Beijing Vegetable Research Center (BVRC), Beijing Academy of Agriculture and Forestry Sciences (BAAFS), Beijing, China.
State Key Laboratory of Vegetable Biobreeding, Beijing Vegetable Research Center, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, China.
Plant Physiol. 2024 May 31;195(2):940-957. doi: 10.1093/plphys/kiae099.
Long noncoding RNAs (lncRNAs) play important roles in various biological processes. However, the regulatory roles of lncRNAs underlying fruit development have not been extensively studied. The pumpkin (Cucurbita spp.) is a preferred model for understanding the molecular mechanisms regulating fruit development because of its variable shape and size and large inferior ovary. Here, we performed strand-specific transcriptome sequencing on pumpkin (Cucurbita maxima "Rimu") fruits at 6 developmental stages and identified 5,425 reliably expressed lncRNAs. Among the 332 lncRNAs that were differentially expressed during fruit development, the lncRNA MSTRG.44863.1 was identified as a negative regulator of pumpkin fruit development. MSTRG.44863.1 showed a relatively high expression level and an obvious period-specific expression pattern. Transient overexpression and silencing of MSTRG.44863.1 significantly increased and decreased the content of 1-aminocyclopropane carboxylic acid (a precursor of ethylene) and ethylene production, respectively. RNA pull-down and microscale thermophoresis assays further revealed that MSTRG.44863.1 can interact with S-adenosyl-L-methionine synthetase (SAMS), an enzyme in the ethylene synthesis pathway. Considering that ethylene negatively regulates fruit development, these results indicate that MSTRG.44863.1 plays an important role in the regulation of pumpkin fruit development, possibly through interacting with SAMS and affecting ethylene synthesis. Overall, our findings provide a rich resource for further study of fruit-related lncRNAs while offering insights into the regulation of fruit development in plants.
长链非编码 RNA(lncRNA)在各种生物过程中发挥着重要作用。然而,lncRNA 对果实发育的调控作用尚未得到广泛研究。南瓜(Cucurbita spp.)是研究调控果实发育的分子机制的首选模式植物,因为其形状和大小多样,且子房下位。在这里,我们对 6 个发育阶段的南瓜(Cucurbita maxima“Rimu”)果实进行了链特异性转录组测序,鉴定了 5425 个可靠表达的 lncRNA。在 332 个在果实发育过程中差异表达的 lncRNA 中,lncRNA MSTRG.44863.1被鉴定为南瓜果实发育的负调控因子。MSTRG.44863.1表现出相对较高的表达水平和明显的时期特异性表达模式。MSTRG.44863.1的瞬时过表达和沉默分别显著增加和减少了 1-氨基环丙烷羧酸(乙烯前体)的含量和乙烯的产生。RNA 下拉和微尺度热泳实验进一步表明,MSTRG.44863.1可以与 S-腺苷甲硫氨酸合成酶(SAMS)相互作用,SAMS 是乙烯合成途径中的一种酶。考虑到乙烯负调控果实发育,这些结果表明 MSTRG.44863.1在调控南瓜果实发育中发挥重要作用,可能通过与 SAMS 相互作用并影响乙烯合成。总的来说,我们的研究结果为进一步研究与果实相关的 lncRNA 提供了丰富的资源,并为植物果实发育的调控提供了新的见解。