of the diatoms. The American
Biology Teacher, 18(6),
187-193.
15. Grimm,
K. E., & Ellis, B. (1963). Spotlight on diatoms. The American Biology Teacher, 25(1),
9-17.
16. Raham, R. G. (1979). Stalking the wild diatom. The American Biology Teacher, 41(8), 460-465.
17. Eichman,
J., Lundstrum, C., Eckhart, J., & Griesemer, B. (1993). 3-D ecology:
Diatoms, density, and diversity. The Science Teacher, 60(3),
45-49.
18. Hodgson, J. Y., Barber, K. O., & Hustead, C. J. (2016). An inquiry-based
investigation of freshwater diatom ecology. The American Biology Teacher, 78(8), 664-668.
19. Sultany, M., & Bixby, R. (2016). The microscopic world of diatoms. The Science Teacher, 83(8), 55-64.
20. Sadava, D. E., Hillis, D. M., Heller, H. C., & Berenbaum, M.R.
(2011). Life: The science of biology. (9th ed.).
Sunderland, MA: Sinauer Associates, Inc.
21. Falk, J.
H., & Dierking, L. D. (2010). The 95 percent solution. American Scientist, 98(6),
486-493.
22. Falk, J.
H., Storksdieck, M., & Dierking, L. D. (2007). Investigating public science
interest and understanding: Evidence for the importance of free-choice
learning. Public
Understanding of Science, 16(4), 455-469.
23. Mayama, S.
(2005). A novel approach to the popularization of diatomology. Diatom, 21, 61-70.
24. Ma, J.
(2013, April). Engaging museum visitors
with scientific data through visualization: A comparison of three strategies.
Paper presented at the Annual Meeting of the American Educational Research
Association, San Francisco, CA.
25. Cook, S.A. (2013). Walking
Portland, Oregon. Guilford, CT: Morris Book Publishing.
26. Samaritani, E. (2018). The hidden
world of diatoms. Retrieved from https://thehiddenworld.co.uk/shop/the-hidden-world-of-diatoms/
27. Aronofsky, D., Root, J., Handel, A., Lovering, P., Franklin, S.,
Pastore, T., & Renner, M. (Executive Producers). (2018). One strange rock [Television series].
New York, NY: National Geographic. Retrieved from:
https://www.nutopia.com/projects/one-strange-rock
28. Trimet: Public Art on MAX Green Line. (2019). Retrieved from https://trimet.org/publicart/greenline.htm
29. Baker, G.
M., Duncan, N., Gostomski, T., Horner, M. A., & Manski, D. (2014). The
bioblitz: Good science, good outreach, good fun. Park Science, 31(1),
39-45.
30. Harper, M.
A., Patterson, J. E., & Harper, J. F. (2009). New diatom taxa from the
world’s first marine Bioblitz held in New Zealand: Skeletomastus a new genus, Skeletomastus
coelatus nov. comb. and Pleurosigma inscriptura a new
species. Acta
Botanica Croatica, 68(2), 339-349.
31. Haynes, R.
(2003). From alchemy to artificial intelligence: Stereotypes of the scientist
in western literature. Public Understanding of Science, 12(3),
243-253.
32. McComas,
W. F. (2015). The nature of science & the next generation of biology
education. The
American Biology Teacher, 77(7), 485-491.
33. McComas,
W. F. (1996). Ten myths of science: Reexamining what we think we know about the
nature of science. School Science and Mathematics, 96(1),
10-16.
34. National
Research Council. (2006). America's lab report: Investigations in high
school science. Washington, DC: National Academies Press.
35. Aschbacher, P. R., Li, E., & Roth, E. J. (2010). Is science
me? High school students' identities, participation and aspirations in science,
engineering, and medicine. Journal of Research in Science Teaching, 47(5),
564-582.



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