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Pregled bibliografske jedinice broj: 1206503

Site impacts nutrient translocation efficiency in intra- and interspecies miscanthus hybrids on marginal lands


Magenau, Elena; Clifton-Brown, John; Awty-Carroll, Danny; Ashman, Chris; Ferrarini, Andrea; Kontek, Mislav; Martani, Enrico; Roderick, Kevin; Amaducci, Stefano; Davey, Chris et al.
Site impacts nutrient translocation efficiency in intra- and interspecies miscanthus hybrids on marginal lands // Global Change Biology Bioenergy, 48/119 (2022), 1-40 doi:10.1111/gcbb.12985 (međunarodna recenzija, članak, znanstveni)


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Naslov
Site impacts nutrient translocation efficiency in intra- and interspecies miscanthus hybrids on marginal lands

Autori
Magenau, Elena ; Clifton-Brown, John ; Awty-Carroll, Danny ; Ashman, Chris ; Ferrarini, Andrea ; Kontek, Mislav ; Martani, Enrico ; Roderick, Kevin ; Amaducci, Stefano ; Davey, Chris ; Jurišić, Vanja ; Kam, Jason ; Trindade, Luisa ; Lewandowski, Iris ; Kiesel, Andreas

Izvornik
Global Change Biology Bioenergy (1757-1693) 48/119 (2022); 1-40

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
miscanthus, perennial rhizomatous grass, yield series, nutrient recycling, ash content, nutrient content, nutrient offtake, perennial biomass crop, miscanthus seeded hybrids, multi-location field trails

Sažetak
Miscanthus, a C4 perennial rhizomatous grass, is capable of growing in varied climates and soil types in Europe, including on marginal lands. It can produce high yields with low nutrient inputs when harvested after complete senescence. Senescence induction and rate depend on complex genetic, environmental, and management interactions. To explore these interactions, we analysed four miscanthus hybrids (two novel seed-based hybrids, GRC 3(M. sinensis × sinensis) and GRC 14 (M. sacchariflorus × sinensis) ; GRC 15, anovel M. sacchariflorus × sinensis clone ; and GRC 9, a standard M.× giganteus clone) in Italy, Croatia, Germany and the UK.Over all trial locations and hybrids, the average aboveground biomass of the three-year-old stands in August 2020 was 15 t DM ha-1 with nutrient contents of 7.6 mg N g-1 and 14.6 mg K g-1. As expected, delaying the harvest until spring reduced overall yield and nutrient contents (12 t DM ha-1, 3.3 mg N g- 1and 5.5 mg K g-1). At lower latitudes, the late-ripening M.sacchariflorus × sinensisGRC 14 and GRC 15 combined high yields with low nutrient contents. At the most elevated latitude location (UK), the early-ripening M. sinensis × sinensiscombined high biomass yields with low nutrient offtakes. The clonal M. × giganteus with intermediate flowering and senescence attained similar low nutrient contents by spring harvest at all four locations.Seasonal changes in yield and nutrient levels analysed in this study provide: 1) a first step towardsrecommending hybrids for specific locations and end uses in Europe ; 2) crucial data for determination of harvest time and practical steps in the valorisation of biomass ; and 3) key sustainability data for life cycle assessments. Identification of trade-offs resulting from genetic × environment × management interactions are critical for increasing sustainable biomass supply from miscanthus grown on marginal lands.

Izvorni jezik
Engleski

Znanstvena područja
Poljoprivreda (agronomija)



POVEZANOST RADA


Profili:

Avatar Url Vanja Jurišić (autor)

Avatar Url Mislav Kontek (autor)

Poveznice na cjeloviti tekst rada:

doi onlinelibrary.wiley.com

Citiraj ovu publikaciju:

Magenau, Elena; Clifton-Brown, John; Awty-Carroll, Danny; Ashman, Chris; Ferrarini, Andrea; Kontek, Mislav; Martani, Enrico; Roderick, Kevin; Amaducci, Stefano; Davey, Chris et al.
Site impacts nutrient translocation efficiency in intra- and interspecies miscanthus hybrids on marginal lands // Global Change Biology Bioenergy, 48/119 (2022), 1-40 doi:10.1111/gcbb.12985 (međunarodna recenzija, članak, znanstveni)
Magenau, E., Clifton-Brown, J., Awty-Carroll, D., Ashman, C., Ferrarini, A., Kontek, M., Martani, E., Roderick, K., Amaducci, S. & Davey, C. (2022) Site impacts nutrient translocation efficiency in intra- and interspecies miscanthus hybrids on marginal lands. Global Change Biology Bioenergy, 48/119, 1-40 doi:10.1111/gcbb.12985.
@article{article, author = {Magenau, Elena and Clifton-Brown, John and Awty-Carroll, Danny and Ashman, Chris and Ferrarini, Andrea and Kontek, Mislav and Martani, Enrico and Roderick, Kevin and Amaducci, Stefano and Davey, Chris and Juri\v{s}i\'{c}, Vanja and Kam, Jason and Trindade, Luisa and Lewandowski, Iris and Kiesel, Andreas}, year = {2022}, pages = {1-40}, DOI = {10.1111/gcbb.12985}, keywords = {miscanthus, perennial rhizomatous grass, yield series, nutrient recycling, ash content, nutrient content, nutrient offtake, perennial biomass crop, miscanthus seeded hybrids, multi-location field trails}, journal = {Global Change Biology Bioenergy}, doi = {10.1111/gcbb.12985}, volume = {48/119}, issn = {1757-1693}, title = {Site impacts nutrient translocation efficiency in intra- and interspecies miscanthus hybrids on marginal lands}, keyword = {miscanthus, perennial rhizomatous grass, yield series, nutrient recycling, ash content, nutrient content, nutrient offtake, perennial biomass crop, miscanthus seeded hybrids, multi-location field trails} }
@article{article, author = {Magenau, Elena and Clifton-Brown, John and Awty-Carroll, Danny and Ashman, Chris and Ferrarini, Andrea and Kontek, Mislav and Martani, Enrico and Roderick, Kevin and Amaducci, Stefano and Davey, Chris and Juri\v{s}i\'{c}, Vanja and Kam, Jason and Trindade, Luisa and Lewandowski, Iris and Kiesel, Andreas}, year = {2022}, pages = {1-40}, DOI = {10.1111/gcbb.12985}, keywords = {miscanthus, perennial rhizomatous grass, yield series, nutrient recycling, ash content, nutrient content, nutrient offtake, perennial biomass crop, miscanthus seeded hybrids, multi-location field trails}, journal = {Global Change Biology Bioenergy}, doi = {10.1111/gcbb.12985}, volume = {48/119}, issn = {1757-1693}, title = {Site impacts nutrient translocation efficiency in intra- and interspecies miscanthus hybrids on marginal lands}, keyword = {miscanthus, perennial rhizomatous grass, yield series, nutrient recycling, ash content, nutrient content, nutrient offtake, perennial biomass crop, miscanthus seeded hybrids, multi-location field trails} }

Časopis indeksira:


  • Current Contents Connect (CCC)
  • Web of Science Core Collection (WoSCC)
    • Science Citation Index Expanded (SCI-EXP)
    • SCI-EXP, SSCI i/ili A&HCI
  • Scopus


Citati:





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