2023:
Feng Chao#, Wang Jing#, Liston Aaron, Kang Ming*. Recombination variation shapes phylogeny and introgression in wild diploid strawberries. Molecular Biology and Evolution 2023, 40:msad049.(IF5y = 15.1)
Yang Lihua, Harris A. J., Wen Fang, Li Zheng, Feng Chao, Kong Hanghui, Kang Ming*. Phylogenomic analyses reveal an allopolyploid origin of core Didymocarpinae (Gesneriaceae) followed by rapid radiation. Systematic Biology 2023, doi:10.1093/sysbio/syad029.(IF5y = 11)
2022:
Lin Xinggu#, Feng Chao#, Lin Tao, Harris A.J., Li Yingzhi*, Kang Ming*. Jackfruit genome and population genomics provide insights into fruit evolution and domestication history in China. Horticulture Research 2022, 9:ubac173.(IF5y = 9;共同一作)
Chen Lianfu#, Feng Chao#, Wang Rong, Nong Xiaojue, Deng Xiaoxia, Chen Xiaoyong*, Yu Hui*. A chromosome-level genome assembly of the pollinating fig wasp Valisia javana. DNA Research 2022, 29:dsac014.(共同一作)
Hu Yuxi, Feng Chao, Yang Lihua, Edger Patrick P., Kang Ming*. Genomic population structure and local adaptation of the wild strawberry Fragaria nilgerrensis. Horticulture Research 2022, 9:uhab059.(IF5y = 9)
Kong Hanghui, Condamine Fabien L., Yang Lihua, Harris, A. J., Feng Chao, Wen Fang, Kang Ming*. Phylogenomic and macroevolutionary evidence for an explosive radiation of a plant genus in the Miocene. Systematic Biology 2022, 71:589–609.(IF5y = 11)
Gao Yong#, Zhang Yanan#, Feng Chen#, Chu Honglong, Feng Chao, Wang Haibo, Wu Lifang, Yin Si, Liu Chao, Chen Huanhuan, Li Zhumei, Zou Zhengrong*, Tang Lizhou*. A chromosome-level genome assembly of Amorphophallus konjac provides insights into konjac glucomannan biosynthesis. Computational and Structural Biotechnology Journal 2022, 20:1002–1011.
2021:
Feng Chao#, Wang Jing#, Harris A. J., Folta Kevin M., Zhao Mizhao*, Kang Ming*. Tracing the diploid ancestry of the cultivated octoploid strawberry. Molecular Biology and Evolution 2021, 38:478–485.(IF5y = 15.1)
Feng Chen, Feng Chao, Lin Xinggu, Liu Shenghui, Li Yingzhi, Kang Ming*. A chromosome-level genome assembly provides insights into ascorbic acid accumulation and fruit softening in guava (Psidium guajava). Plant Biotechnology Journal 2021, 19:717–730.(IF5y = 13.2)
2020:
Feng Chao, Wang Jing, Wu Lingqing, Kong Hanghui, Yang Lihua, Feng Chen, Wang Kai*, Rausher Mark*, Kang Ming*. The genome of a cave plant, Primulina huaijiensis, provides insights into adaptation to limestone karst habitats. New Phytologist 2020, 227:1249–1263.(IF5y = 10.5;该成果收录于2017–2022年中国植物系统和进化生物学研究进展)
Liu Chaoyang#, Feng Chao#, Peng Weizhuo, Hao Jingjing, Wang Juntao, Pan Jianjun, He Yehua*. Chromosome-level draft genome of a diploid plum (Prunus salicina). GigaScience 2020, 9:giaa130.(IF5y = 9.3;共同一作)
Feng Chen, Ding Dehui, Feng Chao*, Kang Ming. The identification of an R2R3-MYB transcription factor involved in regulating anthocyanin biosynthesis in Primulina swinglei flowers. Gene 2020, 752:144788.(唯一通讯)
2012–2019:
Feng Chao, Xu Meizhen, Feng Chen, von Wettberg Eric J.B., Kang Ming*. The complete chloroplast genome of Primulina and two novel strategies for development of high polymorphic loci for population genetic and phylogenetic studies. BMC Evolutionary Biology 2017, 17:224.(该成果收录于2017年中国植物科学若干领域重要研究进展)
Feng Chao, Xu Changjie, Wang Yue, Liu Wenli, Yin Xueren, Li Xian, Chen Ming, Chen Kunsong*. Codon usage patterns in Chinese bayberry (Myrica rubra) based on RNA-Seq data. BMC Genomics 2013, 14:732.
Feng Chao#, Chen Ming#, Xu Changji, Bai Lin, Yin Xueren, Li Xian, Allan Andrew C., Ferguson Ian B., Chen Kunsong*. Transcriptomic analysis of Chinese bayberry (Myrica rubra) fruit development and ripening using RNA-Seq. BMC Genomics 2012, 13:19.(被引250余次)
Zhang Qiuyun#, Feng Chao#, Li Wenhui, Qu Zehui, Zheng Ming, Xi Wanpeng*. Transcriptional regulatory networks controlling taste and aroma quality of apricot (Prunus armeniaca L.) fruit during ripening. BMC Genomics 2019, 20:45.(共同一作)
胡彬,丁德辉,傅秀敏,冯超*,康明. 钟冠报春苣苔花发育进程中花色素苷含量的变化. 园艺学报 2018, 45:117–125.(唯一通讯)
冯超,朱长青,徐昌杰,陈昆松*. RNA-Seq在果树学研究中的应用. 果树学报 2014, 31:115–124. (该成果入选“中国精品科技期刊顶尖学术论文领跑者F5000”)
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