Light‐stabilized GIL1 suppresses PIN3 activity to inhibit hypocotyl gravitropism

Author:

Wang Xiaolian12ORCID,Yuan Yanfang3ORCID,Charrier Laurence4ORCID,Deng Zhaoguo12ORCID,Geisler Markus4ORCID,Deng Xing Wang3ORCID,Chen Haodong123ORCID

Affiliation:

1. Center for Plant Biology, School of Life Sciences Tsinghua University Beijing 100084 China

2. Tsinghua‐Peking Center for Life Sciences Beijing 100084 China

3. School of Advanced Agricultural Sciences and School of Life Sciences, Peking‐Tsinghua Center for Life Sciences Peking University Beijing 100871 China

4. Department of Biology University of Fribourg Fribourg 1700 Switzerland

Abstract

ABSTRACTLight and gravity coordinately regulate the directional growth of plants. Arabidopsis Gravitropic in the Light 1 (GIL1) inhibits the negative gravitropism of hypocotyls in red and far‐red light, but the underlying molecular mechanisms remain elusive. Our study found that GIL1 is a plasma membrane‐localized protein. In endodermal cells of the upper part of hypocotyls, GIL1 controls the negative gravitropism of hypocotyls. GIL1 directly interacts with PIN3 and inhibits the auxin transport activity of PIN3. Mutation of PIN3 suppresses the abnormal gravitropic response of gil1 mutant. The GIL1 protein is unstable in darkness but it is stabilized by red and far‐red light. Together, our data suggest that light‐stabilized GIL1 inhibits the negative gravitropism of hypocotyls by suppressing the activity of the auxin transporter PIN3, thereby enhancing the emergence of young seedlings from the soil.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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