Citation: | LIN Lu, FAN Xinlei. 2024: Recognition and identification of Cytospora species causing woods canker disease. Tree Health, 1(1): 18-28. |
The genus Cytospora Ehrenb. are known to cause canker diseases in a variety of woody plants with economic and ecological losses in wide distributions. These pathogens exhibit a latent infection characteristic, typically initiating infection from the bark and gradually invading the xylem, resulting in the formation of ulcers and annular lesions, which can severely lead to the death of trunks or branches. Cytospora species display diverse life strategies and geographical distributions depending on different hosts and environmental conditions. We provide a comprehensive review of the damages and symptoms caused by Cytospora in forest trees, the survive strategies and species taxonomy, host selection and the identification of major pathogens causing canker diseases in China. The objective is to offer scientific insights for the prevention and control of forest canker diseases, thereby promoting the healthy and sustainable development of forest ecosystems.
戴芳澜. 1979. 中国真菌总汇[M]. 北京: 科学出版社: 1−1527.
Tai F L. 1979. Sylloge fungorum sinicorum[M]. Beijing: Science Press: 1-1527.
|
古丽娜孜·卡哈尔, 牙库甫江·阿西木, 刘晓洁, 等. 2024. 苹果壳囊孢Cytospora mali分泌蛋白组学分析[J]. 菌物学报, 43(10): 83−94.
Kahar G, Haxim Y, Liu X J, et al. 2024. Secretome analysis of apple canker pathogen Cytospora mali[J]. Mycosystema, 43(10): 83−94.
|
洪瑞芬. 1989. 杨树溃疡病烂皮病发病调查与相关因子分析[J]. 山东林业科技, 19(2): 25−27.
Hong R F. 1989. Investigation on the incidence of poplar canker and skin rot and analysis of related factors[J]. Journal of Shandong Forestry Science and Technology, 19(2): 25−27.
|
刘冬萍, 林魏巍, 熊典广, 等. 2019. 景观复杂性和林分因素对两种土壤条件下杨树腐烂病发生的混合影响[J]. 北京林业大学学报, 41(12): 128−138.
Liu D P, Lin W W, Xiong D G, et al. 2019. Mixed effects of landscape complexity and stand factors on Cytospora canker of poplar across two different field soil conditions[J]. Journal of Beijing Forestry University, 41(12): 128−138.
|
刘玲玲, 王永林, 熊典广, 等. 2017. 杨树腐烂病菌(Cytospora chrysosperma)原生质体遗传转化体系的构建[J]. 微生物学通报, 44(10): 2487−2497.
Liu L L, Wang Y L, Xiong D G, et al. 2017. Genetic transformation system of Cytospora chrysosperma, the causal agent of poplar canker[J]. Microbiology China, 44(10): 2487−2497.
|
刘媛媛, 马强, 张磊, 等. 2024. 西宁市杨树腐烂病病原菌分离及杨树腐烂病菌的寄主范围和药剂敏感性测定[J]. 东北林业大学学报, 52(5): 119−125, 129.
Liu Y Y, Ma Q, Zhang L, et al. 2024. Isolation of the pathogenic fungi of Populus decay disease in Xining City and determination of the host range and drug sensitivity of the Populus decay disease[J]. Journal of Northeast Forestry University, 52(5): 119−125, 129.
|
潘彦平, 范鑫磊, 田呈明. 2016. 山西省壳囊孢属真菌分类学[J]. 北京林业大学学报, 38(11): 79−88.
Pan Y P, Fan X L, Tian C M. 2016. Taxonomy of Cytospora in Shanxi Province, Northern China[J]. Journal of Beijing Forestry University, 38(11): 79−88.
|
沙帅帅. 2023. 环塔里木盆地苹果树腐烂病菌种群结构分析及贝莱斯芽孢杆菌SY01生防潜力评价[D]. 阿拉尔: 塔里木大学.
Sha S S. 2023. Population structure analysis of apple tree rot pathogen in Tarim Basin and biocontrol potential evaluation of Bacillus velez SY01[D]. Ala' er: Tarim University.
|
徐梅卿, 周旭东, 朴春根. 2009. 中国不同栽培区杨树品系及其病害种类[J]. 林业科学研究, 22(5): 705−714.
Xu M Q, Zhou X D, Piao C G. 2009. Populus cultivation-clones in different cultivated area and its diseases in China[J]. Forest Research, 22(5): 705−714.
|
阎合. 2020. 中国东北地区杨树腐烂病时空流行特点与风险分析[D]. 北京: 北京林业大学.
Yan H. 2020. Spatio-temporal epidemic characteristics and risk analysis of poplar rot in Northeast China[D]. Beijing: Beijing Forestry University.
|
杨明秀, 宋瑞清. 2013. 中国金黄壳囊孢菌的致病性分化及遗传多样性[J]. 林业科学, 49(6): 115−121.
