作物杂志,2019, 第3期: 2023 doi: 10.16035/j.issn.1001-7283.2019.03.004
赵越,孙宇峰,韩承伟,韩喜财,姜颖,曹焜,王晓楠
Zhao Yue,Sun Yufeng,Han Chengwei,Han Xicai,Jiang Ying,Cao Kun,Wang Xiaonan
摘要:
工业大麻性别表达影响着工业大麻种子、纤维和药用成分产量,其性别表达除了受到遗传物质控制外,还受到外界环境条件的影响,这种复杂性使得性别研究一直是工业大麻研究的难点和热点。分子标记技术能在DNA水平上鉴定工业大麻性别,开发与工业大麻性别紧密连锁的分子标记可为大麻性别早期鉴定和特定性别分子辅助选择育种提供理论依据。本文就分子标记在工业大麻性别研究中的应用进展进行了总结,并对应用前景进行了展望。
[1] |
Anne-Michelle F, Alice B, Nicolas D , et al. Sex chromosomes and quantitative sex expression in monoecious hemp (Cannabis sativa L.). Euphytica, 2014,196(2):183-197.
doi: 10.1007/s10681-013-1023-y |
[2] |
Mandolino G, Carboni A, Forapani S , et al. Identification of DNA markers linked to the male sex in dioecious hemp (Cannabis sativa L.). Theoretical and Applied Genetics, 1999,98(1):86-92.
doi: 10.1007/s001220051043 |
[3] | 宋书娟, 刘卉, 邵宏 . 大麻性别连锁的特异DNA标记的初步研究. 中国药物依赖性杂志, 2002(3):182-184. |
[4] | Shao H, Song S J, Clarke R C , et al. Female-associated DNA polymorphisms of hemp (Cannabis sativa L.). Journal of Industrial Hemp, 2003,8(1):5-9. |
[5] |
Ottó T, Nándor B, Erzsébet K , et al. Novel male-specific molecular markers (MADC5,MADC6) in hemp. Euphytica, 2002,127(2):209-218.
doi: 10.1023/A:1020204729122 |
[6] | Koichi S, Koichiro S, Yoshibumi K , et al. A male-associated DNA sequence in a dioecious plant,Cannabis sativa L. Plant and Cell Physiology, 1995,36(8):1549-1554. |
[7] |
Koichi S, Nobuko O, Kiichi F , et al. Site-specific accumulation of a LINE-like retrotransposon in a sex chromosome of the dioecious plant Cannabis sativa L. Plant Molecular Biology, 2000,44(6):723-732.
doi: 10.1023/A:1026574405717 |
[8] |
Koichi S, Tomoko A, Tomoki M , et al. RAPD markers encoding retrotransposable elements are linked to the male sex in Cannabis sativa L. Genome, 2005,48(5):931-936.
doi: 10.1139/g05-056 |
[9] |
Giuseppe M, Andrea C, Manuela B , et al. Occurrence and frequency of putatively Y chromosome linked DNA markers in Cannabis sativa L. Euphytica, 2002,126(2):211-218.
doi: 10.1023/A:1016382128401 |
[10] | 陈其军, 韩玉珍, 傅永福 , 等. 大麻性别的RAPD和SCAR分子标记. 植物生理学报, 2001,27(2):173-178. |
[11] | Monika M, Jakub S . Sex-linked markers in diocious plants. Plant Omics Journal, 2013,6(2):144-149. |
[12] | 吕佳淑, 赵立宁, 臧巩固 , 等. 大麻性别相关AFLP分子标记筛选. 湖南农业大学学报(自然科学版), 2010,36(2):123-127. |
[13] | 郭丽, 张海军, 王明泽 , 等. 大麻雄性基因连锁AFLP分子标记的筛选及鉴定. 中国麻业科学, 2015,37(1):5-8. |
[14] |
Flachowsky H, Schumann E, Weber W E , et al. Application of AFLP for the detection of sex-specific markers in hemp. Plant Breeding, 2001,120(4):305-309.
doi: 10.1046/j.1439-0523.2001.00620.x |
[15] |
Moliterni V M C, Cattivelli L, Ranalli P , et al. The sexual differentiation of Cannabis sativa L.:A morphological and molecular study. Euphytica, 2004,140(1/2):95-106.
doi: 10.1007/s10681-004-4758-7 |
[16] |
Peil A, Flachowsky H, Schumann E , et al. Sex-linked AFLP markers indicate a pseudoautosomal region in hemp. Theoretical and Applied Genetics, 2003,107(1):102-109.
