IB Biology HL Disease & Immunity Paper 1 & 2 ~8 min read

Zoonoses

Most pathogens can only infect one species. A few can jump. Those few cause most of the outbreaks that make the news, and the reason they can jump comes down to something you already know: whether the pathogen fits the receptors on the new host’s cells.

📘 What you need to know

What stops a pathogen crossing

A species barrier is not a wall. It is a mismatch. The pathogen needs to attach to and enter the cells of the new host, and if the shapes do not fit, nothing happens.

Whether a pathogen can jump comes down to shape The spike on the pathogen has to match the receptor on the host cell BLOCKED CROSSES the human cell has no matching receptor, so the pathogen cannot enter the shapes fit, so the pathogen infects the new species — a zoonosisBody temperature can block a jump too If the new host is not warm enough, the disease may never develop.
This is the same complementary shape idea you used for antibodies and receptors earlier in the topic. Here it decides whether a disease stays in one species or moves into another.
Two reasons a disease stays put Both appear in mark schemes, so learn the pair NO MATCHING RECEPTOR WRONG BODY TEMPERATURE the pathogen cannot attach to or enter cells of the new speciesthe new host never reaches the temperature the disease needsRemove either barrier and a species jump becomes possible That is why new zoonoses keep appearing.
If a question asks why a disease of one animal cannot infect humans, these two reasons are almost always what the mark scheme wants.

What a zoonosis is

Definition A zoonotic disease is one that can cross the species barrier from an animal to a human.

Zoonoses are a growing global concern. Humans live in close contact with animals — as pets, as livestock, and through wildlife — which makes these diseases difficult to control and eradicate. Even if we clear the disease from the human population, it may still be circulating in the animal population, waiting.

Two further consequences worth remembering:

Once it has crossed, it may never go back. Some zoonotic diseases initially emerge from animal populations and then develop into human–only strains. HIV is the standard example — it began as a simian immunodeficiency virus in chimpanzees and now spreads human to human.

Which diseases are zoonotic

DiseaseSpecies first infectedStatus
Bird fluGeeseZoonotic
TuberculosisBelieved to be humansZoonotic — it also moves between cattle and people
HIVChimpanzee, as simian immunodeficiency virusZoonotic in origin
Bubonic plagueFleas and ratsZoonotic
COVID–19UnconfirmedZoonotic
MeaslesHumansHuman only
DiphtheriaHumansHuman only
PolioHumansHuman only
Notice which diseases we have actually managed to eradicate or nearly eradicate: smallpox and polio, both human only. That is not a coincidence. With no animal reservoir, vaccinating enough people finishes the job. With a zoonosis, there is always somewhere else for the pathogen to hide.
🧠

Zoonotic = it came from the zoo

Silly, but it sticks. Zoo for animals, and the disease made the jump from them to us.

Worked examples

WE 1

Explain why some diseases are species specific

Explain why a pathogen that infects one species may be unable to infect another. (2 marks)

Point 1: receptors The second species may not possess the necessary receptors on its cells, so the pathogen cannot attach to or enter them. Point 2: temperature The body temperature of the second species may not reach the temperature required for the disease to develop. No matching receptors, or the wrong body temperature two marks usually means both reasons — do not write one of them twice
WE 2

Explain why zoonoses are hard to eradicate

Suggest why a zoonotic disease is more difficult to eradicate than a disease that only infects humans. (3 marks)

Point 1: the reservoir A zoonotic pathogen also survives in animal populations, so clearing it from humans does not remove it. Point 2: re–infection Humans live in close contact with animals, so the pathogen can cross into people again at any time. Point 3: the comparison A human–only disease such as smallpox or polio has no animal reservoir, so a vaccination programme covering enough people can eradicate it completely. You cannot vaccinate your way out if the pathogen lives somewhere else too naming smallpox or polio as the contrast makes the argument much stronger
WE 3

Apply it: a new virus in bats

A virus is found in a bat population. Suggest what would have to be true for it to cause an outbreak in humans. (3 marks)

Point 1: crossing the barrier The virus would need to bind to receptors present on human cells, and human body temperature would need to allow the disease to develop. Point 2: contact There would have to be close contact between the bats and people, directly or through another animal, for the first infection to occur. Point 3: spread For an outbreak rather than isolated cases, the virus would then need to spread from human to human. Right receptors, real contact, and then person to person transmission the third point is the one students miss — a single crossing is not yet an outbreak

💡 Exam tips

⚠ Common mistakes

Up next: Vaccines & Immunity. We have just said a human–only disease can be wiped out by vaccinating enough people. The next page explains exactly how a vaccine does that, and what “enough people” actually means.

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