Tomato POLLEN DEFICIENT 2 encodes a G-type lectin receptor kinase required for viable pollen grain formation

Author:

Micol-Ponce Rosa1,García-Alcázar Manuel1,Lebrón Ricardo1,Capel Carmen1,Pineda Benito2,García-Sogo Begoña2,Alché Juan de Dios3,Ortiz-Atienza Ana1,Bretones Sandra1,Yuste-Lisbona Fernando Juan1ORCID,Moreno Vicente2,Capel Juan1,Lozano Rafael1

Affiliation:

1. Centro de Investigación en Biotecnología Agroalimentaria (CIAIMBITAL), Universidad de Almería , 04120 Almería , Spain

2. Instituto de Biología Molecular y Celular de Plantas (UPV-CSIC), Universidad Politécnica de Valencia , 46011 Valencia , Spain

3. Departamento de Bioquímica, Biología Celular y Molecular de Plantas, Estación Experimental del Zaidín-CSIC , 18008 Granada , Spain

Abstract

Abstract Pollen development is a crucial biological process indispensable for seed set in flowering plants and for successful crop breeding. However, little is known about the molecular mechanisms regulating pollen development in crop species. This study reports a novel male-sterile tomato mutant, pollen deficient 2 (pod2), characterized by the production of non-viable pollen grains and resulting in the development of small parthenocarpic fruits. A combined strategy of mapping-by-sequencing and RNA interference-mediated gene silencing was used to prove that the pod2 phenotype is caused by the loss of Solanum lycopersicum G-type lectin receptor kinase II.9 (SlG-LecRK-II.9) activity. In situ hybridization of floral buds showed that POD2/SlG-LecRK-II.9 is specifically expressed in tapetal cells and microspores at the late tetrad stage. Accordingly, abnormalities in meiosis and tapetum programmed cell death in pod2 occurred during microsporogenesis, resulting in the formation of four dysfunctional microspores leading to an aberrant microgametogenesis process. RNA-seq analyses supported the existence of alterations at the final stage of microsporogenesis, since we found tomato deregulated genes whose counterparts in Arabidopsis are essential for the normal progression of male meiosis and cytokinesis. Collectively, our results revealed the essential role of POD2/SlG-LecRK-II.9 in regulating tomato pollen development.

Funder

Spanish Ministry of Science and Innovation

Research and Innovation Programme of the European Union Horizon 2020

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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