Instituto de Hortofruticultura Subtropical y Mediterránea La Mayora, Consejo Superior de Investigaciones Cientificas, 29750 Algarrobo-Costa, Málaga, Spain.
Proc Natl Acad Sci U S A. 2011 Mar 29;108(13):5461-5. doi: 10.1073/pnas.1014514108. Epub 2011 Mar 14.
Although the biological function of fruiting is the production and dissemination of seeds, humans have developed seedless fruits in a number of plant species to facilitate consumption. Here we describe a unique spontaneous seedless mutant (Thai seedless; Ts) of Annona squamosa (sugar apple), a member of the early-divergent magnoliid angiosperm clade. Ovules (seed precursors) of the mutant lack the outer of two normal integuments, a phenocopy of the inner no outer (ino) mutant of Arabidopsis thaliana. Cloning of the INO ortholog from A. squamosa confirmed conservation of the outer integument-specific expression pattern of this gene between the two species. All regions of the gene were detectable in wild-type A. squamosa and in other members of this genus. However, no region of the INO gene could be detected in Ts plants, indicating apparent deletion of the INO locus. These results provide a case of a candidate gene approach revealing the apparent molecular basis of a useful agronomic trait (seedless fruit) in a crop species, and indicate conservation of the role of a critical regulator of ovule development between eudicots and more ancient lineages of angiosperms. The outer integument is one synapomorphy of angiosperms separating them from other extant seed plants, and the results suggest that the evolution of this structure was contemporaneous with the derivation of INO from ancestral YABBY genes. Thus, a unique lateral structure appears to have coevolved with a novel gene family member essential for the structure's formation.
尽管果实的生物功能是生产和传播种子,但人类已经在许多植物物种中培育出了无籽果实,以方便食用。在这里,我们描述了番荔枝(糖苹果)的一个独特的自发无籽突变体(泰国无籽;Ts),番荔枝是早期分支的木兰类被子植物的一个成员。突变体的胚珠(种子前体)缺乏两个正常珠被中的外珠被,这是拟南芥内无外(ino)突变体的表型。从番荔枝克隆的 INO 直系同源物证实了该基因在两个物种中外珠被特异性表达模式的保守性。该基因的所有区域在野生型番荔枝和该属的其他成员中都可检测到。然而,在 Ts 植物中无法检测到 INO 基因的任何区域,表明 INO 基因座明显缺失。这些结果提供了一个候选基因方法的案例,揭示了一个有用的农业性状(无籽果实)在作物物种中的明显分子基础,并表明了一个关键调控因子在胚珠发育中的作用在真双子叶植物和更古老的被子植物谱系之间的保守性。外珠被是被子植物与其他现存种子植物分离的一个共同特征,结果表明,该结构的进化与 INO 从祖先 YABBY 基因的衍生是同时发生的。因此,一个独特的侧生结构似乎与一个新的基因家族成员共同进化,这个成员对于结构的形成是必不可少的。