Genome-Wide Identification of the Sulfate Transporters Gene Family in Blueberry (Vaccinium spp.) and Its Response to Ericoid Mycorrhizal Fungi
文献类型: 外文期刊
第一作者: Dong, Mei
作者: Dong, Mei;Tang, Xiaoxuan;Liu, Siwen;Xing, Jinjie;Chen, Xuyang;Chen, Li;Li, Yadong;Sun, Haiyue;Dong, Mei;He, Jiawei
作者机构:
关键词: blueberry; Vaccinium; sulfate transporters; genome-wide identification; mycorrhiza
期刊名称:INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES ( 影响因子:4.9; 五年影响因子:5.6 )
ISSN: 1661-6596
年卷期: 2024 年 25 卷 13 期
页码:
收录情况: SCI
摘要: Sulfur metabolism plays a major role in plant growth and development, environmental adaptation, and material synthesis, and the sulfate transporters are the beginning of sulfur metabolism. We identified 37 potential VcSULTR genes in the blueberry genome, encoding peptides with 534 to 766 amino acids. The genes were grouped into four subfamilies in an evolutionary analysis. The 37 putative VcSULTR proteins ranged in size from 60.03 to 83.87 kDa. These proteins were predicted to be hydrophobic and mostly localize to the plasma membrane. The VcSULTR genes were distributed on 30 chromosomes; VcSULTR3;5b and VcSULTR3;5c were the only tandemly repeated genes. The VcSULTR promoters contained cis-acting elements related to the fungal symbiosis and stress responses. The transcript levels of the VcSULTRs differed among blueberry organs and changed in response to ericoid mycorrhizal fungi and sulfate treatments. A subcellular localization analysis showed that VcSULTR2;1c localized to, and functioned in, the plasma membrane and chloroplast. The virus-induced gene knock-down of VcSULTR2;1c resulted in a significantly decreased endogenous sulfate content, and an up-regulation of genes encoding key enzymes in sulfur metabolism (VcATPS2 and VcSiR1). These findings enhance our understanding of mycorrhizal-fungi-mediated sulfate transport in blueberry, and lay the foundation for further research on blueberry-mycorrhizal symbiosis.
分类号:
- 相关文献
作者其他论文 更多>>
-
Dimerization among multiple NAC proteins mediates secondary cell wall cellulose biosynthesis in cotton fibers
作者:Chen, Feng;Qiao, Mengfei;Chen, Li;Liu, Min;Luo, Jingwen;Gao, Yanan;Li, Mengyun;Cai, Jinglong;Huang, Gengqing;Xu, Wenliang;Persson, Staffan;Persson, Staffan;Xu, Wenliang
关键词:cotton fiber; secondary cell wall; cellulose; transcriptional regulation; NAC domain proteins; dimerization; protein complex
-
Novel spectral indices and transfer learning model in estimat moisture status across winter wheat and summer maize
作者:Li, Zongpeng;Cheng, Qian;Zhai, Weiguang;Mao, Bohan;Li, Yafeng;Ding, Fun;Zhou, Xinguo;Chen, Zhen;Chen, Li;Zhang, Bo
关键词:Fuel Moisture Content; algorithms; BRNN; transfer model
-
Apoptosis and its role in postmortem meat tenderness: A comprehensive review
作者:Liu, Chongxin;Zhang, Dequan;Chen, Li;Huang, Caiyan;Blecker, Christophe;Huang, Caiyan;Zhao, Yingxin;Roy, Bimol C.;Bruce, Heather L.;Xiang, Can;Zhang, Yanyan
关键词:Meat tenderness; Myofibrillar proteins; Mitochondrial apoptosis pathway; Postmortem muscle
-
Analysis of bioactive substances in mutton and their effects on the quality of minced mutton
作者:Cheng, Chengpeng;Xie, Xinru;Li, Shaobo;Chen, Pengyu;Huang, Caiyan;Zheng, Xiaochun;Chen, Li;Zhang, Dequan
关键词:Mutton; Bioactive substances; Flavonoids; Calcium ions; Minced mutton quality
-
Absorption and transport mechanism of colloidal nanoparticles (CNPs) in lamb soup based on Caco-2 cell
作者:Fu, Jianing;Liu, Ling;Fu, Jianing;Li, Shaobo;Xu, Meizhen;Chen, Li;Zhang, Dequan
关键词:Colloidal nanoparticles; Caco-2 cell; Lamb soup; Absorption mechanism; Transport
-
Enhancing winter wheat plant nitrogen content prediction across different regions: Integration of UAV spectral data and transfer learning strategies
作者:Li, Zongpeng;Cheng, Qian;Zhai, Weiguang;Mao, Bohan;Li, Yafeng;Zhou, Xinguo;Chen, Zhen;Chen, Li;Yang, Jie
关键词:Gaussian process regression; Unequal-weight strategy; Plant nitrogen content; Transfer learning
-
Identification of characteristic lipids of Tan lamb and their potential health benefits
作者:Xu, Le;Li, Shaobo;Chen, Pengyu;Gu, Minghui;Yang, Qi;Chen, Li;Zhang, Dequan
关键词:Lipid profile; Sheep; Lipid species; Precision nutrition; Functional lipids