Acta Agronomica Sinica ›› 2020, Vol. 46 ›› Issue (02): 194-203.doi: 10.3724/SP.J.1006.2020.94065
• CROP GENETICS & BREEDING·GERMPLASM RESOURCES·MOLECULAR GENETICS • Previous Articles Next Articles
YIN Jia-Ming1,2,ZHONG Rong-Qi1,2,LIN Na1,2,TANG Zhang-Lin1,2,LI Jia-Na1,2
[1] | 周太炎, 关克俭, 郭荣鳞 . 中国植物志(第33卷). 北京: 科学出版社, 1987. pp 40-43. |
Zhou T Y, Guan K J, Guo R L. Flora of China (Vol 33). Beijing: Science Press, 1987. pp 40-43(in Chinese). | |
[2] | 殷家明, 罗鹏, 蓝泽蘧, 黄邦全 . 芥蓝×诸葛菜属间杂种的获得. 园艺学报, 1998,25:297-299. |
Yin J M, Luo P, Lan Z Q, Huang B Q . Production of intergeneric hybrids from Brassica alboglabra × Orychophragmus violaceus. Acta Hortic Sin, 1998,25:297-299 (in Chinese with English abstract). | |
[3] |
Fu W Q, Chen D Z, Pan Q, Li F F, Zhao Z G, Ge X H, Li Z Y . Production of red-flowered oilseed rape via the ectopic expression of Orychophragmus violaceus OvPAP2. Plant Biotechnol J, 2018,16:367-380.
doi: 10.1111/pbi.12777 pmid: 28640973 |
[4] |
Yang Y, Shen Y S, Li S D, Ge X H, Li Z Y . High density linkage map construction and QTL detection for three silique-related traits in Orychophragmus violaceus derived Brassica napus population. Front Plant Sci, 2017,8:1-13.
doi: 10.3389/fpls.2017.00001 pmid: 28220127 |
[5] | Luo P, Huang B Q . A study on exploitation of new vegetable germplasm Orychophragmus violaceus O. E. Schulz, a member of Brassicaceae. Acta Hortic, 1996,407:75-79. |
[6] |
Luo P, Huang B Q, Yin J M, Chen Z L, Chen Y H, Lan Z Q . A new forage genetic resource Orychophragmus violaceus(L.) O. E. Schulz. Genet Resour Crop Evol, 1998,45:491-494.
doi: 10.1023/A:1008668225306 |
[7] |
Huo X W, Liu C Q, Gao L, Xu X D, Zhu N L, Cao L . Hepatoprotective effect of aqueous extract from the seeds of Orychophragmus violaceus against liver injury in mice and HepG2 cells. Int J Mol Sci, 2017,18:1197-1212.
doi: 10.3390/ijms18061197 pmid: 28617329 |
[8] |
Zhu N L, Wu H F, Xu Z Q, Liu C Q, Tian Y, Hu M G, Sun Z H, Li P F, Ma G X, Xu X D . New alkaloids with unusual spermidine moieties from the seeds of Orychophragmus violaceus and their cytoprotective properties. Rsc Adv, 2017,7:41495-41498.
doi: 10.1039/C7RA02951A |
[9] |
Bai J S, Cao W D, Xiong J, Zeng N H, Gao S J, Katsuyoshi S . Integrated application of February Orchid (Orychophragmus violaceus) as green manure with chemical fertilizer for improving grain yield and reducing nitrogen losses in spring maize system in northern China. J Integr Agric, 2017,14:2490-2499.
doi: 10.1016/S2095-3119(15)61212-6 |
[10] |
Sun G D, Xu Y, Liu Y, Liu Z P . Microbial community dynamics of soil mesocosms using Orychophragmus violaceus combined with Rhodococcus ruber Em1 for bioremediation of highly PAH-contaminated soil. Appl Microbiol Biotechnol, 2014,98:10243-10253.
doi: 10.1007/s00253-014-5971-5 pmid: 25081560 |
[11] |
Wang R, Wu Y Y, Hang H T, Liu Y, Xie T X, Zhang K Y, Li H T . Orychophragmus violaceus L., a marginal land-based plant for biodiesel feedstock: Heterogeneous catalysis, fuel properties, and potential. Energ Convers Manage, 2014,84:497-502.
doi: 10.1016/j.enconman.2014.04.047 |
[12] |
Li X J, Alicen M T, Asghar S, Ling J, Lucas B, Rebecca E C, Zhang W, Li Z Y, Kent D C, Diana B, Zhang C Y, Robert E M, Edgar B C . Discontinuous fatty acid elongation yields hydroxylated seed oil with improved function. Nat Plants, 2018,4:711-720.
