AC97 — Medicago truncatula

Summary

MTR_0015S0130, also known as MtACT4, encodes a protein with actin/actin-like and ATPase domains, and is associated with profilin binding, F-actin binding, structural constituent of the cytoskeleton, actin binding, hydrolase activity, transglycosidase activity, ATP binding, and protein binding. It is associated with cytoplasm organization, appressorium formation, membrane organization, fucose anabolism, actin filament stabilization, barbed-end actin filament capping, microtubule dynamics, methionine metabolism, cell physiology, actin depolymerization, cell tip growth, xyloglucan anabolism, actin polymerization, cytoskeleton organization, actin nucleation, actin cytoskeleton organization, exocytosis, and actin filament organization. The gene is linked to seed morphology, endosperm morphology, osmotic response sensitivity, photosynthetic rate, root hair length, cell cycle, cell elongation, organ identity, root development, hypocotyl morphology, root thickness, disease tolerance, and SALTTL. Related genes in other species link the family to pollen development, root hair development, cell division, pavement cell morphogenesis, plant height, xyloglucan biosynthesis, UV damage resistance, and cold tolerance.

Annotations

Chromosome
scaffold0015
Related genes
ACT2, ACT4, AC97, FH1, VLN1, FH5, ACT12, KAM1
GO terms
Appressorium Formation, cell physiology, microtubule dynamics, NO storage, Cytoplasm Organization, Nitrogen Fixation, Endosome, Plant-type Cell Wall
Publications
16571618, 33620500, 23858430, 28330559, 33890080, 35210715, 28360928, 23334469
Traits
xyloglucan galactosylation, cellulose synthesis, cell wall integrity, actin cytoskeleton stability, endomembrane system homeostasis, cell wall assembly, hypocotyl cell elongation, hypocotyl elongation