Baek You Soon, Covey Paul A, Petersen Jennifer J, Chetelat Roger T, McClure Bruce, Bedinger Patricia A
Department of Biology, Colorado State University, Fort Collins, Colorado 80523-1878 USA.
Department of Plant Sciences, University of California, Davis, One Shields Avenue, Davis, California 95616 USA.
Am J Bot. 2015 Feb;102(2):302-11. doi: 10.3732/ajb.1400484. Epub 2015 Jan 22.
Interspecific reproductive barriers (IRBs) act to ensure species integrity by preventing hybridization. Previous studies on interspecific crosses in the tomato clade have focused on the success of fruit and seed set. The SI × SC rule (SI species × SC species crosses are incompatible, but the reciprocal crosses are compatible) often applies to interspecific crosses. Because SI systems in the Solanaceae affect pollen tube growth, we focused on this process in a comprehensive study of interspecific crosses in the tomato clade to test whether the SI × SC rule was always followed.
Pollen tube growth was assessed in reciprocal crosses between all 13 species of the tomato clade using fluorescence microscopy.
In crosses between SC and SI species, pollen tube growth follows the SI × SC rule: interspecific pollen tube rejection occurs when SI species are pollinated by SC species, but in the reciprocal crosses (SC × SI), pollen tubes reach ovaries. However, pollen tube rejection occurred in some crosses between pairs of SC species, demonstrating that a fully functional SI system is not necessary for pollen tube rejection in interspecific crosses. Further, gradations in the strength of both pistil and pollen IRBs were revealed in interspecific crosses using SC populations of generally SI species.
The SI × SC rule explains many of the compatibility relations in the tomato clade, but exceptions occur with more recently evolved SC species and accessions, revealing differences in strength of both pistil and pollen IRBs.
种间生殖障碍(IRBs)通过阻止杂交来确保物种完整性。先前关于番茄进化枝种间杂交的研究主要集中在果实和种子结实的成功率上。SI×SC规则(SI物种×SC物种杂交不亲和,但反交亲和)通常适用于种间杂交。由于茄科植物中的SI系统会影响花粉管生长,我们在对番茄进化枝种间杂交的全面研究中聚焦于此过程,以测试是否总是遵循SI×SC规则。
使用荧光显微镜评估番茄进化枝的所有13个物种之间反交的花粉管生长情况。
在SC和SI物种之间的杂交中,花粉管生长遵循SI×SC规则:当用SC物种给SI物种授粉时会发生种间花粉管排斥,但在反交(SC×SI)中,花粉管能到达子房。然而,在一些SC物种对之间的杂交中也出现了花粉管排斥现象,这表明在种间杂交中,完全功能性的SI系统并非花粉管排斥所必需。此外,在使用通常为SI物种的SC群体进行的种间杂交中,揭示了雌蕊和花粉IRBs强度的渐变。
SI×SC规则解释了番茄进化枝中的许多亲和性关系,但在最近进化的SC物种和种质中存在例外情况,这揭示了雌蕊和花粉IRBs强度的差异。