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现代化林木苗圃基地
日期:2014/10/23 点击:1693 【打印

2011年,现代化林木苗圃基地正式成立,是四川农业大学现代化农业研发基地的重要组成部分,位于四川省崇州市桤泉镇以北与隆兴镇交界处(103°38’31’’-103°39’22’’ E30°33’16’’-30°33’54’’ N)基地以珍贵乡土用材和经济林林木新品种为研究对象,进行新品种林木种质资源的收集、保存以及杂交育种开发。研究基地位于四川省崇州市城南,距市区崇阳镇11公里,距四川农业大学成都校区约42公里。

 
 
 
 
 
   站址:四川省崇州市桤泉镇
   负责人:朱鹏
   单位:四川农业大学生态林业研究所
   通讯地址:四川省成都市温江区惠民路211
   邮编:611130
   联系电话:028-86290957
 

1、自然概况

基地建立在撂荒两年的农田上,占地面积133.33 hm2坐落于四川盆地岷江中游川西平原西部(103°38’31’’-103°39’22’’ E30°33’16’’-30°33’54’’ N),属亚热带湿润季风气候,年均温16.0 ,年平均日照时数1161.5 h,年均降水量1015.2 mm,降水主要集中在5-9月。平均无霜期283天,降雪稀少。土壤类型为老冲积黄壤。研究区域内无乔木、灌木等木本植物,草本植物主要有青蒿(Artemisia annua)、空心莲子草(Alternanthera philoxeroides)狗尾草(Setaira viridis)稗草(Echinochloa crusgslli)虮子草(Leptochloa panacea)牛繁缕(Malachium aquaticum)(Chenopodium album)及野苋菜(Amaranthus viridis)等。

                                            

2、 研究目标

选育出适宜四川乃至长江上游地区生长的优良、抗逆珍贵乡土用材和经济林林木新品种,进行新品种林木的优质苗木生长,推动长江上游地区林业产业化的发展。 

3、 研究内容

  • 珍贵乡土用材和经济林树种的种质资源收集及保存;
  • 珍贵乡土用材和经济林林木优良新品种、抗逆新品种的选育及培育;
  • 珍贵乡土用材和经济林林木优良新品种、抗逆新品种的杂交育种开发;
  • 林木新品种苗木的生产。


檫木
                                              香椿


油樟
                                               台湾桤木


银木
                                             蓝花楹

4研究成果

         建成以来2011-2014),现代化林木苗圃基地先后培养博士和硕士研究生24人,承担四川省教育厅项目、四川省育种攻关项目及教育部博士点基金项目等9项,发表论文70余篇,出版专著2部,先后获得教育部科技进步二等奖1 、四川省科技进步三等奖2 、国家科技扶贫奖1项。主持育成核桃杂交国家良种2个、省级良种5个。其中,代表性论著包括: 

2014年
[1] Saravanan Thavamanikumar, Luke J M, Peter K A, Gerd B, Desmond J S, Richard K, Sara H, Jules S F, René E V, Peng Zhu, Josquin F G*. Association mapping for wood quality and growth traits in Eucalyptus globulus ssp. globulus Labill identifies nine stable marker-trait associations for seven traits. Tree Genetics & Genomes, 2014.
[2] Ou-yang C, Gao S, Mei L, Chung TW, Tang L, Wang SH, Chen F*. Effects of aluminum toxicity on the growth and antioxidant status in Jatropha curcas seedlings. Journal of Medicinal Plants Research, 2014, 8: 178-185.
[3] Shih-Hong Hsu, Chin-Sheng Huang, Tsair-Wang Chung*, Shun Gao. Adsorption of chlorinated volatile organic compounds using activated carbon made from Jatropha curcas seeds. Journal of the Taiwan Institute of Chemical Engineers, 2014. (SCI)

