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从形态解剖学角度看,孔口在榕小蜂榕果共生关系中的作用。

The roles of the ostiole in the fig-fig wasp mutualism from a morpho-anatomical perspective.

机构信息

Instituto de Investigaciones en Ecosistemas y Sustentabilidad, Universidad Nacional Autónoma de México, Antigua carretera a Pátzcuaro 8701. Col. Ex-Hacienda de San José de la Huerta. C. P. 58190. Morelia, C. P. 58190, Morelia, Michoacán, Mexico.

Posgrado en Ciencias Biológicas, Universidad Nacional Autónoma de México, Ciudad Universitaria, Delegación Coyoacán, C. P. 04510, Ciudad de México, Mexico.

出版信息

J Plant Res. 2022 Nov;135(6):739-755. doi: 10.1007/s10265-022-01413-9. Epub 2022 Oct 20.

Abstract

The syconium is the urn-shaped inflorescence shared by all species of the genus Ficus. The orifice at the apex of the syconium is called the ostiole, and it is covered by interlocking bracts. The ostiolar bracts can have different arrangements, which only allow the entry of mutualist wasps and promote reproductive isolation among Ficus species. Here, we analyze the ostiolar structures that could play a role as selective filter and therefore impact the fig-fig wasp mutualism in the neotropical Ficus sections Americanae and Pharmacosycea. Samples of syconia with pistillate flowers during the receptive phase of seven species of Ficus were examined using light and scanning electron microscopy. Tests for histolocalization of substances were employed to detect secretory activity throughout the ostiolar tissues. Our results indicated that the ostiole has two components: ostiolar bracts and the periostiolar zone. Interspecies variation in ostiolar bract arrangement in both sections studied was broader than previously reported. We report for the first time for Ficus: (i) two types of ostiolar osmophores (mesophyll and diffuse), that could be a source of volatile compounds for attracting fig wasps; (ii) colleters in the axil of ostiolar bracts, which probably lubricate and facilitate the entry of pollinating wasps into the syconial cavity; (iii) secretory trichomes around the ostiolar bracts, and (iv) syconium basal bracts (F. isophlebia) covering the ostiole, which are the first physical barrier that the fig wasps must overcome to access receptive pistillate flowers. We describe the zones that compose the ostiole, which support the hypothesis that the ostiole is a selective filter in the interactions of fig trees with Agaonidae fig wasps. We also suggest that ostiolar osmophores, colleters, the periostiolar zone, and the arrangements of the ostiolar bracts may be informative with respect to Ficus systematics.

摘要

榕果是榕属所有物种共有的钟形花序。榕果顶部的孔口称为口盖,由互锁的苞片覆盖。口盖苞片的排列方式不同,只能让互惠互利的榕小蜂进入,并促进榕属物种之间的生殖隔离。在这里,我们分析了口盖结构,这些结构可能起到选择性过滤器的作用,从而影响新热带美洲榕属和 Pharmacosycea 榕属的榕果榕小蜂共生关系。在七个榕属物种的雌性花可授期,使用光学显微镜和扫描电子显微镜检查具有雌性花的榕果样本。通过组织化学定位测试检测口盖组织的分泌活性。我们的结果表明,口盖有两个组成部分:口盖苞片和周皮区。在所研究的两个部分中,种间口盖苞片排列的变化比以前报道的更为广泛。我们首次报道了榕属:(i)两种类型的口盖挥发物(叶肉和弥散),可能是吸引榕小蜂的挥发性化合物的来源;(ii)口盖苞片腋部的分泌腺,可能润滑并促进传粉榕小蜂进入榕果腔;(iii)口盖苞片周围的分泌毛状体;(iv)覆盖口盖的榕果基部苞片(F. isophlebia),这是榕小蜂必须克服的第一道物理屏障,才能接触到可授的雌花。我们描述了组成口盖的区域,这支持了口盖是榕属与榕小蜂相互作用的选择性过滤器的假说。我们还认为,口盖挥发物、分泌腺、周皮区和口盖苞片的排列方式可能与榕属系统学有关。

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