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深入的番茄 CLE 基因家族基因组分析鉴定出新的活性肽。

Deeper genomic insights into tomato CLE genes repertoire identify new active peptides.

机构信息

Department of Biology, University of Fribourg, Chemin du Musée 10, 1700, Fribourg, Switzerland.

Swiss Institute of Bioinformatics, University of Fribourg, Chemin du Musée 10, 1700, Fribourg, Switzerland.

出版信息

BMC Genomics. 2022 Nov 17;23(1):756. doi: 10.1186/s12864-022-08980-0.

Abstract

BACKGROUND

In eukaryotes, cell-to-cell communication relies on the activity of small signaling peptides. In plant genomes, many hundreds of genes encode for such short peptide signals. However, only few of them are functionally characterized and due to the small gene size and high sequence variability, the comprehensive identification of such peptide-encoded genes is challenging. The CLAVATA3 (CLV3)/EMBRYO SURROUNDING REGION-RELATED (CLE) gene family encodes for short peptides that have a role in plant meristem maintenance, vascular patterning and responses to environment. The full repertoire of CLE genes and the role of CLE signaling in tomato (Solanum lycopersicum)- one of the most important crop plants- has not yet been fully studied.

RESULTS

By using a combined approach, we performed a genome-wide identification of CLE genes using the current tomato genome version SL 4.0. We identified 52 SlCLE genes, including 37 new non annotated before. By analyzing publicly available RNAseq datasets we could confirm the expression of 28 new SlCLE genes. We found that SlCLEs are often expressed in a tissue-, organ- or condition-specific manner. Our analysis shows an interesting gene diversification within the SlCLE family that seems to be a result of gene duplication events. Finally, we could show a biological activity of selected SlCLE peptides in the root growth arrest that was SlCLV2-dependent.

CONCLUSIONS

Our improved combined approach revealed 37 new SlCLE genes. These findings are crucial for better understanding of the CLE signaling in tomato. Our phylogenetic analysis pinpoints the closest homologs of Arabidopsis CLE genes in tomato genome and can give a hint about the function of newly identified SlCLEs. The strategy described here can be used to identify more precisely additional short genes in plant genomes. Finally, our work suggests that the mechanism of root-active CLE peptide perception is conserved between Arabidopsis and tomato. In conclusion, our work paves the way to further research on the CLE-dependent circuits modulating tomato development and physiological responses.

摘要

背景

在真核生物中,细胞间通讯依赖于小信号肽的活性。在植物基因组中,数以百计的基因编码这样的短肽信号。然而,只有少数基因具有功能特征,并且由于基因大小小和序列高度变异,全面识别此类肽编码基因具有挑战性。CLAVATA3(CLV3)/胚胎周围区域相关(CLE)基因家族编码在植物分生组织维持、血管模式形成和对环境响应中起作用的短肽。番茄(Solanum lycopersicum)中 CLE 基因的全部组成和 CLE 信号转导的作用尚未得到充分研究。

结果

通过使用组合方法,我们使用当前番茄基因组版本 SL 4.0 进行了 CLE 基因的全基因组鉴定。我们鉴定了 52 个 SlCLE 基因,包括 37 个以前未注释的新基因。通过分析公开可用的 RNAseq 数据集,我们可以确认 28 个新 SlCLE 基因的表达。我们发现 SlCLE 基因通常以组织、器官或条件特异性的方式表达。我们的分析表明,SlCLE 家族内存在有趣的基因多样化,这似乎是基因复制事件的结果。最后,我们可以显示选定的 SlCLE 肽在 SlCLV2 依赖性的根生长停滞中的生物学活性。

结论

我们改进的组合方法揭示了 37 个新的 SlCLE 基因。这些发现对于更好地理解番茄中的 CLE 信号转导至关重要。我们的系统发育分析确定了番茄基因组中拟南芥 CLE 基因的最接近同源物,并可以提示新鉴定的 SlCLE 的功能。这里描述的策略可用于更精确地鉴定植物基因组中的其他短基因。最后,我们的工作表明,根活性 CLE 肽感知的机制在拟南芥和番茄之间是保守的。总之,我们的工作为进一步研究调节番茄发育和生理反应的 CLE 依赖性电路铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94d5/9670457/1d8e8a4a688b/12864_2022_8980_Fig1_HTML.jpg

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