Biofector MOOC - English: Unterschied zwischen den Versionen
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(8 dazwischenliegende Versionen desselben Benutzers werden nicht angezeigt) | |||
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'''This MOOC is about BIOFECTOR.'''<br /> | |||
[[Datei:Flagge_Deutschland_MOOC_it_Kopie.png|100px|link=Biofector MOOC - Deutsch]] | |||
[[Datei:Flagge_United_Kingdom_GB_MOOC_it.png|107px|link=Biofector MOOC - English]] | |||
[[Datei:Biofector_MOOC.jpg|thumb|[http://www.biofector.info/ biofector.info] ]] | [[Datei:Biofector_MOOC.jpg|thumb|[http://www.biofector.info/ biofector.info] ]] | ||
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<div class="multiplechoice-quiz"> | <div class="multiplechoice-quiz"> | ||
'''What is the | '''What is the goal of BIOFECTOR?''' | ||
(To bring fertilisers | (!To bring fertilisers to the world market) | ||
(To control fertilising operations coutrywide | (!To control fertilising operations coutrywide) | ||
(To reduce the amount of fertiliser used | (To reduce the amount of fertiliser used) | ||
(To prohibit | (!To prohibit fertiliser use in Germany) | ||
</div> | </div> | ||
<br> | <br> | ||
Zeile 45: | Zeile 37: | ||
<div class="multiplechoice-quiz"> | <div class="multiplechoice-quiz"> | ||
'''What are | '''What are bio-effectors?''' | ||
(Substances | (!Substances that are directly toxic for pests) | ||
(Plants | (!Plants without fertilisers) | ||
(Microorganisms or | (Microorganisms or bip-active natural compounds) | ||
(Toxic | (!Toxic fertilisers) | ||
</div> | </div> | ||
<br> | <br> | ||
Zeile 57: | Zeile 49: | ||
<div class="multiplechoice-quiz"> | <div class="multiplechoice-quiz"> | ||
'''Only 50% of nitrogen | '''Only 50% of nitrogen applied with conventional fertilisers is effectively used by crop plants. How big is the use efficiency of phosphorus fertilizers in current agricultural practice?''' | ||
(90 % | (!90 %) | ||
(60 % | (!60 %) | ||
(20 % | (20 %) | ||
(40 %) | (!40 %) | ||
</div> | </div> | ||
<br> | <br> | ||
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<div class="multiplechoice-quiz"> | <div class="multiplechoice-quiz"> | ||
''' | '''How can bio-effectors help to increase the use efficiency of fertilizers?''' | ||
( | (!Destroying pests by direct toxic effects) | ||
(Act as a substitute for | (!Act as a substitute for mineral nutrients in greenhouse production) | ||
(Increase plant | (!Increase plant size to produce giant plants) | ||
(Stimulate plant | (Stimulate root growth and increase the plant availability of mineral nutrients) | ||
</div> | </div> | ||
<br> | <br> | ||
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<div class="multiplechoice-quiz"> | <div class="multiplechoice-quiz"> | ||
'''How | '''How many partners are cooperating in the BIOFECTOR project?''' | ||
(22 | (22 partners in 11 countries) | ||
(15 | (!15 partners in15 countries) | ||
(9 | (!9 partners in 7 countries) | ||
</div> | </div> | ||
<br> | <br> | ||
Zeile 90: | Zeile 82: | ||
<div class="multiplechoice-quiz"> | <div class="multiplechoice-quiz"> | ||
''' | '''Which type of institutions are involved in BIOFECTOR?''' | ||
(8 | (!8 research institutes, 10 associations) | ||
(7 | (7 universities, 5 research institutes, 8 companies und associations) | ||
(22 | (!22 companies from the agro sector) | ||
</div> | </div> | ||
<br> | <br> | ||
Zeile 101: | Zeile 93: | ||
<div class="multiplechoice-quiz"> | <div class="multiplechoice-quiz"> | ||
'''In | '''In how many countries BIOFECTOR field trials are performed?''' | ||
(2 in Europe | (!2 in Europe) | ||
(8 in Europe | (8 in Europe) | ||
(15 | (!15 worldwide) | ||
</div> | </div> | ||
<br> | <br> | ||
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<div class="multiplechoice-quiz"> | <div class="multiplechoice-quiz"> | ||
''' | '''Which target crops are tested for bio-effector applications, within BIOFECTOR?''' | ||
( | (!carrot, orange, oats) | ||
( | (tomato, wheat, maize) | ||
( | (!cucumber, apple, banana) | ||
</div> | </div> | ||
<br> | <br> | ||
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<div class="multiplechoice-quiz"> | <div class="multiplechoice-quiz"> | ||
''' | '''Which effects have been expected or were recorded in the BIOFECTOR field trials? ''' More than one correct answer. | ||
More | (Enhanced root growth) | ||
( | (!increased resistance to pests) | ||
( | (!300 % greater Yield) | ||
(taller plants) | |||
(300 % greater Yield | (improved resistance to stress) | ||
( | (more bio-mass production of crops) | ||
( | (greater use efficiency of fertilizers) | ||
( | |||
</div> | </div> | ||
<br> | <br> | ||
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{| width="100%" style="background-color:#DDDDDD;" cellpadding="5" | {| width="100%" style="background-color:#DDDDDD;" cellpadding="5" | ||
| width="35" align="center" valign="top" | [[File:MOOCit-Logo-voll.png|32px|left|link=Kategorie:Die besten MOOCs]] | | width="35" align="center" valign="top" | [[File:MOOCit-Logo-voll.png|32px|left|link=Kategorie:Die besten MOOCs]] | ||
| | | Test your concentration in a Memory game. Combine the correct cards. | ||
|} | |} | ||
