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dc.creatorRadotić, Ksenija
dc.creatorPopović, Jasmina
dc.creatorVojisavljević, Katarina
dc.creatorJanošević, Dušica
dc.creatorSimonović Radosavljević, Jasna
dc.creatorButulija, Svetlana
dc.creatorMatović, Branko
dc.creatorMutavdžić, Dragosav
dc.creatorSzucs, Csilla
dc.creatorCseri, Andras
dc.creatorDudits, Denes
dc.creatorKovacs, Kornel L.
dc.creatorMitrović, Aleksandra Lj.
dc.date.accessioned2024-08-28T12:03:02Z
dc.date.available2025-07-28
dc.date.issued2024
dc.identifier.issn0043-7719
dc.identifier.urihttp://rimsi.imsi.bg.ac.rs/handle/123456789/3271
dc.description.abstractEffectiveness in woody biomass utilization is highly dependent on its genetics and physiology. We performed morpho-anatomical, chemical, and biomethane productivity characterizations of one-year-old woody stems in three shrub Salix viminalis genotypes: a diploid (Energo) and its two autotetraploid derivatives (PP-E7 and PP-E13). Tetraploidization affected changes in stem morpho-anatomy and corresponding improved chemical features and biomethane productivity, considerably more pronounced in tetraploid PP-E13, while PP-E7 was more similar to diploid Energo. Compared to diploid Energo, in tetraploid PP-E13 morphometric analysis showed increased stem diameter and higher wood fiber radial double wall thickness, while microscopic analysis suggested higher syringyl to guaiacyl (S:G) ratio of the wood fiber cell wall. Presented changes in stem morpho-anatomy of tetraploid PP-E13 compared to diploid Energo correspond to the improved chemical features: the lower Klason lignin content and higher S:G ratio, the higher cellulose and xylan content, and lower cellulose crystallinity (Crl). Presented improved chemical features, along with the increase in ash content, resulted in a 7.3% (10.3 CH4 mL/g VS) increase in biomethane productivity in tetraploid PP-E13, compared to diploid Energo, suggesting tetraploid PP-E13 as an optimal raw material for fermentation technologies. In addition, besides the well-known chemical markers of willow biomass quality, the presented results highlight key stem morpho-anatomical parameters, which can serve as additional markers in energy willow improvement.sr
dc.language.isoensr
dc.publisherSpringersr
dc.relationinfo:eu-repo/grantAgreement/MESTD/inst-2020/200053/RS//sr
dc.relationinfo:eu-repo/grantAgreement/MESTD/inst-2020/200178/RS//sr
dc.rightsembargoedAccesssr
dc.sourceWood Science and Technologysr
dc.subjectbiomasssr
dc.subjectbiomethanesr
dc.subjectcell wallsr
dc.subjectcellulose crystallinitysr
dc.subjectFourier transform infrared spectrometrysr
dc.subjectKlason ligninsr
dc.subjectwillowsr
dc.titleDoubling genome size of energy willow affects woody stem cell wall structure, chemistry, and biogas yieldsr
dc.typearticlesr
dc.rights.licenseARRsr
dc.rights.holderSpringer Naturesr
dc.citation.epage1379
dc.citation.rankM21a~
dc.citation.spage1353
dc.citation.volume58
dc.identifier.doi10.1007/s00226-024-01567-w
dc.type.versionacceptedVersionsr


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