Species selection determines carbon allocation and turnover in Miscanthus crops: Implications for biomass production and C sequestration

Autor: Iglesias Briones, Maria Jesus, Massey, A., Elias, D.M.O., McCalmont, J.P., Farrar, K., Donnison, I., McNamara, N.P.
Rok vydání: 2023
Předmět:
Zdroj: Science of The Total Environment. 887:164003
ISSN: 0048-9697
DOI: 10.1016/j.scitotenv.2023.164003
Popis: Growing Miscanthus species and hybrids has received strong scientific and commercial support, with the majority of the carbon (C) modelling predictions having focused on the high-yield, sterile and noninvasive hybrid Miscanthus × giganteus. However, the potential of other species with contrasting phenotypic and physiological traits has been seldom explored. To better understand the mechanisms underlying C allocation dynamics in these bioenergy crops, we pulse-labelled (13CO2) intact plant-soil systems of Miscanthus × giganteus (GIG), Miscanthus sinensis (SIN) and Miscanthus lutarioriparius (LUT) and regularly analysed soil respiration, leaves, stems, rhizomes, roots and soils for up to 190 days until leaf senescence. A rapid isotopic enrichment of all three species was observed after 4 h, with the amount of 13C fixed into plant biomass being inversely related to their respective standing biomass prior to pulse-labelling (i.e., GIG < SIN < LUT). However, both GIG and LUT allocated more photoassimilates in the aboveground biomass (leaves+stems = 78 % and 74 %, respectively) than SIN, which transferred 30% of fixed 13C in its belowground biomass (rhizomes+roots). Although less fixed 13C was recovered from the soils (
Databáze: OpenAIRE