Genes involved in biosynthesis and signalisation of ethylene in Brassica oleracea and Arabidopsis thaliana:: identification and genome comparative mapping of specific gene homologues

被引:19
作者
Babula, D
Misztal, LH
Jakubowicz, M
Kaczmarek, M
Nowak, W
Sadowski, J
机构
[1] Adam Mickiewicz Univ, Dept Biotechnol, PL-60371 Poznan, Poland
[2] Polish Acad Sci, Inst Plant Genet, PL-60479 Poznan, Poland
关键词
D O I
10.1007/s00122-005-0136-7
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
The study reported was aimed at the identification and determination of the chromosomal organisation of genes involved in the ethylene biosynthesis and signalling pathways in Brassica oleracea, on the basis of the Arabidopsis thaliana DNA probes and in silico genome analysis. Because of its polyploidal origin, the B. oleracea genome is characterised by extensive gene redundancy. Therefore, an important aspect of gene expression in B. oleracea response to environmental stimuli is to identify the specific gene copy involved. This aspect should also be taken into consideration while studying the genetic basis of biosynthesis and signal transduction in relation to basic phytohormones. Our present work concerns the identification of homologue genes involved in ethylene biosynthesis such as SAM, ACS and ACO, as well as those involved in the ethylene signalling pathway, mainly ETR1, CTR1, MKK4, MKK5, EIN2, EIN3, EREBP, ERF5 and ERF7 on the basis of the restriction fragment length polymorphism (RFLP) and PCR mapping. In the case of ACC synthases, (ACSs) the in silico analysis of gene variants in the genome of A. thaliana was followed by the identification of homologues to ACS2, ACS6 and ACS7 in the B. oleracea database. In total, 22 loci with sequence homology to the genes under analysis were included in the existing B. oleracea RFLP chromosomal map. Based on the stress responsiveness of most of the A. thaliana genes analysed in this study, we performed initial functional analysis of some gene homologues mapped. With the use of the RT-PCR approach the conservation of differential transcriptional induction of ACS homologues in the B. oleracea and A. thaliana was demonstrated during ozone stress.
引用
收藏
页码:410 / 420
页数:11
相关论文
共 33 条
[1]   MAP-BASED CLONING OF A GENE CONTROLLING OMEGA-3-FATTY-ACID DESATURATION IN ARABIDOPSIS [J].
ARONDEL, V ;
LEMIEUX, B ;
HWANG, I ;
GIBSON, S ;
GOODMAN, HM ;
SOMERVILLE, CR .
SCIENCE, 1992, 258 (5086) :1353-1355
[2]   A multi-responsive gene encoding 1-aminocyclopropane-1-carboxylate synthase (ACS6) in mature Arabidopsis leaves [J].
Arteca, JM ;
Arteca, RN .
PLANT MOLECULAR BIOLOGY, 1999, 39 (02) :209-219
[3]   MAP kinase signalling cascade in Arabidopsis innate immunity [J].
Asai, T ;
Tena, G ;
Plotnikova, J ;
Willmann, MR ;
Chiu, WL ;
Gomez-Gomez, L ;
Boller, T ;
Ausubel, FM ;
Sheen, J .
NATURE, 2002, 415 (6875) :977-983
[4]   Chromosomal mapping of Brassica oleracea based on ESTs from Arabidopsis thaliana:: complexity of the comparative map [J].
Babula, D ;
Kaczmarek, M ;
Barakat, A ;
Delseny, M ;
Quiros, CF ;
Sadowski, J .
MOLECULAR GENETICS AND GENOMICS, 2003, 268 (05) :656-665
[5]   Functional divergence of duplicated genes formed by polyploidy during Arabidopsis evolution [J].
Blanc, G ;
Wolfe, KH .
PLANT CELL, 2004, 16 (07) :1679-1691
[6]   A recent polyploidy superimposed on older large-scale duplications in the Arabidopsis genome [J].
Blanc, G ;
Hokamp, K ;
Wolfe, KH .
GENOME RESEARCH, 2003, 13 (02) :137-144
[7]  
ECKER JR, 1995, SCIENCE, V268, P667, DOI 10.1126/science.7732375
[8]   The genetics of stamenoid petal production in oilseed rape (Brassica napus) and equivalent variation in Arabidopsis thaliana [J].
Fray, MJ ;
Puangsomlee, P ;
Goodrich, J ;
Coupland, G ;
Evans, EJ ;
Arthur, AE ;
Lydiate, DJ .
THEORETICAL AND APPLIED GENETICS, 1997, 94 (6-7) :731-736
[9]   Identification, analysis, and utilization of conserved ortholog set markers for comparative genomics in higher plants [J].
Fulton, TM ;
Van der Hoeven, R ;
Eannetta, NT ;
Tanksley, SD .
PLANT CELL, 2002, 14 (07) :1457-1467
[10]   Comparative mapping between potato (Solanum tuberosum) and Arabidopsis thaliana reveals structurally conserved domains and ancient duplications in the potato genome [J].
Gebhardt, C ;
Walkemeier, B ;
Henselewski, H ;
Barakat, A ;
Delseny, M ;
Stüber, K .
PLANT JOURNAL, 2003, 34 (04) :529-541