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呼和

发布时间:2019-09-21浏览次数:


ok138cn太阳集团529  副教授

通讯地址:呼和浩特市锡林郭勒南路49号,

邮编010020

Emailhuhezhou@imu.edu.cn

 


教育背景                                  

2007/4-2011/3      日本筑波大学生命环境科学学院持续环境学专攻 博士生

2005/4-2007/3      日本筑波大学生命环境科学学院环境学专攻          硕士生

2004/4-2005/3      日本筑波大学生命环境科学学院环境学专攻          研究生

1997/9-2001/7      OK138太阳集团生命环境科学学院生态与环境科学系 本科生



工作经历

2018/11-至今          ok138cn太阳集团529            副教授

2013/04-2018/10     甘肃省农业科学院                           副研究员

2011/04-2013/03     日本筑波大学生命环境科学学院  特别研究员

2001/08-2004/03     内蒙古测绘局航空遥感测绘院       助理工程师



研究方向

长期从事环境微生物学和微生物生态学研究,目前主要关注土壤微生物氮循环、草原奶食品微生物、固体废物资源化、以及生物土壤结皮等。

 


相关课程

本科生:微生物学

研究生:废物资源化与生物能源、微生物生态学



主持及参加项目

       1.国家自然科学基金项目“放牧利用影响荒漠草原土壤同工固氮基因多样性和潜在活性的研究”32460024,2025-2028),主持。

2.内蒙古自治区科技计划项目“退化草地修复与生态系统功能协同提升的关键技术集成与示范”2025YFDZ0142,2025-2028),主持。

3.内蒙古自治区科技计划项目“草甸草原修复技术研发与生态功能提升路径研究”2022YFDZ0040,2022-2025),课题主持。

4.OK138太阳集团“高层次人才启动基金”(21800-5195116,2019-2021),主持。

5.国家自然科学基金项目“半干旱区农耕地不同管理措施对自生固氮菌和总细菌群落的影响(31460029, 2015-2018,主持。

6.陇原青年创新人才扶持计划“黄土高原贫瘠土壤改良研究” (2016-2018),主持。

7.甘肃省农业科学院农业科技创新专项“粪便处理及肥料化利用关键技术研究示范”(2013GAAS04-04,2013-2016), 主持。

8.草地农业生态系统国家重点实验室项目“不同放牧强度草地中大气氮沉降对氨氧化微生物类群的影响机制”(SKLGAE201407,2014-2016,主持。

       9.“Scientific development on the environmental bioremediation technology”, a part work of Grant-in-Aid for Scientific Research (B ), funded by a grant (21310050) from the Japan’s Ministry of Education, Culture, Sports, Science & Technology (MEXT) (2009-2013),参加。

      10.“New development of bioremediation based on analyses of microbial functions”, a part work of Grant-in-Aid for Scientific Research (B ), funded by a grant (18310051) from the Japan’s Ministry of Education, Culture, Sports, Science & Technology (MEXT) (2006-2008), 参加。



发表论文

1.Meng LX,Guo JY, He JCheng YX,Huhe*. (2026) Straw incorporation affects soil organic carbon pools by modulating microbial communities and associated metabolic activities. Catena. 265: 109871.

2.Fu TY, Jia ZY, Cheng YX, Huhe*, Tsubo M, Ma WH, Zhao LQ, Ai RY, Huang XY, Li MY. (2025) Aridity-induced nonlinear shifts in soil organic carbon across Chinese grasslands. Ecological Indicators. 178: 114037.

3.Meng LX, Xu CX, Wu FL, Huhe*. (2022) Microbial co-occurrence networks driven by low-abundance microbial taxa during composting dominate lignocellulose degradation. Science of The Total Environment. 845:157197.

4.Yin Y, Yuan Y, Zhang X, Huhe*, Cheng Y, Borjigin S. (2022) Comparison of the Responses of Soil Fungal Community to Straw, Inorganic Fertilizer, and Compost in a Farmland in the Loess Plateau. Microbiology Spectrum. 10: e0223021.

5.Huhe, Jiang C, Wu Y, Cheng Y. (2017) Bacterial and fungal communities and contribution of physicochemical factors during cattle farm waste composting. MicrobiologyOpen. e518.

6.Huhe, Chen X, Hou F, Wu Y, Cheng Y. (2017) Bacterial and Fungal Community Structures in Loess Plateau Grasslands with Different Grazing Intensities. Frontiers in Microbiology. 8:606.

7.Huhe, Borjigin S, Buhebaoyin, Wu Y, Li M, Cheng Y. (2016) Microbial Nitrogen-Cycle Gene Abundance in Soil of Cropland Abandoned for Different Periods. PLoS ONE. 11: e0154697.

