Peter M Chandler
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Explore the profile of Peter M Chandler including associated specialties, affiliations and a list of published articles.
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Articles
21
Citations
998
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Recent Articles
1.
Overgrowth mutants determine the causal role of gibberellin GA2oxidaseA13 in Rht12 dwarfism of wheat
Buss W, Ford B, Foo E, Schnippenkoetter W, Borrill P, Brooks B, et al.
J Exp Bot
. 2020 Sep;
71(22):7171-7178.
PMID: 32949136
The induced dwarf mutant Rht12 was previously shown to have agronomic potential to replace the conventional DELLA mutants Rht-B1b/Rht-D1b in wheat. The Rht12 dwarfing gene is not associated with reduced...
2.
Derkx A, Harding C, Miraghazadeh A, Chandler P
Funct Plant Biol
. 2020 Jun;
44(5):525-537.
PMID: 32480585
A suppressor screen using the dwarf Rht-B1c Della mutant of wheat (Triticum aestivum L.) led to the isolation of overgrowth mutants, which retained the original dwarfing gene but grew at...
3.
Groszmann M, Chandler P, Ross J, Swain S
Front Plant Sci
. 2020 Apr;
11:190.
PMID: 32265944
Wild radish is a major weed of Australian cereal crops. A rapid establishment, fast growth, and abundant seed production are fundamental to its success as an invasive species. Wild radish...
4.
Ford B, Foo E, Sharwood R, Karafiatova M, Vrana J, MacMillan C, et al.
Plant Physiol
. 2018 Mar;
177(1):168-180.
PMID: 29545269
Semidwarfing genes have improved crop yield by reducing height, improving lodging resistance, and allowing plants to allocate more assimilates to grain growth. In wheat (), the semidwarfing gene was identified...
5.
Miraghazadeh A, Zhang P, Harding C, Hossain S, Hayden M, Wong D, et al.
Theor Appl Genet
. 2016 Aug;
129(11):2151-2160.
PMID: 27539013
Many deletions of the wheat Della ( Rht - B1 ) gene and its flanking regions were isolated in a simple phenotypic screen, and characterised by modified analysis of SNP...
6.
Boden S, Weiss D, Ross J, Davies N, Trevaskis B, Chandler P, et al.
Plant Cell
. 2014 May;
26(4):1557-1569.
PMID: 24781117
EARLY FLOWERING3 (ELF3) is a circadian clock gene that contributes to photoperiod-dependent flowering in plants, with loss-of-function mutants in barley (Hordeum vulgare), legumes, and Arabidopsis thaliana flowering early under noninductive...
7.
Zhou K, Xu M, Tiernan M, Xie Q, Toyomasu T, Sugawara C, et al.
Phytochemistry
. 2012 Sep;
84:47-55.
PMID: 23009879
Wheat (Triticum aestivum) and rice (Oryza sativa) are two of the most agriculturally important cereal crop plants. Rice is known to produce numerous diterpenoid natural products that serve as phytoalexins...
8.
Wu Y, Zhou K, Toyomasu T, Sugawara C, Oku M, Abe S, et al.
Phytochemistry
. 2012 Sep;
84:40-6.
PMID: 23009878
Two of the most agriculturally important cereal crop plants are wheat (Triticum aestivum) and rice (Oryza sativa). Rice has been shown to produce a number of diterpenoid natural products as...
9.
Kebrom T, Chandler P, Swain S, King R, Richards R, Spielmeyer W
Plant Physiol
. 2012 Jul;
160(1):308-18.
PMID: 22791303
Tillering (branching) is a major yield component and, therefore, a target for improving the yield of crops. However, tillering is regulated by complex interactions of endogenous and environmental signals, and...
10.
Pearce S, Saville R, Vaughan S, Chandler P, Wilhelm E, Sparks C, et al.
Plant Physiol
. 2011 Oct;
157(4):1820-31.
PMID: 22013218
The introduction of the Reduced height (Rht)-B1b and Rht-D1b semidwarfing genes led to impressive increases in wheat (Triticum aestivum) yields during the Green Revolution. The reduction in stem elongation in...