Every card in Evolution and inheritance, Year 11: fossils, resistant bacteria and classification
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- How do fossils provide evidence for evolution?
They show that living things have changed over a very long time
HintCompare the remains found in the oldest rocks with those in younger layers above.
WhyFossils in older rocks are different from those in younger rocks, and from the species alive today. Placed in order of age, they show how much, or how little, organisms have changed. The record has gaps, because few organisms are ever fossilised.
- Darwin could not explain how characteristics pass from parents to offspring. What later discovery supplied this evidence for his theory?
Characteristics are passed on to offspring in genes
HintThink of the small sections of DNA studied earlier in this topic.
WhyNatural selection works only if helpful characteristics can be inherited. The later discovery that characteristics are passed on in genes showed how this happens, and so supported the theory.
- Why does antibiotic resistance in bacteria count as evidence for evolution?
Natural selection can be seen changing a population within a short time
HintBacteria reproduce so fast that scientists can watch it happen.
WhyWhen an antibiotic is used, resistant bacteria survive and reproduce while the others die, so the resistant strain becomes more common. This is evolution by natural selection, observed directly within months or years.
- Three kinds of evidence support the theory of evolution: inheritance through ____, the ____ record, and antibiotic ____ in bacteria.
genes; fossil; resistance
HintOne is in every cell, one is in rocks, and one is seen in hospitals.
WhyThe three are independent of each other: one explains how characteristics are inherited, one shows change over a very long time, and one shows natural selection happening now. Agreement between them is what makes the case strong.
- The theory of evolution by natural selection is now widely accepted. What has made scientists accept it?
Data from several sources now supports it
HintScientific ideas stand or fall on evidence.
WhyA scientific theory is accepted when evidence supports it and no evidence contradicts it. For evolution, data is now available from genetics, from the fossil record and from bacteria.
- The remains of organisms from millions of years ago, found in rocks
Fossils
HintCoal, oil and gas are called this kind of fuel.
WhyFossils may be hard parts that did not decay, parts replaced by minerals, or preserved traces such as footprints. From them we learn how much or how little organisms have changed as life developed on Earth.
- The bodies of some ancient animals have been found whole in ice or in peat bogs. Why did they not decay?
One or more of the conditions needed for decay was absent
HintDecomposers need warmth, oxygen and moisture.
WhyDecay is carried out by microorganisms, which need suitable conditions. In ice it is too cold for them, and in a peat bog there is too little oxygen and the water is acidic. Without decay, parts of the organism can survive.
- Some fossils form when parts of an organism are replaced by ____ as they decay.
minerals
HintThe bone slowly turns to rock.
WhyHard parts such as bones and shells decay slowly. As they do, minerals from the surrounding water and sediment take their place, leaving a copy in rock of the original shape.
- A fossilised footprint, burrow or rootlet track contains no part of the organism itself. What has been preserved?
A trace left by the organism
HintIt records an activity, not a body.
WhyFootprints, burrows and the marks left by small roots can be preserved when the soft ground hardens into rock. They are the third way fossils form, and they show how an organism moved or lived.
- Why did the earliest forms of life leave so few fossils?
Many were soft-bodied, and geological activity has destroyed most of the traces
HintNo shells, no bones — and the rocks themselves have been remade since.
WhySoft bodies decay quickly and seldom fossilise. The few traces that did form are in very old rocks, most of which have since been destroyed by geological activity. This is why scientists cannot be certain how life began.
- Bacteria can evolve rapidly because they ____ at a fast rate.
reproduce
HintEach division is a new generation.
WhyEvolution happens across generations. Bacteria can divide very often, so many generations pass in a short time, and a helpful mutation can spread through a population quickly.
- Which strain of bacteria, named at GCSE and often linked with hospitals, is resistant to antibiotics? (four capital letters)
MRSA
HintIts second letter stands for the word 'resistant'.
WhyMRSA is a type of bacterium that often lives harmlessly on the skin but can cause a serious infection if it gets inside the body. People staying in hospital, especially for surgery, are at higher risk. It is resistant to several commonly used antibiotics.
- An antibiotic kills most of the bacteria causing an infection, but a few have a mutation that makes them resistant. What happens to the resistant strain next?
It survives and reproduces, so its population rises
HintWith its competitors gone, nothing holds it back.
WhyMutations produce new strains, and some are resistant. The antibiotic kills the non-resistant bacteria, leaving the resistant ones to multiply. The resistant strain then spreads, because people are not immune to it and there is no effective treatment.
- Why should a patient complete the whole course of antibiotics, even after feeling better?
So that all the bacteria are killed and none survive to form resistant strains
HintA few of the toughest may still be alive when the symptoms stop.
WhyStopping early can leave some bacteria alive. If any survive, they can reproduce, and a mutation among them may give a resistant strain. Finishing the course is one of three ways to slow resistance; the others are not prescribing antibiotics inappropriately and restricting their use in agriculture.
- Besides medicine, in which industry should the use of antibiotics be restricted to slow the development of resistant strains?
Agriculture (farming)
HintThink of where large numbers of animals are kept together.
WhyEvery use of an antibiotic gives resistant bacteria an advantage, wherever it happens. Restricting agricultural use is one of the three measures named at GCSE. New antibiotics are costly and slow to develop, so they are unlikely to keep up with new resistant strains.
- Linnaeus classified living things into these groups, from largest to smallest: kingdom, phylum, ____, order, ____, genus, species.
class; family
HintOne is also a group of pupils; the other is also a group of relatives.
WhyCarl Linnaeus grouped living things by their structure and characteristics. Each group is divided into smaller ones, so a kingdom holds many phyla and a genus holds one or more species. Many pupils learn the order with a sentence whose words start k, p, c, o, f, g, s.
- In the binomial system an organism's name has two parts, as in Homo sapiens. Which Linnaean group does each part give?
The genus, then the species
HintThey are the two smallest groups in the Linnaean system.
WhyBinomial means 'two names'. The first word is the genus and has a capital letter; the second is the species and does not. Scientists everywhere use the same name, whatever their language.
- Which scientist developed the three-domain system of classification? (surname only)
Woese
HintCarl was his first name, as it was for Linnaeus.
WhyCarl Woese used evidence from chemical analysis to divide living things into three domains: Archaea, Bacteria and Eukaryota. It is an example of a classification system changing as new evidence becomes available.
- The domain of primitive bacteria that usually live in extreme environments
Archaea
HintIts name comes from the Greek for 'ancient'.
WhyThe three domains are Archaea, Bacteria (the true bacteria) and Eukaryota, which includes protists, fungi, plants and animals. Archaea look like bacteria under a microscope, but chemical analysis shows that they are a separate group.
- An evolutionary tree shows that species A and species B branched apart 5 million years ago, and that their shared branch split from species C 20 million years ago. Which two species are most closely related?
A and B
HintLook for the most recent common ancestor.
WhyOn an evolutionary tree, each branch point is a common ancestor. The more recently two species shared one, the more closely they are related: here 5 million years ago against 20 million. Trees are built from classification data for living organisms and fossil data for extinct ones.
1★ GCSE-BIOL-EVO-0026
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