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Showing 1 to 6 of 6 for “"M. Sacchariflorus"”.
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Cytogenetics and genome structure in genus Miscanthus, a potential source of bioenergy feedstocks
… are three Miscanthus species (M. sinensis, M. sacchariflorus and M. x giganteus), one M. sacchariflorus variety and one putative hybrid among Miscanthus accessions, which were clearly separated from the other two genera. The species status of M. floridulus remains in question. The evolution of …
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Dissecting key biomass and adaptation traits of Miscanthus through genetic mapping, exploring mechanisms of cold tolerance, and flowering time in Miscanthus and Saccharum
… a study on one interspecific M. sinensis × M. sacchariflorus F1 population and two intraspecific M. sinensis F1 populations, each of which shared a common parent. A field trial was established at Urbana, IL during spring 2011, and phenotypic data was collected in 2012 and 2013 for fourteen …
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Classification of ornamental accessions of Miscanthus with molecular techniques
… sinensis ‘Hercules’ in fact corresponded to M. sacchariflorus. The method is low cost at scale and rapid. It could be particularly valuable for establishing the veracity of material supplied as a named accession. 2) Simple Sequence Repeats were used to look at both interspecific and …
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Genotype by environment model predictive ability in miscanthus
Submission published under a 24 month embargo labeled 'U of I Access', the embargo will last until 2025-05-01
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Strategies to improve C4 photosynthesis, water and resource-use efficiency under different atmospheres, temperatures, and light environments
… is explored, a hybrid between Miscanthus sacchariflorus and Miscanthus sinensis, which maintains photosynthesis even at <14 °C by upregulating expression of key rate-limiting enzymes such as Rubisco and PPDK. Accessions of the parent species M. sacchariflorus, originating from the northern …
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Understanding the physiological and molecular basis of chilling tolerance across species of the C4 genera Miscanthus and Spartina
… or inheritance from the second parent, M. sacchariflorus. The findings add further credence to observations of previous studies that maintenance or increase in PPDK content is critical to the ability of C4 plants to photosynthesize efficiently in chilling conditions. Chilling tolerance in …