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Wednesday, October 9, 2024
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Search the Herbicide-Resistance Reference Database
Searches the reference database - authors, title, abstract, and keywords fields. Not case sensitive.
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Tranel and Amaranthus and not glyphosate
REFERENCES
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Yu, Q., A. Jalaludin, H. Han, M. Chen, R.D. Sammons, and S. Powles
.
2015
.
Evolution of a Double Amino Acid Substitution in the 5-Enolpyruvylshikimate-3-Phosphate Synthase in Eleusine indica Conferring High-Level Glyphosate Resistance
.
Plant Physiology
167
:
1440 - 1447
.
Glyphosate is the most important and widely used herbicide in world agriculture. Intensive glyphosate selection has resulted in the widespread evolution of glyphosate-resistant weed populations, threatening the sustainability of this valuable once-in-a-century agrochemical. Field-evolved glyphosate resistance due to known resistance mechanisms is generally low to modest. Here, working with a highly glyphosate-resistant
Eleusine indica
population, we identified a double amino acid substitution (T102I + P106S [
TIPS
]) in the 5-enolpyruvylshikimate-3-phosphate synthase (
EPSPS
) gene in glyphosate-resistant individuals. This
TIPS
mutation recreates the biotechnology-engineered commercial first generation glyphosate-tolerant
EPSPS
in corn (
Zea mays
) and now in other crops. In
E. indica
, the naturally evolved
TIPS
mutants are highly (more than 180-fold) resistant to glyphosate compared with the wild type and more resistant (more than 32-fold) than the previously known P106S mutants. The
E. indica
TIPS
EPSPS
showed very high-level (2,647-fold) in vitro resistance to glyphosate relative to the wild type and is more resistant (600-fold) than the P106S variant. The evolution of the
TIPS
mutation in crop fields under glyphosate selection is likely a sequential event, with the P106S mutation being selected first and fixed, followed by the T102I mutation to create the highly resistant
TIPS
EPSPS
. The sequential evolution of the
TIPS
mutation endowing high-level glyphosate resistance is an important mechanism by which plants adapt to intense herbicide selection and a dramatic example of evolution in action.
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PERMISSION MUST BE OBTAINED FIRST if you intend to base a significant portion of a scientific paper on data derived from this site.
Cite this site as:
Heap, I. The International Survey of Herbicide Resistant Weeds. Online. Internet.
Wednesday, October 9, 2024
. Available
www.weedscience.org
Copyright � 1993-
2024
WeedScience.org All rights reserved. Fair use of this material is encouraged. Proper citation is requested.
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