Forecasting of Airborne Conidia Quantities and Potential Insect Associations of Cryphonectria parasitica, the Causal Agent of Chestnut Blight, in England

被引:0
作者
Romon-Ochoa, Pedro [1 ]
Samal, Pankajini [1 ]
Pace, Tom [2 ]
Newman, Tim [2 ]
Oram, Mark [2 ]
Baxter, Nicholas [3 ]
Manning, John A. S. [3 ]
Biddle, Mick [1 ]
Barnard, Kerry [4 ]
Inward, Daegan [4 ]
Taylor, Paul [5 ]
Hendry, Steven [6 ]
Perez-Sierra, Ana [6 ]
Ward, Lisa [1 ]
机构
[1] Forest Res, Alice Holt Res Stn, Plant Pathol Dept, Farnham GU10 4LH, Surrey, England
[2] Forest Res, TSU Exeter Field Stn, Exeter EX6 7XR, England
[3] Forestry Commiss, Plant Hlth Forestry Team, 620 Bristol Business Pk, Bristol BS16 1EJ, England
[4] Forest Res, Alice Holt Res Stn, Entomol Dept, Farnham GU10 4LH, Surrey, England
[5] Forest Res, Data & Stat Dept, Alice Holt Res Stn, Farnham GU10 4LH, Surrey, England
[6] Forest Res, Tree Hlth Diagnost & Advisory Serv, Farnham GU10 4LH, Surrey, England
关键词
chestnut blight; conidia; detection; forecasting; insects; quantification; AMERICAN CHESTNUT; THYREOPHAGUS-CORTICALIS; ENDOTHIA-PARASITICA; HYPOVIRULENCE; DIVERSITY; SPREAD; VECTOR; FUNGUS;
D O I
10.3390/jof10030181
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Sweet chestnut, an Asiatic tree introduced in many parts of Europe including the United Kingdom, is planted for nut production, timber, and amenity. Its major threat is the disease called blight, caused by the fungus Cryphonectria parasitica, which infects through wounds by airborne spores. Field trapping using sticky rods rotating traps was performed in an infected area in Devon (between May 2021 and April 2023). An improved dual hydrolysis Taqman probes real-time PCR was used. The number of spores was calculated by comparing the cycle threshold to the Ct of standards with known amounts of conidia or known target fragment copies cloned into a plasmid. Weekly spore counts were in the range of around 60 to approximately 8.5 x 10(3), with fluctuations of peaks (mainly in late summer-autumn 2021) and troughs. The effects of weather parameters were modelled, finding correlations between spore numbers and temperature, humidity, dewpoint, rainfall, wind speed, and wind duration. Additionally, an insect trapping was performed to confirm the presence/absence and quantity of C. parasitica conidia potentially phoretic on some insects by using the same molecular approach. None of the ten collected insect species harboured spores of this fungus.
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页数:15
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