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Improving wood properties for wood utilization through multi-omics integration in lignin biosynthesis

机译:通过木质素生物合成中的多组学整合提高木材利用性能

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摘要

A multi-omics quantitative integrative analysis of lignin biosynthesis can advance the strategic engineering of wood for timber, pulp, and biofuels. Lignin is polymerized from three monomers (monolignols) produced by a grid-like pathway. The pathway in wood formation of Populus trichocarpa has at least 21 genes, encoding enzymes that mediate 37 reactions on 24 metabolites, leading to lignin and affecting wood properties. We perturb these 21 pathway genes and integrate transcriptomic, proteomic, fluxomic and phenomic data from 221 lines selected from ~2000 transgenics (6-month-old). The integrative analysis estimates how changing expression of pathway gene or gene combination affects protein abundance, metabolic-flux, metabolite concentrations, and 25 wood traits, including lignin, tree-growth, density, strength, and saccharification. The analysis then predicts improvements in any of these 25 traits individually or in combinations, through engineering expression of specific monolignol genes. The analysis may lead to greater understanding of other pathways for improved growth and adaptation.
机译:木质素生物合成的多组学定量综合分析可以促进木材用于木材,纸浆和生物燃料的战略工程。木质素由通过网格状途径产生的三种单体(单酚)聚合而成。杨木的木材形成途径中至少有21个基因,其编码的酶介导24种代谢产物的37个反应,从而导致木质素并影响木材的特性。我们干扰了这21条通路基因,并整合了从221个品系中选出的转录组学,蛋白质组学,通量组学和表型学数据,这些品系来自〜2000个转基因(6个月大)。综合分析估计途径基因或基因组合的表达变化如何影响蛋白质丰度,代谢通量,代谢产物浓度和25种木材性状,包括木质素,树木生长,密度,强度和糖化作用。然后,该分析通过工程化特定单木酚醇基因的表达来预测这25个性状中的任何一个的单独或组合的改善。分析可能会导致对其他途径的更好理解,以促进生长和适应。

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