A cryptic natural variant allele of BYPASS2 suppresses the bypass1 mutant phenotype

Author:

Cummins Alexander J1ORCID,Siler C J1ORCID,Olson Jacob M2ORCID,Kaur Amanpreet2ORCID,Hamdani Adam K2ORCID,Olson L Kate1ORCID,Dilkes Brian P2ORCID,Sieburth Leslie E1ORCID

Affiliation:

1. School of Biological Sciences, University of Utah , Salt Lake City, Utah 84112 , USA

2. Department of Biochemistry, Purdue University , West Lafayette, Indiana 47907 , USA

Abstract

Abstract The Arabidopsis (Arabidopsis thaliana) BYPASS1 (BPS1) gene encodes a protein with no functionally characterized domains, and loss-of-function mutants (e.g. bps1-2 in Col-0) present a severe growth arrest phenotype that is evoked by a root-derived graft-transmissible small molecule that we call dalekin. The root-to-shoot nature of dalekin signaling suggests it could be an endogenous signaling molecule. Here, we report a natural variant screen that allowed us to identify enhancers and suppressors of the bps1-2 mutant phenotype (in Col-0). We identified a strong semi-dominant suppressor in the Apost-1 accession that largely restored shoot development in bps1 and yet continued to overproduce dalekin. Using bulked segregant analysis and allele-specific transgenic complementation, we showed that the suppressor is the Apost-1 allele of a BPS1 paralog, BYPASS2 (BPS2). BPS2 is one of four members of the BPS gene family in Arabidopsis, and phylogenetic analysis demonstrated that the BPS family is conserved in land plants and the four Arabidopsis paralogs are retained duplicates from whole genome duplications. The strong conservation of BPS1 and paralogous proteins throughout land plants, and the similar functions of paralogs in Arabidopsis, suggests that dalekin signaling might be retained across land plants.

Funder

NSF

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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