Waegneer Evelien, Rombauts Stephane, Baert Joost, Dauchot Nicolas, De Keyser Annick, Eeckhaut Tom, Haegeman Annelies, Liu Chang, Maudoux Olivier, Notté Christine, Staelens Ariane, Van der Veken Jeroen, Van Laere Katrijn, Ruttink Tom
Plant Sciences Unit, Flanders Research Institute for Agriculture, Fisheries and Food (ILVO), Melle, Belgium.
Laboratory for Plant Genetics and Crop Improvement, Division of Crop Biotechnics, Department of Biosystems, Katholieke Universiteit Leuven, Leuven, Belgium.
Front Plant Sci. 2023 Jun 13;14:1181529. doi: 10.3389/fpls.2023.1181529. eCollection 2023.
Industrial chicory ( var. ) is a biannual crop mostly cultivated for extraction of inulin, a fructose polymer used as a dietary fiber. F1 hybrid breeding is a promising breeding strategy in chicory but relies on stable male sterile lines to prevent self-pollination. Here, we report the assembly and annotation of a new industrial chicory reference genome. Additionally, we performed RNA-Seq on subsequent stages of flower bud development of a fertile line and two cytoplasmic male sterile (CMS) clones. Comparison of fertile and CMS flower bud transcriptomes combined with morphological microscopic analysis of anthers, provided a molecular understanding of anther development and identified key genes in a range of underlying processes, including tapetum development, sink establishment, pollen wall development and anther dehiscence. We also described the role of phytohormones in the regulation of these processes under normal fertile flower bud development. In parallel, we evaluated which processes are disturbed in CMS clones and could contribute to the male sterile phenotype. Taken together, this study provides a state-of-the-art industrial chicory reference genome, an annotated and curated candidate gene set related to anther development and male sterility as well as a detailed molecular timetable of flower bud development in fertile and CMS lines.
工业用菊苣(变种)是一种二年生作物,主要用于提取菊粉,菊粉是一种用作膳食纤维的果糖聚合物。F1杂交育种是菊苣一种很有前景的育种策略,但依赖于稳定的雄性不育系来防止自花授粉。在此,我们报告了一个新的工业用菊苣参考基因组的组装和注释。此外,我们对一个可育系和两个细胞质雄性不育(CMS)克隆的花芽发育后续阶段进行了RNA测序。对可育和CMS花芽转录组的比较,结合花药的形态显微镜分析,提供了对花药发育的分子理解,并确定了一系列潜在过程中的关键基因,包括绒毡层发育、库的建立、花粉壁发育和花药开裂。我们还描述了植物激素在正常可育花芽发育过程中对这些过程的调节作用。同时,我们评估了CMS克隆中哪些过程受到干扰,并可能导致雄性不育表型。综上所述,本研究提供了一个先进的工业用菊苣参考基因组、一个与花药发育和雄性不育相关的注释和整理的候选基因集,以及可育和CMS系花芽发育的详细分子时间表。