多孢瑟氏腔菌——北半球针叶树重要病原菌研究进展

姜宁 ,  薛寒 ,  李永

树木医学 ›› 2026, Vol. 3 ›› Issue (3) : 11 -19.

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树木医学 ›› 2026, Vol. 3 ›› Issue (3) : 11 -19. DOI: 10.27035/j.cnki.issn2097−5279.20260302

多孢瑟氏腔菌——北半球针叶树重要病原菌研究进展

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Research progress on Sydowia polyspora: An important pathogen of conifers in the northern hemisphere

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摘要

北半球针叶林是全球森林生态系统的重要组成部分,但受立地条件恶化、有害生物入侵和极端气候等因素影响,正面临不同程度的衰退风险。多孢瑟氏腔菌Sydowia polyspora (Bref.) E. Müll.是一种广谱性病原真菌,主要侵染松属Pinus L.、冷杉属Abies Mill.和云杉属Picea A. Dietrich等松科植物,可致当年生针叶斑枯、枝梢溃疡等症状,严重威胁针叶树健康。该菌引起的病害在北美及欧洲大部分地区普遍发生,近年来中国东北和华北地区也相继有报道。鉴于中国松科植物分布广泛且气候环境复杂,该病原菌的潜在适生区及寄主范围存在被低估的可能。本文系统综述该病菌所致病害症状、寄主范围与地理分布、分类学地位、侵染循环以及防控策略,并对未来的研究方向进行展望,旨在为该病害的早期监测、鉴定及综合防控提供理论参考。

Abstract

Coniferous forests are vital components of ecosystems in the Northern Hemisphere but face increasing threats from site degradation,pests,and climate change. Sydowia polyspora (Bref.) E. Müll.,a polyphagous fungal pathogen,poses a significant risk to Pinaceae species,including Pinus L., Abies Mill .,and Picea A. Dietrich. It primarily causes current-year needle blight and shoot cankers. While the disease is widespread in North America and Europe,it has recently been reported in Northeast and North China. Given the climatic conditions and the extensive distribution of Pinaceae hosts in China,the potential range and host spectrum of S. polyspora may be underestimated. This paper reviews the research history and progress of S. polyspora,covering disease symptoms,host range,geographic distribution,taxonomy,disease cycle,and control strategies. Future research directions are also discussed to provide a theoretical basis for the identification and management of this disease.

关键词

松树病害 / 多孢瑟氏腔菌 / 溃疡病 / 樟子松

Key words

pine diseases / Sydowia polyspora / canker diseases / Pinus sylvestris var. mongolica

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姜宁,薛寒,李永. 多孢瑟氏腔菌——北半球针叶树重要病原菌研究进展[J]. 树木医学, 2026, 3(3): 11-19 DOI:10.27035/j.cnki.issn2097−5279.20260302

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参考文献

[1]

姜宁, 闫美霖, 薛寒, . 2024. 樟子松针叶上 2 种葡萄座腔菌目真菌的形态和分子鉴定[J]. 陆地生态系统与保护学报, 4(6):56-64.

[2]

Jiang N, Yan M L, Xue H, et al. 2024. Morphological and molecular identification of two botryosphaerialean fungi on needles of Pinus sylvestris var. mongholica [J]. Terrestrial Ecosystem and Conservation, 4(6):56-64.(in Chinese)

[3]

王佳, 钱莹莹, 王鹏, . 2023. 松生茎点霉的分离、鉴定及药剂室内毒力测定[J]. 东北林业大学学报, 51(9):126-132.

[4]

Wang J, Qian Y Y, Wang P, et al. 2023. Isolation,identification and laboratory toxicity test of Sydowia polyspora [J]. Journal of Northeast Forestry University, 51(9):126-132.(in Chinese)

[5]

吴盈盈, 田呈明, 彭骋, . 2025. 樟子松新型叶枯病的病原菌鉴定及防治药剂筛选[J]. 南京林业大学学报(自然科学版), 49(4):170-178.

