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Anit [1.1K]
4 years ago
11

Which choice below lists the biomes in order from lowest average temperatures to highest average temperatures?

Biology
2 answers:
Anni [7]4 years ago
7 0

Answer:

taiga, temperate deciduous forest, savanna

DiKsa [7]4 years ago
4 0

Answer:

C. taiga, temperate deciduous forest, savanna

Explanation:

The Taiga, also called the Coniferous Forest or Boreal Forest, represents a type of vegetation typical of the high altitudes found in the northern hemisphere of the globe more precisely between the Tundra and the Temperate Forest. The occurrence of Taiga is typical of the temperate and Antarctic zones of the globe, so it is located in the regions of subarctic (subpolar) climate, that is, basically very cold (low temperatures) and dry (low humidity).

Temperate deciduous forest is a biome found in central Europe, southern Australia, Chile, east Asia, mainly in Korea, Japan, and some parts of China and the eastern United States. Temperate forests have a temperate climate, with the four seasons well defined. Summer is hot and humid, while winter is cold and may have snow.

Savannas correspond to a type of vegetation cover, formed predominantly by undergrowth, such as grasses, herbs, shrubs and sparse trees. Savannas are generally flat biomes found almost anywhere on the planet: on the African, American and Oceanian continents. The predominant climate in the savannas is predominantly tropical, with two seasons one dry and one wet, located in the intertropical zone of the planet, which receives strong solar incidence throughout the year. With an average annual temperature between 22 - 24ºC, in some places it can reach 40ºC.

If we were to rank these three biomes in order, from the lowest average temperatures to the highest average temperatures, the order would be:  taiga, temperate deciduous forest, savanna

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Explain how a testcross can provide evidence for or against linkage.
MrRa [10]

Answer:

Testcrosses clarify linkage because each phenotypic class of progeny corresponds to each gamete type produced by the dihybrid parent.

Explanation:

  • A test cross involves the crossing of an individual with another phenotypically recessive individual so as to determine the zygosity of the former by analyses of the proportions of offspring phenotypes.
  • In order to determine linkage, the test cross shows that if the parentals are more than the recombinants, we can say that the two genes such as b and c  are genetically linked and therefore, they must be on the same chromosome.
  • Also, the test-crosses help to find out which alleles came from which parent.
  • By setting up testcrosses in which one parent is homozygous for the recessive alleles of both genes,we can analyze the gene combinations received in the gametes from the other, doubly heterozygous parent.
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3 years ago
What produces the hormone that promotes maturation of t cells?
castortr0y [4]
Your lymph nodes or "thymus" promotes the maturation of t cells.
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4 years ago
Myofilaments used during muscle contractions will return to their resting state when the
zimovet [89]
The Myofilaments being used on a muscle contraction would return to their resting state when the sarcomeres would relax. The Sarcomeres are the individual contractile of the myofibrils which are then considered as the tiny rod like elements that are found within the muscle cells.
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3 years ago
When utilizing a KO mouse model, you want to see if introducing the dystrophin gene can rescue the DMD mouse model. Propose a me
-BARSIC- [3]
<h2>CRISPR/Cas9</h2>

Explanation:

CRISPR can be used to reintroduce dystrophin back into the KO mouse

  • CRISPR stands for Clustered Regularly Interspaced Short Palindromic Repeats and is used to for gene editing
  • CRISPR/Cas-mediated genome editing has been shown to permanently correct DMD mutations and restore dystrophin function in mouse models
  • Germline editing by injecting zygotes with CRISPR/Cas9 editing component was first done in mdx mice by correcting the mutated exon 23
  • Postnatal editing of mdx mice was then achieved using recombinant adeno-associated virus to deliver CRISPR/Cas9 genome editing components and correct the dystrophin gene by skipping or deleting the mutated exon 23 in vivo
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4 0
4 years ago
Use your knowledge of microorganisms to complete this table.
Vladimir79 [104]

Bacteria are prokaryotes, fungi and protists are eukaryotic organisms and viruses are not living.

<h3>In what ways it is possible to distinguish prokaryotes from eukaryotes?</h3>

Bacteria (e.g., E coli) are prokaryotic organisms whose cells don't have nuclei or membrane bound organelles, reproduce by asexual ways such as binary fission, and they are beneficial as descomposers.

Some common diseases caused by bacteria include tetanus (Clostridium tetani), pneumonia (Klebsiella pneumoniae), cholera (Vibrio cholerae), etc.

Moreover, protists (e.g. algae) and Fungi (e.g. Saccharomyces cerevisiae) are eukaryotic organisms that have cell nuclei and organelles, can reproduce by asexual reproduction, can perform photosynthesis (algae) or acts as decomposers (fungi).

Some common diseases caused by protists/protozoans include malaria (Plasmodium), sleeping sickness (Trypanosoma), etc.

Some common diseases caused by fungi include aspergillosis (Aspergillus), candidiasis (Candida albicans), etc.

Finally, viruses are not living because they need a host to survive and are also useful as vectors to design gene therapy techniques.

Some common diseases caused by viruses include AIDS (HIV retrovirus), dengue fever (Flaviviridae viruses), etc.

Bacteria are used to produce insulin and other natural medications, viruses are used as carriers for the treatment of diseases,  protozoans can enhance the fertility of soils and fungi are employed in the preparation of foods.

In conclusion, bacteria are prokaryotes, fungi and protists are eukaryotic organisms and viruses are not living.

Learn more about the kingdoms of life here:

brainly.com/question/1275968

#SPJ1

8 0
2 years ago
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