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Embryological evidence for developmental lability during early angiosperm evolution

机译:早期被子植物发育过程中发育不稳定性的胚胎学证据

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Recent advances in angiosperm phylogeny reconstruction(1-3), palaeobotany(4,5) and comparative organismic biology(6-8) have provided the impetus for a major re-evaluation of the earliest phases of the diversification of flowering plants. We now know that within the first fifteen million years of angiosperm history, three major lineages of flowering plants - monocotyledons, eumagnoliids and eudicotyledons - were established(5), and that within this window of time, tremendous variation in vegetative and floral characteristics evolved. Here I report on a novel type of embryo sac ( angiosperm female gametophyte or haploid egg-producing structure) in Amborella trichopoda, the sole member of the most ancient extant angiosperm lineage. This is the first new pattern of embryo sac structure to be discovered among angiosperms in well over half a century. This discovery also supports the emerging view(9-12) that the earliest phases of angiosperm evolution were characterized by an extensive degree of developmental experimentation and structural lability, and may provide evidence of a critical link to the gymnospermous ancestors of flowering plants.
机译:被子植物系统发育重建(1-3),古植物学(4,5)和比较有机生物学(6-8)的最新进展为重新评估开花植物的早期分化提供了动力。我们现在知道,在被子植物的前一千五百万年中,建立了开花植物的三个主要谱系-单子叶植物,真木兰和双子叶植物(5),并且在此时间范围内,植物和花卉特征发生了巨大变化。在这里,我报道了在最古老现存被子植物谱系的唯一成员-单孢子虫中的一种新型胚囊(被子植物雌配子体或单倍体产卵结构)。这是半个世纪以来在被子植物中发现的第一个新的胚囊结构模式。这一发现也支持了新出现的观点(9-12),即被子植物进化的最早阶段具有广泛的发育实验和结构失稳特征,并且可能提供与开花植物的裸子植物祖先的关键联系的证据。

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