Padovan Amanda, Patel Hardip R, Chuah Aaron, Huttley Gavin A, Krause Sandra T, Degenhardt Jörg, Foley William J, Külheim Carsten
Research School of Biology, Australian National University, Canberra, ACT 0200, Australia.
Genome Discovery Unit, John Curtin School of Medical Research, Australian National University, Canberra, ACT 0200, Australia.
PLoS One. 2015 May 15;10(5):e0123226. doi: 10.1371/journal.pone.0123226. eCollection 2015.
Phenotypic mosaic trees offer an ideal system for studying differential gene expression. We have investigated two mosaic eucalypt trees from two closely related species (Eucalyptus melliodora and E. sideroxylon), which each support two types of leaves: one part of the canopy is resistant to insect herbivory and the remaining leaves are susceptible. Driving this ecological distinction are differences in plant secondary metabolites. We used these phenotypic mosaics to investigate genome wide patterns of foliar gene expression with the aim of identifying patterns of differential gene expression and the somatic mutation(s) that lead to this phenotypic mosaicism. We sequenced the mRNA pool from leaves of the resistant and susceptible ecotypes from both mosaic eucalypts using the Illumina HiSeq 2000 platform. We found large differences in pathway regulation and gene expression between the ecotypes of each mosaic. The expression of the genes in the MVA and MEP pathways is reflected by variation in leaf chemistry, however this is not the case for the terpene synthases. Apart from the terpene biosynthetic pathway, there are several other metabolic pathways that are differentially regulated between the two ecotypes, suggesting there is much more phenotypic diversity than has been described. Despite the close relationship between the two species, they show large differences in the global patterns of gene and pathway regulation.
表型嵌合体树木为研究差异基因表达提供了一个理想的系统。我们研究了来自两个近缘物种(蜜叶桉和铁心桉)的两棵嵌合体桉树,每棵树都有两种类型的叶子:树冠的一部分对昆虫食草具有抗性,其余叶子则易感。驱动这种生态差异的是植物次生代谢物的差异。我们利用这些表型嵌合体来研究全基因组的叶基因表达模式,目的是识别差异基因表达模式以及导致这种表型嵌合现象的体细胞突变。我们使用Illumina HiSeq 2000平台对两棵嵌合体桉树的抗性和易感生态型叶片的mRNA池进行了测序。我们发现每个嵌合体的生态型之间在途径调控和基因表达上存在很大差异。MVA和MEP途径中基因的表达反映在叶片化学组成的变化上,然而萜类合酶的情况并非如此。除了萜类生物合成途径外,还有其他几个代谢途径在两种生态型之间受到差异调控,这表明表型多样性比已描述的要多得多。尽管这两个物种关系密切,但它们在基因和途径调控的整体模式上表现出很大差异。