日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Phenogenomics reveals the ecology and evolution of Trichoderma fungi for sustainable agriculture

表型基因组学揭示了木霉属真菌的生态和进化,以促进可持续农业发展。

Steindorff, Andrei S; Cai, Feng M; Ding, Mingyue; Jiang, Siqi; Atanasova, Lea; Baker, Scott E; Barbosa-Filho, Jomal Rodrigues; Bayram Akcapinar, Gunseli; Brown, Daren W; Chaverri, Priscila; Chen, Peijie; Chenthamara, Komal; Daum, Chris; Drula, Elodie; Dubey, Mukesh; Brandström Durling, Mikael; Flatschacher, Daniel; Ebner, Thomas; Emri, Tamás; Gao, Renwei; Georg, Raphaela Castro; Henrissat, Bernard; Hermosa, Rosa; Herrera-Estrella, Alfredo; Hinterdobler, Wolfgang; Kainz, Philipp; Karlsson, Magnus; Kredics, László; Kubicek, Christian P; Kuo, Alan; LaButti, Kurt; Lipzen, Anna; Lorito, Matteo; Mach, Robert L; Manganiello, Gelsomina; Marik, Tamás; Martinez-Reyes, Natalia; Mayrhofer-Reinhartshuber, Michael; Miskei, Márton; Moisan, Marie-Claude; Mondo, Stephen; Monte, Enrique; Ng, Vivian; Pang, Guan; Pangilinan, Jasmyn; Peng, Mao; Piombo, Edoardo; Pócsi, István; Rahimi, Mohammad Javad; Reddy, Sumitha K; Riley, Robert; Sarrocco, Sabrina; Schmal, Matthias; Schmoll, Monika; Szűcs, Attila; Woo, Sheridan L; Yarden, Oded; Zeilinger, Susanne; Zimmermann, Christian; Shelest, Ekaterina; Tsang, Adrian; Berka, Randy; de Vries, Ronald P; Grigoriev, Igor V; Druzhinina, Irina S

l-2-Hydroxyglutarate impairs neuronal differentiation through epigenetic activation of MYC expression

2-羟基戊二酸通过表观遗传激活MYC表达来损害神经元分化。

Gu, Wen; Wang, Xun; Solmonson, Ashley; Cai, Ling; Xiao, Yi; Tasdogan, Alpaslan; Franklin, Jordan; Zhang, Yuannyu; Zhang, Hua; Westfall, Aundrea K; Rowe, Ashley; Trivedi, Hetali; Faubert, Brandon; Wu, Zheng; Sudderth, Jessica; Zacharias, Lauren G; Afroze, Bushra; Bezprozvanny, Ilya; Sudarshan, Sunil; Cai, Feng; McBrayer, Samuel K; Mathews, Thomas P; DeBerardinis, Ralph J

Bifidobacterium animalis subsp. lactis BL-16 fermented Astragali Radix (W16) promotes the bone growth of juvenile rats via modulation of IGF-1 and gut microbiota

动物双歧杆菌乳亚种BL-16发酵黄芪(W16)通过调节IGF-1和肠道菌群促进幼鼠骨骼生长。

Liu, Ziyi; Cao, Ying; Yang, Yanan; Cheng, Jiale; Zhang, Jiacheng; Cong, Tianjiao; Zhang, Qinghang; Cui, Lei; Cai, Feng; Duan, Yunfeng; Wu, Chongming

Dual Biocontrol and Plant Growth-Promoting Effects of Trichoderma nordicum V1 Against Oomycete Plant Pathogens

北欧木霉V1对卵菌植物病原菌的双重生物防治和植物生长促进作用

Li, Songrong; Wen, Xian; Chen, Siqiao; Zhao, Yishen; Chen, Jinhao; Li, Wanrong; Chen, Yajuan; Ding, Mingyue; Jiang, Siqi; Anjago, Wilfred Mabeche; Zhou, Dongmei; Cai, Feng M; Druzhinina, Irina S; Jiu, Min; Wei, Lihui; Daly, Paul