2013年
[4] Shun Gao, Kuan-Ting Liu, Tsair-Wang Chung*, Fang Chen. The effects of NaCl stress on Jatropha cotyledon growth and nitrogen metabolism. Journal of Soil Science and Plant Nutrition. 2013, 13(1): 99-113. (SCI, IF=0.779)
[5] Shun Gao, Kuan-Ting Liu and Tsair-Wang Chung*. Responses of Nitrogen Metabolism to Lead Stress in Jatropha curcas Cotyledon. International Journal of Agriculture and Biology, 2013, 15(6): 1126-1132. (SCI, IF=0.808)
[6] Shun Gao, Liang-hua Chen*, Zhen-Feng Xu and Han Yuan. Changes of polyphenol oxidase activity during Jatropha curcas seed germination. J. Animal Plant Sci., 2013, 18(1): 2647-2658.
[7] Chen Lianghua, Gao Shun, Zhu Peng, Liu Yang, Hu Tingxing and Zhang Jian*. Comparative study of metal resistance and accumulation of lead and zinc in two poplars. Physiologia Plantarum, 2013, doi: 10.1111/ppl.12120. (SCI)
[8] Chao Ou-yang, Shun Gao, Feng Cai, Tsair-Wang Chung, Sheng-hua Wang and Fang Chen*. Cloning, Expression and Purification of a New Cu/Zn Superoxide Dismutase from Jatropha Curcas. Zeitschrift für Naturforschung C, 2013, 68: 60-69. (SCI)
[9] Zhu Peng, Wang Zhengfeng, Ye Wanhui, Cao H*. Maintenance of genetic diversity in a small, isolated population of ancient tree Erythrophleum fordii. Journal of Systematics and Evolution, 2013.
[10] Zhu Peng, Wang Zheng-feng, Ye Wan-hui*. Preliminary Studies on Pollination and Mating System of Rare and Endangered Plant Erythrophleum fordii Oliv. Journal of Tropical and Subtropical Botany, 2013, 21(1): 38-44.
[11] 朱鹏, 刘洋, 陈良华, 高顺, 张健*, 杨万勤, 李勇, 刘凯. 岷江下游农田生态系统重金属铅镉锌的输入源格局. 农业环境科学学报, 2013, 32(9).

2012年
[12] Kuan-Ting Liu, Shun Gao, Tsair-Wang Chung*, Char-ming Huang, Yung-Sen Lin. Effect of process conditions on the removal of phospholipids from Jatropha curcas oil during degumming process. Chemical Engineering Research and Design, 2012, 90: 1381-1386. (SCI)
[13] Ou-yang C, Cai F, Gao S, Niu B, Wang S and Chen F. Cloning, overexpression, purification, and characterization of a new iron superoxide dismutase from Jatropha curcas. Biotechnology and Applied Biochemistry, 2012, 59: 338-345. (SCI)
[14] Shun Gao, Lan-Ju Mei and Liang-Hua Chen*. Effects of Heavy Metals on Seed Germination of Adzuki Bean Seed. Research Journal of Agronomy, 2012, 6(2): 32-37.
[15] Li Zhang, Jiang-tao Luo, Ming Hao, et al. Genetic map of Triticum turgidum based on a hexaploid wheat population without genetic recombination for D genome. BMC Genetics, 2012, 13:69.
[16] Jiangtao Luo, Ming Hao, Li Zhang, et al. Microsatellite Mutation Rate during Allohexaploidization of Newly Resynthesized wheat. International Journal of Molecular Sciences, 2012, 13:12533-12543.
[17] 肖千文*, 周兰英, 胡庭兴, 蒲光兰, 金银春, 吴开志等. 早实核桃新品种—川早2号. 园艺学报, 2012, 39(11): 2317-2318.

2011年
[18] Gao Dandan, Wang Zhengfeng, Zhu Peng, Ye Wanhui. Isolation and characterization of new set of microsatellite loci in Cryptocarya chinensis. Guihaia, 2011, 31(1):39-42.
[19] Lianquan Zhang, Li Zhang, Jiangtao Luo, et al. Synthesizing double haploid hexaploid wheat populations based on a spontaneous allopidization process. Journal of Genetics and Genomics, 2011, 38: 89-94 (1: The authors contributed equally).
[20] Zhongwei Yuan, Dengcai Liu*, Lianquan Zhang, Li Zhang, et al. Mitotic Illegitimate Recombination Is a Mechanism for Novel Changes in High-Molecular-Weight Glutenin Subunits in Wheat-Rye Hybrids. Plos One, 2011, 6(8): e23511.
[21] Tian G, Lu Q, Zhang L, et al. Detection of protein interactions in plant using a gateway compatible bimolecular fluorescence complementation (BIFC) system. Journal of Visualized Experiments, 2011, 55, pp. Article number e3473.
[22] 高顺, 钟财王. 麻疯树油与生物活性物质的分离纯化及其潜在应用. 台湾化学工程学会. 2011, 8: 40-48.

2010年
[23] Xiao-Yi Li, Zheng-Feng Wang, Peng Zhu, et al. Ten microsatellite markers in endangered species Sauvagesia rhodoleuca (OCHNACEAE): American Journal of Botany, 2010, 97(7): e61–e62.
[24] Dong Lei, Wang Zhengfeng*, Zhu Peng, Ye Wanghui. Short Note: isolation and characterization of microsatellite loci in Castanopsis fissa in lower subtropical China. Silvae Genetica, 2010, 59 (6): 299-300.
[25] Shun Gao, Chao Ou-yang, Lin Tang, Jin-qiu Zhu*, Ying Xu, Sheng-hua Wang and Fang Chen. Growth and antioxidant responses in Jatropha curcas seedling exposed to mercury toxicity. Journal of Hazardous Materials, 2010, 182(1-3): 591-597. (SCI, IF=4.173)
[26] 朱鹏, 包维楷*, 胡庭兴. 岷江上游辐射松生长过程及其与气候变化的关. 四川林业科技, 2010, 31(2): 4-8.
[27] 李光友, 徐建民*, 杜志鹄, 韩超, 王伟, 李宝琦, 朱鹏. 尾叶桉家系木材性状的变异研究. 中南林业科技大学学报, 2010, 30(8): 87-91.

