Takebayashi Naoki, Brewer Philip B, Newbigin Ed, Uyenoyama Marcy K
Department of Biology, Duke University, USA.
Mol Biol Evol. 2003 Nov;20(11):1778-94. doi: 10.1093/molbev/msg209. Epub 2003 Jul 28.
Diverse self-incompatibility (SI) mechanisms permit flowering plants to inhibit fertilization by pollen that express specificities in common with the pistil. Characteristic of at least two model systems is greatly reduced recombination across large genomic tracts surrounding the S-locus, which regulates SI. In three angiosperm families, including the Solanaceae, the gene that controls the expression of gametophytic SI in the pistil encodes a ribonuclease (S-RNase). The gene that controls pollen SI expression is currently unknown, although several candidates have recently been proposed. Although each candidate shows a high level of polymorphism and complete allelic disequilibrium with the S-RNase gene, such properties may merely reflect tight linkage to the S-locus, irrespective of any functional role in SI. We analyzed the magnitude and nature of nucleotide variation, with the objective of distinguishing likely candidates for regulators of SI from other genes embedded in the S-locus region. We studied the S-RNase gene of the Solanaceae and 48A, a candidate for the pollen gene in this system, and we also conducted a parallel analysis of the regulators of sporophytic SI in Brassica, a system in which both the pistil and pollen genes are known. Although the pattern of variation shown by the pollen gene of the Brassica system is consistent with its role as a determinant of pollen specificity, that of 48A departs from expectation. Our analysis further suggests that recombination between 48A and S-RNase may have occurred during the interval spanned by the gene genealogy, another indication that 48A may not regulate SI expression in pollen.
多种自交不亲和(SI)机制使开花植物能够抑制与雌蕊具有共同特异性的花粉受精。至少两个模型系统的特征是,围绕调控SI的S位点的大片基因组区域的重组大幅减少。在包括茄科在内的三个被子植物科中,控制雌配子体SI在雌蕊中表达的基因编码一种核糖核酸酶(S-RNase)。尽管最近提出了几个候选基因,但控制花粉SI表达的基因目前尚不清楚。尽管每个候选基因都表现出高度多态性以及与S-RNase基因完全的等位基因不平衡,但这些特性可能仅仅反映了与S位点的紧密连锁,而与SI中的任何功能作用无关。我们分析了核苷酸变异的程度和性质,目的是将SI调控因子的可能候选基因与嵌入S位点区域的其他基因区分开来。我们研究了茄科的S-RNase基因以及该系统中花粉基因的候选基因48A,并且我们还对芸苔属植物中孢子体SI的调控因子进行了平行分析,在该系统中雌蕊和花粉基因均已明确。尽管芸苔属系统的花粉基因所显示的变异模式与其作为花粉特异性决定因素的作用一致,但48A的变异模式却与预期不符。我们的分析进一步表明,在基因谱系所涵盖的间隔期间,48A与S-RNase之间可能发生了重组,这是48A可能不调控花粉中SI表达的另一个迹象。