miRNA与mRNA联合测序揭示抗性水稻YHY15对不同毒力褐飞虱的防御策略。
Combined miRNA and mRNA sequencing reveals the defensive strategies of resistant YHY15 rice against differentially virulent brown planthoppers.
作者信息
Yu Bin, Geng Mengjia, Xue Yu, Yu Qingqing, Lu Bojie, Liu Miao, Shao Yuhan, Li Chenxi, Xu Jingang, Li Jintao, Hu Wei, Tang Hengmin, Li Peng, Liu Qingsong, Jing Shengli
机构信息
College of Life Sciences, Xinyang Normal University, Xinyang, China.
Hubei Provincial Key Laboratory for Protection and Application of Special Plant Germplasm in Wuling Area of China, College of Life Sciences, South-Central Minzu University, Wuhan, China.
出版信息
Front Plant Sci. 2024 Mar 18;15:1366515. doi: 10.3389/fpls.2024.1366515. eCollection 2024.
INTRODUCTION
The brown planthopper (BPH) poses a significant threat to rice production in Asia. The use of resistant rice varieties has been effective in managing this pest. However, the adaptability of BPH to resistant rice varieties has led to the emergence of virulent populations, such as biotype Y BPH. YHY15 rice, which carries the BPH resistance gene , exhibits notable resistance to biotype 1 BPH but is susceptible to biotype Y BPH. Limited information exists regarding how resistant rice plants defend against BPH populations with varying levels of virulence.
METHODS
In this study, we integrated miRNA and mRNA expression profiling analyses to study the differential responses of YHY15 rice to both avirulent (biotype 1) and virulent (biotype Y) BPH.
RESULTS
YHY15 rice demonstrated a rapid response to biotype Y BPH infestation, with significant transcriptional changes occurring within 6 hours. The biotype Y-responsive genes were notably enriched in photosynthetic processes. Accordingly, biotype Y BPH infestation induced more intense transcriptional responses, affecting miRNA expression, defenserelated metabolic pathways, phytohormone signaling, and multiple transcription factors. Additionally, callose deposition was enhanced in biotype Y BPH-infested rice seedlings.
DISCUSSION
These findings provide comprehensive insights into the defense mechanisms of resistant rice plants against virulent BPH, and may potentially guide the development of insect-resistant rice varieties.
引言
褐飞虱对亚洲水稻生产构成重大威胁。使用抗性水稻品种在防治这种害虫方面一直很有效。然而,褐飞虱对抗性水稻品种的适应性导致了毒性种群的出现,如生物型Y褐飞虱。携带褐飞虱抗性基因的YHY15水稻对生物型1褐飞虱表现出显著抗性,但对生物型Y褐飞虱敏感。关于抗性水稻植株如何抵御不同毒力水平的褐飞虱种群的信息有限。
方法
在本研究中,我们整合了miRNA和mRNA表达谱分析,以研究YHY15水稻对无毒(生物型1)和有毒(生物型Y)褐飞虱的差异反应。
结果
YHY15水稻对生物型Y褐飞虱侵染表现出快速反应,6小时内发生了显著的转录变化。生物型Y响应基因在光合作用过程中显著富集。因此,生物型Y褐飞虱侵染诱导了更强烈的转录反应,影响miRNA表达、防御相关代谢途径、植物激素信号传导和多个转录因子。此外,在生物型Y褐飞虱侵染的水稻幼苗中胼胝质沉积增强。
讨论
这些发现为抗性水稻植株抵御有毒褐飞虱的防御机制提供了全面的见解,并可能潜在地指导抗虫水稻品种的开发。