|Table of Contents|

Introduction of Anti-pest Gene (cry V) to Soybean via Pollen-Tube Pathway(PDF)

《大豆科学》[ISSN:1000-9841/CN:23-1227/S]

Issue:
2010年04期
Page:
565-568,574
Research Field:
Publishing date:

Info

Title:
Introduction of Anti-pest Gene (cry V) to Soybean via Pollen-Tube Pathway
Author(s):
WU Xiao-xia1 LIU Wei-ting2 LIU Qi3 LI Jing1 MA Yong4 LI Wen-bin1
1.Agricultural College of Northeast Agricultural University,Chinese Education Ministry’s and Provincial Key Laboratory of Soybean Biology, Harbin 150030;
2.Plant Virus-free Nursery Stock Institute of Heilongjiang Academy of Agricultural Sciences, Harbin 150086;
3.Horticulture Branch of Heilongjiang Academy of Agricultural Sciences, Harbin 150086;
Keywords:
SoybeanAnti-pest gene(cry VPollen-tube pathway
PACS:
S565.1
DOI:
10.11861/j.issn.1000-9841.2010.04.0565
Abstract:
Anti-pest gene (cry V) was introduced to soybean via pollen-tube pathway during blossom period. 1211 flowers out of 2760 ones survived 3 days after the operation, the survival rate and podding rate was 43.88%and 33.6%, respectively. The harvested seeds were planted in greenhouse and 5 plants with positive result were obtained after Km screening, PCR identification, southern-blot testing and RT-PCR testing. Results suggestted that the anti-pest gene (cry V) were successfully introduced into those 5 plants and the transformation rate was 1.8‰.

References:

[1] 王继安,罗秋香 . 大豆食心虫抗性品种鉴定及抗性性状分析 [J]. 中国油料作物学报 , 2001, 23(2) 57-59. Wang J A Luo Q X. Evaluation of soybean pod borer resistance and analysis of resistance characteristics in soybean[J]. Chinese Journal of Oil Crop Sciences, 2001, 23(2) 57-59.

[2]杨文郁, 由冬梅, 曲沈海. 大豆食心虫虫食率及对产量影响计算方法的探讨[J]. 内蒙古农业科技,19976:27-28.Yang W Y, You D M, Qu S H. Pod borer insect eating rate and yield calculation method of soybean[J]. Inner Moglia Agricultural Science and Technology19976:27-28.

[3]周光宇,曾以申,杨晚霞.远缘分子杂交—高粱与水稻基因组DNA整合[J].中国科学A辑(英文版), 19815):701-709. Zhou G Y, Zen Y S, Yang W X. The molecular basis of remote hybridizationan evidence for the possible integration of sorghum DNA into rice genome[J].Science in China,Ser.A, 19815):701-709.

[4]Luo Z XWu R. A simple method for the transformation of rice via the pollen-tube pathway[J].Plant Molecular Biology Reporter, 198863):165-174.

[5]谢道昕, 范云六, 倪万潮, . 苏云金芽孢杆菌(Bacillus thuringiensis)杀虫晶体蛋白基因导入棉花获得转基因植株[J]. 中国科学B, 1991(4): 367-373. Xie D X ,Fan Y L,Ni W C,et al. Bacillus thuringiensis transfered into cotton and obtained transgenic plant[J].Science in China,Ser.B,1991(4): 367-373.

[6]段晓岚, 陈善葆. 外源DNA导入水稻引起性状变异[J]. 中国农业科学, 1985(3):6-11.Duan X L, Chen S B. Variation of the characters in rice (Oryza sativa) induced by foreign DNA uptake [J].Scientia Agricultura Science1985(3):6-11.

[7]雷勃钧, 尹光初, 卢翠华, . 外源DNA直接导入大豆的研究[J]. 大豆科学, 1991,10(1):58-63.Lei B J ,Yin G C Lu C H,et al. Study of exogenous DNA directly transfered into soybean[J].Soybean Science, 1991,10(1):58-63.

[8]胡张华, 黄锐之, 刘智宏, . 利用花粉管导入法获得转反义PEP基因大豆植株[J]. 浙江农业学报,1999,11(2):99-100.Hu Z H, Huang R Z, Liu Z H, et al. Gaining of transgenic soybean plants through pollen tube passage[J]. Acta Agriculturae of Zhejiangensis,1999, 11(2):99-100.

[9]周思军. 大豆抗虫基因转移及其转化系统优化研究[D]. 哈尔滨:东北农业大学, 2000.(Zhou S J . Soybean insect-resistant gene transfer and optimization of transformation system[D]. Harbin:Northeast Agricultural University2000.)

[10]雷勃钧, 尹光初, 卢翠华,. 外源DNA导入大豆的适宜时期与相应方法[J]. 中国油料作物学报, 1991(1):88-89.Lei B J, Yin G C, Lu C H ,et al. Appropriate methods and period of exogenous DNA directly transferred into soybean [J]. Chinese Journal of Oil Crop Sciences,1991(1):88-89.

[11]雷勃钧, 李希臣, 卢翠华,. 外源野生大豆DNA导入栽培大豆及RAPD分子验证[J]. 中国科学B, 1994(6):596-601. ( Lei B J, Li X C, Lu C H, et al . DNA transfered into cultivated soybean and RAPD molecular authentication[J]. Science in China,Ser.B,1994(6):596-601.)

[12]雷勃钧,卢翠华,钱华,等. 导入外源总DNA获得优质高蛋白和双高大豆新品系[J]. 大豆科学, 1995,14(3):203-208.Lei B J, Lu C H, Qian H, et al. New soybean strains of high protein and double high content abtained from introduction of exogenous total DNA[J]. Soybean Science, 1995,14(3): 203-208.

[13]岳绍先. 生物技术在我国作物改良中的应用[J]. 植物学通报, 1990(2):18-23.Yue S X .The application of biotechnology in crop improvement in china[J].Chinese Bulletin of Botany,1990(2):18-23

[14]刘德璞, 廖林, 袁鹰, . 导入外源DNA获得抗SMV大豆品系[J]. 大豆科学, 1997,16(4):277-282 Liu D P, Liao L, Yuan Y, et al. Gaining of soybean lines resistant to SMV by introducine exogenous DNA[J]. Soybean Science, 1997,16(4):277-282.

[15]曾君祉, 王东江, 吴有强, . 用花粉管途径获得小麦转基因植株[J]. 中国科学B, 1993(3):256-262.Zen J Z ,Wang D J ,Wu Y Q ,et al. Transgenic wheat plants obtained with pollen tube pathway[J]. Science in China,Ser.B, 1993(3) :256-262.

[16]丁群星, 谢友菊, 戴景瑞,. 用子房注射法将Bt毒蛋白基因导入玉米的研究[J]. 中国科学B, 1993(7):707-713. Ding Q X, Xie Y J, Dai J R ,et al. Bt gene transfer into maize With ovary injection[J].Science in China,Ser.B, 1993(7) :707-713.

[17]Ohta Y, Shimosaka M, Murata K, et al.Molecular cloning of the N-acetylneuraminate lyase genein Escherichia coli K-12[J]. Applied Microbiology and Biotechnology, 1986, 24:386-391.

[18]Datta S K, Datta K, Potrykus I,et al. Fertile Indiea rice plants regenerated from protoplasts isolated from microspore derived cell suspensions[J].Plant Cell Reports1990, 9:253-256.


Memo

Memo:
-
Last Update: 2014-09-14