南京林业大学学报(自然科学版) ›› 2009, Vol. 33 ›› Issue (01): 131-135.doi: 10.3969/j.jssn.1000-2006.2009.01.028
程强,潘惠新,徐立安,诸葛强,王明庥*,黄敏仁*
出版日期:
2009-02-18
发布日期:
2009-02-18
基金资助:
CHENG Qiang, PAN Huixin,XU Lian, ZHUGE Qiang,WANG Mingxiu*,HUANG Minren*
Online:
2009-02-18
Published:
2009-02-18
摘要: 林木是人类最主要的可再生资源,具有重要的经济价值;林木有草本植物不具有的生物 学特征,如广泛的次生生长,在四季更替中调控生长和休眠,以及漫长的营养生长期等。揭示这些生物学特征的分子机制有重大的理论及实践意义 。杨树是林木中的模式树种,是第3个完成全基因组测序的模式植物,杨树转录组和蛋白组的研究也已深入开展。杨树基因组计划推动了林木基因 组进化、木材形成、开花、休眠以及林木-病原微生物相互作用等领域研究的发展。
中图分类号:
程强,潘惠新,徐立安,等. 杨树基因组计划及其分子生物学研究进展[J]. 南京林业大学学报(自然科学版), 2009, 33(01): 131-135.
CHENG Qiang, PAN Huixin,XU Lian, ZHUGE Qiang,WANG Mingxiu*,HUANG Minren*. The poplar genome project and progress in poplar molecular biology studies[J].Journal of Nanjing Forestry University (Natural Science Edition), 2009, 33(01): 131-135.DOI: 10.3969/j.jssn.1000-2006.2009.01.028.
[1]Brunner A M, Busov V B, Strauss S H. Poplar genome sequence: functional genomics in an ecologically dominant plant species[J]. Trends Plant Sci, 2004, 9(1): 4956. [2]Tuskan G A, Difazio S, Jansson S, et al. The genome of black cottonwood, Populus trichocarpa (Torr. & Gray)[J]. Science, 2006, 313(5793): 15961604. [3]Ralph S G, Chun H J, Cooper D, et al. Analysis of 4664 highquality sequencefinished poplar fulllength cDNA clones and their utility for the discovery of genes responding to insect feeding[J]. BMC Genomics, 2008(9): 57. [4]Barakat A, Wall P K, Diloreto S, et al. Conservation and divergence of microRNAs in Populus[J]. BMC Genomics, 2007(8 ): 481. [5]Zhang Y, Zhang X, Chen Y, et al. Function and chromosomal localization of differentially expressed genes induced by Marssonina brunnea f. sp. multigermtubi in Populus deltoides[J]. Journal of Genetics and Genomics, 2007, 34(7): 641648. [6]Juan D, Hong-Li X, Zhang D Q, et al. Regeneration of the secondary vascular system in poplar as a novel system to investigate gene expression by a proteomic approach[J]. Proteomics, 2006, 6: 881895. [7]Plomion C, Lalanne C, Claverol S, et al. Mapping the proteome of poplar and application to the discovery of drought- stress responsive proteins[J]. Proteomics, 2006, 6(24): 65096527. [8]Yuan K, Zhang B, Zhang Y, et al. Identification of differentially expressed proteins in poplar leaves induced by Marssonina brunnea f. sp. Multigermtubi[J]. J Genet, 2008, 35(1): 4960. [9]Schrader J, Nilsson J, Mellerowicz E, et al. A highresolution transcript profile across the woodforming meristem of poplar identifies potential regulators of cambial stem cell identity[J]. Plant Cell, 2004, 16(9): 22782292. [10]Nilsson J, Karlberg A, Antti H, et al. Dissecting the molecular basis of the regulation of wood formation by auxin in hybrid aspen[J]. Plant Cell, 2008, 20(4): 843855. [11]Suzuki S, Li L, Sun Y H, et al. Chiang. The cellulose synthase gene superfamily and biochemical functions of xylem specific cellulose synthaselike genes in Populus trichocarpa[J]. Plant Physiol, 2006, 142(3): 12331245. [12]Li X, Weng J K, Chapple C. Improvement of biomass through lignin modification[J]. The Plant Journal, 2008, 54(4): 569581. [13]Corbesier L, Vincent C, Jang S, et al. FT protein movement contributes to longdistance signaling in floral induction of Arabidopsis[J]. Science, 2007, 316(5827): 10301033. [14]Bohlenius H, Huang T, CharbonnelCampaa L, et al. CO/FT regulatory module controls timing of flowering and seasonal growth cessation in trees[J]. Science, 2006, 312(5776): 10401043. [15]Hsu C Y, Liu Y, Luthe D S, et al. Poplar FT2 shortens the juvenile phase and promotes seasonal flowering[J]. Plant Cell, 2006, 18(8): 18461861. [16]Yin T, Difazio S P, Gunter L E, et al. Genome structure and emerging evidence of an incipient sex chromosome in Populus [J]. Genome Res, 2008, 18(3): 422430. [17]Frewen B E, Chen T H, Howe G T, et al. Quantitative trait loci and candidate gene mapping of bud set and bud flush in populus[J]. Genetics, 2000, 154(2): 837845. [18]Olsen J E, Junttila O. Far red endofday treatment restores wild typelike plant length in hybrid aspen overexpressing phytochrome A[J]. Physiol Plant, 2002, 115(3): 448457. [19]Zhang J, Steenackers M, Storme V, et al. Fine mapping and identification of nucleotide binding site/leucinerich repeat sequences at the MER locus in Populus deltoides ‘S9-2’[J]. Phytopathology, 2001, 91(11): 10691073. [20]Stirling B, Newcombe G, Vrebalov J, et al. Suppressed recombination around the MXC3 locus, a major gene for resistance to poplar leaf rust[J]. TAG Theoretical and Applied Genetics, 2001, 103(8): 11291137. [21]Lescot M, Rombauts S, Zhang J, et al. Annotation of a 95-kb Populus deltoides genomic sequence reveals a disease resistance gene cluster and novel class I and class II transposable elements[J]. Theor Appl Genet, 2004, 109(1): 1022. [22]Yin T M, DiFazio S P, Gunter L E, et al. Genetic and physical mapping of Melampsora rust resistance genes in Populus and characterization of linkage disequilibrium and flanking genomic sequence[J]. New Phytologist, 2004, 164: 95105. [23]Cheng Q, Zhang B, Zhuge Q, et al. Expression profiles of two novel lipoxygenase genes in Populus deltoides[J]. Plant Science, 2006, 170(6): 10271035. |
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