Now on ScienceBlogs: Oldest Human-Made Object in Space

ScienceBlogs Book Club: Inside the Outbreaks

Discovering Biology in a Digital World

My thoughts on biology, teaching, life, and exploring the living world via the digital one. Only my opinions are represented by these postings, they do not represent the viewpoints of any funding agency or Geospiza, Inc.

Profile

Sandra Porter I am a digital biologist, teacher, and entrepreneur. My passion is developing instructional materials for 21st century biology (Digital World Biology).

Search

Follow digitalbio on Twitter

National Science Foundation projects

Bio-Link Bio-Link is an Advanced Technology Education center of Excellence that works to improve biotechnology and life science education in the community colleges.

My Bio-Link blog

bio-itest bio-itest is an ITEST project (Innovative Technology Experiences for Students and Teachers). We are developing curriculum that uses bioinformatics resources to explore genetic testing and DNA barcoding.

Scenario based learning

Digital World Biology

Digital World Biology produces educational materials that help students and biologists use bioinformatics resources to explore biology. We write books, produce tutorials, sell biology-related merchandise and give workshops.

DigitalBio Favorites

Recent Posts

Recent Comments

Categories

Blogroll

Science Education Groups

Keep up to date

Awards

Red Orbit






When you need to laugh

Interesting places

Locations of visitors to this page

Archives

« Thanksgiving Leftovers: Under the Microscope | Main | Dangerous chemistry: explosive experiments with junk food »

Plants that make crystals that look like plants

Category: Plant biology
Posted on: November 28, 2008 10:29 PM, by Sandra Porter

A crystalline botanical fashion show.

Awhile back Chemical & Engineering News published a fascinating article called "The Secret Life of Plant Crystals" with some wonderful photos of calcium oxalate crystals. Special cells (called "idioblasts") produce these crystals, with shapes that are unique to each type of plant.

Reposted for the holiday.

Even though 75% of flowering plants make these crystals, no one knows why they make them and in fact, their functions may be as diverse as their shapes. Some crystals look sharp and dangerous, like thistles or thorns, suggesting that they function to defend a plant from hungry herbivores. Other crystals are thought to bind heavy metals or other harmful substances and sequester them away in some kind of a molecular toxic waste containment center.

Calcium oxalate crystals (raphides) have even implicated in a case of a mysterious illness that occured after they had eaten a vegetable dish (2). It's every child's nightmare; the vegetables were fighting back.

The best feature of this story, though, is the gallery of photos. The Botanic Crystal Fashion Show is composed of excellent pictures, all taken by Harry T. (Jack) Horner at Iowa State University. It's well worth taking a look.

References:
1. Chemical and Engineering News (2006, 26-27)
2. Clinical Toxicology (2005, 1, 17)

technorati tags: , , , ,

Share on Facebook
Share on StumbleUpon
Share on Facebook
Find more posts in: Life ScienceEnvironment

Post a Comment

(Email is required for authentication purposes only. On some blogs, comments are moderated for spam, so your comment may not appear immediately.)





ScienceBlogs

Search ScienceBlogs:

Go to:

Advertisement
Follow ScienceBlogs on Twitter

© 2006-2011 ScienceBlogs LLC. ScienceBlogs is a registered trademark of ScienceBlogs LLC. All rights reserved.