基因组学与生物技术
(
网络版
), 2018
年
,
第
7
卷
,
第
1-11
页
Jiyinzuxue Yu Shengwu Jishu (Online), 2018, Vol.7, 1-11
6
林木基因工程的应用对林木的育种带来飞速的发展,能够用来保护原始森林以及濒危物种,以避免外
来物种的入侵以及人为的破坏。我们应在做好细致的安全评估的情况下,改良遗传转化方法,构建高效的
转化体系。在不久的将来,通过基因工程手段改造的树木新品种必将在净化大气、改良土壤、生态恢复及
提供优质木材等方面发挥巨大作用。
作者贡献
卢泳全负责论文的构思,文献调研,初稿撰写、修改以及最后的定稿。作者本人阅读并同意最终的文本。
致谢
罗汝叶、巩鹏涛两位研究生对本研究文献整理、阅读以及初稿的写作做了大量的前期工作,东北林业大学柳参奎教授阅
读本研究手稿,并对论文提出深刻的意见,在此一并感谢。
Reference
Ahuja M.R., 2001, Recent advances in molecular genetics of forest trees, Euphytica, 121(2): 173-195
Andersson A., Keskitalo J., Sjödin A., Bhalerao R., Sterky F., Wissel K., Tandre K., Aspeborg H., Moyle R., Ohmiya Y., Bhalerao R., Brunner A., Gustafsson
P., Karlsson J., Lundeberg J., Nilsson O., Sandberg G., Strauss S., Sundberg B., Uhlen M., Jansson S., and Nilsson P., 2004, A transcriptional timetable of
autumn senescence, Genome Biol, 5(4): R24.1-R24.13
Bagnall D.J., King R.W., Whitelam G.C., Boylan M.T., Wagner D., and Qqail P.H., 1995, Flowering responses to altered expression of phytochrome in mutants
and transgenic lines of
Arabidopsis thaliana
(L) Heynh, Plant Physiol, 108(4): 1495-1503
PMid:7659750 PMCid:PMC157529
Bhalerao R., Keskitalo J., Sterky F., Erlandsson R., Björkbacka H., Birve S.J., Karlsson J., Gardeström P., Gustafsson P., Lundeberg J., and Jansson S., 2003,
Gene expression in autumn leaves, Plant Physio, 131(2): 430-442
PMid:12586868 PMCid:PMC166820
Bhuiya M.W., and Liu C.J., 2009, A cost-effective colorimetric assay for phenolic o -methyltransferases and characterization of caffeate 3- o
-methyltransferases from populus trichocarpa, Analytical Biochemistry, 384(1): 151-158
PMid:18926792
Bishop-Hurley S.L., Zabkiewicz R.J., Grace L., Gardner R.C., Wagner A., and Walter C., 2001, Conifer genetic engineering: transgenic, pinus radiata, (d. don)
and, picea abies, (karst) plants are resistant to the herbicide buster, Plant Cell Reports, 20(3): 235-243
Blaudez D., Kohler A., Martin F., Sanders D., and Chalot M., 2003, Poplar metal tolerance protein 1 confers zinc tolerance and is an oligomeric vacuolar zinc
transporter with an essential leucine zipper motif, Plant Cell, 15(12): 2911-2928
PMid:14630973 PMCid:PMC282827
Chang S., Puryear J.D., Dias M.A.D.L., Funkhouser E.A., Newton R.J., and Cairney J., 2010, Gene expression under water deficit in Loblolly pine (
Pinus
taeda
): isolation and characterization of cDNA clones, Physiologia Plantarum, 97(1): 139-148
Cornu D., Leple J.C., Bonade-Botino M., Ross A., Augustin S., Delplanque A., Jouanin L., Pilate G., 1996, Expression of a proteinase inhibitor and a
Bacillus
thurigiensisδ
-endotoxin in transgenic poplars, In: Ahuja M.R., Boerjan W., and Neale D.B.(eds.), Somatic Cell Genetics and Molecular Genetics of Trees,
Springer Netherlands, Germany, pp.131-136
Cseke L.J., Cseke S.B., Ravinder N., Taylor L.C., Shankar A., Sen B., Thakur R., Karnosky D.F., Podila G.K., 2005, SEP-class genes in
Populus tremuloide
s
and their likely role in reproductive survival of poplar trees, Gene, 358(10): 1-16
PMid:16040208
Devillard C., 1992, Genetic transformation of aspen (
Populus tremula
×
P. alba
) by
Agrobacterium rhizogenes
and regeneration of plants tolerant to herbicide,
CR Acad. Sci. Paris, t. 314, Series III: 291-298
Doblin M.S., Kurek I., Jacob-Wilk D., and Delmer D.P., 2002, Cellulose biosynthesis in plants: From genes to rosettes, Plant and Cell Physiol, 43(12):
l407-l420