doi: 10.1038/s41477-018-0225-7 pmid: 30150614 |
[13] | 李子先, 曹熙德, 刘东旭, 刘俊, 张作仕, 贾勇炯 . 中国种诸葛菜变种群的核型研究. 作物学报, 1994,20:595-600. |
Li Z X, Cao X D, Liu D X, Liu J, Zhang Z S, Jia Y J . A study on the karyotype of some Chinese variants of Zhuge Cai,Orychophragmus violaceus. Acta Agron Sin, 1994,20:595-600 (in Chinese with English abstract). | |
[14] |
Al-Shehbaz I A, Yang G . A revision of the Chinese endemic Orychophragmus(Brassicaceae). Novon, 2000,10:349-353.
doi: 10.2307/3392983 |
[15] |
Zhou L R, Liu Z B, Wu J, Wang J M, Yang Y, Li X F . Karyotype variation and evolution in populations of the Chinese endemic Orychophragmus violaceus complex (Brassicaceae). Nord J Bot, 2008,26:375-383.
doi: 10.1111/njb.2008.26.issue-5-6 |
[16] |
Zhang L J, Dai S L . Genetic variation within and among populations of Orychophragmus violaceus(Cruciferae) in China as detected by ISSR analysis. Genet Resour Crop Evol, 2010,57:55-64.
doi: 10.1007/s10722-009-9450-2 |
[17] | Li M M, Wu L Y, Guo J L, Sun X Q, Hang Y Y . Analyses on allozyme variation and genetic diversity of four morphological types of Orychophragmus violaceus(Brassicaceae). J Plant Resour Environ, 2012,21:44-49. |
[18] |
Wang L, Ma X J, Yang C P . Two new infraspecific taxa of Orychophragmus violaceus(Brassicaceae) in Northeast China. Novon, 2012,22:109-113.
doi: 10.3417/2009133 |
[19] | 吴沿友, 罗鹏 . 诸葛菜的花药培养. 园艺学报, 1996,23:404-406. |
Wu Y Y, Luo P . Anther culture of Orychophragmus violaceus. Acta Hortic Sin, 1996,23:404-406 (in Chinese). | |
[20] | 贾勇炯, 唐琳, 林宏辉, 陈放, 王幼平 . 诸葛菜离体花粉粒诱导形成花粉植株的研究. 四川大学学报(自然科学版), 1999,36:1106-1110. |
Jia Y J, Tang L, Lin H H, Chen F, Wang Y P . Studies on the plant regeneration from Orychophragmus violaceus pollen. J Sichuan Univ(Nat Sci Edn), 1999,36:1106-1110 (in Chinese with English abstract). | |
[21] |
Couvreur L P, Franzke A, Al-Shehbaz I A, Bakker F T, Koch M A, Mummenhoff K . Molecular phylogenetics, temporal diversification, and principles of evolution in the Mustard Family (Brassicaceae). Mol Biol Evol, 2010,27:55-71.
doi: 10.1093/molbev/msp202 pmid: 19744998 |
[22] | 李再云, 刘后利 . 诸葛菜染色体的减数分裂配对研究. 华中农业大学学报, 1995,14:435-439. |
Li Z Y, Liu H L . A study on meiotic pairing of Orychophragmus violaceus. J Huazhong Agric Univ, 1995,14:435-439 (in Chinese with English abstract). | |
[23] |
Li Z Y, Liu H L, Luo P . Production and cytogenetics of intergeneric hybrids between Brassica napus and Orychophragmus violaceus. Theor Appl Genet, 1995,91:131-136.
doi: 10.1007/BF00220869 pmid: 24169678 |
[24] |
Li Z Y, Liu H L, Heneen W K . Meiotic behaviour in intergeneric hybrids between Brassica napus and Orychophragmus violaceus. Hereditas, 1996,125:69-75.
doi: 10.3389/fpls.2018.01557 pmid: 30450106 |
[25] |
Wu J G, Li Z Y, Liu Y, Liu H L, Fu T D . Cytogenetics and morphology of the pentaploid hybrid between Brassica napus and Orychophragmus violaceus and its progeny. Plant Breed, 1997,116:251-257.
doi: 10.1111/pbr.1997.116.issue-3 |
[26] |
Li Z Y, Cartagena J, Fukui K . Simultaneous detection of 5S and 45S rRNA genes in Orychophragmus violaceus by double fluorescence in situ hybridization. Cytologia, 2005,70:1-8.
doi: 10.1508/cytologia.70.1 |
[27] |
Lysak M A, Cheung K, Kitschke M, Bureš P . Ancestral chromosomal blocks are triplicated in Brassiceae species with varying chromosome number and genome size. Plant Physiol, 2007,145:402-410.
