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Edexcel International AS Biology

Revision Notes

Home / International AS / Biology / Edexcel / Revision Notes / 4. Plant Structure & Function, Biodiversity & Conservation / Classification & Biodiversity / 4.15 The Variety of Life


4.15 The Variety of Life


Human Impact on Variety of Life

  • Evolution by the process of natural selection has increased the variety of life on Earth over time
  • In recent times, however, human activities have threatened many species with extinction
  • The global human population has been growing exponentially for the last 150 years
  • There are many reasons for this exponential growth, including:
    • Improved technology leading to an abundance of food = increase in birth rate
    • Improved medicine, hygiene and health care = decrease in death rate

Human population growth

The human population is growing exponentially

  • Humans use many resources from the Earth such as land (for settlements and agriculture), water, wood and fossil fuels
  • As the human population increases and countries become more economically developed, our requirement for these natural resources also increases
  • This is having a harmful effect on many aspects of the environment, including aquatic and terrestrial ecosystems, and our atmosphere and climate
  • The damage to these ecosystems is negatively impacting the species and habitats contained within them
  • This means that a conflict exists between human needs and the conservation of biodiversity
  • The main factors affecting biodiversity today are:
    • Habitat destruction
    • Overexploitation
    • Hunting
    • Agriculture
    • Climate change

Habitat destruction

  • Many human needs lead to natural environments being destroyed
  • When land is cleared for agriculture, industry, energy production, housing, transport, leisure facilities, waste disposal and water storage, this results in:
    • Habitat loss (plant and animals completely lose their habitats)
    • Habitat fragmentation (habitats are divided into small areas - populations living within these separated habitat fragments are more likely to suffer from inbreeding or local extinction)
  • Deforestation is one of the most damaging forms of habitat destruction, as forest habitats often have the highest levels of biodiversity
  • Marine habitats are also being destroyed, including:
    • Coral reefs (some people use dynamite as an extreme way to catch fish, which damages corals)
    • Sea beds (fishing practices such as trawling, where nets are dragged along the sea bed, destroy this important habitat)

Overexploitation

  • Many of the natural resources exploited by humans are actually being overexploited (they are being used up faster than they can be replaced)
  • For example, much deforestation is unsustainable as trees are removed but are not replaced by replanting. Even if they are replanted, the rate at which trees are being removed far exceeds the rate at which they are growing back
  • Fish stocks are also being overexploited, which is also having a knock-on effect on organisms that feed on these fish species, such as marine mammals and seabirds

Hunting

  • Hunting is another form of overexploitation, as many wild, non-farmed species of animals are being hunted and removed more quickly than their wild populations can be replenished
    • An example is the hunting of animals for 'bush meat' in developing countries (including the hunting of primates such as monkeys and chimpanzees, as well as other mammal and reptile species)

Agriculture

  • After the second world war, there was a massive change in how food was produced
  • There was a need to produce more food, at a quicker rate
  • It was then that modern farming practices began:
    • Farms became more specialised so they grew only one crop or raised one type of livestock (monoculture)
    • There was a switch to growing cereal crops rather than vegetables
    • Fields were made bigger to accommodate machinery via the removal of hedgerows and stonewalls
    • More land was made arable by draining wetland and filling in ponds
    • The use of fertilisers and pesticides massively increased
  • Most of these modern farming techniques have had a major negative impact on the level of biodiversity present in farmed areas
    • Monocultures support much lower levels of biodiversity compared to natural habitats or even natural grazing land (that has a large variety of plant species present which can support a much greater range and number of insect species and bird species)
    • Hedgerows represent an important habitat for many insects, small mammals and birds, which can nest there. As hedgerows are being increasingly removed, this habitat and the biodiversity it supports is lost
    • Fertilisers can leach into waterways, causing eutrophication, which can lead to the death of many aquatic invertebrate and fish species
    • Pesticides (e.g. insecticides) used on crops kill insect pests but also kill many non-target species, including important insect pollinators like bees

