Plant Physiology and Biochemistry2022,Vol.18410.DOI:10.1016/j.plaphy.2022.05.010

Heterologous expression of ISU1 gene from Fragaria vesca enhances plant tolerance to Fe depletion in Arabidopsis

Song, Zhizhong Lin, Shizhuo Fu, Jiayu Chen, Yahui Zhang, Hongxia Li, Jianzhao Liang, Meixia
Plant Physiology and Biochemistry2022,Vol.18410.DOI:10.1016/j.plaphy.2022.05.010

Heterologous expression of ISU1 gene from Fragaria vesca enhances plant tolerance to Fe depletion in Arabidopsis

Song, Zhizhong 1Lin, Shizhuo 1Fu, Jiayu 1Chen, Yahui 1Zhang, Hongxia 1Li, Jianzhao 1Liang, Meixia1
扫码查看

作者信息

  • 1. Ludong Univ
  • 折叠

Abstract

Iron-sulfur (Fe-S) cluster assembly genes play important roles in plant growth and development. However, their biological function in fruit crops is still unknown, especially in strawberry. In this study, Fe depletion significantly inhibited the growth, photosynthesis, Fe accumulation level and the enzyme activity of Fe-S proteins of aconitase (ACO), nitrate reductase (NiR) and succinate dehydrogenase (SDH) in strawberry seedlings. In addition, 40 Fe-S cluster assembly genes were isolated from strawberry, which were significantly varied among different tissues/organs and were differentially responded to Fe depletion in different tissue parts. In total, 79% of the responsive genes were up-regulated in shoots, while 65% of the responsive genes were down-regulated in roots under Fe depletion. Moreover, the expression level of ISU1 was the highest in strawberry tissues, especially in young fruits, and over-expression of ISU1 gene in Arabidopsis significantly enhanced the Fe accumulation, leaf total chlorophyll, ACO and SDH activities in transgenic lines, and strengthened plant tolerance to Fe depletion. This study provides gene resources to elucidate the molecular mechanisms of Fe-S cluster assembly in strawberry, and lays a theoretical foundation to reveal Fe nutrition and metabolism in Rosaceae fruits.

Key words

Strawberry/Fe depletion/Fe metabolism/Fe-S cluster assembly genes/Over-expression transgenic lines/CLUSTER BIOSYNTHESIS GENES/IRON-SULFUR CLUSTERS/DIFFERENTIAL EXPRESSION/FRUIT-DEVELOPMENT/ABIOTIC STRESS/BIOGENESIS/RESPONSES/PROTEINS

引用本文复制引用

出版年

2022
Plant Physiology and Biochemistry

Plant Physiology and Biochemistry

SCI
ISSN:0981-9428
被引量1
参考文献量26
段落导航相关论文