Edible

nonmigratory?

Thursday last, grandsons Sam and Rory and I visited Sapsucker Woods, enjoying a late summer morning from a wooden observation platform over this watery swamp. “Look, hot dogs!!”

“Typha is a genus of about 30 species of monocotyledonous flowering plants in the family Typhaceae. These plants have a variety of common names, in British English as bulrush or reedmace, in American English as reed, cattail, or punks, in Australia as cumbungi or bulrush, in Canada as bulrush or cattail, and in New Zealand as reed, cattail, bulrush or raupo.”

“Many parts of the Typha plant are edible to humans. Before the plant flowers, the tender inside of the shoots can be squeezed out and eaten raw or cooked. The starchy rhizomes are nutritious with a protein content comparable to that of maize or rice. They can be processed into a flour with 266 kcal per 100 grams, and are most often harvested from late autumn to early spring. They are fibrous, and the starch must be scraped or sucked from the tough fibers. Baby shoots emerging from the rhizomes, which are sometimes subterranean, can be picked and eaten raw. Also underground is a carbohydrate lump which can be peeled and eaten raw or cooked like a potato. The plant is one championed by survival experts because various parts can be eaten throughout the year. Plants growing in polluted water can accumulate lead and pesticide residues in their rhizomes, and these should not be eaten.”

“The rind of young stems can be peeled off, and the tender white heart inside can be eaten raw or boiled and eaten like asparagus. This food has been popular among the Cossacks in Russia, and has been called “Cossack asparagus”. The leaf bases can be eaten raw or cooked, especially in late spring when they are young and tender. In early summer the sheath can be removed from the developing green flower spike, which can then be boiled and eaten like corn on the cob. In mid-summer when the male flowers are mature, the pollen can be collected and used as a flour supplement or thickener.”

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Reference: text in italics and quotes is from the Wikipedia, “Typha.”

Copyright 2023 Michael Stephen Wills All Rights Reserved.

Fragrant

Native Americans used it as a herbal remedy for a variety of ailments.

Thursday last, grandsons Sam and Rory and I visited Sapsucker Woods, enjoying a late summer morning we clambered onto a wooden platform over a watery swamp.

Look closely for flowers and buds of the White Water Lily native to New York State. 

Although the young leaves of White Water-lily reportedly can be boiled and served as a vegetable, the main human use of this plant appears to have been medicinal. Native Americans used it as a herbal remedy for a variety of ailments, including colds, tuberculosis, bronchial complaints, toothaches, and mouth sores.

The many names for this plant: American White Waterlily, American White Water-lily, Fragrant Water-lily, Fragrant White Water Lily, Fragrant White Water-lily, Sweet Water-lily, Sweet-scented Water Lily, Sweet-scented White Waterlily, Tompkins County, Water, Water Lily, Waterlily, White Water Lily, White Waterlily, White Water-lily (Nymphaea odorata ssp. odorata)

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Copyright 2023 Michael Stephen Wills All Rights Reserved.

Scarlet

nonmigratory?

Thursday last, grandsons Sam and Rory and I visited Sapsucker Woods, enjoying a late summer morning we came upon many scarlet beauties.

Cardinal Flower (Lobelia cardinalis) is also known as Bog Sage, Cardinal Flower, Cornell Lab of Ornithology, Finger Lake Region, Hog’s Physic, Indian Pink, Red Bay, Sapsucker Woods, Scarlet Lobelia, Slinkweed, Water Gladiole.

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Copyright 2023 Michael Stephen Wills All Rights Reserved.

Soft Landing

nonmigratory?

Thursday last, grandsons Sam and Rory and I visited Sapsucker Woods, enjoying a late summer morning. From the north side on Wilson Trail, these Canada geese landed on the pond. 

In North America, nonmigratory Canada goose populations have been on the rise. The species is frequently found on golf courses, parking lots, and urban parks, which would have previously hosted only migratory geese on rare occasions.

Owing to its adaptability to human-altered areas, it has become one of the most common waterfowl species in North America. In many areas, nonmigratory Canada geese are now regarded as pests by humans.

They are suspected of being a cause of an increase in high fecal coliforms at beaches. An extended hunting season, deploying noise makers, and hazing by dogs have been used to disrupt suspect flocks. 

A goal of conservationists has been to focus hunting on the nonmigratory populations (which tend to be larger and more of a nuisance) as opposed to migratory flocks showing natural behavior, which may be rarer.

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Copyright 2023 Michael Stephen Wills All Rights Reserved.

Fruit of the Starflower

A member of the primrose family

These dark blue berries at the end of a slender naked stalk that arises from the leaf joint at the top of the plant were encountered on a late August day in Fillmore Glen, Moravia, Cayuga County, New York State.  Lysimachia borealis is a perennial wildflower commonly known as Starflower.  After blooming in the spring, as a member of the primrose family these are some of the first flowers to appear, the fertilized flowers develop into this round purple fruit.  To confuse identification, the plant is also known as Trientalis borealis.

