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Crop design for specific adaptation in variable dryland production environments
Climatic variability in dryland production environments (E) generates variable yield and crop production risks. Optimal combinations of …
Graeme L. Hammer
,
Greg McLean
,
Scott Chapman
,
Bangyou Zheng
,
Al Doherty
,
Matthew T. Harrison
,
Erik van Oosterom
,
David Jordan
DOI
Trait assessment
Raising water productivity: Trait assessment for Australian rainfed wheat
Pheno-Copter: A Low-Altitude, Autonomous Remote-Sensing Robotic Helicopter for High-Throughput Field-Based Phenotyping
Plant breeding trials are extensive (100s to 1000s of plots) and are difficult and expensive to monitor by conventional means, …
Scott C. Chapman
,
Torsten Merz
,
Amy Chan
,
Paul Jackway
,
Stefan Hrabar
,
M. Fernanda Dreccer
,
Edward Holland
,
Bangyou Zheng
,
Jun Ling
,
Jose Jimenez-Berni
DOI
Breeding for the future: How to adapt to potential impacts of future frost, drought and heat events on Australian wheat?
While extreme climatic events (frost, heat and drought) can already severely limit wheat production, the expected future increase in …
Karine Chenu
,
Bangyou Zheng
,
Scott Chapman
Project
Breeding for the future – avoiding climate extremes and maximising yield of spring wheat in water-limited environments
Scott Chapman
,
Bangyou Zheng
,
Karine Chenu
,
Matthieu Bogard
Project
Crop design for specific adaptation in variable dryland production environment
Climatic variability in dryland production environments (E) generates crop production risks. Optimal combinations of genotype (G) and …
Graeme Hammer
,
Greg McLean
,
Scott Chapman
,
Bangyou Zheng
,
Al Doherty
,
Matthew Harrison
,
Erik van Oosterom
,
David Jordan
Predicting heading time of Australian wheat using effects of VRN1 and Ppd-D1
Flowering time is a main determinant of wheat adaptation to diverse environments and is influenced by three groups of genes, earliness …
Bangyou Zheng
,
Ben Biddulph
,
Dora Li
,
Haydn Kuchel
,
Scott Chapman
Project
Using gene-based information to adapt wheat flowering time to avoid heat, frost and drought stresses in current and future climates
Varying the timing of reproductive stages of growth relative to climatic stresses is a useful adaptation to maintain yields. In future …
Bangyou Zheng
,
Karine Chenu
,
Scott Chapman
Project
Quantification of the effects of VRN1 and Ppd-D1 to predict spring wheat (Triticum aestivum) heading time across diverse environments
Heading time is a major determinant of the adaptation of wheat to different environments, and is critical in minimizing risks of frost, …
Bangyou Zheng
,
Ben Biddulph
,
Dora Li
,
Haydn Kuchel
,
Scott Chapman
Project
DOI
Association genetics for earliness components and QTL-based ecophysiological predictions of heading date provide tools to optimize heading date through breeding
Matthieu Bogard
,
Bangyou Zheng
,
Hayden Kuchel
,
Ben Biddulph
,
Scott Chapman
Project
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