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姜自如 博士

连接森林生态研究、生物材料测试与科研软件开发的跨领域研究者。

日本名古屋大学农学博士。研究领域涵盖森林生态学、森林昆虫与微生物共生系统、 生物结构材料力学,以及科研软件与数据处理工具开发。

研究关键词:森林昆虫生态学、昆虫—微生物共生关系、森林害虫生态调控、生物材料力学、科研软件
联系邮箱:info@zirulab.org
Jiang Zi-Ru
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个人简介

Profile

姜自如,日本名古屋大学农学博士,曾任日本名古屋大学博士后研究员。 研究领域涵盖森林生态学、森林保护学、昆虫—微生物共生系统及生物结构材料力学。

研究经历包括野外调查、昆虫与真菌分离鉴定、分子鉴定、接种试验、 生物材料力学测试、数据分析与科研软件开发。现从事生物材料测试、 科研软件与数据处理相关工作。

研究方向

Research interests
  • 森林昆虫生态学
  • 昆虫—微生物共生关系
  • 森林害虫生态调控与生物防治
  • 森林生态系统健康评价
  • 林下经济与生态系统服务
  • 生物材料力学与生物结构硬度测量

履历

Education and career

学术经历

山东农业大学林学专业,农学学士
西北农林科技大学森林保护学,农学硕士
日本名古屋大学生物圈资源学,农学博士
日本名古屋大学研究生院生命农学研究科,博士后研究员

代表性研究成果

Publications and manuscripts

在审及投稿稿件

  1. JIANG Zi-Ru (2026). Mapping arthropod cuticle in a hardness–stiffness space: an exploratory synthesis of public nanoindentation data. Manuscript under review at Arthropod Structure & Development. Under Review
  2. JIANG Zi-Ru (2026). Mate-finding Allee effects generate context-dependent advantages of facultative parthenogenesis at population fronts. Manuscript under editorial consideration at Evolutionary Ecology. With Editor
  3. JIANG Zi-Ru, et al. (2026). Why Ambrosia Beetles Keep Only One Fungus: Competitive Asymmetry, Bottleneck Drift, and Eco-Evolutionary Fixation. Manuscript under editorial consideration at Theoretical Ecology. With Editor
  4. JIANG Zi-Ru (2026). Observation-dependent global reach in bark and ambrosia beetles: a public-data framework linking host records and GBIF occurrence summaries. Manuscript submitted to Biodiversity Informatics. Submitted
稿件状态将根据期刊系统中的最新进展更新。

