The Supplementary Material for this article can be found online at: https://www.frontiersin.org/articles/10.3389/fpls.2019.01335/ full#supplementary-materialCurrently, fertilization with synthetic chelates is the most effective agricultural practice to prevent iron (Fe) deficiencies in crops, especially in calcareous soils. Because these compounds are not biodegradable, they are persistent in the environment, and so, there is the risk of metal leaching from the soils. Thus, new, more environment-friendly efficient solutions are needed to solve iron-deficiency-induced chlorosis (IDIC) in crops grown in calcareous soils. Therefore, the central aim of this work was to prepare new freeze-dried Fe products, using a biotechnological-based process...
[Excerpt] Iron is a crucial micro-nutrient for plants, but is insoluble in calcareous soils, which l...
The performance of FeHBED in preventing Fe deficiency chlorosis in soybean (Glycine max (L.) Merr.) ...
<p>The performance of FeHBED in preventing Fe deficiency chlorosis in soybean (Glycine max (L.) Merr...
The Supplementary Material for this article can be found online at: https://www.frontiersin.org/arti...
Currently, fertilization with synthetic chelates is the most effective agricultural practice to prev...
[Excerpt] Iron (Fe) is an essential element for the proper development of life. Plants require Fe fo...
The application of FeEDDHA products is the most common practice to prevent or to remedy Fe chlorosis...
The application of FeEDDHA products is the most common practice to prevent or to remedy Fe chlorosis...
Iron (Fe) deficiency chlorosis (IDC) affects the growth of several crops, especially when growing in...
Iron deficiency in plants is caused by a low availability of iron in the soil, and its main visual s...
Iron deficiency results in severe yield losses, particularly in calcareous soils. Recent evidences s...
Iron deficiency in plants is caused by a low availability of iron in the soil, and its main visual s...
Background: Foliar iron (Fe) fertilization of crops may increase Fe concentrations in edible portion...
Background: Foliar iron (Fe) fertilization of crops may increase Fe concentrations in edible portion...
Background: Foliar iron (Fe) fertilization of crops may increase Fe concentrations in edible portion...
[Excerpt] Iron is a crucial micro-nutrient for plants, but is insoluble in calcareous soils, which l...
The performance of FeHBED in preventing Fe deficiency chlorosis in soybean (Glycine max (L.) Merr.) ...
<p>The performance of FeHBED in preventing Fe deficiency chlorosis in soybean (Glycine max (L.) Merr...
The Supplementary Material for this article can be found online at: https://www.frontiersin.org/arti...
Currently, fertilization with synthetic chelates is the most effective agricultural practice to prev...
[Excerpt] Iron (Fe) is an essential element for the proper development of life. Plants require Fe fo...
The application of FeEDDHA products is the most common practice to prevent or to remedy Fe chlorosis...
The application of FeEDDHA products is the most common practice to prevent or to remedy Fe chlorosis...
Iron (Fe) deficiency chlorosis (IDC) affects the growth of several crops, especially when growing in...
Iron deficiency in plants is caused by a low availability of iron in the soil, and its main visual s...
Iron deficiency results in severe yield losses, particularly in calcareous soils. Recent evidences s...
Iron deficiency in plants is caused by a low availability of iron in the soil, and its main visual s...
Background: Foliar iron (Fe) fertilization of crops may increase Fe concentrations in edible portion...
Background: Foliar iron (Fe) fertilization of crops may increase Fe concentrations in edible portion...
Background: Foliar iron (Fe) fertilization of crops may increase Fe concentrations in edible portion...
[Excerpt] Iron is a crucial micro-nutrient for plants, but is insoluble in calcareous soils, which l...
The performance of FeHBED in preventing Fe deficiency chlorosis in soybean (Glycine max (L.) Merr.) ...
<p>The performance of FeHBED in preventing Fe deficiency chlorosis in soybean (Glycine max (L.) Merr...