دورية أكاديمية

Metabolome plasticity in 241 Arabidopsis thalianaaccessions reveals evolutionary cold adaptation processes

التفاصيل البيبلوغرافية
العنوان: Metabolome plasticity in 241 Arabidopsis thalianaaccessions reveals evolutionary cold adaptation processes
المؤلفون: Weiszmann, Jakob, Walther, Dirk, Clauw, Pieter, Back, Georg, Gunis, Joanna, Reichardt, Ilka, Koemeda, Stefanie, Jez, Jakub, Nordborg, Magnus, Schwarzerova, Jana, Pierides, Iro, Nägele, Thomas, Weckwerth, Wolfram
المساهمون: Vienna Metabolomics Center, Deutsche Forschungsgemeinschaft, Austrian Science Fund
المصدر: Plant Physiology ; volume 193, issue 2, page 980-1000 ; ISSN 0032-0889 1532-2548
بيانات النشر: Oxford University Press (OUP)
سنة النشر: 2023
مصطلحات موضوعية: Plant Science, Genetics, Physiology
الوصف: Acclimation and adaptation of metabolism to a changing environment are key processes for plant survival and reproductive success. In the present study, 241 natural accessions of Arabidopsis (Arabidopsis thaliana) were grown under two different temperature regimes, 16 °C and 6 °C, and growth parameters were recorded, together with metabolite profiles, to investigate the natural genome × environment effects on metabolome variation. The plasticity of metabolism, which was captured by metabolic distance measures, varied considerably between accessions. Both relative growth rates and metabolic distances were predictable by the underlying natural genetic variation of accessions. Applying machine learning methods, climatic variables of the original growth habitats were tested for their predictive power of natural metabolic variation among accessions. We found specifically habitat temperature during the first quarter of the year to be the best predictor of the plasticity of primary metabolism, indicating habitat temperature as the causal driver of evolutionary cold adaptation processes. Analyses of epigenome- and genome-wide associations revealed accession-specific differential DNA-methylation levels as potentially linked to the metabolome and identified FUMARASE2 as strongly associated with cold adaptation in Arabidopsis accessions. These findings were supported by calculations of the biochemical Jacobian matrix based on variance and covariance of metabolomics data, which revealed that growth under low temperatures most substantially affects the accession-specific plasticity of fumarate and sugar metabolism. Our findings indicate that the plasticity of metabolic regulation is predictable from the genome and epigenome and driven evolutionarily by Arabidopsis growth habitats.
نوع الوثيقة: article in journal/newspaper
اللغة: English
DOI: 10.1093/plphys/kiad298
DOI: 10.1093/plphys/kiad298/50540535/kiad298.pdf
الإتاحة: https://doi.org/10.1093/plphys/kiad298Test
https://academic.oup.com/plphys/article-pdf/193/2/980/51727448/kiad298.pdfTest
حقوق: https://creativecommons.org/licenses/by-nc-nd/4.0Test/
رقم الانضمام: edsbas.A06B051F
قاعدة البيانات: BASE