PscCYP716A1-Mediated Brassinolide Biosynthesis Increases Cadmium Tolerance and Enrichment in Poplar
Cadmium (Cd), as one of the heavy metals with biological poisonousness, seriously suppresses plant growth and does harm to human health. Hence, phytoremediation was proposed to mitigate the negative effects from Cd and restore contaminated soil. However, the internal mechanisms of detoxification of...
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Veröffentlicht in: | Frontiers in plant science 2022-07, Vol.13, p.919682-919682 |
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Sprache: | eng |
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Zusammenfassung: | Cadmium (Cd), as one of the heavy metals with biological poisonousness, seriously suppresses plant growth and does harm to human health. Hence, phytoremediation was proposed to mitigate the negative effects from Cd and restore contaminated soil. However, the internal mechanisms of detoxification of Cd used in phytoremediation are not completely revealed. In this study, we cloned the cytochrome P450 gene
PscCYP716A1
from hybrid poplar “
Chuanxiang
No. 1” and found that the
PscCYP716A1
was transcriptionally upregulated by Cd stress and downregulated by the exogenous brassinolide (BR). Meanwhile,
PscCYP716A1
significantly promoted the poplar growth and enhanced the Cd accumulation in poplar. Compared to wild-type poplars, overexpressed
PscCYP716A1
lines produced higher levels of endogenous BR and showed a stronger tolerance to Cd, which revealed that
PscCYP716A1
may reduce the oxidative stress damage induced by Cd stress through accelerating BR synthesis. In general,
PscCYP716A1
has a potential superiority in regulating the plant's tolerance to Cd stress, which will provide a scientific basis and a new type of gene-modified poplar for Cd-pollution remediation. |
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ISSN: | 1664-462X 1664-462X |
DOI: | 10.3389/fpls.2022.919682 |