ConceptConceptDocsDocuments

Edexcel IGCSE Biology 2 Structure & functions in living organisms Question Bank

Practise cell structures, organisation, molecules, transport and physiology through labelled diagrams, tables, graphs and calculations.

Syllabus
First assessment 2019
Course
Biology 4BI1

2 Structure and functions in living organisms question 1

[Maximum number: 5]

Euglena is a microorganism that lives in water.
The diagram shows Euglena with some structures labelled.

Figure for Question 2 Structure and functions in living organisms question 1 — Edexcel IGCSE Biology

Question (a)

(a)

Which structure is the site of respiration?

A

P

B

R

C

T

D

U

[ 1 ]

Question (b)

(b)

Which structure contains chromosomes?

A

P

B

Q

C

R

D

T

[ 1 ]

Question (c)

(c)

Which structure is the cell membrane?

A

P

B

Q

C

R

D

U

[ 1 ]

Question (d)

(d)

Euglena has some structures that are found in plant cells but not in animal cells.

Which labelled structure is found in plant cells but not in animal cells?

A

P

B

Q

C

S

D

T

[ 1 ]

Question (e)

(e)

Some of the labelled structures are known as organelles.

State what is meant by the term organelle.

[ 1 ]

2 Structure and functions in living organisms question 2

[Maximum number: 1]

Read the passage below. Use the information in the passage and your own knowledge to answer the questions that follow.

Pollination in fruit trees

Plants need to be pollinated to produce fruits and seeds. Some plants are self-pollinated and others are cross-pollinated.

Self-pollination is usually the transfer of pollen from flowers on the same tree. In fruit trees, self-pollination also includes the transfer of pollen from another tree of the same cultivar. A cultivar is a genetically identical group of trees produced by selective breeding. Self-pollinating plants need bees or other insects to transfer pollen. Examples of self-pollinated fruit trees are plum, apricot and peach that have sweet-tasting, soft fruits.

Figure for Question 2 Structure and functions in living organisms question 2 — Edexcel IGCSE Biology
Figure for Question 2 Structure and functions in living organisms question 2 — Edexcel IGCSE Biology

Other fruit trees require cross-pollination and can only produce fruit by fertilisation from a different cultivar. Cross-pollination is the transfer of pollen from one cultivar to the flower of a different cultivar. Self-incompatibility prevents the same plant or cultivar from fertilising its own flowers. For example, the pollen from one cultivar of an apple tree will not fertilise trees of the same cultivar. Most hard fruit trees such as pear and apple require the presence of two different compatible cultivars for pollination to result in fruit production.

Pollen can be transferred by wind, insects or birds. Many fruit trees are pollinated by insects. Nut trees are usually pollinated by wind.

After pollination the pollen grain must germinate to lead to fertilisation. The success of pollination and fertilisation depends on favourable environmental conditions. It also requires the right pollen grain reaching the right flower, as pollen can only fertilise specific, compatible flowers. For example, pollen from a peach flower will not pollinate apple flowers.

Cross-pollinating fruit trees should be planted no more than 60 m apart. This will ensure that bees visit the trees often enough to ensure pollination. Nut trees need to be planted no more than 15 m apart.

A further complication is that a few apple and pear cultivars, known as triploids, produce sterile pollen. Triploid cultivars have three sets of chromosomes within their cells. A triploid cultivar will require another cultivar for pollination, and the trees must flower at the same time.

Fruit trees often produce sweet-tasting fruit containing sugars.

Sugars are carbohydrates.

Name the three elements in carbohydrates.

2 Structure and functions in living organisms question 3

[Maximum number: 5]

Read the passage below. Use the information in the passage and your own knowledge to answer the questions that follow.

Rivers - the arteries of the world

Rivers are important supplies of water for drinking, farming, industry, and leisure activities. Like our circulatory system, rivers are essential for transport, and have a homeostatic effect on nature. The biodiversity in rivers is high as they are the habitat for many different species. In many countries rivers are under threat from human impact, particularly the release of untreated sewage.

Flooding can cause untreated sewage to run into rivers from pipelines. Scientists estimated that in England and Wales during 2022, sewage was released into rivers for a total time of 300000 hours. This sewage came from 1200 different pipelines. Untreated sewage may contain fertilisers, pesticides, pathogenic bacteria, and pharmaceutical drugs.

Figure for Question 2 Structure and functions in living organisms question 3 — Edexcel IGCSE Biology

The photograph shows sewage being released into a river. The sewage causes the growth of something called 'sewage fungus'. Sewage fungus looks like fungus but is a solid collection of several types of anaerobic bacteria. Sewage fungus is common in rivers that are polluted with untreated sewage or are near to cattle and intensive crop farms. If sewage fungus is found in a river it often indicates that the biodiversity of the river will be low.

Pesticides from agriculture are also released into rivers, and these are frequently transferred through natural food chains. Even pharmaceutical drugs, such as those containing the hormones oestrogen and progesterone, have been found in polluted rivers. These drugs must have been consumed by humans, excreted and then released into the sewage flowing into rivers.

Untreated sewage can also contain pathogenic species of bacteria that then enter rivers. If humans are infected with these bacteria, the large intestine absorbs less water, causing diarrhoea. Some of the bacteria found in sewage are resistant to antibiotics.

Scientists are looking for ways to prevent river pollution. One way is to reduce the risk of pollution from fertilisers and from cattle urine and faeces. Woodchip bioreactors are being trialled in agricultural fields that are near to rivers. These bioreactors are pits filled with woodchips and denitrifying bacteria. Water drains through these bioreactors, which helps to remove nitrates before they reach the rivers. In some countries, efforts are being made to replant forests in areas upstream of rivers to reduce river flooding and the risk of untreated sewage release.

Question (a)

(a)

Rivers have a homeostatic effect on nature. This is similar to the role of homeostasis in humans.
State what is meant by the term homeostasis (lines 2 and 3).

[ 1 ]

Question (b)

(b)

Oestrogen and progesterone in polluted water lower the levels of FSH and LH in mammals.

[ 2 ]

Question (i)

(i)

State why lower levels of FSH can reduce fertility in mammals.

[ 1 ]

Question (ii)

(ii)

State why lower levels of LH can reduce fertility in mammals.

[ 1 ]

Question (c)

(c)

Pathogenic bacteria produce poisons that prevent the active transport of salt into the blood vessels surrounding the intestines.

Explain why preventing the transport of salt into the blood vessels will cause more water to be present in faeces (lines 22 to 24 ).

[ 2 ]
All question bank results loaded