EC Number   |
General Information   |
Reference   |
|---|
 7.3.2.1 | evolution |
8 PHT1 family genes have been identified from the potato genome |
767834 |
 7.3.2.1 | evolution |
a total of 28 phosphate transporter isoforms are identified, belonging to the PHT1, PHT2, PHT3, CaPHT4, PHT5 and PHO family |
766603 |
 7.3.2.1 | evolution |
OsPT1 belongs to the Pht1 family, like OsPT8 and OsPT4 |
720750 |
 7.3.2.1 | evolution |
phosphate tranbsporter family PHT4 can be classified into six distinct groups. PHT4:1 to PHT4:4 are targeted to chloroplasts, and PHT4:6-1 and PHT4:6-2 are located to Golgi apparatus. PHT4 proteins can mediate inorganic phosphate transport in yeast. They display different expression profiles in response to phosphate starvation, salicylic acid, abscisic acid and salt stress treatments. PHT4 proteins are involved in phosphate distribution between the cytoplasm and chloroplast or Golgi apparatus and also involved in stress responses |
-, 767964 |
 7.3.2.1 | evolution |
the enzyme belongs to the PHT1 transporters family |
719540 |
 7.3.2.1 | evolution |
the enzyme belongs to the PHT1 transporters family, comparison of plant PHT1 multigenic families, overview |
719540 |
 7.3.2.1 | malfunction |
a phosphorylation-mimicking mutagenesis of PHT1;1 at Ser514 results in its accumulation in the endoplasmic reticulum |
719540 |
 7.3.2.1 | malfunction |
a triple mutant consisting of deleted low-affinity transporters Pho87, Pho90 and Pho91 is slightly more sensitive to selenite than the wild-type strain. Single mutants do not show any difference to the wild-type stain |
712473 |
 7.3.2.1 | malfunction |
a triple mutant consisting of deleted low-affinity transporters Pho87, Pho90 and Pho91 is slightly more sensitive to selenite than the wild-type strain. Single mutants do not show any difference to the wild-type strain |
712473 |
 7.3.2.1 | malfunction |
although no alterations in phosphate concentration is in isoform PT9 or PT10 knockdown plants, a significant reduction in phosphate concentration in both shoots and roots is observed in double-knockdown plants grown under both high- and low-phosphate conditions |
734879 |