YABBY and diverged KNOX1 genes shape nodes and internodes in the stem

Author:

Tsuda Katsutoshi12ORCID,Maeno Akiteru1ORCID,Otake Ayako1,Kato Kae1,Tanaka Wakana3ORCID,Hibara Ken-Ichiro4ORCID,Nonomura Ken-Ichi12

Affiliation:

1. Plant Cytogenetics Laboratory, Department of Gene Function and Phenomics, National Institute of Genetics, Mishima, Shizuoka 411-8540, Japan.

2. Department of Genetics, School of Life Science, Graduate University for Advanced Studies, Mishima, Shizuoka 411-8540, Japan.

3. Graduate School of Integrated Sciences for Life, Hiroshima University, Higashi-Hiroshima, Hiroshima 739-8528, Japan.

4. Graduate School of Agricultural Regional Vitalization, Kibi International University, Minamiawaji, Hyogo 656-0484, Japan.

Abstract

Plant stems comprise nodes and internodes that specialize in solute exchange and elongation. However, their boundaries are not well defined, and how these basic units arise remains elusive. In rice with clear nodes and internodes, we found that one subclade of class I knotted1-like homeobox ( KNOX1 ) genes for shoot meristem indeterminacy restricts node differentiation and allows internode formation by repressing YABBY genes for leaf development and genes from another node-specific KNOX1 subclade. YABBY s promote nodal vascular differentiation and limit stem elongation. YABBY and node-specific KNOX1 genes specify the pulvinus, which further elaborates the nodal structure for gravitropism. Notably, this KNOX1 subclade organization is specific to seed plants. We propose that nodes and internodes are distinct domains specified by YABBYKNOX1 cross-regulation that diverged in early seed plants.

Publisher

American Association for the Advancement of Science (AAAS)

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