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害群之马、黑马和花狗:关于基因本体论在铁稳态方面现状的综述

Black sheep, dark horses, and colorful dogs: a review on the current state of the Gene Ontology with respect to iron homeostasis in .

作者信息

Mai Hans-Jörg, Baby Dibin, Bauer Petra

机构信息

Institute of Botany, Heinrich Heine University, Düsseldorf, Germany.

Heinrich Heine University, Center of Excellence on Plant Sciences (CEPLAS), Düsseldorf, Germany.

出版信息

Front Plant Sci. 2023 Jul 24;14:1204723. doi: 10.3389/fpls.2023.1204723. eCollection 2023.

Abstract

Cellular homeostasis of the micronutrient iron is highly regulated in plants and responsive to nutrition, stress, and developmental signals. Genes for iron management encode metal and other transporters, enzymes synthesizing chelators and reducing substances, transcription factors, and several types of regulators. In transcriptome or proteome datasets, such iron homeostasis-related genes are frequently found to be differentially regulated. A common method to detect whether a specific cellular pathway is affected in the transcriptome data set is to perform Gene Ontology (GO) enrichment analysis. Hence, the GO database is a widely used resource for annotating genes and identifying enriched biological pathways in . However, iron homeostasis-related GO terms do not consistently reflect gene associations and levels of evidence in iron homeostasis. Some genes in the existing iron homeostasis GO terms lack direct evidence of involvement in iron homeostasis. In other aspects, the existing GO terms for iron homeostasis are incomplete and do not reflect the known biological functions associated with iron homeostasis. This can lead to potential errors in the automatic annotation and interpretation of GO term enrichment analyses. We suggest that applicable evidence codes be used to add missing genes and their respective ortholog/paralog groups to make the iron homeostasis-related GO terms more complete and reliable. There is a high likelihood of finding new iron homeostasis-relevant members in gene groups and families like the , , , , , , , , , and . Hence, we compiled comprehensive lists of genes involved in iron homeostasis that can be used for custom enrichment analysis in transcriptomic or proteomic studies, including genes with direct experimental evidence, those regulated by central transcription factors, and missing members of small gene families or ortholog/paralog groups. As we provide gene annotation and literature alongside, the gene lists can serve multiple computational approaches. In summary, these gene lists provide a valuable resource for researchers studying iron homeostasis in , while they also emphasize the importance of improving the accuracy and comprehensiveness of the Gene Ontology.

摘要

植物中微量营养素铁的细胞稳态受到高度调控,并对营养、胁迫和发育信号作出响应。铁管理相关基因编码金属及其他转运蛋白、合成螯合剂和还原物质的酶、转录因子以及多种类型的调节因子。在转录组或蛋白质组数据集中,经常发现这些与铁稳态相关的基因受到差异调控。检测转录组数据集中特定细胞途径是否受到影响的常用方法是进行基因本体论(GO)富集分析。因此,GO数据库是用于注释基因和识别富集生物途径的广泛使用的资源。然而,与铁稳态相关的GO术语并不能始终如一地反映铁稳态中的基因关联和证据水平。现有铁稳态GO术语中的一些基因缺乏参与铁稳态的直接证据。在其他方面,现有的铁稳态GO术语不完整,没有反映与铁稳态相关的已知生物学功能。这可能导致GO术语富集分析的自动注释和解释出现潜在错误。我们建议使用适用的证据代码来添加缺失的基因及其各自的直系同源/旁系同源组,以使与铁稳态相关的GO术语更加完整和可靠。在诸如、、、、、、、、、和等基因群组和家族中很有可能找到与铁稳态相关的新成员。因此,我们编制了参与铁稳态的基因综合列表,可用于转录组或蛋白质组研究中的定制富集分析,包括具有直接实验证据的基因、受中心转录因子调控的基因以及小基因家族或直系同源/旁系同源组的缺失成员。由于我们同时提供了基因注释和文献,这些基因列表可用于多种计算方法。总之,这些基因列表为研究中的铁稳态的研究人员提供了宝贵的资源,同时也强调了提高基因本体论的准确性和全面性的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3076/10406446/42b49f664596/fpls-14-1204723-g001.jpg

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