Transposon-induced gene activation as a mechanism generating cluster shape somatic variation in grapevine

被引:93
作者
Fernandez, Lucie [1 ,2 ]
Torregrosa, Laurent [3 ]
Segura, Vincent [4 ]
Bouquet, Alain [3 ]
Martinez-Zapater, Jose M. [1 ,2 ]
机构
[1] CSIC, Ctr Nacl Biotecnol, Dept Genet Mol Plantas, Madrid 28049, Spain
[2] Univ La Rioja, CCT, CSIC, ICVV, Logrono 26006, Spain
[3] UMR DIA PC, INRA SupAgro, F-34060 Montpellier, France
[4] Univ York, Ctr Novel Agr Prod, Dept Biol, York YO10 5YW, N Yorkshire, England
关键词
inflorescence development; inflorescence structure; somatic variation; active transposition; grapevine; KINASE INHIBITOR PROTEIN; FLOWER DEVELOPMENT; INFLORESCENCE DEVELOPMENT; FLORAL TRANSITION; MERISTEM IDENTITY; LIFE-CYCLE; EXPRESSION; EVOLUTION; TIME; ARCHITECTURE;
D O I
10.1111/j.1365-313X.2009.04090.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
We have characterized the genetic and molecular origin of the reiterated reproductive meristem (RRM) somatic variant phenotype of grapevine cultivar Carignan. Here, we show that the extreme cluster proliferation and delayed anthesis observed in this somatic variant is caused by a single dominant mutation. Transcriptional profiling of Carignan and RRM plants during early stages of inflorescence development demonstrated the overexpression of a few regulatory genes, including VvTFL1A, a close TFL1 Arabidopsis homolog, in RRM inflorescences. Genetic and molecular analyses correlated the insertion of a class-II transposable element, Hatvine1-rrm, in the VvTFL1A promoter, with upregulation of the corresponding VvTFL1A allele in reproductive and vegetative organs of the shoot apex. These results suggest a role for this TFL1 grapevine homolog in the determination of inflorescence structure, with a critical effect on the size and branching pattern of grapevine fruit clusters. Our results demonstrate the existence of spontaneous cis-activation processes caused by class-II transposable elements in grapevine plants, and point to their possible role as a mechanism to generate somatic cell variation in perennial plants. This mechanism is expected to generate dominant phenotypes in chimeric sectors that can be readily exposed to natural selection.
引用
收藏
页码:545 / 557
页数:13
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