College of Landscape Architecture and Arts, Northwest A&F University, Yangling, Shaanxi, P.R. China.
School of Life Science and Technology, Xinxiang University, Xinxiang, Henan, P.R. China.
Sci Rep. 2019 Jul 15;9(1):10191. doi: 10.1038/s41598-019-46696-6.
For seed-bearing plants, the basis of seed and fruit formation is pollination. The normal progression of pollination is through advances in continuous signal exchange and material transfer, which occur mainly in female reproductive organs; thus, the molecular mechanism of development in female reproductive organs is vital for understanding the principle of pollination. However, molecular biology studies on the development of female cones related to pollination are rare and unclear in gymnosperms, especially in Cupressaceae. In this study, Platycladus orientalis, a monotypic genus within Cupressaceae, was chosen to examine female cone transcriptomes at pre-pollination and pollination stages by Illumina paired-end sequencing technology to de novo sequence six libraries with 3 biological replicates. These libraries were used to construct a P. orientalis transcriptome database containing 71,669 unigenes (4,963 upregulated unigenes and 11,747 downregulated unigenes at the pollination stage) for subsequent analysis. Based on the annotations and expression levels, the functions of differentially expressed unigenes and enriched pathways between the developmental processes of female cones were analysed to detail the preliminary development and pollination mechanism of the female cone. Targeted investigations were specifically performed to determine the elementary mechanism of secretion and functioning of the pollination drop, a vital ovule secretion at the pollination stage. Ultimately, the expression of 15 unigenes selected between two stages were further assessed and confirmed using qRT-PCR, which demonstrated reliable data and significant differences in the expression profiles of key genes. As one of the largest available transcriptomic resources of this species, the database is constructed to prospectively adapt to the physiological and genomic data of woody plants. This work provided the first transcriptome profile of P. orientalis female cones at different developmental stages, and will promote the illumination of the pollination mechanism of P. orientalis, and will serve as the basis for in-depth genomic study in the Cupressaceae family. This initiative will arouse the interest and attention of scholars and pave the way for future studies.
对于有种子的植物来说,种子和果实形成的基础是授粉。授粉的正常过程是通过连续的信号交换和物质传递的进展来实现的,这些主要发生在雌性生殖器官中;因此,雌性生殖器官发育的分子机制对于理解授粉原理至关重要。然而,在裸子植物中,与授粉相关的雌性球果发育的分子生物学研究很少且不清楚,尤其是在柏科。在这项研究中,选择柏科柏木属的单种植物侧柏来研究授粉前和授粉阶段的雌性球果转录组,使用 Illumina 配对末端测序技术对 6 个具有 3 个生物学重复的文库进行从头测序。这些文库被用来构建一个包含 71669 个 unigenes 的 P. orientalis 转录组数据库(授粉阶段有 4963 个上调 unigenes和 11747 个下调 unigenes),用于后续分析。基于注释和表达水平,分析了雌性球果发育过程中差异表达 unigenes 和富集途径的功能,以详细描述雌性球果的初步发育和授粉机制。特别针对授粉滴的分泌和功能的基本机制进行了有针对性的研究,授粉滴是授粉阶段一个重要的胚珠分泌物。最终,使用 qRT-PCR 进一步评估和验证了两个阶段之间选择的 15 个 unigenes 的表达,这表明关键基因的表达谱具有可靠的数据和显著差异。作为该物种最大的转录组资源之一,该数据库的构建旨在适应木本植物的生理和基因组数据。这项工作提供了不同发育阶段侧柏雌性球果的第一个转录组图谱,并将促进对侧柏授粉机制的阐明,并为柏科家族的深入基因组研究提供基础。这一举措将引起学者们的兴趣和关注,为未来的研究铺平道路。