“Lysimachia species are used as food plants by the larvae of some butterflies and moths, including the dot moth, grey pug, lime-speck pug, small angle shades, and v-pug.”   Chipmunks eat these fruits as a minor portion of their diet.

“Bees of the genus Macropis are specialized to pollinate oil-producing Lysimachia plants. These bees use exclusively Lysimachia floral oils for building their nests and provisioning cells. Lysimachia floral-specific chemicals are strong attractors for Macropis nuda and Macropis fulvipes bees that are seldom found in other plant genera.”

Do not confuse this with another “starflower,” Borago officinalis, from which an oil is produced commercially.

Reference: text in italics and quotes is from the Wikipedia, “Lysimachia.”

Copyright 2023 Michael Stephen Wills All Rights Reserved

First Release of 2023

Advice for releasing your monarch butterfly

We let our first monarch butterfly rest overnight, until noon of the following day.

Pam did better with tracking the monarch’s flight, so I used video. Thanks Pam!

I delay butterfly release when:

  • the forecasted high temp is below 65° F (18° C) or 60° F (16° C) if sunny and calm.  When no other option exists, 50-59° F and sunny is borderline acceptable.
  • the forecast calls for rain.  A light rain is not a problem for butterflies with day-old dry wings, but it’s not a good release option for first-day newborns.
  • the butterfly emerges too late in the day.  I keep it overnight if the butterfly cannot get 3 hours warming of flight muscles in the sun.
  • there are storms in the forecast.  I wait when there are less than four (4) hours of good weather projected.  When extreme weather (like a hurricane) is forecast within twenty four (24) hours, I keep the butterfly safe until the storm passes.  Twenty four (24) or more hours should provide ample time to find shelter from the storm.
  • I am not sure about a release.  Keeping a butterfly overnight is acceptable. In fact, a butterfly’s wings are stronger on day two (2), providing better capability to escape predators.  A butterfly can easily hang from the mesh cage roof overnight. I do not worry about feeding a butterfly unless a second night of shelter is necessary.

As the moment of emergence approaches, the skin of a Monarch chrysalis becomes translucent to reveal the butterfly compressed into that small space.
Copyright 2023 Michael Stephen Wills All Rights Reserved

Charles Atwood Memorial

We learned so much from this new sign

This year, 2023, an informational sign was installed next to the Charles Atwood memorial at the foot of the stone stairs leading to the Gorge Trail.

Charles Atwood The Father of Fillmore Glen

From Botanist to Physician and Pharmacist: born in Summerhill, Cayuga Coun ty, New York State, Charles Atwood graduated from Cornell University in 1878 with a degree in Botany. He then obtained a medical degree in 1881 from the University of Iowa. He moved to Moravia, Cayuga County, to set up practice. In addition to being a physician, he was one of the first pharmacists to be licensed in New York State. A Passion for Plants. Although Dr. Atwood worked full time as a pharmacist, he retained his passion for botany. Atwood was very interested in the parcel of land that became Fillmore Glen Park, due to the rich botanic life found there. Atwood worked long and hard to establish Fillmore Glen State Park to preserve not only its plant life, but also the cascading waterfalls and unique geological formations.”

“Atwood’s Quest to Promote Fillmore Glen. June 1919: Dr. Atwood jointed the Moravia Chamber of Commerce and in October became the first representative to the Finger Lakes Association. April 1921: the Moravia Chanbmer of Commerce and the Finger Lakes Association pledged to name the local park after Millard Fillmore, the 13th president of the United States, who was born in Summerhill. They planned a dedication ceremony for July. April, May, June 1921: Businessmen of Moravia organized a volunteer force to clear underbrush, remove dead trees and create walking paths for the July event. July 4, 1921: Ten thousand people came to Moravia to enjoy the dedication ceremony, band concerts, speeches, vaudeville acts, athletic events, dancing, fireworks and a parade. October 1923: With the Moravia Chamber of Commerce, Dr. Atwood submitted a proposal for the glen to become a state park. April 1924: The state legislature created the New York State Council of Parks. Dr. Atwood was appointed a commissioner for the Finger Lakes Region. June 1925: Fillmore Glen officially became a state park with 39 acres. Seven different parcels totaling 144 acres were added in 1926. The park has continued to grow to its current size of almost 1,000 acres. October 1928: After Dr. Atwood’s death in June, several hundred people attended the dedication of a memorial to honor the ‘Father of Fillmore Glen.'”

Reference: text in italics and quotes is from the new Charles Atwood Sign.

Copyright 2023 Michael Stephen Wills All Rights Reserved

First Emergence of 2023

Monarch butterfly and chrysalis

Our grandchildren spent the day with us, the last week of their summer before school begins. This July I had improved on my Monarch collection from 2022, when 9 butterflies were released, by two (2) caterpillars for a total of eleven (11) raised over several weeks to the chrysalis stage. When leaving to pick up the children for an outing one chrysalis skin had turned clear, a sign the enclosed butterfly is close to emerging. We returned from an outing for lunch to find this chrysalis unopened, so we checked now and then for progress. Four hours later, just as their Mom arrived for them, the grandchildren and everyone witnessed this event. What luck!!

