两种水螅属植物花粉管发育的对比研究。

Sexual Plant Reproduction Pub Date : 2012-06-01 Epub Date: 2012-02-25 DOI:10.1007/s00497-012-0183-6
Mackenzie L Taylor, Joseph H Williams
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引用次数: 18

摘要

Trithuria (Hydatellaceae;在早期分化的被子植物中,若虫属是独一无二的,因为它的种类非常小,而且大多数都有非常短的年生活史。考虑到这些极端的大小和发育的演变,我们试图了解授粉后的过程是否仍然随着特里图里亚的繁殖系统而变化。为了解决这个问题,我们研究了两个西澳大利亚的物种,Trithuria austinensis(雌雄异株,专性异交)和Trithuria潜水(两性,高度自交)。为了记录发育时间,在连续的时间点采集心皮,并用光学和荧光显微镜检查。在这两个物种中,花粉管首先进入胚珠
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pollen tube development in two species of Trithuria (Hydatellaceae) with contrasting breeding systems.

Trithuria (Hydatellaceae; Nymphaeales) is unique among early-divergent angiosperms in that its species are extremely small and most have exceptionally short, annual life histories. Given the evolution of these extremes of size and development, we sought to understand whether post-pollination processes still varied predictably with breeding system in Trithuria. To address this question, we studied two Western Australian species, Trithuria austinensis (dioecious, obligately outcrossing) and Trithuria submersa (bisexual, highly selfing). To document developmental timing, carpels were hand-pollinated, collected at sequential time points, and examined with light and fluorescence microscopy. In both species, pollen tubes first entered ovules<1 h after pollination, but the pollen tube pathway of outcrossing T. austinensis was almost four times longer and its pollen tube growth rates were up to six times faster (≤2,166 vs. 321 μm/h) than those of T. submersa. T. austinensis also exhibited greater male investment, slower pollen germination, and greater pollen tube attrition. These differences in male gametophyte development are predicted for outcrossers versus selfers in phylogenetically derived angiosperms. These new data for Hydatellaceae reinforce the idea that an acceleration of pollen tube development occurred in the Nymphaeales stem lineage, before the origin of Hydatellaceae. We infer that a recent evolutionary transition to selfing in T. submersa has been accompanied by predictable modifications to reproductive development, which, because of the ancient relationship between Hydatellaceae and all other angiosperms, suggests that traits underlying the lability of flowering plant post-pollination biology were present early in their history.

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Sexual Plant Reproduction
Sexual Plant Reproduction 生物-生殖生物学
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