發(fā)明專利及獲獎情況專利:
Arioli, T., Williamson, R.E., Betzner, A.S., Peng, L., Manipulation of cellulose and/or β–1,4-glucan. International Patent Application No. PCT/AU97/00402, ANU and CSIRO, Australia.
發(fā)表的論文及著作主要論文( #為第一作者(Equal contributors);*為通訊作者(Correspondence);IF為五年平均影響因子(5-year IF);被引次數(shù)截止日期為2013年12月17日):
標(biāo)志性成果
1.Peng, L., Kawagoe, Y., Hogan, P., and Delmer, D.*, Sitosterol-β-1,4-glucoside as primer for cellulose synthesis in plants. Science, 295:147-150, 2002. (IF: 32.45,被引次數(shù):255).
2.Arioli, T., Peng, L., Betzner, A. S., Burn, J., Wittke, W., Herth, W., Camilleri, C., Hofte, H., Plazinski, J., Birch, R., Cork, A., Glover, J., Redmond, J., and Williamson, R. E.*, Molecular analysis of cellulose biosynthesis in Arabidopsis. Science, 279:717-720, 1998. (被引次數(shù):517).
近期成果
3.Li, F. #, Zhang, M. #, Hu, Z., Zhang, R., Feng, S., Yi, X., Zou, W., Wang, L., Wu, C., Tian, J., Lu, T., Xie, G.*, Peng, L,*. High-level arabinose predominately affects cellulose crystallinity for genetic enhancing both plant lodging resistance and biomass enzymatic digestibility in rice mutants. Plant Biotechnology Journal, 2014, In press
4.Li, M.#, Si, S,#, Hao, B., Zha, Y., Wan, C., Hong, S., Kang, Y., Jia, J., Zhang, J., Li, M., Zhao, C., Tu, Y., Zhou, S., Peng, L.*. Mild alkali-pretreatment effectively extracts guaiacyl-rich lignin for high lignocellulose digestibility coupled with largely diminishing yeast fermentation inhibitors inMiscanthus. Bioresource Technology, 169: 447-454, 2014.
5.Li, M.#, Feng, S.#, Wu, Z., Li, Y., Fan, C., Zhang, R., Zou, W., Tu, Y., Jing, H., Li, S., Peng, L.*. Sugar-rich sweet sorghum is distinctively affected by wall polymer features for biomass digestibility and ethanol fermentation in bagasse. Bioresource Technology, 167: 14-23, 2014.
6.Guo, K., Zou, W., Feng, Y., Zhang, M., Zhang, J., Tu, F., Xie, G., Wang, L., Wang, Y., Klie, S., Persson, S., Peng, L.*. An integrated genomic and metabolomic framework for cell wall biology in rice. BMC Genomics, 15: 596, 2014.
7.Jia, J.#, Yu, B.#, Wu, L., Wang, H., Wu, Z., Li, M., Huang, P., Feng, S., Chen, P., Zheng, Y., Peng, L.*. Biomass Enzymatic Saccharification Is Determined by the Non-KOH-Extractable Wall Polymer Features That Predominately Affect Cellulose Crystallinity in Corn. PLoS ONE, 9(9): e108449, 2014.
8.Li, X., Xia, X.*, Huang, J., Guo, K., Liu, X., Chen, T., Xu, W., Wang, X., Feng, S., Peng, L.*. Distinct biochemical activities and heat shock responses of two UDP-glucose sterol glucosyltransferases in cotton. Plant Science, 219-220: 1-8, 2014.
9.Li, Z. #, Zhao, C.#, Zha, Y., Wan, W., Si, S., Liu, F., Zhang, R., Li, F., Yu, B., Yi, Z., Xu, N., Peng, L., Li, Q.*. The Minor Wall-Networks between Monolignols and Interlinked-Phenolics Predominantly Affect Biomass Enzymatic Digestibility in Miscanthus. PLoS ONE, 9(8): e105115, 2014.
10.Wu, Z., Hao, H., Zahoor, Tu, Y., Hu, Z., Wei, F., Liu, Y., Zhou, X., Wang, Y., Xie, G., Gao, C., Cai, C., Peng, L., Wang, L.*. Diverse cell wall composition and varied biomass digestibility in wheat straw for bioenergy feedstock. Biomass and Bioenergy, 1-9, 2014.
