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种子植物小配子体关键创新的发育基础。

Developmental bases for key innovations in the seed-plant microgametophyte.

作者信息

Rudall Paula J, Bateman Richard M

机构信息

Jodrell Laboratory, Royal Botanic Gardens, Kew, Richmond, Surrey, UK.

出版信息

Trends Plant Sci. 2007 Jul;12(7):317-26. doi: 10.1016/j.tplants.2007.06.004. Epub 2007 Jun 26.

Abstract

The early evolution of seed plants was marked by a sequence of putative key innovations associated with the microgametophyte, including reversal of microspore polarity, loss of sperm motility and co-option of the pollen tube to a new role, siphonogamy. Data from several interfacing fields of plant development are reviewed here in the context of recent palaeobotanical discoveries and improved understanding of seed-plant relationships. The proximal-distal microspore polarity transition that occurred early in seed-plant evolution represents a fossil fingerprint for an underlying series of radical developmental shifts involving quadripartite partitioning at meiosis and an asymmetric primary mitosis. It had important downstream effects, not only on aperture location and site of germination but also on microgametophyte polarity, and, perhaps, indirectly on sperm motility.

摘要

种子植物的早期演化以一系列与小孢子体相关的假定关键创新为标志,包括小孢子极性的逆转、精子运动能力的丧失以及花粉管被赋予新功能——管受精。本文结合近期古植物学发现以及对种子植物关系的深入理解,综述了来自植物发育几个交叉领域的数据。种子植物演化早期发生的近端 - 远端小孢子极性转变代表了一系列潜在的激进发育变化的化石印记,这些变化涉及减数分裂时的四分体划分和不对称的第一次有丝分裂。它不仅对萌发孔位置和萌发位点有重要的下游影响,还对小孢子体极性有影响,或许还间接影响精子运动能力。

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