Yang M X, Song R Q. 2013. Pathogenic differentiation and genetic diversity of Cytospora chrysosperma in China[J]. Scientia Silvae Sinicae, 49(6): 115−121.
|
臧睿, 黄丽丽, 康振生, 等. 2007. 陕西苹果树腐烂病菌(Cytospora spp. )不同分离株的生物学特性与致病性研究[J]. 植物病理学报, 37(4): 343−351.
Zang R, Huang L L, Kang Z S, et al. 2007. Biological characteristics and pathogenicity of different isolates of Cytospora spp. isolated from apple trees in Shaanxi province[J]. Acta Phytopathologica Sinica, 37(4): 343−351.
|
张俊娥, 梁英梅, 田呈明. 2017. 金黄壳囊孢菌分生孢子器发育过程研究[J]. 菌物学报, 36(5): 573−581.
Zhang J E, Liang Y M, Tian C M. 2017. Development process of pycnidia in Cytospora chrysosperma[J]. Mycosystema, 36(5): 573−581.
|
张星耀, 赵仕光, 朴春根, 等. 1999. 树木溃疡病病原真菌类群分子遗传多样性研究Ⅰ——小穴壳菌属、疡壳孢属、壳囊孢属、盾壳霉属分类地位的分子证明[J]. 林业科学, 35(3): 36−42.
Zhang X Y, Zhao S G, Piao C G, et al. 1999. Molecular genetic diversity of pathogenic fungal group causing tree canker I.--Evidence of taxa for Dothiorella, Dothichiza, Cytospora and Coniothyrium in molecular level[J]. Scientia Silvae Sinicae, 35(3): 36−42.
|
张星耀, 陈海燕, 梁军, 等. 2007. 金黄壳囊孢菌(Cytospora chrysosperma)的培养性状和营养体亲和性[J]. 西北农林科技大学学报(自然科学版), 35(3): 99−105.
Zhang X Y, Chen H Y, Liang J, et al. 2007. Cultural morphology and vegetative compatibility of Cytospora chrysosperma isolates[J]. Journal of Northwest A & F University (Natural Science Edition), 35(3): 99−105.
|
赵颖, 马荣, 尹永香, 等. 2019. 新疆不同来源金黄壳囊孢的多样性[J]. 生物多样性, 27(10): 1122−1131.
Zhao Y, Ma R, Yin Y X, et al. 2019. Diversity of Cytospora chrysosperma from different hosts in Xinjiang[J]. Biodiversity Science, 27(10): 1122−1131.
|
邹兆伟. 2014. 吉林省主要杨树枝干病害调查[J]. 吉林农业, (6): 67.
Zou Z W. 2014. Investigation on main poplar branch diseases in Jilin Province[J]. Jilin Agriculture, (6): 67.
|
郑艳, 鲁远, 孙娥, 等. 2024. 苹果类受体激酶基因MdFER1负调控腐烂病抗性[J/OL]. 植物保护, 1-11(2024-05-30) [2024-06-26]. https://doi.org/10.16688/j.zwbh.2023657.
Zheng Y, Lu Y, Sun E, et al. 2024. The malectin-like kinase gene MdFER1 negatively regulates Valsa canker resistance[J/OL]. Plant Protection, 1-11(2024-05-30) [2024-06-26]. https://doi.org/10.16688/j.zwbh.2023657.
|
Abebe G, Hart J, Adams R. 1990. The relationship of site factors to the incidence of Cytospora and Septoria cankers and poplar and willow borer in hybrid poplar plantations[R]. United States of America: -North Central Forest Experiment Station, USDA Forest Service: 163−171.
|
Adams G C, Roux J, Wingfield M J. 2006. Cytospora species (Ascomycota, Diaporthales, Valsaceae): introduced and native pathogens of trees in South Africa[J]. Australasian Plant Pathology, 35(5): 521−548.
|
Adams G C, Wingfield M J, Common R, et al. 2005. Phylogenetic relationships and morphology of Cytospora species and related teleomorphs (Ascomycota, Diaporthales, Valsaceae) from Eucalyptus[J]. Studies in Mycology, 52: 1−144.
|
Bertrand P F. 1976. Release and dispersal of conidia and ascospores of Valsa leucostoma[J]. Phytopathology, 66(8): 987.
|
Bettucci L, Saravay M. 1993. Endophytic fungi of Eucalyptus globulus: a preliminary study[J]. Mycological Research, 97(6): 679−682.
|
Bills G F, Redlin S C, Carris L M. 1996. Isolation and analysis of endophytic fungal communities from woody plants[M]//Redlin S. C., Carris L. M. (Eds.), Endophytic fungi in grasses and woody plants: systematics, ecology, and evolution. USA: APS Press: 31−65.
