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Inga [223]
3 years ago
7

Infections with Gram negative bacteria are considered particularly serious. Gram-negative bacteria share a virulence factor that

can cause severe inflammation, which compounds the inflammation normally occurring during bacterial infection, complicating treatment and recovery.
A. True
B. False
Biology
2 answers:
Paladinen [302]3 years ago
8 0

Answer:

True.

Explanation:

Gram negative bacteria do not retain crystal violet color during gram staining.

Gram negative bacteria Infections are very serious.

Gram negative bacteria share a virulence factor that cause severe information this is because their outer membrane is hidden by a capsule or slimelayer which hides the antigens and act as camouflage. The compounds produce inflammation during bacterial Infection, complicating treatment and recovery. They are resistant to drugs and antibiotics.

Examples of gram negative Infections are pneumonia, wound surgical site Infections, menigitis e.t.c.

notka56 [123]3 years ago
5 0

Answer:

True

Explanation:

Gram negative bacteria produce virulent factors at host pathogen interface via membrane vessicle trafficking as bacteria outer member vesicle for nutrition, invasion and other cell communication.

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Pedigrees are used to help geneticists understand how traits are inherited between generations. The Romanovs, a Russian royal fa
inysia [295]

Answer:

Waldemar carried the recessive allele.

Explanation:

The carrier is the individual that has the affected allele or mutation but does not express the trait, or might express it in different levels. Although, as the person carries the mutation, she or he might transmit the genetic mutation associated with a disease to the progeny.  In general, these diseases are inherited as recessive traits.

So, in the exposed example we know that:

  • hemophilia is a sex-linked disorder
  • hemophilia is determined by a recessive allele on the X chromosome.
  • Irene is a carrier.
  • Her husband is not a carrier.
  • Her children Waldemar and Henry have hemophilia.

If Irene is a carrier, this means that she is heterozygous and that her genotype is X⁺X⁻ (Being the symbol + the dominant allele, and - the recessive one for that expresses the trait)

The fact that Irene´s husband is not a carrier means that his genotype is X⁺Y

Their boys Waldemar and Henry have hemophilia, so both their genotypes are X⁻Y

The best evidence to prove that Irene was heterozygous for hemophilia is that Alice carried the recessive allele.

  • Alice is Irene´s Mother, and she is a carrier as well. Irene´s father, Louis, is not a carrier, so she could have inherited a dominant allele from her father and a recessive allele from her mother, X⁺X⁻, or she could have inherited two dominant alleles from both her parents X⁺X⁺. This is not proof enough of Irene being heterozygous.
  • The fact that Alexandra, Irene´s sister, was also a carrier does not say anything about Irene´s genotype, because they could both share the same genotype or not. This is not proof of Irene being heterozygous.
  • Frederick (her brother) was hemophilic.  He received a recessive allele from Alice, but this does not say anything about Irene´s genotype.  
  • The fact that Waldemar (her son) was hemophilic, is the best evidence to prove that Irene was heterozygous for hemophilia. Walderman received the Y chromosome from his father and an X chromosome from his mother. The X chromosome that he received from his mother carried the recessive allele for the trait, and this is why he had hemophilia. This means that there is no best evidence for Irene´s genotype than her son´s genotype.

 

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NARA [144]

Answer:

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sergey [27]

Answer:

All of the above

Explanation:

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This is true because humans can only know so much due to unexplored lands, water depth, and evidence of extinction being hidden.

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