doi: 10.1104/pp.107.104380 pmid: 17720758 |
[28] |
Franzke A, Lysak M A, Al-Shehbaz I A, Koch M A, Mummenhoff K . Cabbage family affairs: the evolutionary history of Brassicaceae. Trends Plant Sci, 2011,16:108-116.
doi: 10.1016/j.tplants.2010.11.005 pmid: 21177137 |
[29] |
Lichter R . Induction of haploid plants from isolated pollen of Brassica napus. Zeitschrift für Pfanzenphysiologie, 1982,105:427-434.
doi: 10.1007/978-1-4939-8944-7_5 pmid: 30460559 |
[30] |
Nitta T, Takahata Y, Kaizuma N . Scanning electron microscopy of microspore embryogenesis in Brassica spp. Plant Cell Rep, 1997,16:406-410.
doi: 10.1007/BF01146783 pmid: 30727651 |
[31] |
Yeung E C . The canola microspore-derived embryo as a model system to study developmental processes in plants. J Plant Biol, 2002,45:119-133.
doi: 10.1007/BF03030304 |
[32] |
Joosen R, Cordewener J, Supena E D J, Vorst O, Lammers M, Maliepaard C, Zeilmaker T, Miki B, America T, Custers J, Boutilier K . Combined transcriptome and proteome analysis identifies pathways and markers associated with the establishment of rapeseed microspore-derived embryo development. Plant Physiol, 2007,144:155-172.
doi: 10.1104/pp.107.098723 pmid: 17384159 |
[33] |
Prem D, Solís M T, Bárány I, Rodríguez-Sanz H, Risueño M C, Testillano P S . A new microspore embryogenesis system under low temperature which mimics zygotic embryogenesis initials, expresses auxin and efficiently regenerates doubled- haploid plants in Brassica napus. BMC Plant Biol, 2012,12:127-145.
doi: 10.1186/1471-2229-12-127 pmid: 22857779 |
[34] |
Ilic-Grubor K, Attree S M, Fowke L C . Comparative morphological study of zygotic and microspore-derived embryos of Brassica napus L. as revealed by scanning electron microscopy. Ann Bot, 1998,82:157-165.
doi: 10.1006/anbo.1998.0661 |
[35] |
Supena E D J, Winarto B, Riksen T, Dubas E, Van Lammeren A, Offringa R, Boutilier K, Custers J . Regeneration of zygotic-like microspore-derived embryos suggests an important role for the suspensor in early embryo patterning. J Exp Bot, 2008,59:803-814.
doi: 10.1093/jxb/erm358 pmid: 18272920 |
[36] |
Chanana N P, Dhawan V, Bhojwani S S . Morphogenesis in isolated microspore cultures of Brassica juncea, Plant Cell Tiss Organ Cult, 2005,83:169-177.
doi: 10.1007/s00709-018-1268-3 pmid: 29922944 |
[37] |
Thomas T D . The role of activated charcoal in plant tissue culture. Biotechnol Adv, 2008,26:618-631.
doi: 10.1016/j.biotechadv.2008.08.003 |
[38] |
Da Silva Dias J C . Effect of activated charcoal on Brassica oleracea microspore culture embryogenesis. Euphytica, 1999,108:65-69.
pmid: 26415277 |
[39] | 姜风英, 冯辉, 王超楠 . 羽衣甘蓝的小孢子胚诱导和植株再生. 植物生理学通讯, 2005,41:725-727. |
Jiang F Y, Feng H, Wang C N . Embryogenesis and plant regeneration from isolated microspore culture of kale (Brassica oleracea L. var. acephala DC.). Bull Plant Physiol, 2005,41:725-727 (in Chinese). | |
[40] | 方淑桂, 陈文辉, 曾小玲, 朱朝辉, 廖晓珍, 郑学立 . 结球甘蓝游离小孢子培养及植株再生. 园艺学报, 2006,33:158-160. |
Fang S G, Chen W H, Zeng X L, Zhu C H, Liao X Z, Zheng X L . Isolated-microspore culture and plantlet regeneration in cabbage (Brassica oleracea L. var. capitata L.). Acta Hortic Sin, 2006,33:158-160 (in Chinese with English abstract). | |
[41] | 申书兴, 赵前程, 刘世雄, 张成合, 李振秋 . 四倍体大白菜小孢子植株的获得与倍性鉴定. 园艺学报, 1999,26:232-237. |
Shen S X, Zhao Q C, Liu S X, Zhang C H, Li Z Q . Plant regeneration from isolated microspore culture of autotetraploid Chinese cabbage [Brassica campestris L. ssp. pekinensis (Lour.) Olsson]. Acta Hortic Sin, 1999,26:232-237 (in Chinese with English abstract). | |
[42] |
Gu H H, Zhou W J, Hagberg P . High frequency spontaneous production of doubled haploid plants in microspore cultures of Brassica rapa ssp. chinensis. Euphytica, 2003,134:239-245.
