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- W2024667526 abstract "Summary Histidine plays a crucial role in nickel ( N i) translocation in N i‐hyperaccumulating plants. Here, we investigated its role in zinc ( Z n) translocation in four accessions of the Z n hyperaccumulator, N occaea caerulescens , using the related non‐hyperaccumulator, T hlaspi arvense , as a reference. We compared the effects of exogenous histidine supply on Z n xylem loading, and of Z n–histidine complex formation on Z n uptake in energized tonoplast vesicles. The Z n distribution patterns over root tissues were also compared. Exogenous histidine supply enhanced Z n xylem loading in all the N . caerulescens accessions, but decreased it in T . arvense . Z n distribution patterns over root tissues were similar, apart from the accumulation in cortical and endodermal cells, which was much lower in N . caerulescens than in T . arvense . Z n uptake in energized tonoplast vesicles was inhibited significantly in N . caerulescens , but not affected significantly in T . arvense , when Z n was supplied in combination with histidine in a 1 : 2 molar ratio. Histidine‐mediated Z n xylem loading seems to be a species‐wide character in N . caerulescens . It may well have evolved as a component trait of the hyperaccumulation machinery for Z n, rather than for N i." @default.
- W2024667526 created "2016-06-24" @default.
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- W2024667526 date "2014-04-22" @default.
- W2024667526 modified "2023-10-14" @default.
- W2024667526 title "Histidine‐mediated xylem loading of zinc is a species‐wide character in <i> <scp>N</scp> occaea caerulescens </i>" @default.
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- W2024667526 doi "https://doi.org/10.1111/nph.12816" @default.
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