Trifurcate Feed-Forward Regulation of Age-Dependent Cell Death Involving miR164 in Arabidopsis

Author:

Kim Jin Hee1234,Woo Hye Ryun1234,Kim Jeongsik1234,Lim Pyung Ok1234,Lee In Chul1234,Choi Seung Hee1234,Hwang Daehee1234,Nam Hong Gil1234

Affiliation:

1. Division of Molecular Life Sciences, Pohang University of Science and Technology, Hyoja-dong, Pohang, Kyungbuk, 790-784, Republic of Korea.

2. Department of Science Education, Jeju National University, Jeju, 690-756, Republic of Korea.

3. Department of Chemical Engineering, Pohang University of Science and Technology, Hyoja-dong, Pohang, Kyungbuk, 790-784, Republic of Korea.

4. School of Interdisciplinary Biosciences and Bioengineering, Pohang University of Science and Technology, Hyoja-dong, Pohang, Kyungbuk, 790-784, Republic of Korea.

Abstract

Aging induces gradual yet massive cell death in higher organisms, including annual plants. Even so, the underlying regulatory mechanisms are barely known, despite the long-standing interest in this topic. Here, we demonstrate that ORE1, which is a NAC (NAM, ATAF, and CUC) transcription factor, positively regulates aging-induced cell death in Arabidopsis leaves. ORE1 expression is up-regulated concurrently with leaf aging by EIN2 but is negatively regulated by miR164. miR164 expression gradually decreases with aging through negative regulation by EIN2 , which leads to the elaborate up-regulation of ORE1 expression. However, EIN2 still contributes to aging-induced cell death in the absence of ORE1 . The trifurcate feed-forward pathway involving ORE1, miR164 , and EIN2 provides a highly robust regulation to ensure that aging induces cell death in Arabidopsis leaves.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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