Difference between revisions of "Team:SECA NZ/Description"

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          <div class='col-md-12 text-center'>
            <h1>Our <mark class="green-mark">Vision</mark></h1>
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              <h1>Our <mark class="green-mark">Vision</mark></h1>
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            <h3>
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              <h3>
                What we wanted to see with our project
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                  What we wanted to see with our project
  
            </h3>
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              </h3>
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            <p>
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              <p>
                In New Zealand, 91% of kiwifruit growers cite winter temperatures as the greatest threat to crop yield. Source: Cradock-Henry, N. (2017).
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                  In New Zealand, 91% of kiwifruit growers cite winter temperatures as the greatest threat to crop yield. Source: Cradock-Henry, N. (2017).
            </p>
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              </p>
            <p>
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              <p>
                Cold temperatures can stunt growth, cause severe plant damage, and even kill growing plants, making them a severe risk to the industry that needs to be addressed.
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                  Cold temperatures can stunt growth, cause severe plant damage, and even kill growing plants, making them a severe risk to the industry that needs to be addressed.
            </p>
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              </p>
  
            <p>
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              <p>
                Our vision is to have crop plants that do not require these costly interventions in order to be protected from winter temperatures.
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                  Our vision is to have crop plants that do not require these costly interventions in order to be protected from winter temperatures.
            </p><p>
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              </p><p>
                We hope that in time farmers will not fear the oncoming of winter, or have their livelihood threatened by a sudden frost. Genetic engineering provides an avenue for this.
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                  We hope that in time farmers will not fear the oncoming of winter, or have their livelihood threatened by a sudden frost. Genetic engineering provides an avenue for this.
            </p><p>
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              </p><p>
                Frost resistance genes, in the form of Ice Recrystallisation Inhibition Proteins and Antifreeze Proteins are well documented in many species, both plants and animals and can be used to protect crop plants from the kind of damage caused by cold without the need for other interventions.
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                  Frost resistance genes, in the form of Ice Recrystallisation Inhibition Proteins and Antifreeze Proteins are well documented in many species, both plants and animals and can be used to protect crop plants from the kind of damage caused by cold without the need for other interventions.
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              <div class='col-md-12' style='text-align:center'>
                <div class="card" style="width: 100%;">
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                  <div class="card" style="width: 100%;">
                    <img class="card-img-top" src="https://static.igem.org/mediawiki/2017/1/1d/SECA_NZ-French_Candles.jpg" alt="transform photo">
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                      <img class="card-img-top" src="https://static.igem.org/mediawiki/2017/1/1d/SECA_NZ-French_Candles.jpg" alt="transform photo">
                    <div class="card-block">
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                      <div class="card-block">
                        <p class="card-text">
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                          <p class="card-text">
                            Fig1. shows a Négociant in Bordeaux, France lighting candles to protect his grapes from frost. This shows the lengths growers will go protect their livelihoods.
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                              Fig1. shows a Négociant in Bordeaux, France lighting candles to protect his grapes from frost. This shows the lengths growers will go protect their livelihoods.
  
                            <a href="https://www.theguardian.com/lifeandstyle/2017/apr/28/french-winemakers-candles-heaters-helicopters-save-vines-frost-bordeaux-champagne">Source</a>
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                              <a href="https://www.theguardian.com/lifeandstyle/2017/apr/28/french-winemakers-candles-heaters-helicopters-save-vines-frost-bordeaux-champagne">Source</a>
                        </p>
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                          </p>
  
