|
柴希民, 张都海, 张国贤, 等. 松褐天牛成虫携带松材线虫的数量. 东北林业大学学报, 2000, 28 (5): 99- 101.
|
|
Chai X M, Zhang D H, Zhang G X, et al. The number of Bursaphelenchus xylophilus carried by Monochamus alternatus adults. Journal of Northeast Forestry University, 2000, 28 (5): 99- 101.
|
|
程瑚瑞. 松材线虫萎蔫病的发生和研究进展. 植物检疫, 1988, 2 (1): 11- 16.
|
|
Chen H R. Occurrence and research progress of pine wilt disease. Plant Quarantine, 1988, 2 (1): 11- 16.
|
|
范立淳, 时 勇, 姜生伟, 等. 辽宁携带松材线虫的天牛种类研究. 林业科学研究, 2021, 34 (6): 174- 181.
|
|
Fan L C, Shi Y, Jiang S W, et al. Species of long-horned beetles carrying pine wood nematode in Liaoning province. Forest Research, 2021, 34 (6): 174- 181.
|
|
姜生伟, 吴 昊, 李德斌, 等. 我国东北地区松材线虫灾害特征分析. 中国森林病虫, 2022, 41 (4): 1- 9.
|
|
Jiang S W, Wu H, Li D B, et al. Analysis on disaster characteristics of pine wood nematode in Northeast China. Forest Pest and Disease, 2022, 41 (4): 1- 9.
|
|
李 晖, 曾伟生. 不同区域落叶松二元立木材积表的检验及差异分析. 林业科学, 2016, 52 (6): 157- 162.
|
|
Li H, Zeng W S. Validation and comparison of two-variable tree volume tables for Larix spp. in different regions of China. Scientia Silvae Sinicae, 2016, 52 (6): 157- 162.
|
|
刘 超, 吕春鹤, 白鸿岩, 等. F2型引诱剂对辽宁云杉花墨天牛诱捕效果试验. 中国森林病虫, 2021, 40 (1): 38- 43.
|
|
Liu C, Lv C H. Bai H Y, et al. Field trapping experiment of Monochamus saltuarius Gebler with F2 attractant in Liaoning Province. Forest Pest and Disease, 2021, 40 (1): 38- 43.
|
|
田宇明, 赵 伟, 吕晓亮, 等. 大连地区松材线虫病林间接种试验初报. 中国林副特产, 2020, (2): 20- 21,26.
|
|
Tian Y M, Zhao W, Lv X L, et al. Preliminary report on forest inoculation test of Bursaphelenchus xylophilus in Dalian. Forestry By-Product and Speciality in China, 2020, (2): 20- 21,26.
|
|
武海卫, 朱文成, 康 智, 等. 2019. 松材线虫侵染的黑松钻蛀性害虫时空动态研究. 中国森林病虫, 38(6): 6-10.
|
|
Wu H W, Zhu W C, Kang Z, et al. 2109. Spatial-temporal pattern of main borer pests in Pinus thunbergii infected by pine wood nematode. Forest Pest and Disease, 38 (6): 6-10. [in Chinese]
|
|
王玉嬿, 石运琳, 周新胜, 等. 南京地区黑松萎蔫线虫病发病规律的初步观察. 森林病虫通讯, 1985, (2): 15- 17.
|
|
Wang Y Y, Shi Y L, Zhou X S, et al. Preliminary observation on the regularity of black pine wilt disease in Nanjing area. Forest Pest and Disease, 1985, (2): 15- 17.
|
|
杨宝君, 潘宏阳, 汤 坚, 等. 2003. 松材线虫病. 北京: 中国林业出版社.
|
|
Yang B J, Pan H Y, Tang J, et al. 2003. Pine wilt disease. Beijing: China Forestry Publishing House. [in Chinese]
|
|
叶建仁. 松材线虫病在中国的流行现状、防治技术与对策分析. 林业科学, 2019, 55 (9): 1- 10.
|
|
Ye J R. Epidemic status of pine wilt disease in China and its prevention and control techniques and counter measures. Scientia Silvae Sinicae, 2019, 55 (9): 1- 10.