8.Wanjun Zhang, Huhe, Yuanbai Pan, Yunxiang Cheng and Hiroo Uchiyama. (2015) Dechlorination of Chloral Hydrate by Pseudomonas putida LF54 which Possesses Biofilm Adhesin Protein LapA. In Mohammad MS (ed), Microbiology in Agriculture and Human Health. InTech Open, Rijeka, Croatia. doi:.10.5772/60861.

9.Huhe, Borjigin S, Cheng YX, Nomura N, Nakajima T, Nakamura T, Uchiyama H (2014) Effect of Abandonment on Diversity and Abundance of Free-Living Nitrogen-Fixing Bacteria and Total Bacteria in the Cropland Soils of Hulun Buir, Inner Mongolia. PLoS ONE 9:e106714.

10.Wanjun Zhang, Huhe, Yuanbai Pan, Masanori Toyofuku, Nobuhiko Nomura, Toshiaki Nakajima and Hiroo Uchiyama. (2013) Dechlorination of Chloral Hydrate Is Influenced by the Biofilm Adhesin Protein LapA in Pseudomonas putida LF54. Applied and Environmental Microbiology. 79: 4166-4169.

11.Huhe, Nobuhiko Nomura, Toshiaki Nakajima and Hiroo Uchiyama.(2011)Assimilative and Co-metabolic Degradation of Chloral Hydrate by Bacteria and their Bioremediation Potential. Journal of Bioscience and Bioengineering. 111: 448-453.

12.孟令旭,贾彩玲, 张潇文,呼和* (2023) 高寒草甸土壤细菌群落多样性和共现性网络对牦牛觅食强度的响应. 草地学报, 31:9-18.

13.呼和,陈先江,程云湘 (2016) 撂荒地亚硝酸还原酶基因nirKnirS 丰度动态. 草业科学. 7:1253-1259.

14.宋娅妮,呼和,程云湘,侯扶江,常生华(2018) 放牧对草地生态系统温室气体的影响. 草业科学. 35:256-265.



专利

呼和;王佳欣;马韶华;张泽华;叶孙虎: 一种草地建植用草种混播设备及播种方法, ZL 2025 1 0074967.2.

呼和;王佳欣;叶孙虎;马韶华:一种不同层土壤微生物活性检测装置,ZL 2025 1 0219209.5.

呼和;张泽华;郭洁云;周冰逸:一种沙化草地植被恢复防护装置及种植方法,ZL 2025 1 0753611.1.

呼和;阿力木斯;新其乐图;于达喜;布仁布和;吴景胜: 一种生物降解厕所, ZL 2021 2 0871896.6.

呼和;阿力木斯;新其乐图;于达喜;布仁布和;吴景胜: 一种搅拌装置及具有搅拌装置的生物降解厕所, ZL 2021 2 0871856.1.

呼和;杨发荣;李金娟: 半自动好氧堆肥装置,ZL 2015 2 0608948.5.

袁冶;呼和: 一种组合式土壤筛, ZL 2021 21 123490.6.



学术会议

1.Huhe, Nobuhiko Nomura, Toshiaki Nakajima and Hiroo Uchiyama. Assimilation Degradation of Chloral Hydrate by a Bacterium Isolated from Soil. The 14th International Biotechnology Symposium and Exhibition (IBS 2010), (Rimini, Italy, Sep. 14-18, 2010)

2.Huhe, Nobuhiko Nomura, Toshiaki Nakajima and Hiroo Uchiyama. Studies on microbiological remediation of chloral hydrate polluted soil. The 13th International Biotechnology Symposium and Exhibition (IBS 2008), (Dalian, China, Oct. 12-17, 2008)

3.呼和野村暢彦中島敏明内山裕夫 各種土壌の抱水クロラール生分解性と分解菌の検索環境バイオテクノロジ-学会Environmental Biotechnology大阪 200762526

4.呼和、野村暢彦、中島敏明、内山裕夫 抱水クロラール分解菌の単離と分解特性の解環境バイオテクノロジ-学会Environmental Biotechnologyつくば 200862527

5.呼和野村暢彦中島敏明内山裕夫 抱水クロラール分解菌の特性と土壌浄化への応用環境バイオテクノロジ-学会Environmental Biotechnology東京 200962324

6.Huhe, Shinchilelt Borjigin, Buhebaoyin, Yanpei Wu, Minquan Li, and Yunxiang Cheng. Abundance of Microbial Nitrogen Cycle Genes in Abandoned Croplands in Hulun Buir, Inner Mongolia, 2014年农业资源与环境全国博士生学术论坛 杨凌 2014101719