doi: 10.1007/s00122-003-1212-5 |
[17] |
Anne-Michelle F, Xavier D, Marie-Christine F , et al. Identification of QTLs for sex expression in dioecious and monoecious hemp (Cannabis sativa L.). Euphytica, 2016,209(2):357-376.
doi: 10.1007/s10681-016-1641-2 |
[18] |
Rode J, In-Chol K, Saal B , et al. Sex-linked SSR markers in hemp. Plant Breeding, 2005,124(2):167-170.
doi: 10.1111/pbr.2005.124.issue-2 |
[19] |
Zhang L G, Chang Y, Zhang X F , et al. Analysis of the genetic diversity of Chinese native Cannabis sativa cultivars by using ISSR and chromosome markers. Genetics and Molecular Research, 2014,13(4):10490-10500.
doi: 10.4238/2014.December.12.10 |
[20] |
Jason S, Jake M S, Kyle M G , et al. The genetic structure of marijuana and hemp. PLoS ONE, 2015,10(8):e0133292.
doi: 10.1371/journal.pone.0133292 |
[21] |
Gao C S, Xin P F, Cheng C H , et al. Diversity analysis in Cannabis sativa based on large-scale development of expressed sequence tag-derived simple sequence repeat markers. PLoS ONE, 2014,9(10):e110638.
doi: 10.1371/journal.pone.0110638 |
[22] | 信朋飞, 臧巩固, 赵立宁 , 等. 大麻SSR标记的开发及指纹图谱的构建. 中国麻业科学, 2014,36(4):174-182. |
[1] | 鲁守平,张华,孟昭东,穆春华. 利用分子标记技术对玉米自交系子粒油分的改良研究[J]. 作物杂志, 2019, (3): 2428 |
[2] | 张晓艳,孙宇峰,曹焜,姜颖,韩承伟,赵越,韩喜财,王晓楠. 黑龙江省工业大麻育种现状及展望[J]. 作物杂志, 2019, (3): 1519 |
[3] | 姜颖,冯乃杰,王晓楠,韩喜财,韩承伟,赵越,曹焜,孙宇峰,李振伟. 工业大麻雄性相关RAPD和SCAR标记的筛选与鉴定[J]. 作物杂志, 2019, (3): 6672 |
[4] | 房裕东,韩天富. 作物快速育种技术研究进展[J]. 作物杂志, 2019, (2): 17 |
[5] | 王伟伟, 王洪洋, 刘晶, 梁静思, 李灿辉, 唐唯. 马铃薯重要性状QTL定位及3个抗病性状分子标记辅助选育[J]. 作物杂志, 2018, (6): 1016 |
[6] | 唐慧娟,臧巩固,程超华,唐蜻,李育君,赵立宁. 工业大麻产量和品质性状的对应分析[J]. 作物杂志, 2018, (2): 5255 |
[7] | 张帅,庞玉辉,王征宏,王黎明,陈春燕,曾占奎,王春平. 小麦种质资源农艺性状变异及其遗传多样性分析[J]. 作物杂志, 2018, (2): 4451 |
[8] | 陆姗姗,吴承来,李岩,张春庆. 玉米自交系性状保持和纯化的分子依据[J]. 作物杂志, 2018, (1): 4148 |
[9] | 姜颖,孙宇峰,潘冬梅,李秋芝. 工业大麻甲基磺酸乙酯(EMS)诱变体的筛选及RAPD分析[J]. 作物杂志, 2017, (6): 5054 |
[10] | 冯常辉,张友昌,别墅,张教海,王孝纲,夏松波,张成,秦鸿德. 棉花黄萎病抗性分子标记辅助选择改良研究进展[J]. 作物杂志, 2017, (5): 2125 |
[11] | 董志敏,厉志,刘佳,陈亮,衣志刚,王博,刘宝权. 大豆抗灰斑病研究进展[J]. 作物杂志, 2017, (3): 15 |
[12] | 任海红, 刘学义, 朱保葛, 等. 大豆油分相关分子标记的实用性分析与验证[J]. 作物杂志, 2015, (5): 3740 |
[13] | 何冰纾, 徐淑兔, 冯娇娇, 等. 基于SNP标记的陕单609杂优模式分析[J]. 作物杂志, 2015, (4): 3335 |
[14] | 郝俊杰, 张晓艳, 万述伟, 等. 利用分子标记选择普通菜豆抗角斑病基因聚合体[J]. 作物杂志, 2014, (6): 2731 |
[15] | 徐振华, 金正勋, 张忠臣, 等. 黑龙江省粳稻种质资源遗传结构分析[J]. 作物杂志, 2014, (1): 3844 |
|