State Key Laboratory of Wheat and Maize Crop Science, Collaborative Innovation Center of Henan Grain Crops, College of Agronomy, Henan Agricultural University, Zhengzhou, 450002, China.
The Shennong Laboratory, Zhengzhou, 450002, China.
J Integr Plant Biol. 2024 Nov;66(11):2561-2577. doi: 10.1111/jipb.13780. Epub 2024 Oct 3.
Disease resistance is often associated with compromised plant growth and yield due to defense-growth tradeoffs. However, key components and mechanisms underlying the defense-growth tradeoffs are rarely explored in maize. In this study, we find that ZmSKI3, a putative subunit of the SUPERKILLER (SKI) complex that mediates the 3'-5' degradation of RNA, regulates both plant development and disease resistance in maize. The Zmski3 mutants showed retarded plant growth and constitutively activated defense responses, while the ZmSKI3 overexpression lines are more susceptible to Curvularia lunata and Bipolaris maydis. Consistently, the expression of defense-related genes was generally up-regulated, while expressions of growth-related genes were mostly down-regulated in leaves of the Zmski3-1 mutant compared to that of wild type. In addition, 223 differentially expressed genes that are up-regulated in Zmski3-1 mutant but down-regulated in the ZmSKI3 overexpression line are identified as potential target genes of ZmSKI3. Moreover, small interfering RNAs targeting the transcripts of the defense- and growth-related genes are differentially accumulated, likely to combat the increase of defense-related transcripts but decrease of growth-related transcripts in Zmski3-1 mutant. Taken together, our study indicates that plant growth and immunity could be regulated by both ZmSKI3-mediated RNA decay and post-transcriptional gene silencing in maize.
抗病性通常与植物生长和产量受损有关,因为防御与生长之间存在权衡。然而,在玉米中,很少探索防御与生长权衡的关键组成部分和机制。在这项研究中,我们发现 ZmSKI3,一种假定的 SUPERKILLER(SKI)复合物的亚基,介导 RNA 的 3'-5'降解,调节玉米的植物发育和抗病性。ZmSki3 突变体表现出植物生长迟缓和防御反应的组成性激活,而 ZmSKI3 过表达系对 Curvularia lunata 和 Bipolaris maydis 更敏感。一致地,与野生型相比,ZmSKI3 突变体叶片中防御相关基因的表达通常上调,而生长相关基因的表达大多下调。此外,在 Zmski3-1 突变体中上调但在 ZmSKI3 过表达系中下调的 223 个差异表达基因被鉴定为 ZmSKI3 的潜在靶基因。此外,针对防御和生长相关基因转录本的小干扰 RNA 差异积累,可能会对抗 Zmski3-1 突变体中防御相关转录本的增加和生长相关转录本的减少。总之,我们的研究表明,在玉米中,植物生长和免疫可以通过 ZmSKI3 介导的 RNA 降解和转录后基因沉默来调节。