南京林业大学学报(自然科学版) ›› 2015, Vol. 39 ›› Issue (01): 142-148.doi: 10.3969/j.issn.1000-2006.2015.01.026
季孔庶,王潘潘,王金铃,阮倩倩,潘 婷,朱沛煌,郭天玮,刘 靖
出版日期:
2015-01-31
发布日期:
2015-01-31
基金资助:
JI Kongshu, WANG Panpan, WANG Jinling,RUAN Qianqian, PAN Ting,ZHU Peihuang, GUO Tianwei, LIU Jing
Online:
2015-01-31
Published:
2015-01-31
摘要: 松科树种的离体培养技术相关研究从20世纪70年代开始至今一直备受关注,并取得了不断的突破。笔者综述了松科树种离体培养的研究进展,对松科树种在直接器官发生、间接器官发生、体细胞胚胎发生、原生质体培养等不同离体培养方式所取得的研究结果进行了总结,并介绍了外植体、培养基、激素等影响离体培养的因素和条件,对松科树种离体培养中有待进一步开展的机理性研究、成年母树营养器官离体培养技术、褐化问题、诱导生根和再生植株移栽技术、商业化生产应用、离体材料的超低温保存研究等方面进行了展望。
中图分类号:
季孔庶,王潘潘,王金铃,等. 松科树种的离体培养研究进展[J]. 南京林业大学学报(自然科学版), 2015, 39(01): 142-148.
JI Kongshu, WANG Panpan, WANG Jinling,RUAN Qianqian, PAN Ting,ZHU Peihuang, GUO Tianwei, LIU Jing. Review on in vitro culture of tree species in Pinaceae[J].Journal of Nanjing Forestry University (Natural Science Edition), 2015, 39(01): 142-148.DOI: 10.3969/j.issn.1000-2006.2015.01.026.
[1] 郑万钧,中国植物志:第7卷 [M].北京:科学出版社,1978. [2] Hakman I, Fowke L C, von Arnold S, et al. The development of somatic embryos in tissue cultures initiated from immature embryos of Picea abies(Norway spruce)[J]. Plant Sci,1985(38): 53-59. [3] Gupta P K, Durzan D J. Biotechnology of somatic polyembryogenesis and plantlet regeneration in loblolly pine[J].Bio Technology,1987,16(5):147-151. [4] Klimaszewska K, Overton C, Stewart D,et al. Initiation of somatic embryos and regeneration of plants from primordial shoots of 10-year-old somatic white spruce and expression proWles of 11 genes followed during the tissue culture process[J]. Planta, 2011(233):635-647. [5] 张俊红,张守攻,吴涛,等.落叶松体胚发育中5个miRNA前体与成熟体的表达[J].植物学报,2012, 47(5): 462-473. Zhang J H, Zhang S G, Wu T, et al. Expression of 5 pre-miRNAs and mature miRNAs during somatic embryogenesis of larch[J]. Chinese Bulletin of Botany, 2012, 47(5): 462-473. [6] Vookova B.Effect of sucrose concentration,charcoal and indole-3-butyric acid on germination of Abies numidica somatic embryos[J]. Biologia Plantarum,2001,44(2):181-183. [7] Lang H, Kohlenbach H W. Cell differentiation in protoplast cultures from embryogenic callus of Abies alba L.[J]. Plant Cell Reports,1989,8(2):120-123 [8] 吴克贤,李伟,徐妙珍,等.长白落叶松组织培养的研究[J].林业科学, 1996, 32(2): 125-132. Wu K X, Li W, Xu M Z, et al. Study on Larix olgensis tissue culture[J]. Scientia Silvae Sinicae, 1996, 32(2): 125-132. [9] 王伟达,李成浩,杨静莉,等.杂种落叶松未成熟胚的体细胞胚发生和植株再生[J].林业科学,2009, 45(8):34-38.Wang W D, Li C H, Yang J L, et al. Somatic embryogenesis and plantlet regeneration from immature zygotic embryos of hybrid larch[J].Scientia Silvae Sinicae,2009, 45(8):34-38. [10] 齐力旺,韩一凡,李玲.华北落叶松体细胞胚胎发生及遗传转化实验系统的建立[J].实验生物简报,2000,33(4):357-365. Qi L W, Han Y F, Li L. Study on the somatic embryogenesis and establishment of experimental system in Larix principis-rupprechtii(presentation)[J].Acta Biologiae Experimentalis Sinica, 2000,33(4):357-365. [11] 陈芳,陈少瑜,吴涛,等.丽江云杉体细胞胚胎发生[J].林业科学,2010,46(8):162-167.Chen F, Chen S Y, Wu T, et al. Somatic embryogenesis of Picea likiangensis[J]. Scientia Silvae Sinicae, 2010,46(8):162-167. [12] Tautorus T E, Lulsdorf M M, Kikcio S, et al. Bioreactor culture of Picea mariana Mill.