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SARS-CoV-2

life science Maturity 11-13

A tiny germ makes people sick.

Novel Coronavirus SARS-CoV-2 (50960620707) (cropped).jpg
Novel Coronavirus SARS-CoV-2 (50960620707) (cropped).jpg
It can spread through the air. It moves when we cough or sneeze. This germ can travel from animals to us. It can make us feel unwell.
SARS-CoV-1 and 2 - mammals as carriers.png
SARS-CoV-1 and 2 - mammals as carriers.png
We must stay safe. Do you know how to wash your hands?

57 words

A tiny germ makes people sick.

Novel Coronavirus SARS-CoV-2 (50960620707) (cropped).jpg
Novel Coronavirus SARS-CoV-2 (50960620707) (cropped).jpg
It is called a virus. This virus can spread through the air. It travels when we talk, breathe, or sneeze.
SARS-CoV-1 and 2 - mammals as carriers.png
SARS-CoV-1 and 2 - mammals as carriers.png
The germ might come from bats. It can also spread to other animals. Some animals like cats can get sick too. Soap helps to stop the germ. It can break the germ apart. We can stay safe by being careful.

78 words

SARS-CoV-2 is a tiny germ called a virus.

Novel Coronavirus SARS-CoV-2 (50960620707) (cropped).jpg
Novel Coronavirus SARS-CoV-2 (50960620707) (cropped).jpg
It causes the sickness known as COVID-19. This virus was first found in Wuhan, China.
NOVO-NEW-新.2019-nCoV.jpg
NOVO-NEW-新.2019-nCoV.jpg
Scientists think it may have come from bats. It might have moved from bats to humans through another animal.
SARS-CoV-1 and 2 - mammals as carriers.png
SARS-CoV-1 and 2 - mammals as carriers.png

The virus spreads very easily between people. It travels through the air in small drops. These drops come out when we breathe, talk, or sneeze. People can also get sick by touching surfaces. The virus can live on plastic for up to three days. It can also live on metal for that long. However, it does not live long on cardboard. Soap helps to stop the virus. Soap breaks apart the outer layer of the germ.

Many animals can also catch this virus. This includes cats, ferrets, and even rabbits. Some people can feel sick right away. Other people may not feel sick at all. Even if they feel fine, they can still spread the germ to others. This can happen a few days before they feel ill.

183 words

SARS-CoV-2 is a tiny germ called a virus.

Novel Coronavirus SARS-CoV-2 (50960620707) (cropped).jpg
Novel Coronavirus SARS-CoV-2 (50960620707) (cropped).jpg
It is the cause of the illness known as COVID-19. This virus belongs to a large family called coronaviruses. It is a positive-sense single-stranded RNA virus. This means it has a single strand of genetic material. The virus is very contagious among humans. It caused a global pandemic that started in late 2019.
NOVO-NEW-新.2019-nCoV.jpg
NOVO-NEW-新.2019-nCoV.jpg

To start an infection, the virus must enter human cells. It does this by binding to a specific protein. This protein is called ACE2. ACE2 is a membrane protein that helps regulate a system in the body. Once it attaches, the virus can move into the body. Research shows the nasal cavity is often the first place it lands. From there, it can move down into the lungs.

6VSB spike protein SARS-CoV-2 monomer in homotrimer.png
6VSB spike protein SARS-CoV-2 monomer in homotrimer.png

Scientists first identified this virus in Wuhan, China. In January 2020, the World Health Organization used a temporary name. They called it 2019 novel coronavirus or 2019-nCoV. They did this to follow rules about naming. They avoid using names of places or animals. On February 11, 2020, the official name was chosen. The name is severe acute respiratory syndrome coronavirus 2.

NOVO-NEW-新.2019-nCoV.jpg
NOVO-NEW-新.2019-nCoV.jpg

There are many facts about how this virus lives and moves. The virus is airborne and travels in tiny droplets. These droplets come from breathing, talking, or sneezing. It can also live on different surfaces for a while. It can stay on plastic or stainless steel for three days. It lives on copper for only four hours. It does not last on cardboard for more than one day.

Coronavirus virion structure.svg
Coronavirus virion structure.svg

Many living things are related to this virus. Scientists believe it has a zoonotic origin. This means it likely came from animals. The closest known relative is a virus found in bats. This relative is called BANAL-52. It was found in bats in Laos. Some researchers think an intermediate host helped the virus move to humans. This means the virus might have moved from a bat to another animal first.

SARS-CoV-1 and 2 - mammals as carriers.png
SARS-CoV-1 and 2 - mammals as carriers.png

352 words

Severe acute respiratory syndrome coronavirus 2, or SARS-CoV-2, is a highly contagious virus.