Migrating monarchs soar at heights of up to 1,200 feet. As sunlight hits those wings, it heats them up, but unevenly. Black areas get hotter, while white areas stay cooler. The scientists believe that when these forces are alternated, as they are with a monarch’s white spots set against black bands on the wings’ edges, it seems to create micro-vortices of air that reduce drag—making flight more efficient.

Monarchs begin leaving the northern US and Canada in mid-August. They usually fly for 4-6 hours during the day, coming down from the skies to feed in the afternoon and then find roosting sites for the night.  Monarchs cannot fly unless their flight muscles reach 55ºF. On a sunny day, these muscles in their thorax can warm to above air temperature when they bask (the black scales on their bodies help absorb heat), so they can actually fly if it is 50ºF and sunny. But on a cloudy day, they generally don’t fly if it is below 60ºF.

“Migrating monarchs use a combination of powered flight and gliding flight, maximizing gliding flight to conserve energy and reduce wear and tear on flight muscles.  Monarchs can glide forward 3-4 feet for every foot they drop in altitude.  If they have favorable tail or quartering winds, monarchs can flap their wings once every 20-30 feet and maintain altitude. Monarchs are so light that they can easily be lifted by the rising air. But they are not weightless. In order to stay in the air, they must move forward while also staying within the thermal. They do this by moving in a circle. The rising air in the thermal carries them upward, and their overall movement ends up being an upward spiral. Monarchs spiral upwards in the thermal until they reach the limit/top of the thermal (where the rising air has cooled to the same temperature as the air around it). At that point, the monarch glides forward in a S/SW direction with the aid of the wind. It glides until it finds another thermal and rides that column of rising air upwards again.”

This video includes an interview with Michael Wills about raising Monarch butterflies and this stage of the lifecycle. Video by Pam Wills using an IPhone 8

Reference: text in italics and quotes is from one of two online articles. “The monarch butterfly’s spots may be its superpower” National Geographic, June 2023 and “Fall Migration – How do they do it?” by Candy Sarikonda, September 2014.

Copyright 2023 Michael Stephen Wills All Rights Reserved

View from the Quarry

Views while entering Machu Picchu

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I set up a Manfrotto BeFree tripod with the Canon EOS 1DS Mark III mounted with the Canon EF 70-300 f/4-5.6 L IS USM lens to capture our experience while entering Machu Picchu.

The eastern shoulder of Huayna Picchu is left and the Urubamba river curves around it. Leading the eye to the distance is an uninhabited andean valley covered in rain forest.

Copyright 2023 Michael Stephen Wills All Rights Reserved

Quarry on the Machu Picchu Ridge

The site itself may have been intentionally built on fault lines to afford better drainage and a ready supply of fractured stone.

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“The central buildings of the Machu Picchu Sanctuary use the classical Inca architectural style of polished dry-stone walls of regular shape. The Incas were masters of this technique, called ashlar, in which blocks of stone are cut to fit together tightly without mortar.”

The site itself may have been intentionally built on fault lines to afford better drainage and a ready supply of fractured stone. ‘Machu Picchu clearly shows us that the Incan civilization was an empire of fractured rocks’.

Inca quarried the rock for Machu Picchu from the mountain ridge itself.

“The section of the mountain where Machu Picchu was built provided various challenges that the Incas solved with local materials. One issue was the seismic activity due to two fault lines. It made mortar and similar building methods nearly useless. Instead, the Inca mined stones from the quarry at the site, lined them up and shaped them to fit together perfectly, stabilizing the structures. Inca walls have many stabilizing features: doors and windows are trapezoidal, narrowing from bottom to top; corners usually are rounded; inside corners often incline slightly into the rooms, and outside corners were often tied together by “L”-shaped blocks; walls are offset slightly from row to row rather than rising straight from bottom to top.”

Main Temple survived multiple earthquakes

“Heavy rainfall required terraces and stone chips to drain rainwater and prevent mudslides, landslides, erosion, and flooding. Terraces were layered with stone chips, sand, dirt, and topsoil, to absorb water and prevent it from running down the mountain. Similar layering protected the large city center from flooding. Multiple canals and reserves throughout the city provided water that could be supplied to the terraces for irrigation and to prevent erosion and flooding.”

Agricultural Terraces

“The Incas never used wheels in a practical way, although their use in toys shows that they knew the principle. The use of wheels in engineering may have been limited due to the lack of strong draft animals, combined with steep terrain and dense vegetation. The approach to moving and placing the enormous stones remains uncertain, probably involving hundreds of men to push the stones up inclines. A few stones have knobs that could have been used to lever them into position; the knobs were generally sanded away, with a few overlooked.”

Reference: text in italics and quotes is from the Wikipedia “Machu Picchu”, web page.

Copyright 2023 Michael Stephen Wills All Rights Reserved