Unveiling Drought-Resilient Pathways: Integrating High Throughput Phenotyping and Multivariate Modeling to Enhance Barley Adaptation Climate Change

cg.contactouahid@cgiar.orgen_US
cg.contributor.centerInternational Center for Agricultural Research in the Dry Areas - ICARDAen_US
cg.contributor.centerThe Spanish National Research Council - CSICen_US
cg.contributor.crpGenetic Innovation - GIen_US
cg.contributor.funderCGIAR System Organization - CGIARen_US
cg.contributor.initiativeAccelerated Breedingen_US
cg.contributor.projectInitiative - From Fragility to Resilience in Central and West Asia and North Africa (F2R-CWANA)en_US
cg.contributor.project-lead-instituteWorldFish - WFen_US
cg.coverage.countryMAen_US
cg.coverage.regionNorthern Africaen_US
cg.creator.idBackhaus, Anna Elisabeth: 0000-0001-5202-9372en_US
cg.creator.idVisioni, Andrea: 0000-0002-0586-4532en_US
cg.creator.idSanchez-Garcia, Miguel: 0000-0002-9257-4583en_US
cg.subject.actionAreaGenetic Innovationen_US
cg.subject.agrovocbarleyen_US
cg.subject.agrovocclimate changeen_US
cg.subject.agrovocphenotypingen_US
dc.contributorBackhaus, Anna Elisabethen_US
dc.contributorJimenez, José-Antonioen_US
dc.contributorVisioni, Andreaen_US
dc.contributorSanchez-Garcia, Miguelen_US
dc.creatorOuahid, safaeen_US
dc.date.accessioned2024-01-16T16:31:59Z
dc.date.available2024-01-16T16:31:59Z
dc.description.abstractThe increasing threat of climate change makes developing drought-resilient crops ever more important. Barley (Hordeum vulgare), is a highly drought-tolerant cereal and a key player in the future of farming. Moreover, the pivotal role of plant architecture, development patterns and roots in conferring drought tolerance to plants has been understudied, despite their potential importance for drought tolerance. In this context, we delve into the intricate interplay between barley plants and the environment - especially drought - with a distinct focus on leveraging multi-data integration and machine learning techniques to analyse high-throughput phenotyping data f rom the f ield. By employing automated ground-based platforms, such as the Phenomobile equipped with multi-spectral, RGB cameras, LiDAR and the Physiotron - a lysimeter with a multi-sensor bridge - that provides controlled environmental conditions for indepth study of roots, for monitoring responses to stress with unmatched precision, we can capture large data encompassing many critical phenotypic indicators at plot and f ield level. This large dataset is subjected to multivariate modeling to discover complex relationships between multiple traits and environmental factors. We concentrate on predicting complex traits such as root traits, biomass accumulation, yield, stress responses that are fundamental to barley's resilience under stress. Leveraging the power of machine learning with phenomics and genotypic data holds the promise of unraveling the complex relationships between genetic makeup and observable traits enabling us to understand the fundamental genetic drivers of various phenotypic characteristics. By identifying hidden correlations and interdependencies, our models will enable the prediction of phenotypic traits of interest under different stress conditions, offering invaluable insights into barley's drought resistance potential and performance. Our work will highlight the importance of data integration and machine learning to unlock the potential of agricultural research.en_US
dc.formatPDFen_US
dc.identifierhttps://apbaconf2023.um6p.ma/conference-book.pdfen_US
dc.identifierhttps://mel.cgiar.org/reporting/downloadmelspace/hash/78c34837e947c9e5d7d21a97f1e7c7c6/v/18845ac6160b4b7eb895599273547e6ben_US
dc.identifier.citationSafae Ouahid, Anna Elisabeth Backhaus, José-Antonio Jimenez, Andrea Visioni, Miguel Sanchez-Garcia. (23/10/2023). Unveiling Drought-Resilient Pathways: Integrating High Throughput Phenotyping and Multivariate Modeling to Enhance Barley Adaptation Climate Change.en_US
dc.identifier.statusOpen accessen_US
dc.identifier.urihttps://hdl.handle.net/20.500.11766/69042
dc.languageenen_US
dc.rightsCC-BY-SA-4.0en_US
dc.titleUnveiling Drought-Resilient Pathways: Integrating High Throughput Phenotyping and Multivariate Modeling to Enhance Barley Adaptation Climate Changeen_US
dc.typePosteren_US
dcterms.available2023-10-23en_US

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