The rachis cannot hold, plants fall apart. A commentary on: ‘The unique disarticulation layer formed in the rachis of Aegilops longissima likely results from the spatial co-expression of Btr1 and Btr2’

Author:

Kellogg Elizabeth A1

Affiliation:

1. Donald Danforth Plant Science Center, St Louis, MO, USA

Abstract

This article comments on: Xiaoxue Zeng, Gang Chen, Lei Wang, Akemi Tagiri, Shinji Kikuchi, Hidenori Sassa and Takao Komatsuda, The unique disarticulation layer formed in the rachis of Aegilops longissima probably results from the spatial co-expression of Btr1 and Btr2, Annals of Botany, Volume 127, Issue 3, 16 February 2021, Pages 297–304, https://doi.org/10.1093/aob/mcaa147

Publisher

Oxford University Press (OUP)

Subject

Plant Science

Reference10 articles.

1. Morphological diversity and genetic regulation of inflorescence abscission zones in grasses;Doust;American Journal of Botany,2014

2. Evolution of the grain dispersal system in barley;Pourkheirandish;Cell,2015

3. On the origin of the non-brittle rachis trait of domesticated Einkorn wheat;Pourkheirandish;Frontiers in Plant Science,2017

4. Peptide signaling for drought-induced tomato flower drop;Reichardt;Science,2020

5. Inflorescence abscission zones in grasses: diversity and genetic regulation;Yu;Annual Plant Reviews,2018

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1. Grain Disarticulation in Wild Wheat and Barley;Plant and Cell Physiology;2022-06-28

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