[1] Rice sucrose partitioning mediated by a putative pectin methyltransferase and homogalacturonan methylesterification. Plant Physiology, 2017, doi: http://dx.doi.org/10.1104/pp.16.01555(通讯作者)
[2] Overexpression of the FRI family gene, PvFRIL, from Phyllostachys violascens delays flowering time in transgenic Arabidopsis thaliana. Biologia Plantarum, 2016, 60(3): 401-409(通讯作者,ESI热点论文)
[3] Overexpression of PvPin1, a Bamboo Homolog of PIN1-Type Parvulin 1, Delays Flowering Time in Transgenic Arabidopsis and Rice. Front. Plant Sci. 2017, 8:1526. doi: 10.3389/fpls.2017.01526(通讯作者)
[4] Ectopic expression of a SOC1 homolog from Phyllostachys violascens alters flowering time and identity of floral organs in Arabidopsis thaliana. Trees –Structure and function, 2016, 30:2203-2215(通讯作者)
[5]Bamboo NiR gene is associated with regeneration capacity, The Journal of Horticultural Science and Biotechnology, 2017, DOI: 10.1080/14620316.2017.1353894(通讯作者)
[6] Callus induction and plant regeneration from lateral shoots of herbaceous bamboo Mniochloa abersend. The Journal of Horticultural Science and Biotechnology, DOI: 10.1080/14620316.2016.1232610(通讯作者)
[7] Callus induction and regeneration via shoot tips of Dendrocalamus hamiltonii. SpringerPlus, 2016 5:1799(通讯作者)
[8] Functional analysis of PI-like gene in relation to flower development from bamboo (Bambusa oldhamii). Journal of Genetics, 2016, 95: 71-78(通讯作者)
[9] Ectopic expression of PvSOC1, a homolog of SOC1 from Phyllostachys violascens, promotes flowering in Arabidopsis and rice. Acta Physiologiae Plantarum, 2016, 38:166(通讯作者)
[10] Ectopic expression of the BoTFL1-like gene of Bambusa oldhamii delays blossoming in Arabidopsis thaliana and rescues the tfl1 mutant phenotype. Genetics and Molecular Research, 2015, 14(3): 9306-9317 (通讯作者)
[11] Apparent digestibility of diet dominantly comprised of Phyllostachys vivax bamboo shoots for captive gigant pandas. The Journal of Animal & Plant Sciences,2015,25(3):612-617 (通讯作者)
[12] Fengshui forests conserve genetic diversity: a case study of Phoebe bournei (Hemsl.)Yang in southern China. Genetics and molecular research, 2015,14 (1): 1986-1993(通讯作者)
[13] Physiological and biochemical responses of Phoebe bournei seedlings to water stress and recovery. Acta Physiol Plant, 2014, 36: 1241-1250(通讯作者)
授权发明专利:
[1] 版纳甜龙竹NiR基因及其应用, 2018, ZL2015106305949(第一)
[2] 一种利用绿竹花芽进行快速高效再生体系的建立方法,2017,ZL201510538173.3(第一)
[3] 藓竺竹高效再生体系的建立方法,2017,ZL201510538282.5(第一)
[4] 建立版纳甜龙竹芽尖高效再生体系的方法,2015,ZL201410041069.9(第一)
[5] 牛樟体胚培养基及组培快繁方法,2011,ZL200810121612.0(第一)
[6] 紫竹组织培养基及组培快繁方法,2010,ZL200810063384.6(第一)
品种:
[1]林新春,汤定钦, 何钧潮, 沈振明. 良种:弯秆雷竹. 浙江省林木品种审定委员会,2015
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