Novel Coronavirus SARS-CoV-2 (50960620707) (cropped).jpg
Novel Coronavirus SARS-CoV-2 (50960620707) (cropped).jpg
It is the biological cause of the disease known as COVID-19. This virus belongs to the species Betacoronavirus pandemicum. This species also includes SARS-CoV-1, the virus behind the 2002–2004 SARS outbreak. SARS-CoV-2 is classified as a positive-sense single-stranded RNA virus. This means it carries its genetic instructions in a single strand of RNA. The virus triggered a global pandemic that began in late 2019.
NOVO-NEW-新.2019-nCoV.jpg
NOVO-NEW-新.2019-nCoV.jpg

To begin an infection, the virus must enter human cells. It achieves this by binding to a specific membrane protein called ACE2. This protein, known as angiotensin-converting enzyme 2, regulates the renin–angiotensin system. Once the virus attaches to ACE2, it can enter the body. Research suggests the nasal cavity is the primary initial site of infection. From there, the virus can move into the lungs through aspiration. This process creates an infection gradient in the pulmonary epithelial cells. The virus often targets ciliated cells and type 2 pneumocytes in the airways.

6VSB spike protein SARS-CoV-2 monomer in homotrimer.png
6VSB spike protein SARS-CoV-2 monomer in homotrimer.png

SARS-CoV-2 spreads primarily through the air between people. It travels via aerosols and respiratory droplets exhaled during breathing, talking, or coughing. Some studies suggest that simply speaking can be a far-reaching mode of transmission. It is thought that between 200 and 800 infectious virions can start a new infection. The virus can also spread through indirect contact with contaminated surfaces. It can remain viable on plastic or stainless steel for up to three days. However, it survives on cardboard for only one day. On copper surfaces, it stays active for only four hours.

Coronavirus virion structure.svg
Coronavirus virion structure.svg

The virus was first identified in Wuhan, Hubei, China. In January 2020, the World Health Organization (WHO) used the provisional name 2019 novel coronavirus, or 2019-nCoV. This followed WHO guidance to avoid using geographic locations or animal species in names. On February 11, 2020, the International Committee on Taxonomy of Viruses adopted the official name. The WHO designated the outbreak a public health emergency of international concern from January 30, 2020, to May 5, 2023. Scientists use the term "spillover" to describe how the virus moved from animals to humans. This event likely occurred in late 2019 due to low genetic diversity.

NOVO-NEW-新.2019-nCoV.jpg
NOVO-NEW-新.2019-nCoV.jpg

Scientists believe SARS-CoV-2 has a zoonotic origin. This means it emerged from an animal source. The closest known relative is the BANAL-52 bat coronavirus found in Laos. This virus shows a 96.8% resemblance to SARS-CoV-2. Another closely related virus is RaTG13, which has a 96.1% resemblance. While bats are likely the natural reservoir, the exact path is still being studied. It is unclear if the virus moved directly from bats or through an intermediate host. Some researchers investigated pangolins, but their virus samples were too genetically distant.

SARS-CoV-1 and 2 - mammals as carriers.png
SARS-CoV-1 and 2 - mammals as carriers.png

Understanding the timing of infection is vital for public health. People can spread the virus even before they feel sick. This is known as pre-symptomatic shedding. One study found patients began shedding the virus four to five days before symptoms appeared. Some infections are also asymptomatic, meaning the person shows no symptoms at all. A meta-analysis found that 17% of infections are asymptomatic. These individuals were 42% less likely to transmit the virus compared to others. However, the total amount of virus a person sheds can vary greatly.

Novel Coronavirus SARS-CoV-2 (49597020718).jpg
Novel Coronavirus SARS-CoV-2 (49597020718).jpg

There is ongoing research regarding reinfection and long-term immunity. Some reports show that people can be infected more than once. For example, a man in Hong Kong tested positive again 142 days after his first infection. In another case, a man in Nevada experienced a more severe second infection. Genomic analysis showed these were different clades, or groups, of the virus. These findings suggest that herd immunity may not stop the virus entirely. It also means that vaccines may not provide lifelong protection. This complexity makes the study of SARS-CoV-2 a major focus of modern science.

Covid-19 SP - UTI V. Nova Cachoeirinha.jpg
Covid-19 SP - UTI V. Nova Cachoeirinha.jpg

669 words
🖼️ Images & Media (8)
File:NOVO-NEW-新.2019-nCoV.jpg
NOVO-NEW-新.2019-nCoV.jpg
File:SARS-CoV-1 and 2 - mammals as carriers.png
SARS-CoV-1 and 2 - mammals as carriers.png
File:Naturalis Biodiversity Center - RMNH.MAM.33160.b dor - Rhinolophus sinicus - skin.jpeg
Naturalis Biodiversity Center -...
File:Novel Coronavirus SARS-CoV-2 (49597020718).jpg
Novel Coronavirus SARS-CoV-2 (49597020718).jpg
File:Novel Coronavirus SARS-CoV-2 (50960620707) (cropped).jpg
Novel Coronavirus SARS-CoV-2...
File:Coronavirus virion structure.svg
Coronavirus virion structure.svg
File:6VSB spike protein SARS-CoV-2 monomer in homotrimer.png
6VSB spike protein SARS-CoV-2 monomer in...
File:Covid-19 SP - UTI V. Nova Cachoeirinha.jpg
Covid-19 SP - UTI V. Nova Cachoeirinha.jpg
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