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生菜转录组分析揭示不同光/暗周期促进生长和品质的机制。

Analysis of lettuce transcriptome reveals the mechanism of different light/dark cycle in promoting the growth and quality.

作者信息

Dai Mengdi, Tan Xiangfeng, Ye Ziran, Chen Xuting, Zhang Yi, Ruan Yunjie, Ma Bin, Kong Dedong

机构信息

Institute of Digital Agriculture, Zhejiang Academy of Agricultural Sciences, Hangzhou, China.

Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences (UCAS), Hangzhou, China.

出版信息

Front Plant Sci. 2024 Jul 9;15:1394434. doi: 10.3389/fpls.2024.1394434. eCollection 2024.

Abstract

Light/dark (L/D) cycle plays a crucial role in controlling the production and quality of vegetables. However, the mechanism of L/D cycle on vegetable growth and quality is scarce studied. To investigate the impact of L/D cycle on lettuce growth and quality, we designed three diel scenarios, including 16 hours of light and 8 hours of darkness (L16/D8), 12 hours of light and 6 hours of darkness (L12/D6), and 8 hours of light and 4 hours of darkness (L8/D4). By phenotypic analysis, we found that lettuce grew taller under the L8/D4 scenario than under L16/D8 light cycle scenarios. The physiological indexes showed that the lettuce leaves grown in the L8/D4 scenario exhibited greater enhancements in the levels of soluble protein, soluble sugar, and carotenoid content compared to the other scenarios. By comparing the expression levels under different diel scenarios (L16/D8 vs L12/D6, L16/D8 vs L8/D4, and L12/D6 vs L8/D4), we identified 7,209 differentially expressed genes (DEGs). Additionally, 3 gene modules that were closely related to L/D cycle of lettuce were selected by WGCNA analysis. The eigengenes of three gene modules were enriched in plant hormone signal transduction, sphingolipid metabolism, and nucleocytoplasmic transport pathways. Through network analysis, we identified six hub genes (CIP1, SCL34, ROPGEF1, ACD6, CcmB, and Rps4) in the three gene modules, which were dominant in plant circadian rhythms and greatly affected lettuce growth. qRT-PCR analysis confirmed the diurnal response patterns of the 6 hub genes in different treatments were significant. This study intensively enhanced our comprehension of the L/D cycle in the growth morphology, nutritional quality, and metabolic pathways of lettuce.

摘要

光/暗(L/D)循环在控制蔬菜的产量和品质方面起着至关重要的作用。然而,关于L/D循环对蔬菜生长和品质影响的机制研究较少。为了探究L/D循环对生菜生长和品质的影响,我们设计了三种日周期方案,包括16小时光照和8小时黑暗(L16/D8)、12小时光照和6小时黑暗(L12/D6)以及8小时光照和4小时黑暗(L8/D4)。通过表型分析,我们发现生菜在L8/D4方案下比在L16/D8光周期方案下长得更高。生理指标显示,与其他方案相比,在L8/D4方案下生长的生菜叶片在可溶性蛋白、可溶性糖和类胡萝卜素含量水平上有更大的提升。通过比较不同日周期方案(L16/D8与L12/D6、L16/D8与L8/D4以及L12/D6与L8/D4)下的表达水平,我们鉴定出7209个差异表达基因(DEGs)。此外,通过加权基因共表达网络分析(WGCNA)选择了3个与生菜L/D循环密切相关的基因模块。三个基因模块的特征基因富集在植物激素信号转导、鞘脂代谢和核质运输途径中。通过网络分析,我们在这三个基因模块中鉴定出六个枢纽基因(CIP1、SCL34、ROPGEF1、ACD6、CcmB和Rps4),它们在植物昼夜节律中占主导地位,并对生菜生长有很大影响。实时定量聚合酶链反应(qRT-PCR)分析证实,这6个枢纽基因在不同处理中的昼夜响应模式具有显著性。本研究极大地增强了我们对L/D循环在生菜生长形态、营养品质和代谢途径方面的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19ff/11263018/fb1e27d48076/fpls-15-1394434-g001.jpg

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