成人大片

ENV BIOL 2500 - Botany II

North Terrace Campus - Semester 1 - 2017

A general introduction to the biology of plants. Lectures and practicals cover plant structure, function, classification, diversity, evolution and responses to environmental stress. Provides a valuable basis for future plant-related courses.

  • General Course Information
    Course Details
    Course Code ENV BIOL 2500
    Course Botany II
    Coordinating Unit School of Biological Sciences
    Term Semester 1
    Level Undergraduate
    Location/s North Terrace Campus
    Units 3
    Contact Up to 5 hours per week
    Available for Study Abroad and Exchange Y
    Incompatible PLANT SC 2510WT
    Assumed Knowledge BIOLOGY 1101
    Assessment Exam, practical reports & assignments
    Course Staff

    Course Coordinator: Professor Robert Reid

    Name Role Building/Rm Email
    Prof Rob Reid Course coordinator Benham 112b robert.reid@adelaide.edu.au
    Dr John Goodfellow Lecturer Benham 110 john.goodfellow@adelaide.edu.au
    Dr John Conran Lecturer Benham 109 john.conran@adelaide.edu.au
    Prof Michelle Waycott Lecturer Herbarium michelle.waycott@adelaide.edu.au
    Course Timetable

    The full timetable of all activities for this course can be accessed from .

  • Learning Outcomes
    Course Learning Outcomes
    1 The structure of terrestrial and aquatic plants
    2 The developmental processes involved in growth of plants from seed to flowering
    3 The main physiological and biochemical processes that sustain plant life, including the ability to absorb water and nutrients, carry out photosynthesis and respiration, and the role of plant hormones and signalling
    4 Generic skills of scientific observation, data recording and be able to write a scientific report
    5 The ability to use keys to identify the main groups of plants
    6 The ability to interpret visual symptoms of nutrient deficiencies of plants

     


    University Graduate Attributes

    This course will provide students with an opportunity to develop the Graduate Attribute(s) specified below:

    University Graduate Attribute Course Learning Outcome(s)
    Deep discipline knowledge
    • informed and infused by cutting edge research, scaffolded throughout their program of studies
    • acquired from personal interaction with research active educators, from year 1
    • accredited or validated against national or international standards (for relevant programs)
    1-6
    Critical thinking and problem solving
    • steeped in research methods and rigor
    • based on empirical evidence and the scientific approach to knowledge development
    • demonstrated through appropriate and relevant assessment
    4-6
    Teamwork and communication skills
    • developed from, with, and via the SGDE
    • honed through assessment and practice throughout the program of studies
    • encouraged and valued in all aspects of learning
    4
    Career and leadership readiness
    • technology savvy
    • professional and, where relevant, fully accredited
    • forward thinking and well informed
    • tested and validated by work based experiences
    4
  • Learning Resources
    Required Resources
    There are no compulsory textbooks. Botany II builds upon material that was covered in Level 1 biology courses and therefore the textbook for these courses is a good source for the foundation material.
    Recommended Resources

    For the physiology and biochemistry section, the following text is recommended, especially for students intending to take related follow-on courses such as Ecophysiology of Plants III or Terrestrial Ecology III.

    • Taiz & Zeiger ‘Plant Physiology’ 5th Edition

    A more general text covering most of the material in the course is:

    • Raven, Evert & Eichhorn ‘Biology of Plants’ 7th Edition, (approximate cost: $100)

    All students are expected to be familiar with the basic biochemical processes taught in Level 1 biology courses (e.g. Biology 1101, Molecules, Genes and Cells). The following chapters in the textbook ‘Biology’ Campbell, Reece and Meyers 8th Edn (or equivalent textbook) should be revised before coming to the relevant lectures:

    • Ch 7, Membrane structure and function (in relation to nutrient uptake)
    • Ch 9, Respiration;
    • Ch 10, Photosynthesis;
    • Chs 17 & 18 Gene expression and regulation.

    It is recognised that some students will not have done the Level 1 course Biology 1 Organisms and some revision of the relevant material from that course will be provided. However, it is recommended that all students familiarise themselves with the following chapters from ‘Biology’ Campbell, Reece and Meyers 8th Edn (or equivalent textbook):

    • Ch 26: Phylogeny
    • Chs 29 & 30: Plant diversity
    • Ch 35: Plant structure
    • Chs 36 – 39: Plant physiology
    Online Learning

    MyUni: Teaching materials and course documentation will be posted on the MyUni website ().

  • Learning & Teaching Activities
    Learning & Teaching Modes
    Botany is a science that lends itself well to hands-on learning. The practical component is therefore of high importance. The course is structured so that the topics taught in lectures are reinforced by practical studies in the same or the following week. Each of the practical classes has some assessment component, and feedback is given within two weeks on how well the topic was understood.
    Workload

    The information below is provided as a guide to assist students in engaging appropriately with the course requirements.

    A student enrolled in a 3 unit course, such as this, should expect to spend, on average 12 hours per week on the studies required. This includes both the formal contact time required to the course (e.g., lectures and practicals), as well as non-contact time (e.g., reading and revision).

