Institute of Grassland, Flower and Ecology, Beijing Academy of Agriculture and Forestry Sciences, Beijing, 100097, People's Republic of China.
College of Grassland Science and Technology, Sichuan Agriculture University, Chengdu, 610000, People's Republic of China.
Theor Appl Genet. 2024 Jun 11;137(7):157. doi: 10.1007/s00122-024-04655-4.
Through the histological, physiological, and transcriptome-level identification of the abscission zone of Pennisetum alopecuroides 'Liqiu', we explored the structure and the genes related to seed shattering, ultimately revealing the regulatory network of seed shattering in P. alopecuroides. Pennisetum alopecuroides is one of the most representative ornamental grass species of Pennisetum genus. It has unique inflorescence, elegant appearance, and strong stress tolerance. However, the shattering of seeds not only reduces the ornamental effect, but also hinders the seed production. In order to understand the potential mechanisms of seed shattering in P. alopecuroides, we conducted morphological, histological, physiological, and transcriptomic analyses on P. alopecuroides cv. 'Liqiu'. According to histological findings, the seed shattering of 'Liqiu' was determined by the abscission zone at the base of the pedicel. Correlation analysis showed that seed shattering was significantly correlated with cellulase, lignin, auxin, gibberellin, cytokinin and jasmonic acid. Through a combination of histological and physiological analyses, we observed the accumulation of cellulase and lignin during 'Liqiu' seed abscission. We used PacBio full-length transcriptome sequencing (SMRT) combined with next-generation sequencing (NGS) transcriptome technology to improve the transcriptome data of 'Liqiu'. Transcriptomics further identified many differential genes involved in cellulase, lignin and plant hormone-related pathways. This study will provide new insights into the research on the shattering mechanism of P. alopecuroides.
通过对狼尾草‘立球’的离区进行组织学、生理学和转录组水平的鉴定,我们探讨了与种子脱落相关的结构和基因,最终揭示了狼尾草种子脱落的调控网络。狼尾草是狼尾草属最具代表性的观赏草之一,具有独特的花序、优雅的外观和较强的抗逆性。然而,种子的脱落不仅降低了观赏效果,还阻碍了种子的产生。为了了解狼尾草种子脱落的潜在机制,我们对狼尾草 cv.‘立球’进行了形态学、组织学、生理学和转录组分析。根据组织学发现,‘立球’的种子脱落是由花梗基部的离区决定的。相关分析表明,种子脱落与纤维素酶、木质素、生长素、赤霉素、细胞分裂素和茉莉酸显著相关。通过组织学和生理学分析的结合,我们观察到纤维素酶和木质素在‘立球’种子脱落过程中的积累。我们使用 PacBio 全长转录组测序(SMRT)结合下一代测序(NGS)转录组技术来提高‘立球’的转录组数据。转录组学进一步鉴定了许多与纤维素酶、木质素和植物激素相关途径相关的差异表达基因。本研究将为狼尾草脱落机制的研究提供新的见解。