Banks Hannah
Micromorphology Group, Royal Botanic Gardens, Kew, Richmond, Surrey TW9 3AE, UK.
Ann Bot. 2003 Sep;92(3):425-35. doi: 10.1093/aob/mcg155. Epub 2003 Jul 24.
This study presents the pollen aperture morphology of 148 out of approx. 200 species in 16 genera of the Detarieae s.s. and 13 related genera, investigated with light microscopy, scanning electron microscopy and transmission electron microscopy, using various staining techniques. Features of detarioid legume pollen apertures are described, illustrated and discussed in relation to function and phylogeny. Protruding apertures in the mature pollen grains of taxa in the Detarieae s.s are associated with underlying structures composed of pectic substances called 'Zwischenkörper'. This is the first report of Zwischenkörper in legume pollen. A review of previous literature on Zwischenkörper, evidence of how they differ from onci, and a discussion of developmental origins, terminology and function, is given. Zwischenkörper occur in pollen of Daniellia, Eurypetalum, Eperua, Augouardia, Stemonocoleus, Baikiaea, Copaifera, Pseudosindora, Detarium, Sindora, Sindoropsis, Tessmannia, Gilletiodendron, Hylodendron, Hymenaea, Peltogyne and Guibourtia of the Detarieae s.s. clade of recent molecular analyses. Exinous projections and/or bridges are present over the centre of apertures in the pollen of Sindora, Copaifera, Detarium, Pseudosindora, Hylodendron and Sindoropsis, and may cover the Zwischenkörper of live pollen. Zwischenkörper also occur in the closely related genus Barnebydendron, the sister genus to the Detarieae s.l. clade Goniorrhachis, and also Cercis of the sister clade to the Detarieae s.l. plus Goniorrhachis. A modified form of Zwischenkörper occurs in the pollen of Schotia. Zwischenkörper were not detected in the genera Colophospermum, Prioria, Gossweilerodendron, Oxystigma, Kingiodendron and Hardwickia of the Prioria clade, or in Endertia, Lysidice and Saraca of the Amherstieae clade. None of these taxa have protruding apertures.
本研究呈现了蝶形花亚科狭义16属约200个物种中的148个物种以及13个相关属的花粉萌发孔形态,通过光学显微镜、扫描电子显微镜和透射电子显微镜,并运用多种染色技术进行研究。描述、展示并讨论了蝶形花科豆科植物花粉萌发孔的特征及其与功能和系统发育的关系。狭义蝶形花亚科类群中成熟花粉粒上的突出萌发孔与由果胶物质组成的名为“Zwischenkörper”的基础结构相关。这是豆科植物花粉中Zwischenkörper的首次报道。对先前关于Zwischenkörper的文献进行了综述,阐述了它们与瘤状体的不同之处,并对其发育起源、术语和功能进行了讨论。Zwischenkörper存在于近期分子分析中狭义蝶形花亚科类群的丹尼豆属、阔瓣豆属、埃佩鲁阿豆属、奥古亚豆属、单蕊豆属、伯克苏木属、古巴苏木属、拟孪叶豆属、摘亚木属、孪叶豆属、孪叶豆属、特斯曼豆属、吉列苏木属、雨林苏木属、膜瓣豆属、盾柱木属和古夷苏木属的花粉中。孪叶豆属、古巴苏木属(Copaifera)、摘亚木属、拟孪叶豆属、雨林苏木属和孪叶豆属花粉萌发孔中心存在外壁突起和/或桥,可能覆盖活花粉的Zwischenkörper。Zwischenkörper也存在于密切相关的Barnbydendron属中,它是蝶形花亚科广义类群Goniorrhachis的姐妹属,以及蝶形花亚科广义类群加Goniorrhachis的姐妹类群的紫荆属中。Schotia属的花粉中存在一种改良形式的Zwischenkörper。在Prioria类群的Colophospermum属、Prioria属、戈斯韦勒苏木属、尖柱苏木属、金氏苏木属和哈氏苏木属,或在Amherstieae类群的Endertia属、仪花属和无忧花属中未检测到Zwischenkörper。这些类群均没有突出的萌发孔。