11.Wu, Z.#, Zhang, M.#, Wang, L.*, Tu, Y., Zhang, J., Xie, G., Zou, W., Li, F., Guo, K., Li, Q., Gao, C., Peng, L.*. Biomass digestibility is predominantly affected by three factors of wall polymer features distinctive in wheat accessions and rice mutants. Biotechnology for Biofuels, 6: 183, 2014.(IF: 6.46)
12.Li, A., Xia T., Xu W., Chen, T., Li X., Fan J., Wang, R., Feng, S., Wang, Y., Wang, B., Peng, L.*, An integrative and comparative analysis of four CESA isoforms specific for fiber cellulose production between Gossypium hirsutum and Gossypium barbadense. Planta, 237(6): 1585-1597, 2013.
13.Xie, G., Yang, B., Xu, Z., Li, F., Guo, K., Zhang, M., Wang, L., Zou, W., Wang, Y., and Peng, L.*, Global identification of multiple OsGH9 family members and their involvement in cellulose crystallinity modification in rice. PLoS ONE, 8(1):e50171, 2013.(IF: 4.54, 被引次數(shù): 1).
14.Zhang, W., Yi Z., Huang, J., Li, F., Hao, B., Li, M., Hong, S., Lv, Y., Sun, W., Ragauskas, A., Hu, F., Peng, J., and Peng, L.*, Three lignocellulose features that distinctively affect biomass enzymatic digestibility under NaOH and H2SO4 pretreatments in Miscanthus. Bioresource Technology, 130:30-37, 2013. (IF: 5.35).
15.Li, F., Ren, S., Zhang, W., Xu, Z., Xie, G., Chen, Y., Tu, Y., Li, Q., Zhou, S., Li, Y., Tu, F., Liu, L., Wang, Y., Jiang, J., Qin, J., Li, S., Li, Q., Jing, H., Zhou, F., Gutterson, N., and Peng, L.*, Arabinose substitution degree in xylan positively affects lignocellulose enzymatic digestibility after various NaOH/H2SO4 pretreatments in Miscanthus. Bioresource Technology, 130:629-637, 2013.
16.Sun, H., Li, Y., Feng, S., Zou, W., Guo, K., Fan, C., Si, S., and Peng, L.*, Analysis of five rice 4-coumarate: coenzyme A ligase enzyme activity and stress response for potential roles in lignin and flavonoid biosynthesis in rice. Biochemical and Biophysical Research Communications, 430(3):1151-6, 2013. (IF: 2.52).
17.Xu, N., Zhang, W., Ren, S., Liu, F., Zhao, C., Liao, H., Xu, Z., Li, Q., Tu, Y., Yu, B., Wang, Y., Jiang, J., Qin, J., and Peng, L.*, Hemicelluloses negatively affect lignocellulose crystallinity for high biomass digestibility under NaOH and H2SO4 pretreatments in Miscanthus. Biotechnology for Biofuels, 5(1):58, 2012. (IF: 7.01, 被引次數(shù):4).
18.Huang, J., Xia, T., Li, A., Yu, B., Li, Q., Tu, Y., Zhang, W., Yi, Z., and Peng, L.*, A rapid and consistent near infrared spectroscopic assay for biomass enzymatic digestibility upon various physical and chemical pretreatments in Miscanthus. Bioresource Technology, 121:274-281, 2012.
19.Xie, G., Peng, L.*, Genetic engineering of energy crops: A strategy for biofuel production in China. Journal of Integrative Plant Biology, 53:143-150, 2011. (IF: 2.53, 被引次數(shù):12).
20.Peng, L.*, Gutterson, N., Energy crop and biotechnology for biofuel production- meeting report. Journal of Integrative Plant Biology, 53:89-92, 2011. (IF: 2.53, 被引次數(shù):3).
21.Wang, L., Guo, K., Li, Y., Tu, Y., Hu, H., Wang, B., Cui, X., and Peng, L.*, Expression profiling and integrative analysis of the CESA/CSL superfamily in rice. BMC Plant Biology, 10:282-298, 2010. (IF: 4.18,被引次數(shù):16).
22.王艷婷, 徐正丹, 彭良才*. 植物細(xì)胞壁溝槽結(jié)構(gòu)與生物質(zhì)利用研究展望. 中國科學(xué):生命科學(xué), 44(8): 766-774, 2014.
23.李旭凱, 彭良才, 王令強(qiáng)*. Pep_pattern.pl,搜索蛋白質(zhì)序列Motif的perl腳本. 華中農(nóng)業(yè)大學(xué)學(xué)報(bào), 4:1-6 , 2014.
