Key Laboratory of Landscaping, Ministry of Agriculture and Rural Affairs, Key Laboratory of Biology of Ornamental Plants in East China, College of Horticulture, Nanjing Agricultural University, Nanjing 210095, China.
Int J Mol Sci. 2022 Sep 1;23(17):9925. doi: 10.3390/ijms23179925.
Most (lotus) flower buds were aborted during the growing season, notably in low-light environments. How lotus produces so many aborted flower buds is largely unknown. An integrated transcriptome and targeted metabolite analysis was performed to reveal the genetic regulatory networks underlying lotus flower bud abortion. A total of 233 miRNAs and 25,351 genes were identified in lotus flower buds, including 68 novel miRNAs and 1108 novel genes. Further enrichment analysis indicated that sugar signaling plays a potential central role in regulating lotus flower bud abortion. Targeted metabolite analysis showed that trehalose levels declined the most in the aborting flower buds. A potential regulatory network centered on miR156 governs lotus flower bud abortion, involving multiple miRNA-mRNA pairs related to cell integrity, cell proliferation and expansion, and DNA repair. Genetic analysis showed that miRNA156-5p-overexpressing lotus showed aggravated flower bud abortion phenotypes. Trehalose-6-P synthase 1 (TPS1), which is required for trehalose synthase, had a negative regulatory effect on miR156 expression. -overexpression lotus showed significantly decreased flower bud abortion rates both in normal-light and low-light environments. Our study establishes a possible genetic basis for how lotus produces so many aborted flower buds, facilitating genetic improvement of lotus' shade tolerance.
大多数(荷花)花蕾在生长季节夭折,特别是在光照不足的环境中。荷花如何产生如此多的败育花蕾在很大程度上是未知的。本研究通过进行整合的转录组和靶向代谢物分析,揭示了荷花花蕾败育的遗传调控网络。在荷花花蕾中鉴定出了 233 个 miRNA 和 25351 个基因,包括 68 个新的 miRNA 和 1108 个新的基因。进一步的富集分析表明,糖信号在调节荷花花蕾败育中起着潜在的核心作用。靶向代谢物分析表明,在败育花蕾中海藻糖水平下降最多。以 miR156 为中心的潜在调控网络调控荷花花蕾败育,涉及多个与细胞完整性、细胞增殖和扩张以及 DNA 修复相关的 miRNA-mRNA 对。遗传分析表明,miR156-5p 过表达的荷花表现出加重的花蕾败育表型。海藻糖-6-P 合酶 1(TPS1)是海藻糖合酶所必需的,对 miR156 的表达有负调控作用。TPS1 过表达的荷花在正常光照和低光照环境下的花蕾败育率均显著降低。本研究为荷花产生如此多败育花蕾的遗传基础提供了可能的解释,为荷花的耐荫性遗传改良奠定了基础。