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结球白菜和拟南芥防御素基因的鉴定与比较分析 被引量:3

Genome-wide identification and comparative analysis of defensin genes from Chinese cabbage and Arabidopsis thaliana
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摘要 植物防御素是一类富含半胱氨酸的小分子蛋白,在抗病反应中起着重要作用。本研究以结球白菜和拟南芥基因组序列为材料,利用生物信息学手段进行基因鉴定、染色体定位和进化分析。结果表明,结球白菜有11个防御素基因成员,数量少于拟南芥(15个),基因组DNA全长183~637 bp,开放阅读框全长183~363 bp;除结球白菜Bra029208序列外,其余防御素基因均有1个内含子;基因定位结果表明,一些基因成簇分布,推测由串联重复所致,拟南芥的3号、结球白菜的1、4、5和10号染色体均没有防御素基因的分布;进化分析结果表明,26个防御素成员可分为三大类,Ⅰ类有10条序列,Ⅱ类13条,Ⅲ类最少,仅3条。 Plant defensins are low-molecular-weight cysteine-rich proteins, and play important roles in disease resistance response. Defensin gene identification, chromosomal location and evolution analysis were performed by bioinformatics methods taking genome sequences of Chinese cabbage and Arabidopsis thaliana as materials. The results revealed 11 defensin gene members in Chinese cabbage, less than those in A. thaliana (15). The full genomic DNA was 183 -637 bp in length with open reading frames varying from 183 -363 bp. All defen- sin genes contained an intron except Bra029208 from Chinese cabbage. Chromosomal location results showed few sets of genes clustered on chromosomes, and this phenomenon was speculated to be caused by tandem re- peat. Evolutionary analysis indicated that the 26 defensin members could be divided into 3 types. There were 10 and 13 members in type I and type Ⅱ defensin, respectively. However, only 3 members were found in type Ⅲ defensin.
出处 《植物病理学报》 CAS CSCD 北大核心 2013年第4期368-375,共8页 Acta Phytopathologica Sinica
基金 浙江省公益性技术应用研究计划项目(2012C32011) 台州市科技计划项目(121KY16)
关键词 结球白菜 防御素基因 序列分析 染色体定位 进化分析 Chinese cabbage defensin gene sequence analysis chromosomal location evolution analysis
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  • 1张宏,胡春香,张德禄,刘永定.植物防御素研究进展[J].西北师范大学学报(自然科学版),2006,42(5):112-117. 被引量:11
  • 2Balandin M, Royo J, Gomez E, et al. 2005. A protective role for the embryo surrounding region of the maize endo- sperm, as evidenced by the characterisation of ZmESR- 6, a defensin gene specifically expressed in this region [J]. Plant Molecular Biology, 58(2): 269-282.
  • 3Berrocal-Lobo M, Segura A, Moreno M, et al. 2002. Snakin- 2, an antimicrobial peptide from potato whose gene is locally induced by wounding and responds to pathogen infection[J]. Plant Physiology, 128 (3): 951-961.
  • 4Chenna R, Sugawara H, Koike T, et al. 2003. Multiple se- quence alignment with the clustal series of programs[J]. Nucleic Acids Research, 31 (13): 3497-3500.
  • 5Expesito-Rodriguez M, Borges A A, Borges-P6rez A, et al. 2008. Selection of internal control genes for quantita- tive real-time RT-PCR studies during tomato develop- ment process [J]. BMC Plant Biology, 8: 131.
  • 6Gao A G, Hakimi S M, Mittanck C A, et al. 2000. Fungal pathogen protection in potato by expression of a plant defensin peptide[J]. Nature Biotechnology, 18(12): 1307-1310.
  • 7Gaspar Y M, McKenna J A, McGinness B S, et al. 2014. Field resistance to Fusarium oxysporum and Verticillium dahliae in transgenic cotton expressing the plant defensin NaD 1 [J]. Journal of Experimental Botany, 65(6): 1541-1550.
  • 8Hanks J N, Snyder A K, Graham M A, et al. 2005. Defensin gene family in Medicago truncatula: Structure, expres- sion and induction by signal molecules[J]. Plant Molecu- lar Biology, 58(3): 385-399.
  • 9Jain M, Tyagi A K, Khurana J P. 2006. Genome-wide analy- sis, evolutionary expansion, and expression of early aux- in- responsive SAUR gene family in rice (Oryza sativa) [J]. Genomics, 88(3):360-371.
  • 10Koike M, Okamoto T, Tsuda S, et al. 2002. A novel plant de- fensin-like gene of winter wheat is specifically induced during cold acclimation[J]. Biochemical and Biophysi- cal Research Communications, 298(1): 46-53.

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