METROPOLIS — 1927, dir. Fritz Lang
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METROPOLIS — 1927, dir. Fritz Lang
Julian Hooper 1. Introduction, 2016 2. Inevitable conclusion, 2016 (Acrylic on linen)
Fish Magic, 1925
Artist: Paul Klee
ruins of St Andrews Cathedral in Fife, Scotland
“The Skating Rink” (1932) ✦ Sulho Sipilä — Light pooling against the Nordic night
Gall Wasps: these wasps produce a chemical that triggers abnormal cell growth in plants, causing the plants to form strange-looking structures around the wasp's larvae
Above: plant growths caused by the larvae of three different species of gall wasp, including Trigonaspis teres, Callirhytis seminator, and Feron izabellae
These tumor-like growths are known as plant galls. They develop in response to chemicals that are injected or secreted by certain insects, mites, and nematodes. Each plant gall forms around the body of a single larva (or, in some cases, a small group of larvae), and the structure serves as both protection and sustenance for the tiny creature developing within.
Above: the plant gall of the oak apple gall wasp, Atrusca quercuscentricola, with a bisected view that shows the larva within
There are many different insects that can trigger the production of plant galls, including certain aphids, psyllids, flies, beetles, scale insects, and caterpillars, but gall-forming wasps are especially diverse. They also create some of the most distinctive plant galls in nature.
Above: the photo at the top shows the plant gall of an unidentified gall wasp from the family Cynipidae, and the photo at the bottom depicts the plant galls of the urchin gall wasp, Cynips quercusechinus
The color, shape, size, and texture of each plant gall varies depending on the species of gall wasp that induces it. Some wasps are associated with plant galls that look like fuzzy little pom-poms; others produce mushroom-shaped structures, colorful discs, cones, pink spheres, cottonballs, etc.
Above: this photo shows a mushroom gall wasp, Heteroecus sanctaeclarae, which produces plant galls that look like tiny mushroom-shaped houses
As this article explains:
Galls are plant growths (similar to tumors) that are induced by various organisms such as bacteria, fungi, and insects. Gall wasps have evolved to “trick” the plant into forming this growth which they then use for food and shelter as they transform from a larva to an adult.
The wasp larvae secrete chemicals that mimic growth hormones in a particular plant upon hatching. The chemicals trick the oak into growing a gall on its flowers, acorns, leaves, or stems. The larva is then encapsulated by the gall as it grows, waiting patiently inside until its metamorphosis is complete.
Above: Feron parmula, commonly known as the disc gall wasp
Many of these plant galls have elaborate, colorful features that are truly stunning.
Above: the spined-turban gall wasp, Cynips douglasii
Gall-forming wasps are only parasitic toward plants -- they do not parasitize other animals. The larvae feed on the nutritive tissues of their plant galls, but the adult wasps do not feed at all.
Above: plant galls produced by two different species of gall wasp
These wasps also have a peculiar reproductive cycle:
Many species have alternating generations, meaning all of the adults emerging from galls during one time of the year are female-only, while the adults emerging in a different season have both males and females. Most species have females that can reproduce using parthenogenesis when they emerge by themselves. This means that their eggs are essentially clones of themselves. What’s more, some species appear not to have any males at all.
Above: the huge, fuzzy plant galls of Striatoandricus furnessae and Druon pattoni
Scientists have named and described roughly 1400 species of gall wasp, and that's likely just a fraction of the number of species that actually exist, as gall-forming organisms are widely understudied.
Above: close-up of a gall wasp larva nestled in its plant gall
Once the larva transforms into a fully-developed wasp, it finally emerges from its gall.
Above: adult gall wasps
Sources & More Info:
Forest Watch: Gall Wasps
Gallformers: What the Heck is a Gall?
Southwick Country Park Nature Reserve: Ecosystem Engineers
Insect Systematics and Diversity: Comparative Anatomy of Venom Glands Suggests a Role of Maternal Secretions in Gall Induction by Cynipid Wasps
Entomology Today: Gall-Inducing Wasps Have Enlarged Venom Glands, Study Finds
The British Plant Gall Society: Plant Galls
iNaturalist: Photos of Gall Wasps and Allies
Take a look at these African peach moths (Egybolis vaillantina). The shades of blue on their wings are so striking against the bright hues and dark edgings. Living art, right?
tiny glass aphid
trying something different, i’ve been working on this painting for a few days. its lined with a ball-point pen
Jon Juarez
Baby Horseshoe Crabs: these eggs contain tiny horseshoe crab embryos, and the hatchlings typically emerge after 2-4 weeks, but it takes another 10 years for them to reach adulthood
These photos show the embryonic form of Limulus polyphemus, commonly known as the Atlantic horseshoe crab. The eggs of this species are initially opaque, with a grayish-blue, green, or pink coloration, but they become increasingly translucent as the embryos mature, providing a glimpse of the tiny horseshoe crabs developing within.
