Li Wentao, Chetelat Roger T
C. M. Rick Tomato Genetics Resource Center, Department of Plant Sciences, University of California, Davis, CA 95616.
C. M. Rick Tomato Genetics Resource Center, Department of Plant Sciences, University of California, Davis, CA 95616
Proc Natl Acad Sci U S A. 2015 Apr 7;112(14):4417-22. doi: 10.1073/pnas.1423301112. Epub 2015 Mar 23.
Unilateral interspecific incompatibility (UI) is a postpollination, prezygotic reproductive barrier that prevents hybridization between related species when the female parent is self-incompatible (SI) and the male parent is self-compatible (SC). In tomato and related Solanum species, two genes, ui1.1 and ui6.1, are required for pollen compatibility on pistils of SI species or hybrids. We previously showed that ui6.1 encodes a Cullin1 (CUL1) protein. Here we report that ui1.1 encodes an S-locus F-box (SLF) protein. The ui1.1 gene was mapped to a 0.43-cM, 43.2-Mbp interval at the S-locus on chromosome 1, but positional cloning was hampered by low recombination frequency. We hypothesized that ui1.1 encodes an SLF protein(s) that interacts with CUL1 and Skp1 proteins to form an SCF-type (Skp1, Cullin1, F-box) ubiquitin E3 ligase complex. We identified 23 SLF genes in the S. pennellii genome, of which 19 were also represented in cultivated tomato (S. lycopersicum). Data from recombination events, expression analysis, and sequence annotation highlighted 11 S. pennellii genes as candidates. Genetic transformations demonstrated that one of these, SpSLF-23, is sufficient for ui1.1 function. A survey of cultivated and wild tomato species identified SLF-23 orthologs in each of the SI species, but not in the SC species S. lycopersicum, S. cheesmaniae, and S. galapagense, pollen of which lacks ui1.1 function. These results demonstrate that pollen compatibility in UI is mediated by protein degradation through the ubiquitin-proteasome pathway, a mechanism related to that which controls pollen recognition in SI.
单侧种间不亲和性(UI)是一种授粉后、合子前的生殖障碍,当母本为自交不亲和(SI)而父本为自交亲和(SC)时,它会阻止相关物种间的杂交。在番茄及相关茄属物种中,花粉在SI物种或杂种雌蕊上的亲和性需要两个基因,即ui1.1和ui6.1。我们之前表明ui6.1编码一种Cullin1(CUL1)蛋白。在此我们报道ui1.1编码一种S位点F盒(SLF)蛋白。ui1.1基因被定位到1号染色体S位点上一个0.43厘摩、43.2兆碱基对的区间,但由于重组频率低,位置克隆受到阻碍。我们推测ui1.1编码一种SLF蛋白,其与CUL1和Skp1蛋白相互作用形成一个SCF型(Skp1、Cullin1、F盒)泛素E3连接酶复合体。我们在潘那利番茄基因组中鉴定出23个SLF基因,其中19个在栽培番茄(番茄)中也有。来自重组事件、表达分析和序列注释的数据突出了11个潘那利番茄基因作为候选基因。遗传转化表明其中一个基因SpSLF - 23足以发挥ui1.1的功能。对栽培和野生番茄物种的调查在每个SI物种中都鉴定出了SLF - 23直系同源基因,但在SC物种番茄、契斯曼尼番茄和加拉帕戈斯番茄中未鉴定到,这些物种的花粉缺乏ui1.1功能。这些结果表明,UI中的花粉亲和性是通过泛素 - 蛋白酶体途径介导的蛋白质降解来实现的,这一机制与控制SI中花粉识别的机制相关。