Laboratory of Pollen Biology, Institute of Experimental Botany of the Czech Academy of Sciences, 165 00 Prague 6, Czech Republic.
Central European Institute of Technology, Masaryk University, 625 00 Brno, Czech Republic.
Plant Physiol. 2018 Sep;178(1):258-282. doi: 10.1104/pp.18.00648. Epub 2018 Jul 14.
Reproduction success in angiosperm plants depends on robust pollen tube growth through the female pistil tissues to ensure successful fertilization. Accordingly, there is an apparent evolutionary trend to accumulate significant reserves during pollen maturation, including a population of stored mRNAs, that are utilized later for a massive translation of various proteins in growing pollen tubes. Here, we performed a thorough transcriptomic and proteomic analysis of stored and translated transcripts in three subcellular compartments of tobacco (), long-term storage EDTA/puromycin-resistant particles, translating polysomes, and free ribonuclear particles, throughout tobacco pollen development and in in vitro-growing pollen tubes. We demonstrated that the composition of the aforementioned complexes is not rigid and that numerous transcripts were redistributed among these complexes during pollen development, which may represent an important mechanism of translational regulation. Therefore, we defined the pollen sequestrome as a distinct and highly dynamic compartment for the storage of stable, translationally repressed transcripts and demonstrated its dynamics. We propose that EDTA/puromycin-resistant particle complexes represent aggregated nontranslating monosomes as the primary mediators of messenger RNA sequestration. Such organization is extremely useful in fast tip-growing pollen tubes, where rapid and orchestrated protein synthesis must take place in specific regions.
被子植物的繁殖成功依赖于花粉管在雌性雌蕊组织中的强劲生长,以确保受精的成功。因此,在花粉成熟过程中积累大量储备物显然是一种进化趋势,包括一群储存的 mRNA,这些 mRNA 后来用于在生长中的花粉管中大量翻译各种蛋白质。在这里,我们对烟草()中三个亚细胞区室中的储存和翻译转录物进行了全面的转录组学和蛋白质组学分析,这些区室包括 EDTA/嘌呤霉素抗性颗粒、翻译多核糖体和游离核糖核蛋白颗粒,涵盖了烟草花粉发育和体外生长花粉管的全过程。我们证明了上述复合物的组成并非一成不变,许多转录本在花粉发育过程中在这些复合物之间重新分配,这可能代表了一种重要的翻译调控机制。因此,我们将花粉贮藏物定义为一个独特且高度动态的区室,用于储存稳定的、翻译抑制的转录本,并证明了其动态性。我们提出 EDTA/嘌呤霉素抗性颗粒复合物代表聚集的非翻译单核糖体,作为信使 RNA 隔离的主要介质。这种组织在快速尖端生长的花粉管中非常有用,在快速生长的花粉管中,必须在特定区域发生协调的蛋白质合成。