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Insights from the pollination drop proteome and the ovule transcriptome of Cephalotaxus at the time of pollination drop production

机译:授粉滴产生时来自授粉滴蛋白质组和头孢子胚珠转录组的见解

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摘要

>Background and Aims Many gymnosperms produce an ovular secretion, the pollination drop, during reproduction. The drops serve as a landing site for pollen, but also contain a suite of ions and organic compounds, including proteins, that suggests diverse roles for the drop during pollination. Proteins in the drops of species of Chamaecyparis, Juniperus, Taxus, Pseudotsuga, Ephedra and Welwitschia are thought to function in the conversion of sugars, defence against pathogens, and pollen growth and development. To better understand gymnosperm pollination biology, the pollination drop proteomes of pollination drops from two species of Cephalotaxus have been characterized and an ovular transcriptome for C. sinensis has been assembled.>Methods Mass spectrometry was used to identify proteins in the pollination drops of Cephalotaxus sinensis and C. koreana. RNA-sequencing (RNA-Seq) was employed to assemble a transcriptome and identify transcripts present in the ovules of C. sinensis at the time of pollination drop production.>Key Results About 30 proteins were detected in the pollination drops of both species. Many of these have been detected in the drops of other gymnosperms and probably function in defence, polysaccharide metabolism and pollen tube growth. Other proteins appear to be unique to Cephalotaxus, and their putative functions include starch and callose degradation, among others. Together, the proteins appear either to have been secreted into the drop or to occur there due to breakdown of ovular cells during drop production. Ovular transcripts represent a wide range of gene ontology categories, and some may be involved in drop formation, ovule development and pollen–ovule interactions.>Conclusions The proteome of Cephalotaxus pollination drops shares a number of components with those of other conifers and gnetophytes, including proteins for defence such as chitinases and for carbohydrate modification such as β-galactosidase. Proteins likely to be of intracellular origin, however, form a larger component of drops from Cephalotaxus than expected from studies of other conifers. This is consistent with the observation of nucellar breakdown during drop formation in Cephalotaxus. The transcriptome data provide a framework for understanding multiple metabolic processes that occur within the ovule and the pollination drop just before fertilization. They reveal the deep conservation of WUSCHEL expression in ovules and raise questions about whether any of the S-locus transcripts in Cephalotaxus ovules might be involved in pollen–ovule recognition.
机译:>背景和目的许多裸子植物在繁殖过程中会产生卵形分泌物,授粉量下降。液滴充当花粉的着陆点,但还包含一整套离子和有机化合物(包括蛋白质),暗示了在授粉过程中液滴的各种作用。 Chamaecyparis,Juniperus,Taxus,Pseudotsuga,Ephedra和Welwitschia物种中的液滴中的蛋白质被认为在糖的转化,对病原体的防御以及花粉生长和发育中起作用。为了更好地了解裸子植物的授粉生物学,对两种头孢菌属的授粉滴的授粉滴蛋白质组进行了表征,并组装了中华绒螯蟹的卵形转录组。>方法 Cephalotaxus sinensis和C. koreana的授粉滴。利用RNA测序技术(RNA-Seq)组装一个转录组,鉴定出授粉液滴产生时中华绒螯蟹胚珠中的转录本。>主要结果两种物种的水滴。其中许多已在其他裸子植物的液滴中检测到,可能在防御,多糖代谢和花粉管生长中起作用。其他蛋白质似乎是头孢菌属所特有的,其推定功能包括淀粉和call的降解等。在一起时,由于液滴生产过程中卵泡细胞的分解,蛋白质似乎已经分泌到液滴中或出现在液滴中。卵形转录物代表了广泛的基因本体论类别,并且可能与液滴的形成,胚珠的发育以及花粉-胚珠的相互作用有关。>结论头足紫菜授粉液滴的蛋白质组与其他针叶树和触藻,包括用于防御的蛋白质(例如几丁质酶)和用于修饰碳水化合物的蛋白质(例如β-半乳糖苷酶)。然而,可能是细胞内起源的蛋白质比其他针叶树的研究所预期的,形成的来自头杉的液滴的成分更大。这与在头杉的液滴形成过程中观察到的细胞核降解是一致的。转录组数据为了解受精前胚珠内发生的多个代谢过程和授粉下降提供了框架。他们揭示了胚珠中WUSCHEL表达的深层保护,并提出了关于 Cephalotaxus 胚珠中任何S-基因座转录本是否可能参与花粉-胚珠识别的问题。

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