|
Burks S, Jacobi W, Mclntyre G. 1998. Cytospora canker development on aspen in response to nitrogen fertilization[J]. Arboriculture & Urban Forestry, 24(1): 28−34.
|
Chapela I H. 1989. Fungi in healthy stems and branches of American beech and aspen: a comparative study[J]. New Phytologist, 113(1): 65−75.
|
Christensen C M. 1940. Studies on the biology of Valsa sordida and Cytospora chrysosperma[M]. Phytopathology, 30: 459−475.
|
Crous P W, Hawksworth D L, Wingfield M J. 2015. Identifying and Naming plant-pathogenic fungi: past, present, and future[J]. Annual Review of Phytopathology, 53: 247−267.
|
Dearness J, Hansbrough J R. 1934. Cytospora infection following fire injury in western British Columbia[J]. Canadian Journal of Research, 10(1): 125−128.
|
Donk M A. 1964. Nomina conservanda proposita I. Proposals in fungi. Deuteromycetes. Regnum Vegetabile[J]. 34: 7−15.
|
Ehrenberg C G. 1818. Sylvae mycologicae berolinenses. Formis Theophili Bruschcke[M]. Berlin: [s.n.].
|
Fan X L, Bezerra J D P, Tian C M, et al. 2020. Cytospora (Diaporthales) in China[J]. Persoonia, 45: 1−45.
|
Fan X, Hyde K D, Liu M, et al. 2015a. Cytospora species associated with walnut canker disease in China, with description of a new species C. gigalocus[J]. Fungal Biology, 119(5): 310−319.
|
Fan X, Hyde K D, Yang Q, et al. 2015b. Cytospora species associated with canker disease of three anti-desertification plants in northwestern China[J]. Phytotaxa, 197: 227−244.
|
Farr D F, Rossman A Y. 2023. Fungal Databases, Systematic Mycology and Microbiology Laboratory, ARS, USDA[EB/OL]. (2023-06-12) [2024-06-07]. http://nt.ars-grin.gov/fungaldatabases/.
|
Fisher P, Petrini O, Sutton B C. 1993. A comparative study of fungal endophytes in leaves, xylem and bark of Eucalyptus in Australia and England[J]. Sydowia, 45: 338−345.
|
Gibbs R D. 1957. Patterns in the seasonal water content of trees[M]//Thimann, K. V. (Ed.), The physiology of forest trees. USA: Ronald Press Corporation: 43−69.
|
Guyon J C. 1996. Effects of environmental stress on the development of Cytospora canker of aspen[J]. Plant Disease, 80(12): 1320.
|
Jiang N, Yang Q, Fan X L, et al. 2020. Identification of six Cytospora species on Chinese chestnut in China[J]. MycoKeys, 62: 1−25.
|
Lin L, Pan M, Bezerra J D P, et al. 2023. Re-evaluation of the fungal diversity and pathogenicity of Cytospora species from Populus in China[J]. Plant Disease, 107(1): 83−96.
|
Lin L, Pan M, Tian C M, et al. 2022. Fungal richness of Cytospora species associated with willow canker disease in China[J]. Journal of Fungi, 8(4): 377.
|
Ma R, Liu Y M, Yin Y X, et al. 2018. A canker disease of apple caused by Cytospora parasitica recorded in China[J]. Forest Pathology, 48(3): e12416.
|
Mclntyre G, Jacobi W, Ramaley A. 1996. Factors affecting Cytospora canker occurrence on aspen[J]. Arboriculture & Urban Forestry, 22(5): 229−233.
|
Mehrabi M, Mohammadi G E, Fotouhifar K B. 2011. Studies on Cytospora canker disease of apple trees in Semirom region of Iran[J]. Journal of Agricultural Technology, 7: 967−982.
|
Pan M, Zhu H Y, Bonthond G, et al. 2020. High diversity of Cytospora associated with canker and dieback of Rosaceae in China, with 10 new species described[J]. Frontiers in Plant Science, 11: 690.
|
Reich R W, van der Kamp B J. 1993. Frost, canker, and dieback of Douglas-fir in the central interior of British Columbia[J]. Canadian Journal of Forest Research, 23(3): 373−379.
|
Rossman A Y, Adams G C, Cannon P F, et al. 2015. Recommendations of generic names in Diaporthales competing for protection or use[J]. IMA Fungus, 6(1): 145−154.
|
Schoeneweiss D F. 1983. Drought predisposition to Cytospora canker in blue spruce[J]. Plant Disease, 67(4): 383.
|
Wang X L, Shi C M, Gleason M L, et al. 2020. Fungal species associated with apple Valsa canker in East Asia[J]. Phytopathology Research, 2(1): 35.
|
Wingfield M J, De Beer Z W, Slippers B, et al. 2012. One fungus, one name promotes progressive plant pathology[J]. Molecular Plant Pathology, 13(6): 604−613.
|