Streptomycin is currently the only antibiotic registered for the control of fire blight, a devastating disease of apple (Malus), pear (Pyrus), and other rosaceous plants caused by the bacterium Erwinia amylovora. Resistance of E. amylovora to streptomycin was first identified in California pear orchards in 1971 and is currently endemic in many parts of the United States. The Northeast remains the only major U.S. apple-growing region without streptomycin-resistant isolates of E. amylovora. In 2002, during a routine survey for streptomycin resistance, isolates from two neighboring orchards in Wayne County, NY were found to be highly resistant to streptomycin at a concentration of 100 μg/ml. This constitutes the first authenticated report of streptomycin resistance in New York State. Infected trees were shipped at the same time from a single nursery in Michigan. Resistance was caused by the acquisition of the strA-strB gene pair, inserted into the ubiquitous nontransmissible E. amylovora plasmid pEA29. Previously, streptomycin-resistant E. amylovora populations from Michigan were described with a similar mechanism of resistance, although the strA-strB genes are not unique to Michigan. These findings illustrate how unintentional movement of nursery material could undermine efforts to prevent the spread of antibiotic-resistant E. amylovora.

Download full-text PDF

Source
http://dx.doi.org/10.1094/PDIS-92-5-0714DOI Listing

Publication Analysis

Top Keywords

streptomycin-resistant isolates
8
erwinia amylovora
8
streptomycin resistance
8
amylovora
7
streptomycin
5
resistance
5
isolation streptomycin-resistant
4
isolates erwinia
4
amylovora york
4
york streptomycin
4

Similar Publications

spp. present in the food chain have been of much interest during the last few decades due to their implication in the development of antimicrobial resistance. We determined the prevalence of spp.

View Article and Find Full Text PDF

, the causal agent of fire blight, poses a serious threat to several rosaceous plants, especially apples and pears. In this study, a spontaneous streptomycin-resistant strain (EaSmR) was isolated under laboratory conditions. Compared with the parental strain TS3128, the EaSmR strain exhibited high resistance to streptomycin (>100,000 µg/mL) and showed a significant reduction in both swimming and swarming motility.

View Article and Find Full Text PDF

We investigated antimicrobial resistance-related genes in 109 isolates of Trueperella pyogenes that were isolated in cattle and pigs. All 89 tetracycline-resistant T. pyogenes isolates carried the resistance gene harbored either tetW, tetM, tetA(33), tetK, or tetL.

View Article and Find Full Text PDF

Identification of Streptomycin-Resistant in Iowa.

Plant Dis

January 2025

Department of Plant Pathology, Entomology and Microbiology, Iowa State University, Ames, IA 50011, U.S.A.

is a bacterial pathogen that causes fire blight, an important disease in apples and pears. Applying the antibiotic streptomycin during the phenological bloom stage is considered the most effective management tactic for fire blight. Although streptomycin-resistant (SmR) populations have emerged in major U.

View Article and Find Full Text PDF

[Occurrence and Distribution of Potential Dangerous Biological Agents in Beijing Suburban Rivers].

Huan Jing Ke Xue

July 2024

State Key Joint Laboratory of Environmental Simulation and Pollution Control, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.

Dangerous biological agents (DBAs) refer to microorganisms, toxins, and other biological substances that have the potential to cause significant harm to humans, animals, plants, and the environment. They are the primary target of the prevention and response in China's Biosafety Law, and it is of great importance to clarify the characteristics of DBAs in the Beijing suburban rivers for the insurance of the water safety in Beijing. The typical Beijing suburban rivers (Mangniu River, Chaohe River, and Baihe River) were selected, and the occurrence and distribution of DBAs concerning the molecular biology composition as the nucleic acid (antibiotic resistance genes, ARGs), nucleic acid and proteins (viruses), and intact cellular structures (pathogens) were determined based on the metagenomics.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!