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首页> 外文期刊>Protoplasma >Pyrus pyrifolia stylar S-RNase induces alterations in the actin cytoskeleton in self-pollen and tubes in vitro
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Pyrus pyrifolia stylar S-RNase induces alterations in the actin cytoskeleton in self-pollen and tubes in vitro

机译:梨梨叶茎状S-RNase在体外诱导自花粉和试管中肌动蛋白细胞骨架的改变

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摘要

Pears (Pyrus pyrifolia L.) have an S-RNase-based gametophytic self-incompatibility system, and S-RNases have also been implicated in self-pollen or genetically identical pollen rejection. Tip growth of the pollen tube is dependent on a functioning actin cytoskeleton. In this study, configurations of the actin cytoskeleton in P. pyrifolia pollen and effects of stylar S-RNases on its dynamics were investigated by fluorescence and confocal microscopy. Results show that actin filaments in normal pollen grains exist in fusiform or circular structures. When the pollen germinates, actin filaments assembled around one of the germination pores, and then actin bundles oriented axially throughout the shank of the growing tube. There was a lack of actin filaments 5–15 μm from the tube tip. When self-stylar S-RNase was added to the basal medium, pollen germination and tube growth were inhibited. The configuration of the actin cytoskeleton changed throughout the culturing time: during the first 20 min, the actin configurations in the self-pollen and tube were similar to the control; after 20 min of treatment, the actin filaments in the pollen tube gradually moved into a network running from the shank to the tip; finally, there was punctate actin present throughout the whole tube. Although the actin filaments of the self-pollen grain also disintegrated into punctate foci, the change was slower than in the tube. Furthermore, the alterations to the actin cytoskeleton occurred prior to the arrest of pollen tube growth. These results suggest that P. pyrifolia stylar S-RNase induces alterations in the actin cytoskeleton in self-pollen grains and tubes.
机译:梨(Pyrus pyrifolia L.)具有基于S-RNase的配子体自交不亲和系统,S-RNase也与自花粉或遗传上相同的花粉排斥有关。花粉管的尖端生长取决于起作用的肌动蛋白细胞骨架。在这项研究中,通过荧光和共聚焦显微镜研究了P. pyrifolia花粉中肌动蛋白细胞骨架的构型以及S-RNases对其动力学的影响。结果表明,正常花粉粒中的肌动蛋白丝呈梭形或圆形结构。当花粉发芽时,肌动蛋白丝围绕发芽孔之一聚集,然后肌动蛋白束在整个生长管的柄部轴向排列。管尖缺少5–15μm的肌动蛋白丝。将自型S-RNase加入基础培养基后,花粉萌发和管生长受到抑制。肌动蛋白细胞骨架的构型在整个培养时间内发生变化:在最初的20分钟内,自花粉和试管中的肌动蛋白构型与对照相似;处理20分钟后,花粉管中的肌动蛋白丝逐渐移入从小腿到尖端的网络中。最后,整个管中都存在点状肌动蛋白。尽管自花粉粒的肌动蛋白丝也分解成点状病灶,但这种变化比管中的慢。此外,肌动蛋白细胞骨架的改变发生在花粉管生长停止之前。这些结果表明,P。pyrifolia styular S-RNase诱导自花粉粒和管中肌动蛋白细胞骨架的改变。

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