Thomas Steve, Osman Kim, de Graaf Barend H J, Shevchenko Galina, Wheeler Mike, Franklin Chris, Franklin-Tong Noni
School of Biosciences, University of Birmingham, Edgbaston, Birmingham B15 2TT, UK.
Philos Trans R Soc Lond B Biol Sci. 2003 Jun 29;358(1434):1033-6. doi: 10.1098/rstb.2003.1288.
Sexual reproduction in flowering plants is controlled by recognition mechanisms involving the male gametophyte (the pollen) and the female sporophyte (the pistil). Self-incompatibility (SI) involves the recognition and rejection of self- or incompatible pollen by the pistil. In Papaver rhoeas, SI uses a Ca(2+)-based signalling cascade triggered by the S-protein, which is encoded by the stigmatic component of the S-locus. This results in the rapid inhibition of incompatible pollen tube growth. We have identified several targets of the SI signalling cascade, including protein kinases, the actin cytoskeleton and nuclear DNA. Here, we summarize progress made on currently funded projects in our laboratory investigating some of the components targeted by SI, comprising (i) the characterization of a pollen phosphoprotein (p26) that is rapidly phosphorylated upon an incompatible SI response; (ii) the identification and characterization of a pollen mitogen-activated protein kinase (p56), which exhibits enhanced activation during SI; (iii) characterizing components involved in the reorganization and depolymerization of the actin cytoskeleton during the SI response; and (iv) investigating whether the SI response involves a programmed cell death signalling cascade.
开花植物的有性生殖受涉及雄配子体(花粉)和雌孢子体(雌蕊)的识别机制控制。自交不亲和(SI)包括雌蕊对自身或不亲和花粉的识别和排斥。在虞美人中,自交不亲和利用由S-蛋白触发的基于Ca(2+)的信号级联反应,S-蛋白由S-位点的柱头成分编码。这导致不亲和花粉管生长迅速受到抑制。我们已经确定了自交不亲和信号级联反应的几个靶点,包括蛋白激酶、肌动蛋白细胞骨架和核DNA。在此,我们总结了我们实验室目前资助的项目在研究一些自交不亲和靶向成分方面取得的进展,包括:(i)对一种花粉磷蛋白(p26)的表征,该蛋白在不亲和的自交不亲和反应中会迅速磷酸化;(ii)对一种花粉丝裂原活化蛋白激酶(p56)的鉴定和表征,该激酶在自交不亲和过程中表现出增强的活化;(iii)表征自交不亲和反应期间参与肌动蛋白细胞骨架重组和解聚的成分;以及(iv)研究自交不亲和反应是否涉及程序性细胞死亡信号级联反应。