doi: 10.1023/B:EUPH.0000004945.01455.6d |
[43] | 李菲, 张淑江, 章时蕃, 钮心恪, 孙日飞 . 大白菜游离小孢子培养胚胎发生中的加倍机制. 园艺学报, 2006,33:974-978. |
Li F, Zhang S J, Zhang S F, Niu X K, Sun R F . Embryogenesis and doubling mechanism of isolated microspore culture in Chinese cabbage (Brassica rapa ssp. pekinensis). Acta Hortic Sin, 2006,33:974-978 (in Chinese with English abstract). | |
[44] | 耿建峰, 侯喜林, 张晓伟, 蒋武生, 原玉香, 韩永平, 姚秋菊, 成妍, 李英 . 影响白菜游离小孢子培养关键因素分析. 园艺学报, 2007,34:111-116. |
Geng J F, Hou X L, Zhang X W, Jiang W S, Yuan Y X, Han Y P, Yao Q J, Cheng Y, Li Y . Isolated microspore culture in Brassica campestris ssp. Chinensis. Acta Hortic Sin, 2007,34:111-116 (in Chinese with English abstract). | |
[45] |
Leelavathi S, Reddy V S, Sen S K . Somatic-cell genetic studies in Brassica species: 2. Production of androgenetic haploid plants in Brassica nigra(L.) Koch. Euphytica, 1987,36:215-219.
doi: 10.1007/BF00730666 |
[46] | Margale E, Chevre A M . Factors effecting embryo production from microspore culture of Brassica nigra(Koch). Cruciferae Newsl, 1991,14:100-101. |
[47] |
Gland A, Lichter R, Schweiger H G . Genetic and exogenous factors affecting embryogenesis in isolated microspore culture of Brassica napus L. J Plant Physiol, 1988,132:613-617.
doi: 10.1016/S0176-1617(88)80264-5 |
[48] |
Zhou W J, Hagberg P, Tang G X . Increasing embryogenesis and doubling efficiency by immediate colchicines treatment of isolated microspores in spring Brassica napus. Euphytica, 2002,128:27-34.
doi: 10.1023/A:1020687517888 |
[49] |
Gu H H, Hagberg P, Zhou W J . Cold pretreatment enhances microspore embryogenesis in oil seed rape (Brassica napus L.). Plant Growth Regul, 2004,42:137-143.
doi: 10.1023/B:GROW.0000017488.29181.fa |
[50] |
Zhang G Q, Zhang D Q, Tang G X, He Y, Zhou W J . Plant development from microspore derived embryos in oilseed rape as affected by chilling, desiccation and cotyledon excision. Biol Plant, 2006,50:180-186.
doi: 10.1007/s10535-006-0004-6 |
[51] |
Shi Y, Xu G, Warrington T B, Murdoch G K, Kazala E C, Snyder C L . Microspore-derived cell suspension cultures of oilseed rape as a system for studying gene expression. Plant Cell Tiss Organ Cult, 2008,92:131-139.
doi: 10.1007/s11240-007-9313-5 |
[52] |
Prem D, Gupta K, Sarkar G, Agnihotri A . Activated charcoal induced high frequency microspore embryogenesis and efficient doubled haploid production in Brassica juncea. Plant Cell Tiss Organ Cult, 2008,93:269-282.
doi: 10.1007/s11240-008-9373-1 |
[53] |
Leskovšek L, Jakše M, Bohanec B . Doubled haploid production in rocket (Eruca sativa Mill.) through isolated microspore culture. Plant Cell Tiss Organ Cult, 2008,93:181-189.
