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毛建丰
作者:| 发表时间:18-10-09| 阅读次数:

个人简介

毛建丰, 男, 1977年06月生,中国科学院植物研究所植物学博士,江南的注册网址副教授

E-mail:jianfeng.mao@bjfu.edu.cn


研究方向

树木优良性状形成的生物学基础


主持在研科研项目(国家级)

1、国家自然科学基金面上项目,31670664、中国重要松树资源生态适应性基因组学基础与未来气候条件下的种质资源利用、2017/01-2020/12、65万元、在研、主持。

2、国家自然科学基金面上项目,31370255、生殖隔离形式及物种形成连续性探究、2014/01-2017/12、80万元、在研、主持。


近五年主要学术研究成果

Peng L-P, Cai C-F, Zhong Y, Xu X-X, Xian H-L, Cheng F-Y,Mao J-F. (2017) Genetic analyses reveal independent domestication origins of the emerging oil cropPaeonia ostii, a tree peony with a long-term cultivation history.Scientific Reports.(二区,IF=4.259

Jin Y, Ma Y, Wang S, Hu X-G, Huang L-S, Li Y, Wang X-R,Mao J-F. (2016) Genetic evaluation of the breeding population of a valuable reforestation coniferPlatycladus orientalis(Cupressaceae).Scientific Reports6:34821.(二区,IF=5.228

Hu X-G, Liu H, Zhang J-Q, Sun Y-Q, Jin Y, Zhao W, El-Kassaby YA, Wang X-R,Mao J-F. (2016) Global transcriptome analysis ofSabina chinensis(Cupressaceae), a valuable reforestation conifer.Molecular Breeding36(7):1-15.(二区,IF=2.465

Hu X-G, Liu H, Jin Y, Sun Y-Q, Li Y, Zhao W, El-Kassaby YA, Wang X-R,Mao J-F. (2016)De novotranscriptome assembly and characterization for the widespread and stress-tolerant coniferPlatycladus orientalis.PLoS ONE11(2): e0148985.(三区,IF=2.806

Hu X-G, Jin Y, Wang X-R,Mao J-F, Li Y. (2015) Predicting impacts of future climate change on the distribution of the widespread coniferPlatycladus orientalis.PLoS ONE10(7): e0132326.(三区,IF=3.057

Bi Q, Jin Y, Guan W,Mao J-F. (2015a) Characterisation of EST-based SSR loci in the endangered tree Manchurian firAbies holophylla: a transcriptomic approach.Conservation Genetics Resources7(2): 415-418.(四区,IF=0.446

Bi Q,Mao J-F, Guan W. (2015b) Efficiently developing a large set of polymorphic EST-SSR markers for Xanthoceras sorbifolium by mining raw reads from high-throughput sequencing.Conservation Genetics Resources7(2): 423-425.(四区,IF=0.446

Jin Y, Bi Q, Guan W,Mao J-F. (2015) Development of 23 Novel Polymorphic EST-SSR Markers for the Endangered Relict Conifer Metasequoia glyptostroboides.Applications in Plant Sciences3(9): 1500038.(无分区,IF=0.911

Zhao W, Meng JX, Wang BS, Zhang LS, Xu YL, Zeng QY,Mao J-F, et al. (2014) Weak crossability barrier but strong juvenile selection supports ecological speciation of the hybrid pinePinus densataon the Tibetan Plateau.Evolution. 68(11):3120-33.(环境科学一区、进化生物学二区,IF=4.612

Mao J-F, Cui B-B, Zhang Z-Y, Liu H, Li Y-Y. (2015) Development of 36 novel polymorphic microsatellites for the critically endangered treePinus squamaia, by transcriptome database mining.Conservation Genetics Resources7(1):93-94.(四区,IF=0.446

Wang B,Mao J-F,Zhao W, Wang X-R (2013) Impact of Geography and Climate on the Genetic Differentiation of the Subtropical PinePinus yunnanensis.PLoS ONE8(6): e67345. doi:10.1371/journal.pone.0067345. (co-first author)(三区,IF=3.534

Liu P, Xie L, Li P,Mao J-F,Liu H, Gao S-M, Shi P-H, Gong J-Q. Duplication and Divergence of Leucine-Rich Repeat Receptor-Like Protein Kinase (LRR-RLK) Genes in Basal AngiospermAmborella trichopoda.Frontiers in Plant Science, 2016, 7:1952.(二区,IF=4.298

OuYang F,Mao J-F, Wang J, Zhang S, Li Y. (2015) Transcriptome analysis reveals that red and blue light regulate growth and phytohormone metabolism in Norway spruce [Picea abies(L.) Karst.].PLoS ONE10(8): e0127896.(三区,IF=3.057

Huang Y,Mao J-F, Chen Z, Meng J, Xu Y, Duan A, Li Y. (2016) Genetic structure of needle morphological and anatomical traits ofPinus yunnanensis.Journal of Forestry Research27(1): 13-25.(四区,IF=0.774

Zhang Z-Y, Cui B-B,Mao J-F, Pang X-M, Liu H, Li Y-Y. (2015) Novel polymorphic EST-derived microsatellite markers for the red-listed five needle pine,Pinus dabeshanensis.Conservation Genetics Resources7(1): 191-192.(四区,IF=0.446

Xu Y, Cai N, He B, Zhang R, Zhao W,Mao J-F, Duan A, Li Y, Woeste K. (2016) Germination and early seedling growth ofPinus densataMast. provenances.Journal of Forestry Research27(2): 283-294.(四区,IF=0.774

Zhang Z-Y, Cui B,Mao J-F,Pang X-M, Li Y-Y. (2014) Isolation and characterization of thirty-eight microsatellite loci for thePinus wangii, an endangered species.Conservation Genetics Resources:7(2):397-98.(四区,IF=1.172

Pan J, Wang B, Pei Z-Y, Zhao W, Gao J,Mao J-F, et al. (2014) Optimization of the genotyping-by-sequencing strategy for population genomic analysis in conifers.Molecular Ecology Resources. 15(4):711-22.(二区,IF=3.712

Xing F,Mao J-F, Meng J, Dai J, Zhao W, Liu H, et al. (2014) Needle morphological evidence of the homoploid hybrid origin ofPinus densatabased on analysis of artificial hybrids and the putative parents,Pinus tabuliformisandPinus yunnanensis.Ecology and Evolution.4(10):1890-902.(四区,IF=2.32

Dong C-B,Mao J-F, Suo Y-J, Shi L, Wang J, Zhang P-D, et al. (2014) A strategy for characterization of persistent heteroduplex DNA in higher plants.The Plant Journal. 80(2):282-91.(一区,IF=5.972

Liang D,Mao J-F, Zhao W, Wang X-R, and Li Y. (2013) Seedling performance of hybrid pinePinus densataand its parental species in the habitat ofP. tabuliformis.Acta Phytoecologica Sinica37: 150-163. (in Chinese, with English abstract)

Gao J, Wang B,Mao J-F,Ingvarsson P, Zeng QY, Wang XR (2012) Demography and speciation history of the homoploid hybrid pinePinus densataon the Tibetan Plateau.Molecular Ecology21: 4811-27.(一区,IF=7.432

Zhang L-S, Dai J-F, Gao Q, Liu H, Zhang H, Zhao W,Mao J-F, Li Y. (2012) Seedling adaptation of hybrid pinePinus densataand its parental species in the high elevation habitat.Journal of Beijing Forestry University34(5): 15-24(in Chinese, with English abstract)

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