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基于微型番茄基因组和RNA组的番茄器官发育综合调控网络

Comprehensive regulatory networks for tomato organ development based on the genome and RNAome of MicroTom tomato.

作者信息

Xue Jia-Yu, Fan Hai-Yun, Zeng Zhen, Zhou Yu-Han, Hu Shuai-Ya, Li Sai-Xi, Cheng Ying-Juan, Meng Xiang-Ru, Chen Fei, Shao Zhu-Qing, Van de Peer Yves

机构信息

College of Horticulture, Academy for Advanced Interdisciplinary Studies, Nanjing Agricultural University, Nanjing 210095, China.

State Key Laboratory of Pharmaceutical Biotechnology, School of Life Sciences, Nanjing University, Nanjing 210023, China.

出版信息

Hortic Res. 2023 Jul 19;10(9):uhad147. doi: 10.1093/hr/uhad147. eCollection 2023 Sep.

Abstract

MicroTom has a short growth cycle and high transformation efficiency, and is a prospective model plant for studying organ development, metabolism, and plant-microbe interactions. Here, with a newly assembled reference genome for this tomato cultivar and abundant RNA-seq data derived from tissues of different organs/developmental stages/treatments, we constructed multiple gene co-expression networks, which will provide valuable clues for the identification of important genes involved in diverse regulatory pathways during plant growth, e.g. arbuscular mycorrhizal symbiosis and fruit development. Additionally, non-coding RNAs, including miRNAs, lncRNAs, and circRNAs were also identified, together with their potential targets. Interacting networks between different types of non-coding RNAs (miRNA-lncRNA), and non-coding RNAs and genes (miRNA-mRNA and lncRNA-mRNA) were constructed as well. Our results and data will provide valuable information for the study of organ differentiation and development of this important fruit. Lastly, we established a database (http://eplant.njau.edu.cn/microTomBase/) with genomic and transcriptomic data, as well as details of gene co-expression and interacting networks on MicroTom, and this database should be of great value to those who want to adopt MicroTom as a model plant for research.

摘要

微型番茄生长周期短且转化效率高,是研究器官发育、代谢以及植物与微生物相互作用的一种有前景的模式植物。在此,利用该番茄品种新组装的参考基因组以及来自不同器官/发育阶段/处理的组织的大量RNA测序数据,我们构建了多个基因共表达网络,这将为鉴定植物生长过程中参与多种调控途径(如丛枝菌根共生和果实发育)的重要基因提供有价值的线索。此外,还鉴定了包括微小RNA(miRNA)、长链非编码RNA(lncRNA)和环状RNA(circRNA)在内的非编码RNA及其潜在靶标。同时构建了不同类型非编码RNA之间(miRNA-lncRNA)以及非编码RNA与基因之间(miRNA-mRNA和lncRNA-mRNA)的相互作用网络。我们的结果和数据将为研究这种重要果实的器官分化和发育提供有价值的信息。最后,我们建立了一个数据库(http://eplant.njau.edu.cn/microTomBase/),其中包含微型番茄的基因组和转录组数据以及基因共表达和相互作用网络的详细信息,该数据库对于那些想将微型番茄用作研究模式植物的人应该具有很大的价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16f6/10483172/8fe23cfd8ef3/uhad147f1.jpg

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