<div class="memo-quiz"> | <div class="memo-quiz"> | ||
'''Memory | '''BIOFECTOR Memory'''<br> | ||
Find the pairs of cards. | |||
{| | {| | ||
|- | |- | ||
| Bio- || -fector | | Bio- || -fector | ||
| - | |- | ||
| Healthy growth, nutrient adequacy and || Resistance to stress factors | | Healthy growth, nutrient adequacy and || Resistance to stress factors | ||
| - | |- | ||
| Algae, compost, and || Plant extracts | | Algae, compost, and || Plant extracts | ||
| - | |- | ||
| Maize, wheat and || tomato | | Maize, wheat and || tomato | ||
|} | |} | ||
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{| width="100%" style="background-color:#DDDDDD;" cellpadding="5" | {| width="100%" style="background-color:#DDDDDD;" cellpadding="5" | ||
| width="35" align="center" valign="top" | [[File:MOOCit-Logo-voll.png|32px|left|link=Kategorie:Die besten MOOCs]] | | width="35" align="center" valign="top" | [[File:MOOCit-Logo-voll.png|32px|left|link=Kategorie:Die besten MOOCs]] | ||
| | | Have fun with completing the following gab text. | ||
|} | |} | ||
<div class="lueckentext-quiz"> | <div class="lueckentext-quiz"> | ||
'''BIOFECTOR''' is an integrated project with the aim to reduce input of mineral fertilisers in European agriculture by development of specifically adapted '''bio-effectors''' (BEs) to improve the efficiency of alternative fertilisation strategies | '''BIOFECTOR''' is an integrated project with the aim to reduce the input of mineral fertilisers in European agriculture by development of specifically adapted '''bio-effectors''' (BEs) to improve the efficiency of alternative fertilisation strategies. This includes organic and low-input farming, the use of '''fertilisers''' based on waste recycling products and fertiliser placement technologies.<br /> | ||
Bio-effectors addressed comprise fungal strains of Trichoderma, '''Penicillium''' and Sebacinales, as well as bacterial strains of Bacillus and '''Pseudomonades''' with well-characterized root growth promoting and nutrient-solubilising potential. Natural extraction products of seaweed, compost and plant extracts, as well as their purified active compounds with protective potential against biotic and abiotic stresses are also tested in various combinations. These features offer perspectives for a more efficient use of nutrients by strategic '''combination''' with the alternative fertilisation strategies. Maize, wheat and '''tomato''' are chosen as representative crops. Laboratory and European-wide field experiments assure product adaptation to the various geo-climatic conditions characteristic for European agriculture.<br /> | Bio-effectors addressed comprise fungal strains of Trichoderma, '''Penicillium''' and Sebacinales, as well as bacterial strains of Bacillus and '''Pseudomonades''' with well-characterized root growth promoting and nutrient-solubilising potential. Natural extraction products of seaweed, compost and plant extracts, as well as their purified active compounds with protective potential against biotic and abiotic stresses are also tested in various combinations. These features offer perspectives for a more efficient use of mineral nutrients by strategic '''combination''' with the '''alternative''' fertilisation strategies. Maize, wheat and '''tomato''' are chosen as representative crops of worldwide importance. Laboratory and European-wide field experiments assure product adaptation to the various geo-climatic conditions characteristic for European '''agriculture'''.<br /> | ||
The final goal is the development of viable alternatives to the conventional practice of mineral fertilisation as contribution to a more efficient management of the non-renewable resources of mineral nutrients, energy and water, to preserve soil fertility and to '''counteract''' the adverse environmental impact of agricultural production. | The final goal is the development of viable alternatives to the conventional practice of mineral fertilisation as contribution to a more efficient management of the non-renewable resources of mineral nutrients, energy and water, to preserve soil fertility and to '''counteract''' the adverse '''environmental''' impact of agricultural production. | ||
</div> | </div> | ||
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. | . | ||
== | == Open tasks & Projects == | ||
* Write a summary of how bioeffects works. | * Write a summary of how bioeffects works. | ||
Zeile 200: | Zeile 191: | ||
<br> | <br> | ||
== | == Contact == | ||
Universität Hohenheim<br /> | Universität Hohenheim<br /> | ||
Prof Dr. Günter Neumann<br /> | Prof Dr. Günter Neumann<br /> | ||
Zeile 206: | Zeile 197: | ||
70593 Stuttgart<br /> | 70593 Stuttgart<br /> | ||
www.biofector.info | www.biofector.info | ||
Zeile 220: | Zeile 205: | ||
'''Autoren''' | '''MOOCit-Autoren''' | ||
* [[:Benutzer:Mr.was geht sie das an]] | * [[:Benutzer:Mr.was geht sie das an]] | ||
* [[:Benutzer:Joblin]] | * [[:Benutzer:Joblin]] | ||
[[Datei:Biofector_MOOC.jpg|300px|center|link=http://www.biofector.info/ biofector.info]] | [[Datei:Biofector_MOOC.jpg|300px|center|link=http://www.biofector.info/ biofector.info]] |
Aktuelle Version vom 15. Dezember 2016, 11:33 Uhr
This MOOC is about BIOFECTOR.
