Effects of ZmHIPP on lead tolerance in maize seedlings: Novel ideas for soil bioremediation
Langlang Ma, Rong An, Li Jiang, Chen Zhang, Zhaoling Li, Chaoying Zou, Cong Yang, Guangtang Pan, Thomas Lübberstedt, Yaou Shen
Journal:JOURNAL OF HAZARDOUS MATERIALS
IF:14.22
DOI:10.1016/j.jhazmat.2022.128457
PMID:35180524
Published:2022-02-11
research field:
Abstract
Extensive lead (Pb) absorption by plants affects their growth and development and causes damage to the human body by entering the food chain . In this study, we cloned ZmHIPP , a gene associated with Pb tolerance and accumulation in maize, using combined linkage mapping and weighted gene co-expression network analysis. We show that ZmHIPP , which encodes a heavy metal-associated isoprenylated plant protein, positively modulated Pb tolerance and accumulation in maize seedlings, Arabidopsis, and yeast. The genetic variation locus (A/G) in the promoter of ZmHIPP contributed to the phenotypic disparity in Pb tolerance among different maize inbred lines by altering the expression abundance of ZmHIPP . Knockdown of ZmHIPP significantly inhibited growth and decreased Pb accumulation in maize seedlings under Pb stress. ZmHIPP facilitated Pb deposition in the cell wall and prevented it from entering the intracellular organelles , thereby alleviating Pb toxicity in maize seedlings. Compared to that in the mutant zmhipp , the accumulated Pb in the wild-type line mainly consisted of the low-toxicity forms of Pb. Our study increases the understanding of the mechanism underlying Pb tolerance in maize and provides new insights into the bioremediation of Pb-polluted soil.
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