4.8 Article

Auxin controls the division of root endodermal cells

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PLANT PHYSIOLOGY
卷 187, 期 3, 页码 1577-1586

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OXFORD UNIV PRESS INC
DOI: 10.1093/plphys/kiab341

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  1. BioGreen21 Agri-Tech Innovation Program, Rural Development Administration, Republic of Korea [PJ01567301]
  2. National Research Foundation of Korea - Korean Government (MOE) [NRF-2019R1A2C1007103]

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The root endodermis forms a selective barrier to prevent solute diffusion into the vasculature by depositing hydrophobic compounds in cell walls to form the Casparian strip. Auxin plays a key role in regulating the division of root endodermal cells, while PGP1 and PGP19 are involved in this regulation by mediating auxin flow.
The root endodermis forms a selective barrier that prevents the free diffusion of solutes into the vasculature; to make this barrier, endodermal cells deposit hydrophobic compounds in their cell walls, forming the Casparian strip. Here, we showed that, in contrast to vascular and epidermal root cells, endodermal root cells do not divide alongside the root apical meristem in Arabidopsis thaliana. Auxin treatment induced division of endodermal cells in wild-type plants, but not in the auxin signaling mutant auxin resistant3-1. Endodermis-specific activation of auxin responses by expression of truncated AUXIN-RESPONSIVE FACTOR5 (Delta ARF5) in root endodermal cells under the control of the ENDODERMIS7 promoter (EN7::Delta ARF5) also induced endodermal cell division. We used an auxin transport inhibitor to cause accumulation of auxin in endodermal cells, which induced endodermal cell division. In addition, knockout of P-GLYCOPROTEIN1 (PGP1) and PGP19, which mediate centripetal auxin flow, promoted the division of endodermal cells. Together, these findings reveal a tight link between the endodermal auxin response and endodermal cell division, suggesting that auxin is a key regulator controlling the division of root endodermal cells, and that PGP1 and PGP19 are involved in regulating endodermal cell division.

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