Climate change

  • Human-caused climate change is causing weather patterns to change and the frequency of extreme weather events, such as hurricanes, typhoons, floods and droughts, to increase
    • It is feared that climate change is now occurring too fast for many species to be able to adapt to these changes, which could result in many species becoming extinct and a major decline in biodiversity
  • Global warming (a result of climate change) is causing many species to move towards the poles or to higher altitudes
    • However, these species may not be able to compete with, or may even out-compete, the species already present in these habitats, with either result leading to decreased biodiversity
    • Some species (such as plant species) may not be able to move or change their distributions fast enough to adapt to increasing temperature and may go extinct as a result
  • Global warming (and the human-generated CO₂ that is the primary cause of this) is also threatening marine biodiversity:
    • Increasing atmospheric CO₂ is leading to more CO₂ dissolving in seawater, decreasing its pH (known as ocean acidification). This is negatively affecting organisms that require calcium carbonate for shells (e.g. plankton and coral polyps)
    • Increased ocean temperatures have also led to an increased frequency of coral-bleaching events, where the tiny organisms that live inside corals and help keep them alive leave due to temperature stress. Without these organisms, the corals die and are broken down, eventually leading to the loss of whole coral reefs and as a result, the loss of the huge amount of biodiversity that depends on them


  • 1. Molecules, Transport & Health
    • Biological Molecules
      • 1.1 The Importance of Water
        • 1.2 Saccharides
          • 1.3 Core Practical 1: Estimating the Concentration of Sugars & Starch
            • 1.4 Condensation & Hydrolysis
              • 1.5 Triglycerides & Ester Bonds
              • The Circulatory System
                • 1.6 The Need for a Circulatory System
                  • 1.7 Blood Vessels: Structure & Function
                    • 1.8 The Cardiac Cycle
                      • 1.9 The Role of Haemoglobin
                        • 1.10 Atherosclerosis
                          • 1.11 Blood Clotting
                          • Diet & Health
                            • 1.12 Reducing Risk Factors of CVD
                              • 1.13 Dietary Antioxidants & CVD
                                • 1.14 Core Practical 2: Investigate the Vitamin C Content of Food & Drink
                                  • 1.15 Interpreting Data on Risk Factors
                                    • 1.16 Designing Studies into the Effects of Risk Factors
                                      • 1.17 Perception of Risk vs Actual Risk
                                        • 1.18 Data on Cholesterol & Lipoproteins
                                          • 1.19 Data on Effect of Diet
                                            • 1.20 Treatments for CVD - Benefits & Risks
                                          • 2. Membranes, Proteins, DNA & Gene Expression
                                            • Gas Exchange, Cell Membranes & Transport
                                              • 2.1 Properties of Gas Exchange Surfaces
                                                • 2.2 Cell Membranes
                                                  • 2.3 Core Practical 3: Investigating Membrane Structure & Permeability
                                                    • 2.4 Osmosis
                                                      • 2.5 Diffusion, Facilitated Diffusion & Active Transport
                                                      • Proteins
                                                        • 2.6 Amino Acids, Proteins & Protein Structure
                                                          • 2.7 Enzymes - Roles & Modes of Action
                                                            • 2.8 Core Practical 4: Investigating the Rate of Enzyme Reactions
                                                              • 2.9 Nucleotides, DNA & RNA, Base Pairing
                                                              • DNA & Gene Expression
                                                                • 2.10 DNA Replication
                                                                  • 2.11 The Nature of the Genetic Code
                                                                    • 2.12 How Bases Code for a Polypeptide Chain
                                                                      • 2.13 Transcription & Translation
                                                                      • Inheritance
                                                                        • 2.14 Mutations
                                                                          • 2.15 Patterns of Inheritance & Sex Linkage
                                                                            • 2.16 Cystic Fibrosis
                                                                              • 2.17 Genetic Screening
                                                                                • 2.18 Ethical & Social Issues of Genetic Screening
                                                                              • 3. Cell Structure, Reproduction & Development
                                                                                • Cell Structure & Organisation
                                                                                  • 3.1 Cell Theory
                                                                                    • 3.2 Levels of Organisation of Cells
                                                                                      • 3.3 Eukaryotic Cells
                                                                                        • 3.4 The Rough Endoplasmic Reticulum & Golgi
                                                                                          • 3.5 Prokaryotic Cells
                                                                                            • 3.6 Electron Microscopy of Animal Cells
                                                                                              • 3.7 Microscopy: Magnification & Resolution
                                                                                                • 3.8 Core Practical 5 - Light Microscopy
                                                                                                • Reproduction & Inheritance
                                                                                                  • 3.9 Gene Locus
                                                                                                    • 3.10 Meiosis & Variation
                                                                                                      • 3.11 Mammalian Gametes
                                                                                                        • 3.12 Fertilisation - Mammals