Identification and Characterization of Botryosphaeria dothidea Associated with Sweet Cherry (Prunus avium L.) Branch Dieback Disease in Greenhouses of Liaoning, China

中国辽宁温室甜樱桃(Prunus avium L.)枝枯病相关真菌Botryosphaeria dothidea的鉴定与表征

Dai, Qidong; Zhang, Qijing; Chen, Yao; Cai, Feng; He, Mingli; Ai, Jiayin

Coronary computed tomography angiography adipose tissue attenuation in diabetic patients with myocardial ischemia and non-obstructive coronary arteries

冠状动脉计算机断层扫描血管造影显示,糖尿病合并心肌缺血和非阻塞性冠状动脉患者的脂肪组织衰减情况

Su, Kai-Xiang; Jiang, Si-Yu; Pang, Cai-Feng; Yang, Fan; Tang, Yu-Qing; Li, Xiao-Gang; He, Wen-Feng; Li, Rui

Diversity of Trichoderma in the unexplored Bolivian Amazon region and their potential for coffee diseases control

玻利维亚亚马逊未开发地区木霉菌的多样性及其在咖啡病害防治中的应用潜力

Mamani, Marisel M; Catacora, Lilia; Nina, Nélida; Tola, Wendy D; Cai, Feng M; Rydén, Jesper; Druzhinina, Irina S; Jensen, Dan Funck; Crespo, Carla F; Karlsson, Magnus; Dubey, Mukesh

UFMylation of Pyruvate Dehydrogenase Regulates Mitochondrial Metabolism

丙酮酸脱氢酶的UFMylation修饰调节线粒体代谢

Nguyen, Phong T; Wu, Zheng; Kim, Dohun; Ogu, Tamaratare; Yin, Siyu; Sondhi, Varun; Cai, Feng; Tippetts, Trevor S; Jen, Annie; Shishkova, Evgenia; Cai, Ling; Dumesnil, Dennis; Cervantes, Margaret; Chen, Hongli; Mishra, Prashant; Coon, Joshua J; Hoxhaj, Gerta; Ni, Min; DeBerardinis, Ralph J

Glycosaminoglycan-driven lipoprotein uptake protects tumours from ferroptosis.

糖胺聚糖驱动的脂蛋白摄取可保护肿瘤细胞免受铁死亡的影响

Calhoon Dylan, Sang Lingjie, Ji Fubo, Bezwada Divya, Hsu Sheng-Chieh, Cai Feng, Kim Nathaniel, Basu Amrita, Wu Renfei, Pimentel Anastasia, Brooks Bailey, La Konnor, Paulina Serrano Ana, Cassidy Daniel L, Cai Ling, Toffessi-Tcheuyap Vanina, Moussa Maryam E, Uritboonthai Winnie, Hoang Linh Truc, Kolli Meghana, Jackson Brooklyn, Margulis Vitaly, Siuzdak Gary, Brugarolas James, Corbin Ian, Pratt Derek A, Weiss Ryan J, DeBerardinis Ralph J, Birsoy Kıvanç, Garcia-Bermudez Javier

NUDT5 regulates purine metabolism and thiopurine sensitivity by interacting with PPAT

NUDT5 通过与 PPAT 相互作用来调节嘌呤代谢和硫嘌呤敏感性。

Wu, Zheng; Nguyen, Phong T; Sondhi, Varun; Yao, Run-Wen; Lu, Zhifang; Dai, Tao; Chiang, Jui-Chung; Cai, Feng; Williams, Imani M; Blatt, Eliot B; Shang, Zengfu; Cai, Ling; Zhang, Jing; Moore, Mya D; Alshamleh, Islam; Li, Xiangyi; Ogu, Tamaratare; Zacharias, Lauren G; Winston, Rainah; Patricio, Joao S; Johnson, Xandria; Chen, Wei-Min; Cong, Qian; Mathews, Thomas P; Zhang, Yuanyuan; Zhang, Limei; DeBerardinis, Ralph J