|
|
于海英, 吴 昊. 辽宁发现松材线虫新寄主植物和新传播媒介昆虫. 中国森林病虫, 2018, 37 (5): 61.
doi: 10.3969/j.issn.1671-0886.2018.05.015
|
|
Yu H Y, Wu H. New host and vectors of pine wood nematodes were found in Liaoning province. Forest Pest and Disease, 2018, 37 (5): 61.
doi: 10.3969/j.issn.1671-0886.2018.05.015
|
|
于海英, 吴 昊, 张旭东, 等. 落叶松自然条件下感染松材线虫初报. 中国森林病虫, 2019, 38 (4): 7- 10.
|
|
Yu H Y, Wu H. Zhang X D, et al. Preliminary study on Larix spp. infected by Bursaphelenchus xylophilus in natural environment. Forest Pest and Disease, 2019, 38 (4): 7- 10.
|
|
真宫靖治. 松材线虫枯萎病的病理学. 森林病虫通讯, 1985, (3): 44- 48.
|
|
MAMIYA Y. Pathology of pine wilt disease. Forest Pest and Disease, 1985, (3): 44- 48.
|
|
Castillo P, Trapero-Casas J L, Jiménez-Díaz R M. Effect of time, temperature, and inoculum density on reproduction of Pratylenchus thornei in carrot disk cultures. Journal of Nematology, 1995, 27 (1): 120- 124.
|
|
Chen Q L, Zhang R Z, Li D L, et al. Trehalose in pine wood nematode participates in DJ3 formation and confers resistance to low-temperature stress. BMC Genomics, 2021a, 22 (1): 524.
doi: 10.1186/s12864-021-07839-0
|
|
Chen Q, Zhang R Z, Li D L, et al. Transcriptomic and coexpression network analyses revealed pine chalcone synthase genes associated with pine wood nematode infection. International Journal of Molecular Sciences, 2021b, 22 (20): 11195.
doi: 10.3390/ijms222011195
|
|
Futai K. Role of asymptomatic carrier trees in epidemic spread of pine wilt disease. Journal of Forest Research, 2003, 8 (4): 253- 260.
doi: 10.1007/s10310-003-0034-2
|
|
Futai K. Pine wood nematode, Bursaphelenchus xylophilus. Annual Review of Phytopathology, 2013, 51, 61- 83.
doi: 10.1146/annurev-phyto-081211-172910
|
|
Liu H, Wu X, Feng Y, et al. Autophagy contributes to the feeding, reproduction, and mobility of Bursaphelenchus xylophilus at low temperatures. Acta Biochimica et Biophysica Sinica, 2019a, 51 (8): 864- 872.
doi: 10.1093/abbs/gmz068
|
|
Liu Z K, Li Y X, Pan L, et al. Cold adaptive potential of pine wood nematodes overwintering in plant hosts. Biology Open, 2019b, 8 (5): bio041616.
|
|
Marta N D S, Alejandro S, Luis S, et al. Susceptibility to the pinewood nematode (PWN) of four pine species involved in potential range expansion across Europe. Tree Physiology, 2015, 35 (9): 987- 999.
doi: 10.1093/treephys/tpv046
|
|
Sakamoto M, Uga S. Development of free-living stages of Strongyloides ratti under different temperature conditions. Parasitology Research, 2013, 112 (12): 4009- 4013.
doi: 10.1007/s00436-013-3591-0
|
|
Shari H, Dale R B. Long-term survival of Bursaphelenchus xylophilus in living Pinus sylvestris in an established plantation. European Journal of Forest Pathology, 1994, 24, 357- 363.
doi: 10.1111/j.1439-0329.1994.tb00829.x
|
|
Singh M, Sharma S B. Temperature effects on development and reproduction of Heterodera cajani on pigeonpea. Journal of Nematology, 1994, 26 (2): 241- 248.
|
|
Zhang R, Wang J, Xia R, et al. Antioxidant processes involving epicatechin decreased symptoms of pine wilt disease. Frontiers in Plant Science, 2022, 13, 1015970.
doi: 10.3389/fpls.2022.1015970
|