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  • 1
    In: Functional Plant Biology, CSIRO Publishing, Vol. 46, No. 1 ( 2019), p. 1-
    Abstract: Elevated atmospheric CO2 concentration (e[CO2]) can stimulate the photosynthesis and productivity of C3 species including food and forest crop s. Intraspecific variation in responsiveness to e[CO2] can be exploited to increase productivity under e[CO2] . However, active selection of genotypes to increase productivity under e[CO2] is rarely performed across a wide range of germplasm, because of constraints of space and the cost of CO2 fumigation facilities. If we are to capitalise on recent advances in whole genome sequencing, approaches are required to help overcome these issues of space and cost. Here, we discuss the advantage of applying prescreening as a tool in large genome×e[CO2] experiments, where a surrogate for e[CO2] was used to select cultivars for more detailed analysis under e[CO2] conditions. We discuss why phenotypic prescreening in population-wide screening for e[CO2] responsiveness is necessary, what approaches could be used for prescreening for e[CO2] responsiveness, and how the data can be used to improve genetic selection of high-performing cultivars. We do this within the framework of understanding the strengths and limitations of genotype–phenotype mapping.
    Type of Medium: Online Resource
    ISSN: 1445-4408
    Language: English
    Publisher: CSIRO Publishing
    Publication Date: 2019
    SSG: 12
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