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Quantitative detection of Pythium porphyrae and Pythium chondricola (Oomycota), the causative agents of red rot disease in Pyropia farms in China

Jie Liu; Sudong Xia; Huichao Yang; Zhaolan Mo; Jie Li; Yongwei Yan
Algae · Vol. 39, Issue 3 · pp. 177-186 · 2024

Abstract

Red rot disease is one of the notorious algal diseases that threaten the cultivation of Pyropia in China, and two Pythium pathogens , i.e., Pythium porphyrae and P. chondricola , have been reported as causative agents. To monitor the pathogens, a fluorescent quantitative polymerase chain reaction (PCR) method was developed to quantitatively detect their abundance. Using overlapping PCR and pathogen-specific primer pairs, two pathogen-specific fragments were concatenated to construct an internal standard plasmid, which was used for quantification. For zoospores of known numbers, the results showed that this method can detect as less as 100 and 10 zoospores mL -1 in a 200 mL solution for P. porphyrae and P. chondricola , respectively. Using monthly collected seawater at 10 sites in Haizhou Bay, a typical aquaculture farm in China, a significantly higher temperature and a significantly lower salinity were determined in December 2021. P. porphyrae was determined to be more abundant than P. chondricola , though with similar temporal distribution patterns from December 2021 to February 2022. When a red rot disease occurred in December 2021, the two pathogens were significantly more abundant at two infected sub-sites than the uninfected sub-site within both seawater and sediment, though they were all significantly more enriched in sediment than in seawater. The present method provides the capability to quantify and compare the abundance of two pathogens and also has the potential to forecast the occurrence of red rot disease, which is of much significance in managing and controlling the disease.

Bibliographic Information

JournalAlgae
PublisherThe Korean Society of Phycology
Publication Date2024-09-15
Publication Year2024
Volume39
Issue3
Pages177-186
Document TypeJournal Article
Print ISSN1226-2617
eISSN2093-0860
DOI10.4490/algae.2024.39.8.26
SubjectPhycology; marine algae; seaweeds; aquatic botany; marine ecology

Access Information

NARA Access CoverageOA / free full text
Journal Homepagehttps://www.e-algae.org/
Publisher PageOpen Publisher Page
This article is openly available from the publisher.