Tian Ze, Han Jiadi, Che Gen, Hasi Agula
Key Laboratory of Herbage and Endemic Crop Biotechnology, Ministry of Education, School of Life Sciences, Inner Mongolia University, Hohhot, 010070, China.
Planta. 2022 May 13;255(6):123. doi: 10.1007/s00425-022-03908-0.
We identified 66 melon SAUR genes by bioinformatic analyses. CmSAUR19, 38, 58, 62 genes are specifically expressed in different stages of fruit growth, suggesting their participation in regulating fruit development. Auxin plays a crucial role in plant growth by regulating the multiple auxin response genes. However, in melon (Cucumis melo L.), the functions of the auxin early response gene family SAUR (Small auxin up RNA) genes in fruit development are still poorly understood. Through genome-wide characterization of CmSAUR family in melon, we identified a total of 66 CmSAUR genes. The open reading frames of the CmSAUR genes ranged from 234 to 525 bp, containing only one exon and lacking introns. Chromosomal position and phylogenetic tree analyses found that the two gene clusters in the melon chromosome are highly homologous in the Cucurbitaceae plants. Among the four conserved motifs in CmSAUR proteins, motif 1, motif 2, and motif 3 located in most of the family protein sequences, and motif 4 showed a close correlation with the two gene clusters. The CmSAUR28 and CmSAUR58 genes have auxin response elements located in the promoters, suggesting they may be involved in the auxin signaling pathway to regulate fruit development. Through transcriptomic profiling in the four developmental stages of fruit and different lateral organs, we selected 16 differentially-expressed SAUR genes for performing further expression analyses. qRT-PCR results showed that five SAUR genes are specifically expressed in flower organs and ovaries. CmSAUR19 and CmSAUR58 were significantly accumulated in the early developmental stage of the fruit. CmSAUR38 and CmAUR62 showed high expression in the climacteric and post-climacteric stages, suggesting their specific role in controlling fruit ripening. This work provides a foundation for further exploring the function of the SAUR gene in fruit development.
我们通过生物信息学分析鉴定出66个甜瓜SAUR基因。CmSAUR19、38、58、62基因在果实生长的不同阶段特异性表达,表明它们参与调控果实发育。生长素通过调控多个生长素响应基因在植物生长中起关键作用。然而,在甜瓜(Cucumis melo L.)中,生长素早期响应基因家族SAUR(Small auxin up RNA)基因在果实发育中的功能仍知之甚少。通过对甜瓜中CmSAUR家族进行全基因组特征分析,我们共鉴定出66个CmSAUR基因。CmSAUR基因的开放阅读框长度在234至525 bp之间,仅包含一个外显子且无内含子。染色体位置和系统发育树分析发现,甜瓜染色体上的两个基因簇在葫芦科植物中高度同源。在CmSAUR蛋白的四个保守基序中,基序1、基序2和基序3存在于大多数家族蛋白序列中,基序4与两个基因簇密切相关。CmSAUR28和CmSAUR58基因的启动子中存在生长素响应元件,表明它们可能参与生长素信号通路以调控果实发育。通过对果实四个发育阶段和不同侧生器官的转录组分析,我们选择了16个差异表达的SAUR基因进行进一步表达分析。qRT-PCR结果表明,有5个SAUR基因在花器官和子房中专一性表达。CmSAUR19和CmSAUR58在果实发育早期显著积累。CmSAUR38和CmSAUR62在跃变期和跃变后期高表达,表明它们在控制果实成熟中具有特定作用。这项工作为进一步探索SAUR基因在果实发育中的功能奠定了基础。