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首页> 外文期刊>Journal of Experimental Botany >SUN anchors pollen WIP-WIT complexes at the vegetative nuclear envelope and is necessary for pollen tube targeting and fertility
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SUN anchors pollen WIP-WIT complexes at the vegetative nuclear envelope and is necessary for pollen tube targeting and fertility

机译:SUN将花粉WIP-WIT复合物锚定在营养核被膜上,这对于花粉管靶向和育肥是必不可少的

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摘要

LINC (linker of nucleoskeleton and cytoskeleton) complexes play an essential role in nuclear migration by connecting the nucleus to the cytoskeleton and/or motor proteins. Plant LINC complexes have recently been identified in Arabidopsis thaliana, with the inner nuclear membrane SUN and outer nuclear membrane WIP proteins comprising the first identified complex. A recent study identified a nuclear movement defect in Arabidopsis pollen vegetative nuclei linked to the outer nuclear envelope WIP and WIT proteins. However, the role that SUN proteins may play in pollen nuclear migration has yet to be addressed. To explore this question, a SUN2 lumenal domain that was targeted to the ER specifically in pollen was over-expressed. It is shown that the ER-targeted SUN2 lumenal domain was able to displace WIP and WIT proteins from the pollen vegetative nuclear envelope. Expression of this dominant-negative transgene led to impaired VN mobility, impaired pollen tube guidance, and defective pollen tube reception. The observed pollen defects are similar to phenotypes observed in a wip1-1 wip2-1 wip3-1 wit1-1 wit2-1 mutant. It is also shown that these defects were dependent on the KASH-binding function of the SUN2 lumenal domain. These data support a model where LINC complexes formed by SUN, WIP, and WIT at the VNE are responsible for VN migration and suggest an important function of SUN, WIP, and WIT in pollen tube guidance and reception.
机译:LINC(核骨架和细胞骨架的连接子)复合物通过将细胞核连接到细胞骨架和/或运动蛋白上,在核迁移中起着至关重要的作用。最近在拟南芥中鉴定了植物LINC复合物,其内核膜SUN和外核膜WIP蛋白构成了第一个鉴定出的复合物。最近的一项研究确定了拟南芥花粉营养核中与外核被膜WIP和WIT蛋白相关的核运动缺陷。但是,SUN蛋白可能在花粉核迁移中发挥的作用尚未解决。为了探讨这个问题,过表达了专门针对花粉内质网的SUN2腔域。结果表明,靶向ER的SUN2腔结构域能够从花粉营养核被膜中置换出WIP和WIT蛋白。此显性负转基因的表达导致VN流动性受损,花粉管引导受损以及花粉管接收不良。观察到的花粉缺陷类似于在wip1-1 wip2-1 wip3-1 wit1-1 wit1-1 wit2-1突变体中观察到的表型。还表明这些缺陷取决于SUN2腔域的KASH结合功能。这些数据支持一个模型,其中由VNE的SUN,WIP和WIT形成的LINC复合体负责VN迁移,并暗示SUN,WIP和WIT在花粉管引导和接收中的重要功能。

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