North Dakota
North Dakota Angus University Feed-out begins in June
Cattle producers will have an opportunity to see how Angus‐sired cattle from their operation perform in a feedlot during the North Dakota Angus University calf feed‐out program this summer and fall.
North Dakota State University’s Carrington Research Extension Center is partnering with the North Dakota Angus Association to sponsor the North Dakota Angus University Feed-out. This is the 13th year of the program.
Ranchers can consign steers to the program by contacting the Carrington Research Extension Center. Consigned steers should be at least 50% Angus genetics and weigh between 800 and 900 pounds at the time of delivery. Consigned cattle should be delivered to the center feedlot the week of June 3-7.
Ranchers who consign cattle pay the feeding costs based on the average cost of gain, plus veterinary costs and a modest yardage charge. The center will carry the feed, veterinary and yardage costs until the cattle are marketed. After the cattle are marketed, costs and all applicable fees are deducted from the sale price without an interest charge. Consigners of the program must also be North Dakota Angus Association members.
Participants in the North Dakota Angus University will receive periodic progress reports on their calves’ performance, as well as a final report on the overall performance, efficiency and carcass traits for their calves.
In 2023, calf performance was measured during a 123-day feeding study. Steers had an average daily gain of 4.0 pounds per day and a dry-matter feed conversion of 7.1 pounds of feed to pound of gain. Shrunk live weight at harvest averaged 1,440 pounds and carcass weight averaged 937 pounds. The cattle graded 100% U.S. Department of Agriculture Choice or better with 81.4% meeting Certified Angus Beef specifications and 24.5% Prime quality grade.
The North Dakota Angus Association offers $1,500 in prizes to the top three carcasses at the end of the feed-out. These prizes are sponsored by Neogen, Western Ag Reporter, and LaMoure Feed and Seed.
To consign a group of cattle or for more information, contact Carrington Research Extension Center animal scientist Colin Tobin at 701-652-2951 or
colin.tobin@ndsu.edu
, Extension livestock systems specialist Karl Hoppe at 701‐652‐2951 or
karl.hoppe@ndsu.edu
, or North Dakota Angus Association feed-out program chair Sydney Glasoe Caraballo at 678-989-7189.
North Dakota
Wheeler-Thomas scores 21 as North Dakota State knocks off Cal State Bakersfield 80-69
BAKERSFIELD, Calif. (AP) — Damari Wheeler-Thomas’ 21 points helped North Dakota State defeat Cal State Bakersfield 80-69 on Thursday.
Wheeler-Thomas had three steals for the Bison (8-3). Markhi Strickland scored 15 points while shooting 6 of 11 from the field and 3 for 6 from the free-throw line and grabbed five rebounds. Andy Stefonowicz went 4 of 7 from the field (3 for 4 from 3-point range) to finish with 13 points.
Ron Jessamy led the way for the Roadrunners (4-7) with 18 points, six rebounds, two steals and four blocks. CJ Hardy added 13 points. Jaden Alexander also recorded eight points and two steals.
___
The Associated Press created this story using technology provided by Data Skrive and data from Sportradar.
North Dakota
Scientists discover ancient river-dwelling mosasaur in North Dakota
Some 66 million years ago, a city bus-sized terrifying predator prowled a prehistoric river in what is now North Dakota.
This finding is based on the analysis of a single mosasaur tooth conducted by an international team of researchers from the United States, Sweden, and the Netherlands.
The tooth came from a prognathodontine mosasaur — a reptile reaching up to 11 meters long. This makes it an apex predator on par with the largest killer whales.
It shows that massive mosasaurs successfully adapted to life in rivers right up until their extinction.
Isotope analysis
Dating from 98 to 66 million years ago, abundant mosasaur fossils have been uncovered in marine deposits across North America, Europe, and Africa.
However, these marine reptile fossils have been rarely found in North Dakota before.
In this new study, the large mosasaur tooth was unearthed in a fluvial deposit (river sediment) in North Dakota.
Its neighbors in the dirt were just as compelling: a tooth from a Tyrannosaurus rex and a crocodylian jawbone. Interestingly, all these fossilized remains came from a similar age, around 66 million years old.
This unusual gathering — sea monster, land dinosaur, and river croc — raised an intriguing question: If the mosasaur was a sea creature, how did its remains end up in an inland river?
The answer lay in the chemistry of the tooth enamel. Using advanced isotope analysis at the Vrije Universiteit in Amsterdam, the team compared the chemical composition of the mosasaur tooth with its neighbors.
The key was the ratio of oxygen isotopes.
The mosasaur teeth contained a higher proportion of the lighter oxygen isotope than is typical for mosasaurs living in saltwater. This specific isotopic signature, along with the strontium isotope ratio, strongly suggests that the mosasaur lived in a freshwater habitat.
Analysis also revealed that the mosasaur did not dive as deep as many of its marine relatives and may have fed on unusual prey, such as drowned dinosaurs.
The isotope signatures indicated that this mosasaur had inhabited this freshwater riverine environment. When we looked at two additional mosasaur teeth found nearby, slightly older sites in North Dakota, we saw similar freshwater signatures. These analyses show that mosasaurs lived in riverine environments in the final million years before going extinct,” explained Melanie During, the study author.
Transformation of the Seaway
The adaptation occurred during the final million years of the Cretaceous period.
It is hypothesized that the mosasaurs were adapting to an enormous environmental shift in the Western Interior Seaway, the vast inland sea that once divided North America.
Increased freshwater influx gradually transformed the ancient sea from saltwater to brackish water, and finally to mostly freshwater, similar to the modern Gulf of Bothnia.
The researchers hypothesize that this change led to the formation of a halocline: a structure where a lighter layer of freshwater rested atop heavier saltwater. The findings of the isotope analyses directly support this theory.
The analyzed mosasaur teeth belong to individuals who successfully adapted to the shifting environments.
This transition from marine to freshwater habitats (reverse adaptation) is considered less complex than the opposite shift and is not unique among large predators.
Modern parallels include river dolphins, which evolved from marine ancestors but now thrive in freshwater, and the estuarine crocodile, which moves freely between freshwater rivers and the open sea for hunting.
Findings were published in the journal BMC Zoology on December 11.
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