School of Plant, Environmental, and Soil Sciences, Louisiana State University Agricultural Center, Baton Rouge, LA 70803, USA.
Int J Mol Sci. 2022 Jan 30;23(3):1608. doi: 10.3390/ijms23031608.
Flowering is a key agronomic trait that influences adaptation and productivity. Previous studies have indicated the genetic complexity associated with the flowering response in a photoinsensitive weedy rice accession PSRR-1 despite the presence of a photosensitive allele of a key flowering gene . In this study, we used whole-genome and RNA sequencing data from both cultivated and weedy rice to add further insights. The assembly of unaligned sequences predicted 225 genes, in which 45 were specific to PSRR-1, including two genes associated with flowering. Comparison of the variants in PSRR-1 with the 3K rice genome (RG) dataset identified unique variants within the heading date QTLs. Analyses of the RNA-Seq result under both short-day (SD) and long-day (LD) conditions revealed that many differentially expressed genes (DEGs) colocalized with the flowering QTLs, and some DEGs such as , , , and had unique variants in PSRR-1. , , , and showed different alternate splicing (AS) events between genotypes and day length conditions. was expressed in PSRR-1 but not in Cypress under both LD and SD conditions. Based on variations in both sequence and expression, the unique flowering response in PSRR-1 may be due to the high-impact variants of flowering genes, and is proposed as a key regulator for its day-neutral flowering response.
开花是一个关键的农艺性状,影响适应性和生产力。先前的研究表明,尽管存在关键开花基因的光敏等位基因,但在一个光不敏感的杂草稻品种 PSRR-1 中,与开花反应相关的遗传复杂性。在这项研究中,我们使用来自栽培稻和杂草稻的全基因组和 RNA 测序数据进一步深入研究。未对齐序列的组装预测了 225 个基因,其中 45 个是 PSRR-1 特有的,包括与开花相关的两个基因。将 PSRR-1 中的变异与 3K 水稻基因组 (RG) 数据集进行比较,在抽穗日期 QTL 内鉴定出独特的变异。在短日 (SD) 和长日 (LD) 条件下对 RNA-Seq 结果的分析表明,许多差异表达基因 (DEGs) 与开花 QTL 共定位,一些 DEGs(如 、 、 、 )在 PSRR-1 中具有独特的变异。 、 、 、 和 显示出基因型和日长条件下不同的可变剪接 (AS) 事件。 在 LD 和 SD 条件下,PSRR-1 中表达,但在 Cypress 中不表达。基于序列和表达的变化,PSRR-1 中独特的开花反应可能是由于开花基因的高影响变异,并且 被提议为其日中性开花反应的关键调节剂。