                                                                                                          • 3.13 Fertilisation - Flowering Plants
                                                                                                            • 3.14 The Cell Cycle & Mitosis
                                                                                                              • 3.15 Core Practical 6: Observing the Stages of Mitosis
                                                                                                                • 3.16 Calculation of Mitotic Index
                                                                                                                  • 3.17 Stem Cells & Cell Potency
                                                                                                                    • 3.18 Cell Specialisation
                                                                                                                      • 3.19 Post-Transcriptional Changes to mRNA
                                                                                                                        • 3.20 Gene Interaction & Epigenetics
                                                                                                                          • 3.21 Polygenic Inheritance & Continuous Variation
                                                                                                                        • 4. Plant Structure & Function, Biodiversity & Conservation
                                                                                                                          • Plant Structure & Function
                                                                                                                            • 4.1 Plant Cell Structure
                                                                                                                              • 4.2 Electron Microscopy of Plant Cells
                                                                                                                                • 4.3 Starch & Cellulose: Structure & Function
                                                                                                                                  • 4.4 Properties of Cellulose
                                                                                                                                    • 4.5 The Vascular Structure of Plants
                                                                                                                                      • 4.6 Core Practical 7: Identifying Tissue Types Within Stems
                                                                                                                                      • Plants & Conservation
                                                                                                                                        • 4.7 Plant-Based Products for Sustainability
                                                                                                                                          • 4.8 Water & Inorganic Ions in Plants
                                                                                                                                            • 4.9 Core Practical 8: Determining the Tensile Strength of Plant Fibres
                                                                                                                                            • Plants & Bacterial Growth
                                                                                                                                              • 4.10 Bacterial Growth Conditions
                                                                                                                                                • 4.11 Plant Products with Antimicrobial Properties
                                                                                                                                                  • 4.12 Core Practical 9: Antimicrobial Properties of Plants
                                                                                                                                                    • 4.13 Development of Drugs & Drug Testing
                                                                                                                                                    • Classification & Biodiversity
                                                                                                                                                      • 4.14 The Three Domains of Life
                                                                                                                                                        • 4.15 The Variety of Life
                                                                                                                                                          • 4.16 Biodiversity & Endemism
                                                                                                                                                            • 4.17 Species Richness & Heterozygosity Index
                                                                                                                                                              • 4.18 Index of Biodiversity
                                                                                                                                                                • 4.19 Ecological Niches & Adaptations
                                                                                                                                                                  • 4.20 Hardy-Weinberg Equation
                                                                                                                                                                    • 4.21 Roles of Seed Banks & Zoos in Conservation


                                                                                                                                                                    DOWNLOAD PDF

                                                                                                                                                                  Author: Marlene

                                                                                                                                                                  Marlene graduated from Stellenbosch University, South Africa, in 2002 with a degree in Biodiversity and Ecology. After completing a PGCE (Postgraduate certificate in education) in 2003 she taught high school Biology for over 10 years at various schools across South Africa before returning to Stellenbosch University in 2014 to obtain an Honours degree in Biological Sciences. With over 16 years of teaching experience, of which the past 3 years were spent teaching IGCSE and A level Biology, Marlene is passionate about Biology and making it more approachable to her students.


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