Zeng Ling-Lu, Meng Wan-Qiu, Zhong Xue-Ni, Peng Jun-Jie, Yang Xiu-Li, Sun Li
College of Life Sciences, Shihezi University, Shihezi, Xinjiang, China.
Front Plant Sci. 2025 May 8;16:1576519. doi: 10.3389/fpls.2025.1576519. eCollection 2025.
, an annual spring ephemeral plant and a wild relative of wheat (), is widely distributed in the Junggar Desert of northern Xinjiang, China. It has several adaptive traits to survive in the desert environments, such as rapid growth in the early spring, flowers quickly, and completes its life cycle within approximately two months. However, the adaptation mechanisms of the fast flowering are still unknown. In this study, high-throughput RNA sequencing (RNA-seq) was performed to identify differentially expressed genes (DEGs) associated with flowering in during three developmental stages. A total of 11,278 DEGs were identified, including 1,632 DEGs specifically expressed during the flowering stage. Pathway analysis showed that these DEGs are mainly enriched in plant-pathogen interaction, plant hormone signal transduction, the MAPK signaling pathway, and so on. A total of 92 DEGs related to the flowering pathway were identified, which are mainly involved in the photoperiod, hormone signaling, autonomous, and vernalization pathway. Multiple transcription factor families related to floral transition were identified, with members of the MADS-box, bHLH, MYB, and AP2 families being the most abundant. In addition, four () genes were identified in , and three of them were highly up-regulated at the flowering stage. The expression of was induced in darkness, and short-day conditions promote its expression. Overexpression of the gene accelerates flowering in .
[植物名称],一种一年生春季短命植物,是小麦的野生近缘种,广泛分布于中国新疆北部的准噶尔沙漠。它具有多种适应沙漠环境的特性,比如早春快速生长、迅速开花,并在大约两个月内完成其生命周期。然而,快速开花的适应机制仍然未知。在本研究中,进行了高通量RNA测序(RNA-seq),以鉴定[植物名称]在三个发育阶段中与开花相关的差异表达基因(DEG)。共鉴定出11278个DEG,其中包括在开花阶段特异性表达的1632个DEG。通路分析表明,这些DEG主要富集在植物-病原体相互作用、植物激素信号转导、MAPK信号通路等方面。共鉴定出92个与开花途径相关的DEG,它们主要参与光周期、激素信号、自主和春化途径。鉴定出了多个与花转变相关的转录因子家族,其中MADS-box、bHLH、MYB和AP2家族的成员最为丰富。此外,在[植物名称]中鉴定出了四个[基因名称]基因,其中三个在开花阶段高度上调。[基因名称]的表达在黑暗中被诱导,短日条件促进其表达。[基因名称]基因的过表达加速了[植物名称]的开花。