Prentice Honor C, Li Yuan, Lönn Mikael, Tunlid Anders, Ghatnekar Lena
Department of Biology, Lund University, 223 62 Lund, Sweden
Department of Biology, Lund University, 223 62 Lund, Sweden.
Proc Biol Sci. 2015 Dec 22;282(1821):20152453. doi: 10.1098/rspb.2015.2453.
Horizontal gene transfer involves the non-sexual interspecific transmission of genetic material. Even if they are initially functional, horizontally transferred genes are expected to deteriorate into non-expressed pseudogenes, unless they become adaptively relevant in the recipient organism. However, little is known about the distributions of natural transgenes within wild species or the adaptive significance of natural transgenes within wild populations. Here, we examine the distribution of a natural plant-to-plant nuclear transgene in relation to environmental variation within a wild population. Festuca ovina is polymorphic for an extra (second) expressed copy of the nuclear gene (PgiC) encoding cytosolic phosphoglucose isomerase, with the extra PgiC locus having been acquired horizontally from the distantly related grass genus Poa. We investigated variation at PgiC in samples of F. ovina from a fine-scale, repeating patchwork of grassland microhabitats, replicated within spatially separated sites. Even after accounting for spatial effects, the distributions of F. ovina individuals carrying the additional PgiC locus, and one of the enzyme products encoded by the locus, are significantly associated with fine-scale habitat variation. Our results suggest that the PgiC transgene contributes, together with the unlinked 'native' PgiC locus, to local adaptation to a fine-scale mosaic of edaphic and biotic grassland microhabitats.
水平基因转移涉及遗传物质的非性种间传递。即使水平转移的基因最初具有功能,除非它们在受体生物中变得具有适应性相关性,否则预计会退化为不表达的假基因。然而,对于野生种内天然转基因的分布或野生种群中天然转基因的适应性意义知之甚少。在这里,我们研究了野生种群中一种天然植物到植物的核转基因的分布与环境变异的关系。羊茅(Festuca ovina)对于编码胞质磷酸葡萄糖异构酶的核基因(PgiC)的额外(第二个)表达拷贝具有多态性,额外的PgiC位点是从远缘的早熟禾属(Poa)水平获得的。我们在空间上分离的地点内重复的草原微生境精细尺度、重复拼凑的样本中研究了羊茅PgiC的变异。即使考虑了空间效应,携带额外PgiC位点的羊茅个体以及该位点编码的一种酶产物的分布也与精细尺度的栖息地变异显著相关。我们的结果表明,PgiC转基因与未连锁的“天然”PgiC位点一起,有助于局部适应土壤和生物草原微生境的精细尺度镶嵌。