    Learning Activities Summary

     

    Lectures:  Thurs 12 - 2  Napier LG29

     

     

    Pracs:  Thurs 2-5, Fri 9-12 The Braggs 440

     

     

     

     

    Week starting

    Lecturer

    Topic

    Practical

    27 Feb

    R Reid

    Uptake of nutrients

    Mineral nutrition

    Week 1

    R Reid

    Mineral nutrition

     

     

     

     

    6 Mar

    R Reid

    Assimilation of mineral nutrients

    Rhizosphere enzymes

    Week 2

    R Reid

    Acquisition of nutrients by symbioses

     

     

     

     

    13-Mar

    R Reid

    Water and plant cells

    Transpiration

    Week 3

    R Reid

    Water movement and balance

     

     

     

     

    20-Mar

    R Reid

    Phloem translocation

    Hormones setup

    Week 4

    R Reid

    Respiration

     

     

     

     

    27-Mar

    R Reid

    Light and gene control of development

    Hormones

     

    Week 5

    R Reid

    Hormones

     

     

     

     

    3-Apr

    R Reid

    Photosynthesis – light reactions

    Photosynthesis & Respiration

    Week 6

    R Reid

    Photosynthesis – carbon fixation

    Mid-semester break

    24-Apr

    J Goodfellow

    Plant growth and development

    Stems: structure & functions

    Week 7

    J Goodfellow

    Stems: structure & function

     

     

     

     

    1-May

    J Goodfellow

    Roots: structure & function

    Roots: structure & functions

    Week 8

    J Goodfellow

    Leaves and flowers

     

     

     

     

    8-May

    J Conran

    Gymnosperms

    Leaves: structure & functions

    Week 9

    J Conran

    Angiosperms

     

     

     

     

    15-May

    J Conran

    Pollination and dispersal

    Plant ID: Flowers and fruits I

    Week 10

    J Conran

    Breeding systems

     

     

     

     

    22-May

    J Conran

    Classification

    Plant ID: Flowers and fruits II

    Week 11

    J Conran

    Speciation, characters and taxa

     

     

     

     

    29 May

    M Waycott

    Aquatic plants and algae

    Aquatic plants and algae

    Week 12

    M Waycott

    Aquatic plants and algae

  • Assessment

    The University's policy on Assessment for Coursework Programs is based on the following four principles:

    1. Assessment must encourage and reinforce learning.
    2. Assessment must enable robust and fair judgements about student performance.
    3. Assessment practices must be fair and equitable to students and give them the opportunity to demonstrate what they have learned.
    4. Assessment must maintain academic standards.

    Assessment Summary
    Assessment taskType of assessmentPercentage of total assessment for grading purposesHurdle (Yes/No)Outcome being assessed/achieved
    Practical reports Formative/Summative 50% No 1,2,3,4,6
    Exam  Summative 50% No 1,2,3,6
    Assessment Detail
    Week Practical Assessment %
    1 Mineral Nutrition Data/question sheet 5
    2 Rhizosphere enzymes Formal report 5
    3 Transpiration Data/question sheet 5
    4 Respiration and photosynthesis Data/question sheet 5
    6 Hormones Data question sheet 5
    7 Stems: structure and functions assessed in week 8
    8 Roots: structure and functions Quiz 4
    9 Leaves: structure and functions Quiz
    Project
    3
    5
    10 Plant ID1 ID of vegetative specimens 4
    11 Plant ID2 Plant description and
    floral and fruit ID
    5
    12 Aquatic plants Worksheet 4
    Exams Theory exam Short answers 50
    Submission

    Data sheets and quizzes are to be handed up before you leave the lab.

    The formal report must be accompanied by the signed cover sheet available from the course website and submitted by 5 pm on the final date for submission to the course box in the Mawson Building.

    Late submission of assessments

    If an extension is not applied for, or not granted then a penalty for late submission will apply. A penalty of 10% of the value of the assignment for each calendar day that is late (i.e. weekends count as 2 days), up to a maximum of 50% of the available marks will be applied. This means that an assignment that is 5 days or more late without an approved extension can only receive a maximum of 50% of the mark.

    Course Grading

    Grades for your performance in this course will be awarded in accordance with the following scheme:

    M10 (Coursework Mark Scheme)
    Grade Mark Description
    FNS   Fail No Submission
    F 1-49 Fail
    P 50-64 Pass
    C 65-74 Credit
    D 75-84 Distinction
    HD 85-100 High Distinction
    CN   Continuing
    NFE   No Formal Examination
    RP   Result Pending

    Further details of the grades/results can be obtained from Examinations.

    Grade Descriptors are available which provide a general guide to the standard of work that is expected at each grade level. More information at Assessment for Coursework Programs.

    Final results for this course will be made available through .

  • Student Feedback

    The University places a high priority on approaches to learning and teaching that enhance the student experience. Feedback is sought from students in a variety of ways including on-going engagement with staff, the use of online discussion boards and the use of Student Experience of Learning and Teaching (SELT) surveys as well as GOS surveys and Program reviews.

    SELTs are an important source of information to inform individual teaching practice, decisions about teaching duties, and course and program curriculum design. They enable the University to assess how effectively its learning environments and teaching practices facilitate student engagement and learning outcomes. Under the current SELT Policy (http://www.adelaide.edu.au/policies/101/) course SELTs are mandated and must be conducted at the conclusion of each term/semester/trimester for every course offering. Feedback on issues raised through course SELT surveys is made available to enrolled students through various resources (e.g. MyUni). In addition aggregated course SELT data is available.

  • Student Support
  • Policies & Guidelines
  • Fraud Awareness

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