Enhancing integrated pest management in GM cotton systems using host plant resistance
Cotton has lost many ancestral defensive traits against key invertebrate pests. This is suggested by the levels of resistance to some pests found in wild cotton genotypes as well as in cultivated landraces and is a result of domestication and a long history of targeted breeding for yield and fibre q...
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doaj-921179258f8640c4a8cf1ab7ccf941a42020-11-24T20:55:10ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2016-04-01710.3389/fpls.2016.00500188576Enhancing integrated pest management in GM cotton systems using host plant resistanceCarlos eTrapero0Iain W Wilson1Warwick N Stiller2Lewis J Wilson3CSIROCSIROCSIROCSIROCotton has lost many ancestral defensive traits against key invertebrate pests. This is suggested by the levels of resistance to some pests found in wild cotton genotypes as well as in cultivated landraces and is a result of domestication and a long history of targeted breeding for yield and fibre quality, along with the capacity to control pests with pesticides. Genetic modification (GM) allowed integration of toxins from a bacteria into cotton to control key Lepidopteran pests. Since the mid-1990’s, use of GM cotton cultivars has greatly reduced the amount of pesticides used in many cotton systems. However, pests not controlled by the GM traits have usually emerged as problems, especially the sucking bug complex. Control of this complex with pesticides often causes a reduction in beneficial invertebrate populations, allowing other secondary pests to increase rapidly and require control. Control of both sucking bug complex and secondary pests is problematic due to the cost of pesticides and/or high risk of selecting for pesticide resistance. Deployment of host plant resistance provides an opportunity to manage these issues in GM cotton systems. Cotton cultivars resistant to the sucking bug complex and/or secondary pests would require fewer pesticide applications, reducing costs and risks to beneficial invertebrate populations and pesticide resistance. Incorporation of host plant resistance traits into elite cotton cultivars with high yield and fibre quality offers the potential to further reduce pesticide use and increase the durability of pest management in GM cotton systems. We review the challenges that the identification and use of host plant resistance against invertebrate pests brings to cotton breeding. We explore sources of resistance to the sucking bug complex and secondary pests, the mechanisms that control them and the approaches to incorporate these defence traits to commercial cultivars.http://journal.frontiersin.org/Journal/10.3389/fpls.2016.00500/fullGossypiumplant breedinggenetic resistanceresistance traitsplant defence mechanismsarthropod control |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Carlos eTrapero Iain W Wilson Warwick N Stiller Lewis J Wilson |
spellingShingle |
Carlos eTrapero Iain W Wilson Warwick N Stiller Lewis J Wilson Enhancing integrated pest management in GM cotton systems using host plant resistance Frontiers in Plant Science Gossypium plant breeding genetic resistance resistance traits plant defence mechanisms arthropod control |
author_facet |
Carlos eTrapero Iain W Wilson Warwick N Stiller Lewis J Wilson |
author_sort |
Carlos eTrapero |
title |
Enhancing integrated pest management in GM cotton systems using host plant resistance |
title_short |
Enhancing integrated pest management in GM cotton systems using host plant resistance |
title_full |
Enhancing integrated pest management in GM cotton systems using host plant resistance |
title_fullStr |
Enhancing integrated pest management in GM cotton systems using host plant resistance |
title_full_unstemmed |
Enhancing integrated pest management in GM cotton systems using host plant resistance |
title_sort |
enhancing integrated pest management in gm cotton systems using host plant resistance |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Plant Science |
issn |
1664-462X |
publishDate |
2016-04-01 |
description |
Cotton has lost many ancestral defensive traits against key invertebrate pests. This is suggested by the levels of resistance to some pests found in wild cotton genotypes as well as in cultivated landraces and is a result of domestication and a long history of targeted breeding for yield and fibre quality, along with the capacity to control pests with pesticides. Genetic modification (GM) allowed integration of toxins from a bacteria into cotton to control key Lepidopteran pests. Since the mid-1990’s, use of GM cotton cultivars has greatly reduced the amount of pesticides used in many cotton systems. However, pests not controlled by the GM traits have usually emerged as problems, especially the sucking bug complex. Control of this complex with pesticides often causes a reduction in beneficial invertebrate populations, allowing other secondary pests to increase rapidly and require control. Control of both sucking bug complex and secondary pests is problematic due to the cost of pesticides and/or high risk of selecting for pesticide resistance. Deployment of host plant resistance provides an opportunity to manage these issues in GM cotton systems. Cotton cultivars resistant to the sucking bug complex and/or secondary pests would require fewer pesticide applications, reducing costs and risks to beneficial invertebrate populations and pesticide resistance. Incorporation of host plant resistance traits into elite cotton cultivars with high yield and fibre quality offers the potential to further reduce pesticide use and increase the durability of pest management in GM cotton systems. We review the challenges that the identification and use of host plant resistance against invertebrate pests brings to cotton breeding. We explore sources of resistance to the sucking bug complex and secondary pests, the mechanisms that control them and the approaches to incorporate these defence traits to commercial cultivars. |
topic |
Gossypium plant breeding genetic resistance resistance traits plant defence mechanisms arthropod control |
url |
http://journal.frontiersin.org/Journal/10.3389/fpls.2016.00500/full |
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