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Coordinated Genetic Regulation of Growth and Lignin Revealed by Quantitative Trait Locus Analysis of cDNA Microarray Data in an Interspecific Backcross of Eucalyptus

机译:桉树种间回交的cDNA芯片数据的定量性状基因座分析揭示了生长和木质素的协调遗传调控。

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摘要

Phenotypic, genotypic, and transcript level (microarray) data from an interspecific backcross population of Eucalyptus grandis and Eucalyptus globulus were integrated to dissect the genetic and metabolic network underlying growth variation. Transcript abundance, measured for 2,608 genes in the differentiating xylem of a 91 (E. grandis × E. globulus) × E. grandis backcross progeny was correlated with diameter variation, revealing coordinated down-regulation of genes encoding enzymes of the lignin biosynthesis and associated methylation pathways in fast growing individuals. Lignin analysis of wood samples confirmed the content and quality predicted by the transcript levels measured on the microarrays. Quantitative trait locus (QTL) analysis of transcript levels of lignin-related genes showed that their mRNA abundance is regulated by two genetic loci, demonstrating coordinated genetic control over lignin biosynthesis. These two loci colocalize with QTLs for growth, suggesting that the same genomic regions are regulating growth, and lignin content and composition in the progeny. Genetic mapping of the lignin genes revealed that most of the key biosynthetic genes do not colocalize with growth and transcript level QTLs, with the exception of the locus encoding the enzyme S-adenosylmethionine synthase. This study illustrates the power of integrating quantitative analysis of gene expression data and genetic map information to discover genetic and metabolic networks regulating complex biological traits.
机译:来自桉树和桉树种间回交种群的表型,基因型和转录水平(微阵列)数据被整合,以剖析生长变异背后的遗传和代谢网络。在91个(E. grandis×E. globulus)×E. grandis回交后代的木质部分化中测得的转录物丰度为2,608个基因,与直径变化相关,揭示了编码木质素生物合成酶的基因的协调下调及相关快速增长的个体中的甲基化途径。木质样品的木质素分析证实了通过微阵列上测得的转录本水平预测的含量和质量。木质素相关基因的转录水平的定量性状基因座(QTL)分析显示,它们的mRNA丰度受两个遗传基因座的调控,表明对木质素生物合成的协调遗传控制。这两个基因座与QTL共定位生长,表明相同的基因组区域在调节生长,子代中的木质素含量和组成。木质素基因的遗传图谱显示,除编码酶S-腺苷甲硫氨酸合酶的基因座外,大多数关键生物合成基因与生长和转录水平QTL不共定位。这项研究说明了整合对基因表达数据和遗传图谱信息进行定量分析以发现调节复杂生物学特性的遗传和代谢网络的力量。

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