Video
QUIZit
Multiple-Choice
What is the goal of BIOFECTOR? (!To bring fertilisers to the world market) (!To control fertilising operations coutrywide) (To reduce the amount of fertiliser used) (!To prohibit fertiliser use in Germany)
What are bio-effectors? (!Substances that are directly toxic for pests) (!Plants without fertilisers) (Microorganisms or bip-active natural compounds) (!Toxic fertilisers)
Only 50% of nitrogen applied with conventional fertilisers is effectively used by crop plants. How big is the use efficiency of phosphorus fertilizers in current agricultural practice? (!90 %) (!60 %) (20 %) (!40 %)
How can bio-effectors help to increase the use efficiency of fertilizers? (!Destroying pests by direct toxic effects) (!Act as a substitute for mineral nutrients in greenhouse production) (!Increase plant size to produce giant plants) (Stimulate root growth and increase the plant availability of mineral nutrients)
How many partners are cooperating in the BIOFECTOR project? (22 partners in 11 countries) (!15 partners in15 countries) (!9 partners in 7 countries)
Which type of institutions are involved in BIOFECTOR? (!8 research institutes, 10 associations) (7 universities, 5 research institutes, 8 companies und associations) (!22 companies from the agro sector)
In how many countries BIOFECTOR field trials are performed? (!2 in Europe) (8 in Europe) (!15 worldwide)
Which target crops are tested for bio-effector applications, within BIOFECTOR? (!carrot, orange, oats) (tomato, wheat, maize) (!cucumber, apple, banana)
Which effects have been expected or were recorded in the BIOFECTOR field trials? More than one correct answer. (Enhanced root growth) (!increased resistance to pests) (!300 % greater Yield) (taller plants) (improved resistance to stress) (more bio-mass production of crops) (greater use efficiency of fertilizers)
.
Memory
Test your concentration in a Memory game. Combine the correct cards. |
BIOFECTOR Memory
Find the pairs of cards.
Bio- | -fector |
Healthy growth, nutrient adequacy and | Resistance to stress factors |
Algae, compost, and | Plant extracts |
Maize, wheat and | tomato |
.
Gap text
Have fun with completing the following gab text. |
BIOFECTOR is an integrated project with the aim to reduce the input of mineral fertilisers in European agriculture by development of specifically adapted bio-effectors (BEs) to improve the efficiency of alternative fertilisation strategies. This includes organic and low-input farming, the use of fertilisers based on waste recycling products and fertiliser placement technologies.
Bio-effectors addressed comprise fungal strains of Trichoderma, Penicillium and Sebacinales, as well as bacterial strains of Bacillus and Pseudomonades with well-characterized root growth promoting and nutrient-solubilising potential. Natural extraction products of seaweed, compost and plant extracts, as well as their purified active compounds with protective potential against biotic and abiotic stresses are also tested in various combinations. These features offer perspectives for a more efficient use of mineral nutrients by strategic combination with the alternative fertilisation strategies. Maize, wheat and tomato are chosen as representative crops of worldwide importance. Laboratory and European-wide field experiments assure product adaptation to the various geo-climatic conditions characteristic for European agriculture.
The final goal is the development of viable alternatives to the conventional practice of mineral fertilisation as contribution to a more efficient management of the non-renewable resources of mineral nutrients, energy and water, to preserve soil fertility and to counteract the adverse environmental impact of agricultural production.
.
Open tasks & Projects
- Write a summary of how bioeffects works.
Links
Contact
Universität Hohenheim
Prof Dr. Günter Neumann
Institut für Kulturpflanzenwissenschaften
70593 Stuttgart
www.biofector.info
MOOCit-Autoren