[6]

Wu Y Y, Tian C M, Peng C, et al. 2025. Identification and screening of fungicides of pathogen causing a new leaf blight disease in Pinus sylvestris var. mongholica [J]. Journal of Nanjing Forestry University(Natural Sciences Edition), 49(4):170-178.(in Chinese)

[7]

Aikawa T, Togashi K. 2000. Movement of Bursaphelenchus xylophilus(Nematoda:Aphelenchoididae)in tracheal system of adult Monochamus alternatus(Coleoptera:Cerambycidae) [J]. Nematology, 2(5):495-500.

[8]

Behnke—Borowczyk J, Kwaśna H, Kulawinek B. 2019. Fungi associated with Cyclaneusma needle cast in Scots pine in the west of Poland [J]. Forest Pathology, 49(2):e12487.

[9]

Brodde L, Åslund M S, Elfstrand M ,et al. 2023. Diplodia sapinea as a contributing factor in the crown dieback of Scots pine (Pinus sylvestris) after a severe drought [J]. Forest Ecology and Management, 549: 121436.

[10]

Broders K, Munck I, Wyka S ,et al. 2015. Characterization of fungal pathogens associated with white pine needle damage(WPND)in Northeastern North America[J]. Forests, 6(11):4088-4104.

[11]

Bussotti F, Ferretti M. 1998. Air pollution,forest condition and forest decline in Southern Europe:an overview[J]. Environmental Pollution, 101(1):49-65.

[12]

Çakar D, Şimşek S A, Çömez A ,et al. 2022. First report of Sydowia polyspora causing needle necrosis on Trojan fir in Turkey [J]. Journal of Plant Pathology, 104(4):1589-1590.

[13]

Çakar D, Şimşek S A, Çömez A ,et al. 2023. Causal agents of current season needle necrosis on Trojan Fir (Abies nordmanniana subsp. equi—trojani) growing in the Aladağ mountain range in Bolu Province [J]. Australasian Plant Pathology, 52(4):317-326.

[14]

Chlebicki A. 2005. Some ascomycete fungi from primeval forests of north‒eastern Poland[J]. Acta Mycologica, 40(1):71-94.

[15]

Cleary M, Oskay F, Doğmuş H T ,et al. 2019. Cryptic risks to forest biosecurity associated with the global movement of commercial seed[J]. Forests, 10(5):459.

[16]

Eo J K, Park E S. 2019. The complete mitogenome of Sydowia polyspora [J]. Mitochondrial DNA Part B, 4(1):1992-1993.

[17]

Ginns J H. 1986. Compendium of plant disease and decay fungi in Canada,1960‒1980[M]. Ottawa:Research Branch,Agriculture Canada.

[18]

Gremmen J. 1977. Fungi colonizing living and dead tissue of Pinus sylvestris and P. nigra [J]. Kew Bulletin, 31(3):455-460.

[19]

Guertin J F, Zitouni M, Tanguay P ,et al. 2019. Detection of Delphinella shoot blight in plantations of balsam fir (Abies balsamea) Christmas trees in Quebec,Canada [J]. Canadian Journal of Plant Pathology, 41(1):87-97.

[20]

Huang K C, Yi C X, Wu D H ,et al. 2015. Tipping point of a conifer forest ecosystem under severe drought[J]. Environmental Research Letters, 10(2):024011.

[21]

Jankowiak R, Bartnik C, Ledwich D ,et al. 2024. Fungi associated with shoot dieback of Pinus mugo subsp. mugo in the Polish Tatra Mountains [J]. Forest Pathology, 54(3):e12874.

[22]

Jankowiak R, Bilański P, Paluch J ,et al. 2016. Fungi associated with dieback of Abies alba seedlings in naturally regenerating forest ecosystems [J]. Fungal Ecology, 24: 61-69.

