The depressor protein blocks the genes from making mRNA.
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During gameteformation, the individual alleles that comprise a gene must separate. The correct option is C.
As per Mendel's law of segregation, "during gameteformation, every gene segregates from each other so that each gameteconveys only one allele for each gene." The secondlaw of inheritance is the law of segregation.
During gameteformation, the individual alleles that comprise a gene must separate from each other in a particular way.
Thus, the correct option is C.
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The missing options of the question are:
Answer: The answer is C, the individual alleles that make up the gene must SEGREGATE (which means separate) during gamete formation, hence the name “law of segregation”
Explanation: Hope this helps
Food chains show a single path of energy in an ecosystem, and food webs show overlapping pathways of energy in that ecosystem.
Food chain shows the relationship between organisms by the food they eat.
A food web is the natural interconnection of food chains and a graphical representation of what-eats-what in an ecological community.
Food webs show interconnection of food chains about the different animals in an ecosystem and different energy transfer processes.
Thus, food chains show a single path of energy in an ecosystem, and food webs show overlapping pathways of energy in that ecosystem.
Learn more about food chains and food web here: brainly.com/question/2179
Answer:
Food chains show a single path of energy in an ecosystem, and food webs show overlapping pathways of energy in that ecosystem.
Explanation:
Unlike food chains, food webs show more detailed information about the different animals in an ecosystem and show multiple energy transfers to different animals from the same sources.
By looking at these examples, you will notice a dramatic difference in detail:
Answer:
Cold, dense air near the poles sinks and moves toward the equator, where it is heated. After this, the warm air rises and moves back to the poles where it is cooled again.
Explanation:
In the poles, there are high-pressure zones due to the low temperature, and the cold and dense air. These high-pressure centres send winds or air to higher latitudes toward the equator. While this is happening, they get warmed as they travel and they start accumulating humidity. When they reach approximately 60 degrees latitude, they meet with warm winds that are coming from the horses' latitude (30 degrees latitude). They both ascend to the tropopause where they get cooled. As they cannot maintain humidity, it precipitates. Once done this, the winds move back to the poles, where they get cooler again, and so the cycle continues.
This cycle is known as the polar cell, and together with the Ferrell cell and the Hardley cell, they help modulate the clime.
Atmospheric convection involves the circulation of air, where cold, dense air sinks near the poles and moves towards the equator, where it is heated. The warm air then rises and moves back towards the poles to complete the cycle.
The process described in the question is known as atmospheric convection. Cold, dense air near the poles sinks and moves towards the equator, where it is heated. The warm air then rises and moves back towards the poles, where it is cooled again. This continuous circulation of air helps distribute heat and energy throughout the Earth's atmosphere.
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