已发表论文与预印本

  1. JIANG Zi-Ru (2026). Evolutionary Stability of High Virulence in Vector-Borne Forest Pathogens: Evidence from Pine Wilt Disease and Management Thresholds. bioRxiv, 2026-01. doi: 10.64898/2026.01.04.697537
  2. JIANG Zi-Ru. (2025). Why Ambrosia Beetles Keep Only One Fungus: Competitive Asymmetry, Bottleneck Drift, and Eco-Evolutionary Fixation. bioRxiv, 2025-12. doi: 10.64898/2025.12.18.694882
  3. JIANG Zi-Ru (2025). How to Become Invisible to Mosquitoes: A Computational Study of Host Signal Collapse. bioRxiv, 2025-12. doi: 10.64898/2025.12.09.693171
  4. JIANG Zi-Ru, Omori Hideya. (2025). Mechanical properties of beetle elytra using nanoindentation. Journal of Material Testing Research Association of Japan, 70(1), 10–15.
  5. JIANG Zi-Ru, TANOUE Momo, MASUYA Hayato, KAMEYAMA Norikazu, KURODA Keiko, KAJIMURA Hisashi. (2023). Fusarium kuroshium is the primary fungal symbiont of an ambrosia beetle, Euwallacea fornicatus, and can kill mango tree in Japan. Scientific Reports, 13(1), 21634. doi: 10.1038/s41598-023-48809-8
  6. LI Yonghua, XIN Zhiming, YAO Bin, DUAN Ruibing, DONG Xue, BAO Yanfeng, LI Xinle, MA Yuan, HUANG Yaru, LUO Fengmin, LI Xing, WEI Xu, JIANG Zi-Ru, LOZADA-GOBILARD Sissi, ZHU Jinlei. (2023). Density affects plant size in the Gobi Desert. Science of The Total Environment, 169401. doi: 10.1016/j.scitotenv.2023.169401
  7. JIANG Zi-Ru, MORITA Takeshige, JIKUMARU Shota, KURODA Keiko, MASUYA Hayato, KAJIMURA Hisashi. (2022). The role of mycangial fungi associated with ambrosia beetles in fig wilt disease. Microorganisms, 10, 1912.
  8. JIANG Zi-Ru, MASUYA Hayato, KAJIMURA Hisashi. (2022). Fungal flora in adult females of the rearing population of ambrosia beetle Euwallacea interjectus. Diversity, 14(7), 535.
  9. JIANG Zi-Ru, MASUYA Hayato, KAJIMURA Hisashi. (2021). Novel symbiotic association between Euwallacea ambrosia beetle and Fusarium fungus on fig trees in Japan. Frontiers in Microbiology, 12.
  10. LIN Wei, PARK Sangwook, JIANG Zi-Ru, JI Ying-Chao, ERNSTSONS Andris Simon, LI Jun-Jun, LI You, HULCR Jiri. (2021). Native or invasive? The red-haired pine bark beetle Hylurgus ligniperda in East Asia. Forests, 12(7), 950.
  11. JIANG Zi-Ru, KAJIMURA Hisashi. (2020). Earwig preying on ambrosia beetle: Evaluating predatory process and prey preference. Journal of Applied Entomology, 144(8), 743–750.
  12. JIANG Zi-Ru, KINOSHITA Shunichi, SASAKI Osamu, COGNATO Anthony I., KAJIMURA Hisashi. (2019). Non-destructive observation of the mycangia of Euwallacea interjectus using X-ray computed tomography. Entomological Science, 22, 173–181.
  13. 薛小勇, 姜自如. (2014). 乡土构树树种的利用价值与造林技术初探. 现代园艺, 24, 67–68.
  14. 薛小勇, 姜自如, 陈刚. (2014). 东海县核桃发展现状及对策. 北京农业, 33, 323–324.
  15. 姜自如, 张刚龙, 曹支敏, 周丽. 陕西省杨树溃疡病菌地理种群研究. 西北林学院学报, 27(2), 102–108.
  16. 姜自如, 曹支敏, 王培新, 陈祖静. 陕西省杨树水泡型溃疡病地理分布及寄主抗病性调查. 东北林业大学学报, 39(7), 91–98.
  17. 陈祖静, 曹支敏, 苟兴庆, 姜自如. 杨树与松杨栅锈菌互作中寄主活性氧及抗性相关酶变化. 林业科学, 46(8), 101–106.

国际学术会议

Selected academic meetings
  1. JIANG Zi-Ru, Omori Hideya. (2025). Mechanical properties of beetle elytra using nanoindentation. The 301st Symposium on Materials Testing Technology.
  2. JIANG Zi-Ru, TANOUE Momo, MASUYA Hayato, KURODA Keiko, KAJIMURA Hisashi. Effects of Fusarium fungi isolated from an ambrosia beetle, Euwallacea fornicatus, on mango tree saplings. The 133rd Annual JFS Meeting.
  3. JIANG Zi-Ru, MASUYA Hayato, KAMEYAMA Norikazu, KURODA Keiko, KAJIMURA Hisashi. Symbiotic fungi of Euwallacea fornicatus infesting mango trees in Okinawa main island. The 132nd Annual JFS Meeting.
  4. 三木尚輝, 姜自如, 木下峻一, 佐々木理, 升屋勇人, 梶村恒. トドマツオオキクイムシの菌嚢のX線マイクロCT観察及び共生菌の分離. The 131st Annual JFS Meeting.
  5. JIANG Zi-Ru, MORITA Takeshige, JIKUMARU Shota, KURODA Keiko, MASUYA Hayato, KAJIMURA Hisashi. Inoculation of both Fusarium sp. and Ceratocystis ficicola can bring fig saplings to early wilt. The 131st Annual JFS Meeting.
  6. JIANG Zi-Ru, MASUYA Hayato, KAJIMURA Hisashi. Comparison of fungal flora in female adults of an ambrosia beetle, Euwallacea interjectus, among wild and rearing populations. AMC2019.
  7. JIANG Zi-Ru, MASUYA Hayato, KAJIMURA Hisashi. Fungi isolated from an ambrosia beetle, Euwallacea interjectus, emerging from fig trees in Japan. The 130th Annual JFS Meeting.
  8. JIANG Zi-Ru, KAJIMURA Hisashi. Earwig prey on ambrosia beetle: a test for its predatory process and preference. The 78th Annual Meeting of the Entomological Society of Japan.
  9. JIANG Zi-Ru, KINOSHITA Shun-ichi, SASAKI Osamu, MASUYA Hayato, KAJIMURA Hisashi. Micro-CT scan of adult female Euwallacea interjectus and its mycangial fungi. The 129th Annual JFS Meeting.