Wheeler M J, Franklin-Tong V E, Franklin F C H
Wolfson Laboratory for Plant Molecular Biology, School of Biosciences, University of Birmingham, Edgbaston, Birmingham B15 2TT, UK.
New Phytol. 2001 Sep;151(3):565-584. doi: 10.1046/j.0028-646x.2001.00229.x.
Over the past decade or so, there has been significant progress towards elucidating the molecular events occurring during pollination in flowering plants. This process involves a series of complex cellular interactions that culminates in the fusion between male and female gametes. The process also regulates crucial events such as pollen adhesion, hydration, pollen tube growth and guidance to the ovules. Additionally, in many instances, incompatibility mechanisms that control the acceptance or rejection of pollen alighting on a recipient plant play a major role in the pollination process. In this article we aim to review our current understanding of the components that are implicated in enabling the pollen to deliver the male gametes to the ovary and the molecular mechanisms by which they are thought to act. Contents Summary 565 I. Introduction 565 II. Adhesion of pollen to the stigma 566 III. Pollen hydration 567 IV. Pollen germination and initial growth on the stigma surface 568 V. Pollen tube growth through the style and pollen tube guidance 569 VI. Control of pollen viability by incompatibility responses 572 1. Self incompatibility (SI) 573 Gametophytic SI 573 SI in the Solanaceae 573 SI in Papaver 575 Sporophytic SI 577 SI in Brassica 577 SI in Ipomoea 579 2. Interspecific incompatibility responses 579 VII. Conclusions and perspective 580 References 580.
在过去十年左右的时间里,在阐明开花植物授粉过程中发生的分子事件方面取得了重大进展。这一过程涉及一系列复杂的细胞相互作用,最终导致雄配子和雌配子融合。该过程还调控着诸如花粉黏附、水合作用、花粉管生长以及向胚珠的引导等关键事件。此外,在许多情况下,控制落在受体植物上的花粉被接受或排斥的不亲和机制在授粉过程中起着重要作用。在本文中,我们旨在综述目前对使花粉将雄配子传递到子房的相关成分的理解,以及它们被认为发挥作用的分子机制。内容摘要565 一、引言565 二、花粉与柱头的黏附566 三、花粉水合作用567 四、花粉在柱头表面的萌发和初始生长568 五、花粉管通过花柱的生长及花粉管引导569 六、不亲和反应对花粉活力的控制572 1. 自交不亲和(SI)573 配子体自交不亲和573 茄科中的自交不亲和573 罂粟中的自交不亲和575 孢子体自交不亲和577 芸苔属中的自交不亲和577 甘薯属中的自交不亲和579 2. 种间不亲和反应579 七、结论与展望580 参考文献580