(black spruce)and the species complex Picea glauca-engelmannii(interior spruce)somatic embryos growth parameters[J]. Applied Microbiology and Biotechnology, 1992, 38(1): 46-51. [13] Budimir S, Vujicic R. Benzyladenine induction of buds and somatic embryogenesis in Picea omorika Purk [J]. Plant Cell, Tissue and Organ Culture, 1992, 31: 89-94. [14] 贾桂霞,孙敬爽.北美蓝云杉体细胞胚发生技术研究[J].北京林业大学学报,2010,32(1):44-51. Jia G X, Sun J S. Somatic embryogenesis of Picea pungens [J]. Journal of Beijing Forestry University, 2010,32(1):44-51. [15] 周韬.白皮松成熟合子胚的胚性愈伤组织诱导研究[J].安徽农业科学,2010,38(21):11063-11066. Zhou T. Research on induction of embryogenic callus from mature zygotic embryo of Pinus bungeanaas[J].Journal of Anhui Agri,2010,38(21):11063-11066. [16] Kaul K, Kochhar T S. Growth and differentiation of callus cultures of Pinus[J]. Plant Cell Reports,1985,4(4):180-183. [17] Sommer H E, Brown C L, Kormanik P P. Differentiation of plantlets in longleaf pine(P. palustris)tissue cultured in vitro [J].Botanical Gazette,1975,136(2):196-200. [18] 阙国宁,房建军,葛万川,等.火炬松、湿地松、晚松组培繁殖的研究[J]. 林业科学研究,1997,10(3):227-232.Que G N. Fang J J, Ge W C, et al. Study on loblolly pine, slash pine and pond pine tissue culture[J].Forest Research,1997,10(3):227-232. [19] 张宇.马尾松组织培养研究[D].南京:南京林业大学,2003. Zhang Y. Study on tissue culture in Pinus massoniana[D].Nanjing: Nanjing Forestry University, 2003. [20] 王金玲.马尾松成熟离体胚组织培养的研究[D].南京:南京林业大学,2010.Wang J L. Study on tissue culture from mature embryos in vitro of Pinus massoniana[D].Nanjing: Nanjing Forestry University,2010. [21] 杨模华,张冬林,李志辉.马尾松嫩茎愈伤组织诱导与增殖[J].华中农业大学学报,2009,28(5): 631-636.Yang M H, Zhang D L, Li Z H.Callus induction and propagation from seedling of Pinus massoniana[J].Journal of Huazhong Agricultural University, 2009,28(5): 631-636. [22] 高燕.马尾松体细胞胚胎发生系统建立[D].南京:南京林业大学,2010. Gao Y. Establishment of somatic embryogenesis system in Pinus massoniana[D].Nanjing:Nanjing Forestry University,2010. [23] Lapp M S, Malinek J, Coffey M. Micropropagation of western white pine(Pinus monticola)starting with mature embryos[J].Plant Cell Reports,1995,15(3-4):264-267. [24] Stiff C M, Boe A A, Roberts L W, Stiff C T. In vitro culture of mugo pine needle fascicles[J]. Hort Scince, 1985,20(2):447-4488. [25] Majada J, Marti’nez-Alonso C, Feito I. Mini-cuttings: an effective technique for the propagation of Pinus pinaster Ait[J]. New Forests,2011(41):399-412. [26] 李科友,唐得瑞,朱海兰,等.美国黄松成熟胚的离体培养与不定芽的形成[J].西北植物学报,2003 23(3): 464-467. Li K Y, Tang D R, Zhu H L, et al. In vitro formation of adventitious buds from embryos of Pinus ponderosa[J].Acta Botanica Boreali-Occidentalia Sinica, 2009(98): 165-178. [27] Aitken-Christieet. Cold storage of tissue cultures[J]. Forestry Science, 1986,24-26:285-304. [28] 郑均宝,潘冬梅,陈正华.油松离体胚子叶的组织分化和无根试管苗的形成[J].河北林学院学报,1994,9(2):97-101. Zheng J B, Pan D M, Chen Z H. In vitro culture of cotyledon of Pinus tabulaeformis embryo and formation of rootless plantlets [J].Journal of Hebei Forestry College,1994,9(2):97-101. [29] 宋维秀,宋西德.柴松胚培养芽增殖培养基筛选[J].