[23]

Kaitera J, Henttonen H M, Müller M M. 2019. Fungal species associated with butt rot of mature Scots pine and Norway spruce in northern boreal forests of Northern Ostrobothnia and Kainuu in Finland[J]. European Journal of Plant Pathology, 154(3):541-554.

[24]

Kaya A G A, Karaman A. 2023. Occurrence of fungi,with emphasis on Diplodia pinea,in pine seeds from forest nurseries of Turkey [J]. Kuwait Journal of Science, 50(2):1-4.

[25]

Lazarević J, Menkis A. 2022. Cytospora friesii and Sydowia polyspora are associated with the sudden dieback of Abies concolor in Southern Europe [J]. Plant Protection Science, 58(3):258-263.

[26]

Miller D R. 1974. Sydowia polyspora found on white fir twigs in California [J]. Plant Disease Reporter, 58: 94-95.

[27]

Mulenko W, Majewski T, Ruszkiewicz—Michalska M. 2008. A preliminary checklist of micromycetes of Poland[M]. Kraków: W. Szafer Institute of Botany,Polish Academy of Sciences.

[28]

Pan Y, Ye H, Lu J ,et al. 2018. Isolation and identification of Sydowia polyspora and its pathogenicity on Pinus yunnanensis in Southwestern China [J]. Journal of Phytopathology, 166(6):386-395.

[29]

Ridout M, Newcombe G. 2018. Sydowia polyspora is both a foliar endophyte and a preemergent seed pathogen in Pinus ponderosa [J]. Plant Disease, 102(3):640-644.

[30]

Roll—Hansen F, Roll—Hansen H. 1980. Microorganisms which invade Picea abies in seasonal stem wounds [J]. European Journal of Forest Pathology, 10(6):321-339.

[31]

Silva A C, Henriques J, Diogo E ,et al. 2020. First report of Sydowia polyspora causing disease on Pinus pinea shoots [J]. Forest Pathology, 50(1):e12570.

[32]

Smerlis E. 1970. Notes on Sydowia polyspora [J]. Canadian Journal of Botany, 48(9):1613-1615.

[33]

Steel Z L, Jones G M, Collins B M ,et al. 2023. Mega—disturbances cause rapid decline of mature conifer forest habitat in California[J]. Ecological Applications, 33(2):e2763.

[34]

Talgø V, Brodal G, Klemsdal S S ,et al. 2010a. Seed borne fungi on Abies spp. [J]. Seed Science and Technology, 38(2):477-493.

[35]

Talgø V, Chastagner G, Thomsen I M ,et al. 2010b. Sydowia polyspora associated with current season needle necrosis(CSNN)on true fir (Abies spp. ) [J]. Fungal Biology, 114(7):545-554.

[36]

Talgø V. 2012. Foliage diseases on true fir (Abies spp. )in Norway [J]. Journal of Agricultural Extension and Rural Development, 4(9):246-251.

[37]

Tinivella F, Dani E, Minuto G ,et al. 2014. First report of Sydowia polyspora on Aleppo pine (Pinus halepensis) in Italy [J]. Plant Disease, 98(2):281.

[38]

Tsuneda A, Davey M L, Currah R S. 2011. A new endoconidial black meristematic genus, Atramixtia,associated with declining white spruce and phylogenetically allied to a lineage of dothidealean conifer pathogens [J]. Botany, 89(5):323-338.

[39]

Vogelmann J E, Rock B N. 1986. Assessing forest decline in coniferous forests of Vermont using NS—001 Thematic Mapper Simulator data[J]. International Journal of Remote Sensing, 7(10):1303-1321.

[40]

Zhao J Y, Li K J, He W ,et al. 2025. First report of needle blight on Pinus sylvestris var. mongolica caused by Sydowia polyspora in China [J]. Plant Disease, 109(10):2221.

基金资助

“十四五”国家重点研发计划项目(2023YFD1401305)

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