IB ESS HL 3.1 Biodiversity & Evolution HL only ~11 min read

Genetic Diversity Within Species

Natural selection can only act on variation that already exists. This page is about where that variation comes from — and why a species with too little of it, like the cheetah, is in trouble long before anything else goes wrong.

📘 What you need to know

The building blocks

From DNA to genome Four terms that are easy to mix up in an exam DNA the molecule that carries genetic information in all living organisms GENE a specific sequence of DNA coding for a particular trait or protein CHROMOSOME a long strand of DNA tightly coiled humans have 46, in 23 pairs GENOME the complete set of genetic material every living thing has its own unique genome Genetic diversity is variation in which form of each gene individuals carry Members of a species share the same genes, but not the same alleles
Each pair of human chromosomes carries genes inherited from both parents, which is where the mixing on the next diagram comes from.

Genetic diversity refers to the variation in genes between individuals within a species. It is critical for the survival and adaptation of populations in changing environments.

How genetic diversity arises

Two sources, doing different jobs One creates new variation; the other reshuffles what exists MUTATION random changes in the DNA sequence creates a new version of a gene: an allele most are neutral some beneficial, some harmful occurs during cell division, or from factors such as radiation SEXUAL REPRODUCTION recombination of alleles from two parents parent 1 parent 2 a unique combination in the offspring siblings differ because different gametes fuse at each fertilisation Mutation supplies the raw material; reproduction deals the hand Without mutation there would be nothing new to recombine
This is the distinction examiners look for: only mutation creates alleles that did not previously exist anywhere in the population.

Mutation

Sexual reproduction

Why genetic diversity matters

What happensExample
Survival and adaptationHigh genetic diversity gives populations a greater ability to adapt to change. If a new disease, predator, food source or climate shift arrives, some individuals may carry the traits needed to surviveSome corals carry genes coding for proteins that help them tolerate higher temperatures, so they survive warming that bleaches and kills corals without them
Agricultural resilienceMaintaining genetic diversity in crops keeps them resilient to pests and diseasesCrop varieties with diverse genetics resist a new pest that would destroy a uniform planting
Reduced inbreeding riskIn populations with low genetic diversity, individuals are more likely to inherit harmful mutations through inbreeding — mating between closely related individuals — leading to genetic disorders or reduced survivalCheetahs have low genetic diversity, making them more vulnerable to disease and reproductive problems
Notice how this page underpins everything in 3.1. Natural selection can only act on variation that already exists in a population — it cannot invent a useful trait on demand. That is why a species with low genetic diversity, like the cheetah, is fragile even when its numbers look adequate: it has fewer options if conditions change. Genetic diversity is the third and least visible level of biodiversity from the first note in this sub-topic.

Worked examples

WE 1

Sources of genetic diversity

Explain two ways in which genetic diversity arises within a species. (4 marks)

Source 1: mutation Mutations are random changes in the DNA sequence, occurring during cell division or from factors such as radiation. What mutation does It creates new versions of genes, called alleles, introducing traits that did not previously exist in the population — such as the CCR5 mutation giving resistance to HIV. Source 2: sexual reproduction Sexual reproduction combines genetic material from two parents. Because an individual’s gametes are genetically distinct, which gametes fuse determines a unique set of genes in the offspring. What recombination does Genetic recombination produces new combinations of existing alleles, which is why siblings differ from one another. Mutation creates new alleles; reproduction creates new combinations of them the distinction between creating and recombining is the marking point
WE 2

Diversity and survival

Explain why a population with high genetic diversity is more likely to survive environmental change. (3 marks)

Step 1: the variation exists first High genetic diversity means individuals carry many different forms of each gene, so the population contains a wide range of traits. Step 2: change creates a new pressure If a new disease, predator, food source or climate shift occurs, some individuals may already carry the right genetic traits to survive. Step 3: the example Some corals carry genes for heat-tolerance proteins, so they survive rising ocean temperatures while corals lacking those genes bleach and die. The population survives because the useful variation was already there stress that the variation pre-exists the change; nothing adapts on demand
WE 3

Low diversity

Suggest why cheetahs are considered particularly vulnerable despite conservation efforts. (3 marks)

Step 1: the problem Cheetahs have low genetic diversity, so individuals across the population are genetically very similar. Step 2: inbreeding Individuals are more likely to inherit harmful mutations through inbreeding, which can cause genetic disorders and reduced survival rates. Step 3: the consequence This makes them more vulnerable to disease and to reproductive problems, and leaves the population with little capacity to adapt if conditions change. Increasing numbers does not, by itself, restore lost genetic diversity that final point is a strong evaluation line for conservation questions

💡 Exam tips

⚠ Common mistakes

Up next: Reproductive Isolation and Speciation. You know how variation builds up within a population. The next question is what stops two populations exchanging it — because that is how one species becomes two.

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