生物
基因
系统发育树
基因家族
龙葵
微量营养素
克莱德
遗传学
发起人
基因表达
锌指
基因表达谱
系统发育学
二价金属
锌
植物
生物化学
锰
调节基因
二价
鉴定(生物学)
作物
结构母题
基因表达调控
保守序列
蛋白质家族
金属
作者
Chenghong Yang,Zhijie Duan,Haiyan Yuan,Gang Liang
出处
期刊:Metallomics
[Oxford University Press]
日期:2026-01-01
卷期号:18 (1)
标识
DOI:10.1093/mtomcs/mfag029
摘要
Iron (Fe), zinc (Zn), manganese (Mn), and copper (Cu) are essential micronutrients for plant growth and development, but their low bioavailability in soil limits crop growth and yield. The ZIP (ZRT/IRT-like protein) family plays critical roles in the uptake and distribution of these divalent metal ions. Here, we performed a genome-wide identification of the ZIP family in tomato (Solanum lycopersicum) and analyzed their expression profiles under various metal deficiencies. A total of 14 SlZIP genes were identified and classified into three clades based on phylogenetic analysis. Conserved motif and gene structure analyses revealed that SlZIP genes within the same clade share similar exon/intron organization and protein motifs. The 14 SlZIP genes are unevenly distributed across eight chromosomes of tomato, and their promoters contain multiple iron- and copper-deficiency-responsive cis-elements. To further explore the potential functions of these SlZIP genes, we quantified their expression levels in tomato roots under metal-deficient conditions and found that SlIRT1, SlIRT2, and SlZIP4 were significantly induced by Fe deficiency, while SlZIP2 and SlZIP11 were specifically induced by Cu deficiency, and SlZIP13 and SlZIP14 by Mn deficiency. These results provide a comprehensive resource for the tomato ZIP family and lay a foundation for future functional studies of SlZIP genes in metal uptake and transport in tomato.
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