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The supply of Fe chelate decreased significantly leaf K, Mn, fruit K and Cu concentration as well as fruit weight but raised tree yield.
This transformation can be considered as an analogue process to that expected in the bentonite barrier from a deep geological repository of radioactive wastes whether the two following conditions would occur: i) an increase of temperature due to the radioactive decay of the fission products, and ii) a supply of Fe as result of the canister corrosion under intermediate redox conditions.
The composition variation of the FePt NPs can be caused by different size of Pt nuclei and un-homogenous supply of Fe source onto the Pt nuclei [16].
Growth of the organisms was done under conditions of limited, but constant, supply of Fe(II) and O2 using gradient tubes or plates, or bottle cultures.
Deficient supply of Fe (10 µM Fe-EDTA) decreased the NO concentration of leaves by over 70%% compared with Fe-sufficient controls.
In hydroponically-grown maize, a total of 47 and 39 QTLs were detected for the traits recorded under limited and adequate supply of Fe, respectively.
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Biological nitrogen fixation is an oxygen-sensitive and energy-dependent process that requires ATP and a supply of Fe-S clusters not only for the nitrogenase components but also for many other proteins involved in electron transfer, redox and non-redox catalysis, and sensing of regulatory processes.
With the re-supply of Fe, transcript abundance for these genes remained elevated over the subsequent 4 h compared to the Fe-sufficient controls.
The re-supply of Fe to Fe-deficient plants did not in all cases lead to a rapid down-regulation of genes which are highly induced by Fe-deficiency.
Following the re-supply of Fe, the transcript abundance of these individuals decreased rapidly after 1 h of re-supply, and in most cases no or only weak signals were observed after 4 h of Fe re-supply.
As these organisms are highly dependent on a plentiful supply of host Fe, they have developed mechanisms to acquire this metal by multiple and divergent pathways or steal it from host Fe deposition sites [ 1, 28].
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