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Eduardwww [97]
3 years ago
10

A softshell turtle has a flattened more hydrodynamic shell that allows it to swim much faster in the water than turtles that hav

e a high domes shell. What type of adaptation would this be?
Biology
1 answer:
charle [14.2K]3 years ago
5 0

Answer:

hmm i would say its natural selection but Turtles, like all animals, must acquire resources from their habitat, avoid predators and reproduce. Most turtles are equipped with a rigid shell that protects them from predators and plays a big role in their survival strategy. By contrast, the softshell turtles, family Trionychidae, have abandoned the protection of the hard shell, and evolved a lifestyle that compensates for this loss.Softshell turtles are very aquatic, and rarely leave the water. They prefer to live in sandy- or muddy-bottomed waters, where they will spend long periods buried in the substrate. Their long necks and snorkel-like noses allow them to access the surface to breathe. Different species and subspecies of the family show preferences for different types of bodies of water. For instance, the Florida softshell turtle (Apalone ferox) prefers quiet, still bodies of water, while the smooth softshell turtle (Apalone muticus) prefers moving waters.

Feeding Strategy

Softshell turtles are carnivorous, and consume fish, crustaceans, amphibians, insects and any other creatures small enough to be eaten. Softshell turtles are very graceful swimmers, and are quite adept at catching fish and other creatures that they actively pursue. Additionally, softshell turtles will lie in wait, and ambush prey items that venture within striking range. These turtles have an amazingly fast strike, and their beak-like mouth is exceptionally strong, so food does not often escape once captured.

Repro

Softshell turtles mature slowly: while males may be ready to breed by their fourth year, females take seven to nine years to mature. The adult turtles breed in the spring and egg deposition occurs during June and July. Females leave the water to deposit the eggs in shallow pits dug into sandy beaches. As the eggs require heat for development, beaches with full sun exposure are preferred. The eggs develop over a period of 60 to 90 days, after which the young will break out of the eggs using their temporary egg-tooth and front legs.

Winter Dormancy

Soft shell turtles hibernate from late autumn until spring. When the time comes they will bury themselves in the mud or sand at the bottom of a river or lake, and go to sleep for the winter. Though food is not necessary during this dormant period, the turtles still require oxygen, albeit at a reduced rate. To supply the remaining oxygen demand, these turtles engage in pharyngeal breathing. Pharyngeal breathing is carried out by gas-exchanging structures in the turtle's mouth and throat. This type of breathing can't keep up with the oxygen demands of an active turtle, but can supply a dormant turtle with enough oxygen to survive.

Avoiding Predators

One of the biggest challenges for soft shell turtles is that they lack a hard, protective shell. While it is true that the soft shell's shell is leathery rather than , they are still protected by an impressive rib cage. Additionally, soft shell turtles often achieve large sizes, which in itself offers protection

Explanation:

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Processing of the mRNA begins before transcription of eukaryotic mRNA\'s is complete. The end of the mRNA is prepared for recogn
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Answer:

The correct answer is

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Explanation:

The eukaryotic mRNA is processed or modified with a guanosine cap at 5' end and poly-A tail at 3'end before translation.

The process of adding a cap at 5' end of a growing mRNA is known as capping. The process of capping adds guanosine nucleotide at the 5'-end of mRNAs by 5′ to 5′ triphosphate linkage. This guanosine is modified by methylating at the  7th position of the atom. The mRNA is further modified by methylation of first two ribose sugars at their 2′ hydroxy-groups. This capping is advantageous to the sequence as it protects the end from phosphatases and nucleases.

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4 0
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First identify the gametes. use pink labels to identify the male and female gamete types and white labels to identify the gamete
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I found the whole exercise on the internet. Attached is the scheme with labels for the gametes, f2 generation, and respective frequencies.

For the gametes position, on the left pink square on the male gametes side you should put a capital G, <span>and on the right pink square on the male gametes side you should put a small g, as</span> the only two possible offsprings that are showing is "GG" under the left male gamete and "gg" under the right male gamete. On the top pink square on the female gametes side you should put a capital G, and on the bottom pink square on the female gametes side you should put a small g, as the only two possible offsprings that are showing is "GG" on the same line as the top female gamete and "gg" on the same line as the bottom female gamete.
As for the frequencies of the gametes, you should put the white label that marks 1/2 by the side of each gamete.
Related to the F2 generation, the top right and bottom left pink squares should have the label with a capital G and small g - "Gg" which reflects the combination of the male gamete on its line with the female gamete also on its line.
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The totals would be that GG is 1/4, Gg is 1/2 (1/4+1/4), and gg is also 1/4.

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