福建林业科技,2010,37(2):58-60.Song W X, Song X D. Study on selection of basic medium for embryo culture bud proliferation of Pinus tabulaeformis f. shekannesis[J].Journal of Fujian Forestry Science and Technology,2010,37(2):58-60. [30] 朱丽华,郑 丹,吴小芹.黑松丛生芽的诱导及植株再生[J].南京林业大学学报:自然科学版,2006, 30(3):27-31.Zhu L H, Zheng D, Wu X Q. Axillary buds induction and plantlet regeneration of Pinus thunbergii[J]. Journal of Nanjing Forestry University:Natural Sciences Edition,2006, 30(3):27-31. [31] Mathur G, Nadgauda R. In vitro plantlet regeneration from mature zygotic embryos of Pinus wallichiana A B Jacks[J]. Plant Cell Reports, 1999,19(1):74-80. [32] 于大德,肖宁,王企珂,等.云南松胚性愈伤组织诱导及增殖[J].西北植物学报, 2011, 31(10): 2119-2123. Yu D D, Xiao N, Wang Q K, et al. Induction and proliferation of embryo callus from Pinus yunnanensis Franch[J]. Acta Botanica Boreali-Occidentalia Sinica,2011, 31(10): 2119-2123. [33] Harry T. Somatic embryogenesis and plant regeneration from mature zygotic embryos of red spruce[J]. Botanical Gazette, 1991,152(4):446-452. [34] Teasdale R D, Rugini E. Preparation of viable protoplasts from suspension-cultured loblolly pine(Pinus taeda)cells and subsequent regeneration to callus[J]. Plant Cell, Tissue and Organ Culture,1983,2(3):253-261. [35] Patel K R, Shekhawat N S,Berlyn G P,et al. Isolation and culture of protoplasts from cotyledons of Pinus coulteri D. Don.[J]. Plant Cell, Tissue and Organ Culture,1984,3(2):85-90. [36] Gupta P K, Durzan J D. Isolation and cell regeneration of protoplasts from sugar pine(Pinus lambertiana)[J]. Plant Cell Reports,1986,5(5):346-348. [37] Kondo Okamura.Tissue culture of Wakamatsu(Pinus thunbergii×Pinus massoniana)[J]. Bulletin of the National Forest Tree Breeding Center,1995(13):97-101. [38] 唐巍,欧阳藩,郭仲琛.火炬松熟合子胚培养直接器官发生和植株再生[J].云南植物研究,1997, 19(3):285-288.Tang W, Ouyang F, Guo Z C. Direct organogenesis and plant regeneration from mature zygotic embryos of loblolly pine[J].Acta Botanica Yunnanica,1997, 19(3):285-288. [39] 李际红,邢世岩,孟凡志,等.白皮松成熟胚不定芽诱导分化技术的优化[J].山东农业大学学报:自然科学版, 2009,40(4):641-646. Li J H, Xing S Y, Meng F Z, et al. Improvement of in vitro rapid multiplication in mature embryo of Pinus bungeana[J].Journal of Shandong Agricultural University:Natural Science,2009,40(4):641-646. [40] 朱丽华,吴小芹,戴培培,等.赤松离体培养植株再生体系的建立[J].南京林业大学学报:自然科学版,2010, 34(2):11-14. Zhu L H, Wu X Q, Dai P P, et al. In vitro plantlet regeneration from seedling explants of Pinus densiflora[J]. Journal of Nanjing Forestry University:Natural Sciences Edition, 2010, 34(2):11-14. [41] Anoruo A O. Biotechnology, growth, development and wood quality of Caribbean pine(Pinus caribaea Mor.)[D].New Haven Conn: Yale University, 1988. [42] 唐巍,欧阳藩,郭仲琛.火炬松胚性愈伤组织诱导和植株再生的研究[J].林业科学,1998,34(3): 115-119.Tang W, Ouyang F,Guo Z C. Study on embryonic callus induction and plant regeneration on Pinus taeda[J].Scientia Silvae Sinicae,1998,34(3): 115-119. [43] 唐巍,欧阳藩,郭仲琛.湿地松体细胞胚胎发生和植株再生[J].植物资源与环境,1997,6(2): 8-11. Tang W, Ouyang F, Guo Z C. Plantlet regeneration via somatic embryogenesis in slash pine[J].Journal of Plant Resources and Environment, 1997,6(2): 8-11. [44] 黄健秋,卫志明.针叶树体细胞胚胎发生的研究进展[J].