Above: several embryos twirling around in their eggs
The legs become visible roughly five days after fertilization, and the embryos begin to move shortly thereafter, eventually flexing their legs and twirling their bodies. They molt for the very first time just a few days later. Each embryo will shed its skin and grow a new one four times in total before it even hatches from the egg.
Above: Limulus polyphemus embryos
The hatchlings finally emerge after 2-4 weeks. The freshly-hatched larvae measure less than 1cm long, and they look just like miniature versions of their adult form, except that they do not yet have tails (which are actually known as telsons) and their exoskeletons are still soft and translucent. These young horseshoe crabs are often described as "trilobite larvae."
Above: a young horseshoe crab discarding its egg
Atlantic horseshoe crabs generally spawn in May and June, with hundreds of thousands of individuals gathering along the coast on the night of the full moon and new moon. Each female lays up to 100,000 eggs per season, but very few of those offspring actually survive to adulthood. Most of the eggs are eaten or destroyed before they can even hatch, and many of the remaining larvae perish at some point during the 10 years that it takes for them to reach full maturity (i.e. the age at which they begin to reproduce).
Above: the freshly-hatched larvae
Wild horseshoe crabs can live to be more than 20 years old, and they can measure up to 60 centimeters (2 feet) long. They have 10 eyes in total, including two compound eyes that are specifically adapted for the purpose of finding a mate:
The most obvious eyes are the two lateral compound eyes. These are used for finding mates during the spawning season. Each compound eye has about 1,000 receptors or ommatidia. The cones and rods of the lateral eyes have a similar structure to those found in human eyes, but are around 100 times larger in size. At night, the lateral eyes are chemically stimulated to greatly increase the sensitivity of each receptor to light. This allows the horseshoe crab to identify other horseshoe crabs in the darkness.
Above: a close-up of a horseshoe crab's compound eye, which is covered in tiny hatchlings for some reason
Horseshoe crabs have been around for at least 445 million years, which means that these creatures are about 200 million years older than the dinosaurs and at least 50 million years older than trees, and yet their morphology has changed very little in that time. In fact, modern horseshoe crabs are frequently described as "living fossils," because they still look strikingly similar to their fossilized ancestors.
Above: the juvenile form of Tachypleus tridentatus, commonly known as the Chinese horseshoe crab
It's important to note that horseshoe crabs are not true crabs. In fact, they're not even crustaceans -- they belong to a completely different group of arthropods known as chelicerates, and they are more closely related to spiders and scorpions than they are to crabs.
Above: Tachypleus tridentatus and Limulus polyphemus
This is a revised/updated version of a post that I published about two years ago, with much more information, photos, and sources.
Sources & More Info:
iNaturalist: Horseshoe Crab Eggs
Maryland Department of Natural Resources: Horseshoe Crab Life History
Current Zoology: Developmental Ecology of the American Horseshoe Crab
PBS: Once a Spawn a Time: Horseshoe Crabs Mob the Beach
Smithsonian National Zoo and Conservation Biology Institute: Limulus polyphemus
National Wildlife Federation: Horseshoe Crabs
Maryland Department of Natural Resources: Horseshoe Crab Anatomy
From Arm in Arm by Remy Charlip, 1969.
Ants pot by Bradley Macom, 2023
Today’s fish thing is this fish padlock!
deep sea
a girl and her watermelon piece
oh i'm happy that people enjoyed looking at this animal with me.. it's fun to be nice to an animal and with bugs it's often more okay to do than with other animals since it's unlikely you will socialize them to humans to their detriment.
Watermelon piece is a good offering towards any adult wasp, but being a mud dauber she is a great wasp to observe, since they are not very aggressive and their sting is not too bad. I waited until she was a little more hydrated and started grooming herself to remove her from the house, since she was visibly quite dusty i knew it would be the next thing she would want to do.
a really funny behavior was that although she was completely content to be observed by humans, she saw an ant on the counter and got visibly upset, which is understandable since an ant wants to eat a weak bug a lot more than humans do. I removed the ant to keep her from getting too stressed out. she was so mad about the ant and even though it makes sense i thought it was pretty funny since wasps can tell who humans are. she knew we were hanging out and that part was fine, but an ant is just too much!! eventually i put her and her fruit outside.
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