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基因组-wide 分析同源多倍体甘蔗()中生长素/吲哚乙酸()基因家族。

Genome-Wide Analysis of the Auxin/Indoleacetic Acid () Gene Family in Autopolyploid Sugarcane ().

机构信息

State Key Laboratory of Conservation and Utilization of Subtropical Agricultural Biological Resources, Guangxi University, Nanning 530004, China.

Guangxi Key Laboratory of Sugarcane Biology, College of Agriculture, Guangxi University, Nanning 530004, China.

出版信息

Int J Mol Sci. 2024 Jul 8;25(13):7473. doi: 10.3390/ijms25137473.

Abstract

The auxin/indoleacetic acid () family plays a central role in regulating gene expression during auxin signal transduction. Nonetheless, there is limited knowledge regarding this gene family in sugarcane. In this study, 92 members of the IAA family were identified in , distributed on 32 chromosomes, and classified into three clusters based on phylogeny and motif compositions. Segmental duplication and recombination events contributed largely to the expansion of this superfamily. Additionally, cis-acting elements in the promoters of involved in plant hormone regulation and stress responsiveness were predicted. Transcriptomics data revealed that most expressions were significantly higher in stems and basal parts of leaves, and at nighttime, suggesting that these genes might be involved in sugar transport. QRT-PCR assays confirmed that cold and salt stress significantly induced four and five , respectively. GFP-subcellular localization showed that SsIAA23 and SsIAA12a were localized in the nucleus, consistent with the results of bioinformatics analysis. In conclusion, to a certain extent, the functional redundancy of family members caused by the expansion of the sugarcane IAA gene family is related to stress resistance and regeneration of sugarcane as a perennial crop. This study reveals the gene evolution and function of the gene family in sugarcane, laying the foundation for further research on its mode of action.

摘要

生长素/吲哚乙酸(Auxin/indoleacetic acid,IAA)家族在生长素信号转导过程中对基因表达的调控起着核心作用。尽管如此,关于甘蔗中的这个基因家族,我们的了解还很有限。在这项研究中,在甘蔗基因组中鉴定到了 92 个 IAA 家族成员,它们分布在 32 条染色体上,并根据系统发育和基序组成分为三个聚类。片段复制和重组事件对这个超家族的扩张起到了很大的作用。此外,还预测了参与植物激素调节和应激响应的启动子中的顺式作用元件。转录组学数据表明,大多数 表达在茎和叶片基部以及夜间显著较高,表明这些基因可能参与糖运输。实时荧光定量 PCR(QRT-PCR)分析证实,冷和盐胁迫分别显著诱导了四个和五个 。GFP 亚细胞定位显示 SsIAA23 和 SsIAA12a 定位于细胞核,与生物信息学分析的结果一致。总之,一定程度上,甘蔗 IAA 基因家族的扩张导致了家族成员的功能冗余,这与甘蔗的抗逆性和多年生作物的再生有关。本研究揭示了甘蔗中 基因家族的基因进化和功能,为进一步研究其作用模式奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f64/11242263/78b5825e7a52/ijms-25-07473-g001.jpg

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