植物生理学通讯,1995,31(2): 85-90.Huang J Q, Wei Z M. Progress of the study on somatic embryogenesis in conifer[J].Plant Physiology Communications, 1995,31(2):85-90. [45] 刘宝光,李成浩,张含国.红皮云杉的不定芽诱导和植株再生[J].东北林业大学学,2010,38(8): 4-7.Liu B G, Li C H, Zhang H G. Induction of adventitious buds and plantlet regeneration of Koyama spruce[J].Journal of Northeast Forestry University,2010,38(8): 4-7. [46] 江波,杨映根,郭奕明,等.松柏类体细胞胚胎发生的研究进展[J].植物学通报,2004,21(4):495-505. Jiang B, Yang Y G, Guo Y M. Advances in conifer somatic embryogenesis[J].Chinese Bulletin of Botany,2004,21(4):495-505. [47] 赖明航,乐超银,谢忠艳,等.马尾松愈伤组织诱导条件的研究[J].三峡大学学报:自然科学版,2007, 29(5): 457-460. Lai M H, Le C Y, Xie Z Y, et al. Study on callus inducement conditions for Pinus massoniana [J].Journal of China Three Gorges University:Natural Sciences,2007, 29(5): 457-460. [48] 杨金玲,桂耀林,郭仲琛.云杉属树种的体细胞胚胎发生[J].植物学通报,1999,16(l):59-66.Yang J L, Gui Y L, Guo Z C. Somatic embryogenesis of Picea species[J].Chinese Bulletin of Botany,1999,16(l):59-66. [49] 靳小翠,李志辉,杨模华,等.中南林业科技大学学报[J].马尾松幼胚胚性愈伤组织诱导的研究, 2010,30(4): 80-84. Jin X C, Li Z H, Yang M H, et al. Embryonic callus induction of immature embryo of Pinus massoniana[J].Journal of Central South University of Forestry & Technology,2010,30(4): 80-84. [50] 王虹,张金凤.针叶树组织培养繁殖技术研究进展[J].河北林业科技,2004,4(2):14-17.Wang H, Zhang J F. Research progress on tissue culture and propagation of conifer[J].The Journal of Hebei Forestry Science and Technology,2004,4(2):14-17. [51] 陈鄂,付朝辉.不同预处理对湿地松种子活力的影响[J].湖南林业科技,2009,36(3):22-25. Chen E, Fu C H. Effect of various treatments on the seed vigor of Pinus elliotti[J].Hunan Forestry Science and Technology, 2009,36(3):22-25. [52] Tremblay F M. Carbohydrate requirements for the development of black spruce(Picea mariana)and red spruce(P. rubens)somatic embryos[J].Plant Cell, Tissue and Organ Culture,1991,27(1): 95-103. [53] 成小飞,花小梅,李文钿.马尾松离体培养条件下的微繁殖和菌根的形成[J].林业科学研究,1995, 8(3): 241-246.Cheng X F,Hua X M, Li W D. Micro-propagation and mycorrhizal formation in in vitro culture of Pinus massoniana[J].Forest Research,1995, 8(3): 241-246. [54] Nancy E G,Glorinm D,Perez O,et al. In vitro response of embryos form different provenances of Pinus caribaea var. boudurensis Morelet[J].Plant Cell,Tissue and Organ Culture,1993,32(1):47-53. [55] 李林,黄忠良,李科友.蔗糖、活性炭对美国黄松不定芽增殖和生长的影响[J].福建林学院学报,2005,25(3): 260-263. Li L, Huang Z L, Li K Y. The influence of sucrose and activated charcoal on the Pinus ponderosa adventitious buds culture[J].Journal of Fujian College of Forestry,2005,25(3):260-263. [56] Tuskan G A,Sargent W A,Rensem T, et al. Influence of plant growth regulators, basal media and carbohydrate levels on the in vitro development of Pinus ponderosa cotyled on explants[J]. Plant Cell, Tissue and Organ Culture,1990,20(1):47-52. [57] Smulders M J M,de Klerk G J. Epigenetics in plant tissue culture[J]. Plant Growth Regulation,2011, 63(2): 137-146. [58] 熊兴耀,李炎林. 木本植物种质资源超低温保存研究进展[J]. 湖南农业大学学报:自然科学版,2012,38(4):347-353. Xiong Y X, Li Y L. Progress in cryopreservation of woody plant germplasm[J].Journal of Hunan Agricultural University:Natural Sciences,2012,38(4): 347-353. |
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