Convergent Evolution of the Seed Shattering Trait

Author:

Di Vittori Valerio,Gioia Tania,Rodriguez Monica,Bellucci Elisa,Bitocchi Elena,Nanni Laura,Attene Giovanna,Rau Domenico,Papa RobertoORCID

Abstract

Loss of seed shattering is a key trait in crop domestication, particularly for grain crops. For wild plants, seed shattering is a crucial mechanism to achieve greater fitness, although in the agricultural context, this mechanism reduces harvesting efficiency, especially under dry conditions. Loss of seed shattering was acquired independently in different monocotyledon and dicotyledon crop species by ‘convergent phenotypic evolution’, leading to similar low dehiscent and indehiscent phenotypes. Here, the main aim is to review the current knowledge about seed shattering in crops, in order to highlight the tissue modifications that underlie the convergent phenotypic evolution of reduced shattering in different types of fruit, from the silique of Brassicaceae species, to the pods of legumes and spikes of cereals. Emphasis is given to legumes, with consideration of recent data obtained for the common bean. The current review also discusses to what extent convergent phenotypes arose from parallel changes at the histological and/or molecular levels. For this reason, an overview is included of the main findings relating to the genetic control of seed shattering in the model species Arabidopsis thaliana and in other important crops.

Funder

Horizon 2020

Publisher

MDPI AG

Subject

Genetics(clinical),Genetics

Reference50 articles.

1. On the Origin of Species by Means of Natural Selection;Darwin,1859

2. Das Domestikationssyndrom

3. Origin, domestication, and evolution of the common bean (Phaseolus vulgaris L.);Gepts,1991

4. The FRUITFULLMADS-box gene mediates cell differentiation during Arabidopsis fruit development;Gu;Development,1998

5. SHATTERPROOF MADS-box genes control seed dispersal in Arabidopsis

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