doi: 10.1007/s11240-008-9359-z |
[1] | WEN Qin, JIA Si-Si, WANG Jia-Feng, HUANG Cui-Hong, WANG Hui, CHEN Zhi-Qiang, GUO Tao. Construction and identification of haploid induction gene OsMATL mutants in rice [J]. Acta Agronomica Sinica, 2021, 47(5): 827-836. |
[2] | CHEN Xin-Min,WANG Feng-Ju,LI Si-Min,ZHANG Wen-Xiang. Stable Production of Wheat Haploid and Doubled Haploid by Wheat × Maize Cross [J]. Acta Agron Sin, 2013, 39(12): 2247-2252. |
[3] | WU Shao-Hua,ZHANG Hong-Yu,XUE Jing-Jing,XU Pei-Zhou,WU Xian-Jun. DNA Methylation Site Analysis of Haploid, Diploid and Hybrids in Twin-Seedling Rice [J]. Acta Agron Sin, 2013, 39(01): 50-59. |
[4] | HUI Guo-Qiang, DU He-Wei, YANG Xiao-Gong, LIU Guang-Hui, WANG Zhen-Tong, ZHANG Yi-Rong, ZHENG Yan-Ping,YAN Jian-Bing, CHANG Ming-Tang, LI Jian-Sheng. Doubling Efficiency of Maize Haploids Treated by Different Herbicides [J]. Acta Agron Sin, 2012, 38(03): 416-422. |
[5] |
LIANG Xiao-Hong,YI Zhi-Ben,DENG Xiao-Min,XIE Xiao-Li.
Observation and Analysis of Meiotic Behaviors of Pollen-Mother-Cell in Sorghum A6 Cytoplasmic Male Sterile Line
[J]. Acta Agron Sin, 2010, 36(4): 709-712.
|
[6] | HE Jin-Hua, CHENG Xing-An, CHEN Zhi-Xiong, GUO Hai-Bin, LIU Xiang-Dong, LU Yong-Gen. Changes in the Pattern of Organization of Microtubules during Meiosis in Pollen Mother Cell (PMC) of Autotetraploid Rice [J]. Acta Agron Sin, 2010, 36(10): 1777-1785. |
[7] | SANG Yun,ZHAO Liang,ZHANG Kun-Pu,TIAN Ji-Chun, YE Bao-Xing. Mapping QTLs for Uppermost Internode Diameter and Thickness and Area of Culm Wall with Doubled-Haploid Population in Wheat [J]. Acta Agron Sin, 2010, 36(1): 61-67. |
[8] | SONG Zhao-Jian,DU Chao-Qun,HU E-Ping,TANG Zhi-Qiang,CHEN Dong-Ling,HE Yu-Chi. Identification and Comparison of diploid and Tetraploid Hybrids of Oryza sativa X O.meyeriana [J]. Acta Agron Sin, 2010, 36(07): 1144-1152. |
[9] | CAO Yun-Ying;DUAN Hua;YANG Li-Nian;WANG Zhi-Qing;YANG Jian-Chang. Effect of Heat-Stress during Meiosis on Grain Yield of Rice Cultivars Differing in Heat-Tolerance and Its Physiological Mechanism [J]. Acta Agron Sin, 2008, 34(12): 2134-2142. |
[10] | CHENG Hai-Tao; JANG Hua;XUE Da-Wei;GUO Long-Biao;ZENG Da-Li;ZHANG Guang-Heng;QIAN Qian. Mapping of QTLs Underlying Tolerance to Alkali at Germination and Early Seedling Stages in Rice [J]. Acta Agron Sin, 2008, 34(10): 1719-1727. |
[11] | SHI Chun-Lin;JIN Zhi-Qing;ZHENG Jian-Chu;TANG Ri-Sheng. Quantitative Analysis on the Effects of High Temperature at Meiosis Stage on Seed-Setting Rate of Rice Florets [J]. Acta Agron Sin, 2008, 34(04): 627-631. |
[12] | YANG Jian-Chang;LIU Kai;ZHANG Shen-Feng;WANG Xue-Ming;WANG Zhi-Qin;LIU Li-Jun. Hormones in Rice Spikelets in Responses to Water Stress during Meiosis [J]. Acta Agron Sin, 2008, 34(01): 111-118. |
[13] | YANG De-Long;LI Wei;JING Rui-Lian;CHANG Xiao-Ping. Genetic Analysis of Quantitative Traits Associated with Soluble Carbohydrate Content of Doubled Haploid Population in Wheat(Triticum aestivum L.) Stem [J]. Acta Agron Sin, 2007, 33(09): 1543-1547. |
[14] | GUO Yong-Mei;MU Ping;LIU Jia-Fu;LI Zi-Chao;LU Yi-Xuan. Correlation Analysis and QTL Mapping of Grain Shape and Grain Weight in Rice under Upland and Lowland Environments [J]. Acta Agron Sin, 2007, 33(01): 50-56. |
[15] | YI Zhi-Ben;LIANG Xiao-Hong;ZHAO Wei-Jun;CUI Gui-Mei;SUN Yi;CUI Li-Xia. Cytolgical Observation and Analyses of A3 Cytoplasmic Male Sterility in Sorghum [J]. Acta Agron Sin, 2006, 32(12): 1909-1912. |
|