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                      </div>
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            <p>
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              <p>
                We hope to improve crop yields, therefore reducing waste and making better use of the farmland that is in current use. We hope to make it possible to grow crops in colder, or more unstable environments than it is currently possible to do, thorough improving cold tolerance of these plants.
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                  We hope to improve crop yields, therefore reducing waste and making better use of the farmland that is in current use. We hope to make it possible to grow crops in colder, or more unstable environments than it is currently possible to do, thorough improving cold tolerance of these plants.
            </p><p>
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              </p><p>
                In all, we hope to lift many of the limitations imposed upon crop farmers by cold winter temperatures.
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                  In all, we hope to lift many of the limitations imposed upon crop farmers by cold winter temperatures.
            </p>
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              </p>
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          </div>
        <div class="col-md-6">
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          <div class="col-md-6">
            <p>
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              <p>
                Current methods of frost protection are expensive and  labour intensive. Current methods include:
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                  Current methods of frost protection are expensive and  labour intensive. Current methods include:
            </p>
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              </p>
            <ul>
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                <p>
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                  <p style = "font-weight: bold;">
                    - Selective Breeding
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                      - Selective Breeding
                </p>
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                  </p>
                <p>
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                  <p style = "font-weight: bold;">
                    - Frost Covers
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                      - Frost Covers
                </p>
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                  </p>
                <p>
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                  <p style = "font-weight: bold;">
                    - Fans and Helicopters
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                      - Fans and Helicopters
                </p>
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                  </p>
                <p>
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                  <p style = "font-weight: bold;">
                    - Sprinkler Systems
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                      - Sprinkler Systems
                </p>
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                  </p>
                <p>
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                  <p style = "font-weight: bold;">
                    - Heaters and Candles
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                      - Heaters and Candles
                </p>
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                  </p>
           
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            <p>
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                These, among other techniques employed, are highly costly and only reduce the damage done as well as only ‘saving’ some of the crop.
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<h5>What should this page contain?</h5>
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              <p>
<ul>
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                  These, among other techniques employed, are highly costly and only reduce the damage done as well as only ‘saving’ some of the crop.
<li> A clear and concise description of your project.</li>
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              </p>
<li>A detailed explanation of why your team chose to work on this particular project.</li>
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          </div>
<li>References and sources to document your research.</li>
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      </div>
<li>Use illustrations and other visual resources to explain your project.</li>
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<h5>Advice on writing your Project Description</h5>
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<p>
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We encourage you to put up a lot of information and content on your wiki, but we also encourage you to include summaries as much as possible. If you think of the sections in your project description as the sections in a publication, you should try to be consist, accurate and unambiguous in your achievements.
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<p>
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Judges like to read your wiki and know exactly what you have achieved. This is how you should think about these sections; from the point of view of the judge evaluating you at the end of the year.
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<h5>References</h5>
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<p>iGEM teams are encouraged to record references you use during the course of your research. They should be posted somewhere on your wiki so that judges and other visitors can see how you thought about your project and what works inspired you.</p>
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</html>
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Revision as of 10:47, 31 October 2017

 


  
  
  
  
  

  
  
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Our Vision

What we wanted to see with our project

In New Zealand, 91% of kiwifruit growers cite winter temperatures as the greatest threat to crop yield. Source: Cradock-Henry, N. (2017).

Cold temperatures can stunt growth, cause severe plant damage, and even kill growing plants, making them a severe risk to the industry that needs to be addressed.

Our vision is to have crop plants that do not require these costly interventions in order to be protected from winter temperatures.

We hope that in time farmers will not fear the oncoming of winter, or have their livelihood threatened by a sudden frost. Genetic engineering provides an avenue for this.

Frost resistance genes, in the form of Ice Recrystallisation Inhibition Proteins and Antifreeze Proteins are well documented in many species, both plants and animals and can be used to protect crop plants from the kind of damage caused by cold without the need for other interventions.

transform photo

Fig1. shows a Négociant in Bordeaux, France lighting candles to protect his grapes from frost. This shows the lengths growers will go protect their livelihoods. Source

We hope to improve crop yields, therefore reducing waste and making better use of the farmland that is in current use. We hope to make it possible to grow crops in colder, or more unstable environments than it is currently possible to do, thorough improving cold tolerance of these plants.

In all, we hope to lift many of the limitations imposed upon crop farmers by cold winter temperatures.

Current methods of frost protection are expensive and labour intensive. Current methods include:

- Selective Breeding

- Frost Covers

- Fans and Helicopters

- Sprinkler Systems

- Heaters and Candles

These, among other techniques employed, are highly costly and only reduce the damage done as well as only ‘saving’ some of the crop.