BABY BOOM regulates early embryo and endosperm development

Author:

Chen Baojian1ORCID,Maas Lena12ORCID,Figueiredo Duarte3ORCID,Zhong Yu4ORCID,Reis Ricardo1ORCID,Li Mengran12,Horstman Anneke12ORCID,Riksen Tjitske1,Weemen Mieke1,Liu Hang2,Siemons Charlotte12,Chen Shaojiang4,Angenent Gerco C.12ORCID,Boutilier Kim1ORCID

Affiliation:

1. Bioscience, Wageningen University and Research, 6700 AA Wageningen, The Netherlands

2. Laboratory for Molecular Biology, Wageningen University and Research, 6700 AP Wageningen, The Netherlands

3. Max Planck Institute of Molecular Plant Physiology, 14476 Potsdam-Golm, Germany

4. National Maize Improvement Center of China, Key Laboratory of Crop Heterosis and Utilization/Engineering Research Center for Maize Breeding, Ministry of Education, College of Agronomy and Biotechnology, China Agricultural University, Beijing 100193, China

Abstract

The BABY BOOM (BBM) AINTEGUMENTA-LIKE (AIL) AP2/ERF domain transcription factor is a major regulator of plant cell totipotency, as it induces asexual embryo formation when ectopically expressed. Surprisingly, only limited information is available on the role of BBM during zygotic embryogenesis. Here we reexamined BBM expression and function in the model plant Arabidopsis thaliana ( Arabidopsis ) using reporter analysis and newly developed CRISPR mutants. BBM was expressed in the embryo from the zygote stage and also in the maternal (nucellus) and filial (endosperm) seed tissues. Analysis of CRISPR mutant alleles for BBM ( bbm-cr ) and the redundantly acting AIL gene PLETHORA2 ( PLT2 ) ( plt2-cr ) uncovered individual roles for these genes in the timing of embryo progression. We also identified redundant roles for BBM and PLT2 in endosperm proliferation and cellularization and the maintenance of zygotic embryo development. Finally, we show that ectopic BBM expression in the egg cell of Arabidopsis and the dicot crops Brassica napus and Solanum lycopersicon is sufficient to bypass the fertilization requirement for embryo development. Together these results highlight roles for BBM and PLT2 in seed development and demonstrate the utility of BBM genes for engineering asexual embryo development in dicot species.

Funder

China Scholarship Council

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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