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Integrating omics reveals insights into tomato abaxial/adaxial leafy supplemental lighting

文献类型: 外文期刊

作者: Jiang, Chengyao 1 ; Wu, Haolian 1 ; Zhang, Xiaoying 2 ; Liu, Jiaming 2 ; Li, Yushan 3 ; Song, Yu 3 ; Wang, Jue 1 ; Zheng, Yangxia 1 ;

作者机构: 1.Sichuan Agr Univ, Coll Hort, Chengdu, Peoples R China

2.Chengdu NewSun Crop Sci Co Ltd, Lab Crop Immune Gene Editing Technol, Chengdu, Peoples R China

3.Xinjiang Acad Agr Sci, Res Inst Crop Germplasm Resources, Urumqi, Peoples R China

关键词: Solanum lycopersicum; irradiation orientation; photosynthesis; transcriptomic; proteomic

期刊名称:FRONTIERS IN PLANT SCIENCE ( 影响因子:5.6; 五年影响因子:6.8 )

ISSN: 1664-462X

年卷期: 2023 年 14 卷

页码:

收录情况: SCI

摘要: Research revealed that the abaxial leafy supplemental lighting (AB) can significantly improve the net photosynthetic rate and stomatal conductance in the leaves of tomato plants compare to the adaxial leafy supplemental lighting (AD) method. However, the underlying regulatory mechanisms are still poorly understood. Here, we conducted AB and AD on tomato and assessed transcriptomic, and proteomic changes in leaves. The result showed that under the two supplemental lighting methods, a total of 7352 genes and 152 proteins were differentially expressed. Significant differences were observed in genes expression levels and proteins abundances across multiple pathways, mainly including cell process, metabolism process, biological regulation, environment information processing, genetic information processing, metabolism, and organismal systems. Additionally, we also found that some key genes that plant hormone signaling, light perception, photosynthesis, plant fitness, and promoting fruit ripening, have increased significantly, which can explain the effect of AB on plant growth and development. Finally, through the qPCR, we determined that AB mainly up-regulate a series of auxin-responsive genes or factors, auxin polarity transport genes, gibberellin synthesis genes, cell cycle regulator genes, sugar transporters, and fleshy fruit ripening genes. These results help us to understand plant light response mechanism and discover genes which contribute to efficient light energy utilization.

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