Synthesis of aspartic acid and tyrosine by the fire blight pathogen Erwinia amylovora is not required for proliferation on apple flower stigmas or virulence in fruitlets

Author:

Schultes Neil P1ORCID,Sinn Judith P2,Swenson Eric S1,McNellis Timothy W2

Affiliation:

1. Department of Plant Pathology & Ecology, The Connecticut Agricultural Experiment Station , 123 Huntington Street, New Haven, CT 06511 , United States

2. Department of Plant Pathology & Environmental Microbiology, The Pennsylvania State University, University Park , PA 16802 , United States

Abstract

Abstract Aims The Gram-negative bacterium Erwinia amylovora (Ea) is the causal agent of fire blight, a devastating disease of apples and pears. In the fire blight disease cycle, Ea grows in different plant tissues, each presenting a distinct nutrient environment. Here, we investigate the ability of aspartate and tyrosine double auxotroph Ea lines to proliferate on apple flower stigma surfaces representing the epiphytic growth stage of Ea and in developing fruitlets representing one endophytic growth stage of Ea. Methods and results Heterologous complementation studies in an Escherichia coli aspartate and tyrosine auxotroph verify that Ea aspartate aminotransferase (AspC) and tyrosine aminotransferase (TyrB) act as aspartate and tyrosine amino transferases. Growth analysis reveals that Ea aspC tyrB mutants multiply to near-wild-type levels on apple flower stigmas and immature fruitlets. Conclusions Ea AspC and TyrB are reciprocally complementing for aspartate and tyrosine synthesis in Ec and in Ea. Ea aspC  and  tyrB mutants obtain sufficient aspartate and tyrosine to support multiplication on stigma surfaces and virulence in immature fruitlets.

Funder

USDA

Publisher

Oxford University Press (OUP)

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