24.李旭凱, 郭凱, 彭良才, 王令強(qiáng)*. ChooseMaterials.pl,控制變量挑選實(shí)驗(yàn)材料的perl腳本. 生物信息學(xué). 11(3): 186-191, 2013.
25.馮永清, 鄒維華, 李豐成, 張晶, 張會, 謝國生, 涂媛苑, 路鐵剛, 彭良才*. 特異水稻脆莖突變體生物學(xué)特性及生物質(zhì)降解效率的研究. 中國農(nóng)業(yè)科技導(dǎo)報(bào). 15(3): 77-83, 2013.
26.李先良, 李傲, 彭良才, 夏濤*.棉花纖維素合酶復(fù)合體蛋白的分離與鑒定. 棉花學(xué)報(bào), 25(2): 129-134, 2013.
27.劉琳, 俞斌, 黃鵬燕, 賈軍, 趙華, 彭俊華, 陳鵬, 彭良才*.不同基因型對芒(Miscanthus sinensis)愈傷組織誘導(dǎo)及分化的影響. 植物學(xué)報(bào), 48(2): 192-198, 2013.
28.陳婷婷, 李旭凱, 王如意, 彭良才, 夏 濤*.棉花GhPME1和GhPME2基因的克隆和表達(dá)分析. 中國農(nóng)業(yè)大學(xué)學(xué)報(bào), 17(5): 7-14, 2012.
29.徐雯, 鄧宗漢, 陳婷婷, 彭良才, 夏濤*. 棉花纖維RNA提取方法的比較及酵母雙雜交文庫的構(gòu)建. 中國農(nóng)學(xué)通報(bào), 28(30): 177-183, 2011.
30.范建, 劉緒, 范春芬, 黃江鋒, 羅兵, 彭良才, 夏濤*.棉花纖維素生物合成相關(guān)蛋白的抗體制備. 棉花學(xué)報(bào), 24(2): 106-113, 2011.
31.陶章生, 徐雯, 張苗苗, 彭良才, 豐勝求*. 擬南芥纖維素合酶的抗體制備與檢測. 華中農(nóng)業(yè)大學(xué)學(xué)報(bào), 31(2) : 171-177, 2011.
32.張苗苗, 陶章生, 陳婷婷, 夏 濤, 彭良才, 豐勝求*.水稻纖維素合酶多克隆抗體的制備和鑒定. 華中農(nóng)業(yè)大學(xué)學(xué)報(bào), 30(4): 393-397, 2011.
33.彭良才.論中國生物能源發(fā)展的根本出路[J]. 華中農(nóng)業(yè)大學(xué)學(xué)報(bào)(社科), (2): 1- 6, 2011.
早期論文
34.Peng, L., Hocart, C. H., Redmond, J.W., and Williamson, R. E. Fractionation of carbohydrates in Arabidopsis seedling cell walls shows that three radial swelling loci are specifically involved in cellulose production. Planta, 211: 406-414, 2000. (IF: 3.42, 被引次數(shù): 68)
35.Peng, L., Xiang, F., Roberts, E., Kawagoe, Y., Greve, C., Stoller, A., Kreuz, K., and Delmer, D. The experimental herbicide CGA 325’615 inhibits synthesis of crystalline cellulose and causes accumulation of non-crystalline -1,4-glucan associated with CesA protein. Plant Physiology, 126: 981-992, 2011. (IF: 7.05, 被引次數(shù): 63)
36.Lane, D., Wiedemeier, A., Peng, L., Hofte, H., Hocart, H., Birch, R., Baskin, T., Arioli, T., Burn, J., Betzner, A., and Williamson R. E. Temperature-sensitive alleles of rsw2 link the KORRIGAN endo--1,4-glucanase to cellulose synthesis and cytokinesis in Arabidopsis. Plant Physiology, 126: 278-288, 2011. (IF: 7.05, 被引次數(shù): 114)
專著:
1.Peng Chen and Liangcai Peng*. The diversity of lignocellulosic biomass resources and their evaluations for use as biofuels and chemicals. In: Sun J Z, Ding S Y, Peterson J D, eds. Biological Conversion of Biomass for Fuels and Chemicals: Explorations from Natural Biomass Utilization Systems. Royal Society of Chemistry, 2013, 83-109. ISBN: 978-1-84973-424-0
2. Guosheng Xie and Liangcai Peng*. Book Chapter entitled “Genetic Engineering of Bioenergy Crops.” In: Wang L J, ed. Sustainable Bioenergy Production. Taylor and Francis. 2014.