Phytic acid (PA) is the main phosphorus storage form in plant seeds. It is recognized as an anti-nutrient for humans and non-ruminant animals, as well as one of the major sources of phosphorus that contributes to eutrophication. Therefore, engineering plants with low PA content without affecting plant growth capacity has become a major focus in plant breeding. Nevertheless, lack of knowledge on the role of PA seed reserves in regulating plant growth and in maintaining ion homeostasis hinders such an agronomical application. In this context, we report here that the over-expression of the bacterial phytase PHY-US417 in Arabidopsis leads to a significant decrease in seed PA, without any effect on the seed germination potential. Interestingly, ...
<p>Phytases are specialized phosphatases capable of releasing inorganic phosphate from myo-inositol ...
Phosphorus (P) deficiency in soil is a major constraint for agricultural production worldwide. Despi...
International audienceInorganic phosphate (Pi) is present in most soils at suboptimal concentrations...
hytic acid (PA) is a major source of inorganic phosphate (Pi) in the soil, however the plant lacks t...
International audiencePhytic acid (PA) is a major source of inorganic phosphate (Pi) in the soil, ho...
Phytases are specialized phosphatases capable of releasing inorganic phosphate from myo-inositol hex...
© 2018 Valeeva, Nyamsuren, Sharipova and Shakirov. Phytases are specialized phosphatases capable of ...
Phosphorus (P) is an indispensable nutrient for seed germination, but the seeds always store excessi...
Overexpression of the bacterial phytase US417 in Arabidopsis reduces the concentration of phytic aci...
Most of the phosphorus in seeds is accumulated in the form of phytic acid (myo-inositol-1,2,3,4,5,6...
Phosphate deficiency is an important constraint to agricultural productivity. Attempts are underway ...
Our aim was to generate and prove the concept of "smart" plants to monitor plant phosphorus (P) stat...
Our aim was to generate and prove the concept of “smart ” plants to monitor plant phosphorus (P) sta...
International audienceThe coordinated distribution of inorganic phosphate (Pi) between roots and sho...
Plants respond to limiting concentrations of inorganic phosphate (Pi) in the environment by activati...
<p>Phytases are specialized phosphatases capable of releasing inorganic phosphate from myo-inositol ...
Phosphorus (P) deficiency in soil is a major constraint for agricultural production worldwide. Despi...
International audienceInorganic phosphate (Pi) is present in most soils at suboptimal concentrations...
hytic acid (PA) is a major source of inorganic phosphate (Pi) in the soil, however the plant lacks t...
International audiencePhytic acid (PA) is a major source of inorganic phosphate (Pi) in the soil, ho...
Phytases are specialized phosphatases capable of releasing inorganic phosphate from myo-inositol hex...
© 2018 Valeeva, Nyamsuren, Sharipova and Shakirov. Phytases are specialized phosphatases capable of ...
Phosphorus (P) is an indispensable nutrient for seed germination, but the seeds always store excessi...
Overexpression of the bacterial phytase US417 in Arabidopsis reduces the concentration of phytic aci...
Most of the phosphorus in seeds is accumulated in the form of phytic acid (myo-inositol-1,2,3,4,5,6...
Phosphate deficiency is an important constraint to agricultural productivity. Attempts are underway ...
Our aim was to generate and prove the concept of "smart" plants to monitor plant phosphorus (P) stat...
Our aim was to generate and prove the concept of “smart ” plants to monitor plant phosphorus (P) sta...
International audienceThe coordinated distribution of inorganic phosphate (Pi) between roots and sho...
Plants respond to limiting concentrations of inorganic phosphate (Pi) in the environment by activati...
<p>Phytases are specialized phosphatases capable of releasing inorganic phosphate from myo-inositol ...
Phosphorus (P) deficiency in soil is a major constraint for agricultural production worldwide. Despi...
International audienceInorganic phosphate (Pi) is present in most soils at suboptimal concentrations...