| Literature DB >> 28369525 |
Jaiana Malabarba1,2, Vanessa Buffon2, Jorge E A Mariath3, Marcos L Gaeta3, Marcelo C Dornelas4, Márcia Margis-Pinheiro1, Giancarlo Pasquali1, Luís F Revers2.
Abstract
Despite the wide appreciation of seedless grapes, little is known about the molecular mechanisms that drive the stenospermocarpic seedless-type phenotype in grapevine. In order to address the molecular mechanisms that control seedlessness in grapevine, our study aimed to characterize VviAGL11, a class D MADS-box transcription factor gene that has been proposed as the major candidate gene involved in Vitis vinifera seed morphogenesis. VviAGL11 allelic variations in seeded and seedless grapevine cultivars were determined, and its correlations with allele-specific steady-state mRNA levels were investigated. VviAGL11 relative expression was significantly higher in seeds at 2, 4, and 6 weeks after fruit set, whereas in the seedless grape its transcript levels were extremely low in all stages analyzed. In situ hybridization revealed transcript accumulation specifically in the dual endotesta layer of the seeds, which is responsible for elongation and an increase of cell number, a necessary step to determine the lignification and the final seed size. No hybridization signals were visible in the seedless grapevine tissues, and a morphoanatomical analysis showed an apparent loss of identity of the endotesta layer of the seed traces. Ectopic expression of VviAGL11 in the Arabidopsis SEEDSTICK mutant background restored the wild-type phenotype and confirmed the direct role of VviAGL11 in seed morphogenesis, suggesting that depletion of its expression is responsible for the erroneous development of a highly essential seed layer, therefore culminating in the typical apirenic phenotype.Entities:
Keywords: Apireny; Sultanine; VviAGL11.; grapevine; in situ hybridization; seedlessness
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Year: 2017 PMID: 28369525 DOI: 10.1093/jxb/erx025
Source DB: PubMed Journal: J Exp Bot ISSN: 0022-0957 Impact factor: 6.992