Anderson L K, Covey P A, Larsen L R, Bedinger P, Stack S M
Department of Biology and Program in Plant Molecular Biology, Colorado State University, Fort Collins, CO 80523-1878, USA.
Cytogenet Genome Res. 2010 Jul;129(1-3):24-34. doi: 10.1159/000313850. Epub 2010 Jun 11.
The tomato clade of Solanaceae is composed of 12 species that are all diploid with the same chromosome number and morphology. Species in the tomato clade are considered to have evolved primarily by genic changes rather than large-scale chromosomal rearrangements because pachytene chromosomes in F(1) hybrids synapse normally along their lengths and linkage maps of intra- and inter-specific hybrids are co-linear. However, small inversions have been reported between tomato and some of its wild relatives. Therefore, we reevaluated 5 F(1) hybrids using high-resolution, electron microscopic examination of pachytene chromosome (= synaptonemal complex) spreads to determine whether any minor structural changes had occurred among species in the tomato clade, which were not easily visible using light microscopic analysis of conventional chromosome squashes. Our study revealed a number of unexpected synaptic configurations such as mismatched kinetochores, inversion loops and reciprocal translocations. Most of these structural differences were in or close to heterochromatin that has comparatively few genes and little recombination, so they would be expected to have little effect on the evident colinearity of linkage maps, especially in euchromatin. However, these results demonstrate that substantial changes in chromosome structure have occurred among species within the tomato clade.
茄科的番茄分支由12个物种组成,它们均为二倍体,具有相同的染色体数目和形态。番茄分支中的物种被认为主要是通过基因变化而非大规模染色体重排进化而来的,因为F(1)杂种中的粗线期染色体在其长度上正常配对,种内和种间杂种的连锁图谱是共线的。然而,已经报道了番茄与其一些野生近缘种之间存在小的倒位。因此,我们使用高分辨率电子显微镜检查粗线期染色体(=联会复合体)铺展,重新评估了5个F(1)杂种,以确定番茄分支中的物种之间是否发生了任何不易通过传统染色体压片的光学显微镜分析观察到的微小结构变化。我们的研究揭示了许多意想不到的联会构型,如动粒不匹配、倒位环和相互易位。这些结构差异大多位于异染色质内或其附近,而异染色质中的基因相对较少且重组很少,因此预计它们对连锁图谱明显的共线性影响很小,尤其是在常染色质中。然而,这些结果表明番茄分支内的物种之间发生了染色体结构的实质性变化。