Efficient production of genetically engineered, male-sterile Arabidopsis thaliana using anther-specific promoters and genes derived from Brassica oleracea and B. rapa

被引:0
作者
Ken-ichi Konagaya
Sugihiro Ando
Shinichiro Kamachi
Mai Tsuda
Yutaka Tabei
机构
[1] National Institute of Agrobiological Sciences,Division of Plant Science
来源
Plant Cell Reports | 2008年 / 27卷
关键词
Male sterility; Tapetum; Cysteine protease; Gene flow; Programmed cell death;
D O I
暂无
中图分类号
学科分类号
摘要
Prevention of transgene flow from genetically modified crops to food crops and wild relatives is of concern in agricultural biotechnology. We used genes derived from food crops to produce complete male sterility as a strategy for gene confinement as well as to reduce the food purity concerns of consumers. Anther-specific promoters (A3, A6, A9, MS2, and MS5) were isolated from Brassica oleracea and B. rapa and fused to the β-glucuronidase (GUS) reporter gene and candidate genes for male sterility, including the cysteine proteases BoCysP1 and BoCP3, and negative regulatory components of phytohormonal responses involved in male development. These constructs were then introduced into Arabidopsis thaliana. GUS analyses revealed that A3, A6, and A9 had tapetum-specific promoter activity from the anther meiocyte stage. Male sterility was confirmed in tested constructs with protease or gibberellin insensitive (gai) genes. In particular, constructs with BoCysP1 driven by the A3 or A9 promoter most efficiently produced plants with complete male sterility. The tapetum and middle layer cells of anthers expressing BoCysP1 were swollen and excessively vacuolated when observed in transverse section. This suggests that the ectopic expression of cysteine protease in the meiocyte stage may inhibit programmed cell death. The gai gene also induced male sterility, although at a low frequency. This is the first report to show that plant cysteine proteases and gai from food crops are available as a novel tool for the development of genetically engineered male-sterile plants.
引用
收藏
页码:1741 / 1754
页数:13
相关论文
共 322 条
[1]  
Aarts MG(1993)Transposon tagging of a male sterility gene in Nature 363 715-717
[2]  
Dirkse WG(1997)The Plant J 12 615-623
[3]  
Stiekema WJ(1969) protein shares similarity with reductases in elongation/condensation complexes Stain Technol 44 117-122
[4]  
Pereira A(2000)Differential staining of aborted and nonaborted pollen Plant Mol Biol 44 399-415
[5]  
Aarts MG(2004)Plant proteolytic enzymes: possible roles during programmed cell death Development 131 1055-1064
[6]  
Hodge R(1998)Gibberellin regulates Plant J 16 735-743
[7]  
Kalantidis K(2003) floral development via suppression of DELLA protein function J Exp Bot 54 1045-1056
[8]  
Florack D(2002)Floral dip: a simplified method for Nat Biotechnol 20 581-586
[9]  
Wilson ZA(2005)-mediated transformation of Plant Mol Biol 57 645-657
[10]  
Mulligan BJ(1998)Identification of dehydration-responsive cysteine proteases during post-harvest senescence of broccoli florets Plant J 15 345-356