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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Conventional and novel modes of exine patterning in members of the Araceae - the consequence of ecological paradigm shifts?
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Conventional and novel modes of exine patterning in members of the Araceae - the consequence of ecological paradigm shifts?

机译:天南星科成员习性模式的传统和新颖模式-生态范式转变的结果吗?

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摘要

In the family Araceae, the members of all subfamilies except Aroideae follow the conventional mode of exine formation pattern, which conforms with the textbook view of sporoderm stratification and chemistry (sporopollenin ektexine formed before the endexine). Only members of the subfamily Aroideae show a quite uncommon mode of exine formation pattern, with an endexine formed prior to the nonsporopollenin, polysaccharidic outer exine layer. The intine is formed simultaneously with this non-sporopollenin layer. From the differing timetable and especially from the different origin it is concluded that this outer exine layer is not homologous to the angiosperm ektexine. The fundamental question, why members of the Aroideae lack an elaborated sporopollenin ektexine, is discussed in terms of functionality of the nonsporopollenin outer exine layer. It seems that a major change in aroid evolution took place at the point when the family phylogenetically and ecologically shifted from bisexual (most subfamilies) to unisexual flowers (Aroideae only). The hypothesis is that ephemeral spathes and the absence of sporopollenin are the consequence of an adaptive syndrome for a short pollination time window in many members of the Aroideae, with short-lived pollen, an energetically not costly pollen wall, rapid germination of pollen tube, and brief receptivity of stigma.
机译:在天南星科中,除天牛科外,所有亚科的成员都遵循常规的外膜形成模式,这与教科书中孢子体层化和化学方法(内孢子前形成孢子粉ektexine)相符。只有Aroideae亚科成员显示出一种非常罕见的外泌体形成模式,在非孢粉,多糖外部外泌体层之前形成了一个己内酰胺。与该非孢粉蛋白层同时形成intine。从不同的时间表,特别是从不同的起源,可以得出结论,该外在外层与被子植物叶新碱不同源。一个基本的问题,即为什么Aroideae的成员缺乏精心设计的孢粉蛋白ektexine,是根据非孢粉蛋白外表皮层的功能性进行讨论的。似乎在该族发生系统发育和生态学上从双性恋(大多数亚科)向单性花转变(仅芳香科)的那一刻,发生了一次大的演化。假说是短暂的休养和孢粉缺乏的原因是在短距离的授粉时间窗内,许多花粉寿命短的花粉(花粉壁短,能量消耗不高,花粉管发芽快,和短暂的污名接受。

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