2009年
[28] Zhu Peng, Ye WanHui, Wang ZhengFeng*, et al. Isolation and characterization of ten polymorphic microsatellite in the endangered tree Erythrophleum fordii oliv. Conservation Genetics, 2009, 10(4):1017-1019.
[29] Shun Gao, Qiang Li, Chao Ou-Yang, Lin Chen, Sheng-hua Wang and Fang Chen. Lead toxicity induced antioxidant enzyme and phenylalanine ammonia-lyase activities in Jatropha curcas L. radicles. Fresenius Environmental Bulletin, 2009, 5: 811-815. (SCI, IF=0.66)
[30] Shun Gao, Rui Yan, Jun Wu, Fu-li Zhang*, Sheng-hua Wang and Fang Chen. Growth and antioxidant responses in Jatropha curcas cotyledons under lead stress. Zeitschrift für Naturforschung C, 2009, 64: 859-863. (SCI, IF=0.772)
[31] Wang ZhengFeng, Zhu Peng, Ye WanHui*. Development and characterization of 13 microsatellite markers for Cryptocarya concinna in lower subtropical China. Conservation Genetics, 2009, 10(6):1841-1843.
[32] Li Ling, Wang ZhengFeng*, Jian SuGang, Zhu Peng, et al. Isolation and characterization of microsatellite loci in endangered Cycas changjiangensis (Cycadaceae). Conservation Genetics, 2009, 10 (3): 793-795.
[33] Zhang Min, Wang ZhengFeng*, Jian SuGuang, Ye WanHui, Cao HongLin, Zhu Peng, Li Ling. Isolation and characterization of microsatellite markers for Cycas hainanensis C. J. Chen (Cycadaceae). Conservation Genetics, 2009, 10(4):1175-1176.
[34] 肖千文*, 金银春, 吴开志, 蒲光兰, 李森. 叶面施肥对油橄榄坐果率的影响. 安徽农业科学, 2009, 37(30): 14670-14671.

2008年
[35] Gao S, Ou-Yang C, Wang S, Xu Y, Tang L and Chen F. Effects of salt stress on growth, antioxidant enzyme and phenylalanine ammonia-lyase activities in Jatropha curcas seedlings. Plant, Soil and Environment, 2008, 54(9): 374-381. (SCI, IF=1.078)
[36] Gao S, Yan R, Cao M, Yang W, Wang S, Chen F. Effects of copper on growth, antioxidant enzymes and phenylalanine ammonia-lyase activities in Jatropha curcas L. seedling. Plant, Soil and Environment, 2008, 54(3): 117-122. (SCI, IF=1.078)
[37] 张丽, 颜泽洪*, 郑有良, 等. 小麦中国春背景下长穗偃麦草Ee染色体组特异AFLP及STS标记的建立. 农业生物技术学报, 2008, 16(3): 465-473.

2007年
[38] Ji-Rui Wang 1, Li Zhang 1, Yu-Ming Wei, et al. Sequence polymorphisms and relationships of dimeric a-amylase inhibitor genes in the B genomes of Triticum and S genomes of Aegilops. Plant Science, 2007, 173:1-11. (1: These authors contributed equally)
[39] 朱鹏, 徐建民*. 桉树扦插繁殖生根内在影响因素研究综. 广西林业科学, 2007, 36(2): 71-74.
[40] 朱鹏, 徐建民*. 邓恩桉组织材料生根抑制物研究. 安徽农业科学, 2007, 35(32): 10236- 10238, 10560.
[41] 李光友, 徐建民, 白嘉雨, 陆钊华, 朱鹏, 王伟. 离子注入对桉树萌发及苗期生长的影响. 中南林业科技大学学报, 2007, 27(05): 44-48, 53.

2006年
[42] 肖千文*. 生物质能源发展问题与对策. 生物质化学工程, 2006, B12: 108-114.
[43] 刘仁健, 吴卫*, 郑有良, 杨玉霞, 张丽. 红花(Carthamus tinctorius L.)种子醇溶蛋白遗传多样性分析. 中国油料作物学报, 2006, 28(2): 109-114.

 

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