Molecular players of auxin transport systems: advances in genomic and molecular events
Autor: | Abeer Hashem, Tapan Kumar Mohanta, Elsayed Fathi Abd_Allah, Abdul Latif Khan, Ahmed Al-Harrasi, Tufail Bashir |
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Jazyk: | angličtina |
Rok vydání: | 2018 |
Předmět: |
0301 basic medicine
influx carrier congenital hereditary and neonatal diseases and abnormalities Cell division Morphogenesis Plant Science Biology lcsh:Plant culture 03 medical and health sciences Cell elongation Auxin heterocyclic compounds lcsh:SB1-1110 Ecology Evolution Behavior and Systematics chemistry.chemical_classification fungi food and beverages PIN transmembrane domain lcsh:QK900-989 humanities AUX/LAX Cell biology Transmembrane domain 030104 developmental biology chemistry efflux carrier lcsh:Plant ecology ABCB PILS |
Zdroj: | Journal of Plant Interactions, Vol 13, Iss 1, Pp 483-495 (2018) |
ISSN: | 1742-9153 1742-9145 |
Popis: | Phytohormone auxin plays an indispensable role in the plethora of plant developmental process starting from the cell division, and cell elongation to morphogenesis. Auxins are transported to different parts of the plant by different sophisticated transporter molecules known as ‘auxin transporters’.There are four auxin transporter families that have been reported so far in the plant kingdom which includes AUX/LAX (AUXIN-RESISTANT1–LIKES), PIN (PIN-FORMED, auxin efflux carriers), ABCB ((ATP-binding cassette-B (ABCB)/P-glycoprotein (PGP)) and PILS (PIN-Likes). Auxin influx and efflux carriers are distributed in a polar fashion in the plasma membrane whereas ABCB and PILS are present in a non-polar fashion. Other than AUX/LAX, other auxin transporters harbor N-and C-terminal conserved domains along with a variable hydrophilic loop in the transmembrane domain. The AUX/LAX, ABCB and PIN transporters mediate long distance auxin transport whereas PILS and PIN5 protein involved in intracellular auxin homeostasis. |
Databáze: | OpenAIRE |
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