Zinc supply influenced the growth, yield, zinc content, and expression of ZIP family transporters in sorghum

被引:4
|
作者
Maharajan, Theivanayagam [1 ]
Krishna, Thumadath Palayullaparambil Ajeesh [1 ]
Ceasar, Stanislaus Antony [1 ]
Ignacimuthu, Savarimuthu [2 ]
机构
[1] Rajagiri Coll Social Sci, Dept Biosci, Div Plant Mol Biol & Biotechnol, Kochi 683104, Kerala, India
[2] St Xaviers Coll, Xavier Res Fdn, Palayankottai 627002, India
关键词
Gene expression; Genome-wide identification; Phenotyping; Phylogenetic analysis; Zn-regulated; iron-regulated transporter-like proteins (ZIP); Zn deficiency; TO-SHOOT TRANSLOCATION; MOLECULAR-MECHANISMS; ZN-DEFICIENCY; MAIZE; EFFICIENCY; OSZIP4; BARLEY; WHEAT; PRODUCTIVITY; NUTRITION;
D O I
10.1007/s00425-023-04076-5
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Main conclusionZinc deficiency altered shoot and root growth, plant biomass, yield, and ZIP family transporter gene expression in sorghum.Zinc (Zn) deficiency affects several crop plants' growth and yield, including sorghum. We have evaluated the sorghum under various concentrations of Zn supply for phenotypic changes, Zn content, and expression of Zn-regulated, iron-regulated transporter-like proteins (ZIP) family genes. Zn deficiency reduced the shoot and root growth, plant biomass, and yield by > 50%. The length and number of lateral roots were increased by more than 50% under deficient Zn compared to sufficient Zn. Ten SbZIP family transporter genes showed dynamic expression in shoot and root tissues of sorghum under deficient and sufficient Zn. SbZIP2, 5, 6, 7, and 8 were expressed in all tissues under deficient and sufficient Zn. SbZIP2, 4, 5, 6, 7, 8, and 10 were highly induced in shoot tissues by deficient Zn. The expression level of SbZIP6, 7, 8, and 9 was higher in root tissues under deficient Zn. The phylogenetic analysis revealed that most SbZIP family proteins are closely associated with the ZmZIP family of maize. The functional residues His177 and Gly182 are fully conserved in all SbZIP family transporters, as revealed by homology modeling and multiple sequence alignment. This study may provide a foundation for improving the Zn-use efficiency of sorghum.
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页数:19
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