Literature DB >> 33217197

Evolution of SHORT VEGETATIVE PHASE (SVP) genes in Rosaceae: Implications of lineage-specific gene duplication events and function diversifications with respect to their roles in processes other than bud dormancy.

Jinyi Liu1, Min Ren1,2, Hui Chen1, Silin Wu1, Huijun Yan3, Abdul Jalal1, Changquan Wang1.   

Abstract

MADS-box genes that are homologous to Arabidopsis SHORT VEGETATIVE PHASE (SVP) have been shown to play key roles in the regulation of bud dormancy in perennial species, particularly in the deciduous fruit trees of Rosaceae. However, their evolutionary profiles in Rosaceae have not yet been analyzed systematically. Here, The SVP genes were found to be significantly expanded in Rosaceae when compared with annual species from Brassicaceae. Phylogenetic analysis showed that Rosaceae SVP genes could be classified into five clades, namely, SVP1, SVP2-R1, SVP2-R2, SVP2-R3 and SVP3. The SVP1 clade genes were retained in most of the species, whereas the SVP2-R2 and SVP2-R3 clades were found to be Maleae- and Amygdaleae-specific (Both of the lineages belong to Amygdaloideae), respectively, and SVP2-R1 was Rosoideae-specific in Rosaceae. Furthermore, 10 lineage-specific gene duplication (GD) events (GD1-10) were proposed for the expansion of SVP genes, suggesting that the expansion and divergence of Rosaceae SVP genes were mainly derived by lineage-specific manner during evolution. Moreover, tandem and segmental duplications were the major reasons for the expansion of SVP genes, and interestingly, tandem duplications, a well-known evolutionary feature of SVP genes, were found to be mainly Amygdaloideae-specific. Sequence alignment, selection pressure, and cis-acting element analysis suggested large functional innovations and diversification of SVP genes in different lineages of Rosaceae. Finally, the different growth cycle of Rosa multiflora and their novel expression patterns of RmSVP genes provided new insights into the functional diversification of SVP genes in terms of their roles in processes other than bud dormancy.
© 2020 The Authors. The Plant Genome published by Wiley Periodicals, Inc. on behalf of Crop Science Society of America.

Entities:  

Year:  2020        PMID: 33217197     DOI: 10.1002/tpg2.20053

Source DB:  PubMed          Journal:  Plant Genome        ISSN: 1940-3372            Impact factor:   4.089


  4 in total

1.  Unraveling the role of MADS transcription factor complexes in apple tree dormancy.

Authors:  Vítor da Silveira Falavigna; Edouard Severing; Xuelei Lai; Joan Estevan; Isabelle Farrera; Véronique Hugouvieux; Luís Fernando Revers; Chloe Zubieta; George Coupland; Evelyne Costes; Fernando Andrés
Journal:  New Phytol       Date:  2021-09-23       Impact factor: 10.323

2.  Evolutionary Analysis and Functional Identification of Clock-Associated PSEUDO-RESPONSE REGULATOR (PRRs) Genes in the Flowering Regulation of Roses.

Authors:  Abdul Jalal; Jinrui Sun; Yeqing Chen; Chunguo Fan; Jinyi Liu; Changquan Wang
Journal:  Int J Mol Sci       Date:  2022-06-30       Impact factor: 6.208

3.  Evolutionary origin and functional specialization of Dormancy-Associated MADS box (DAM) proteins in perennial crops.

Authors:  Carles Quesada-Traver; Alba Lloret; Lorenzo Carretero-Paulet; María Luisa Badenes; Gabino Ríos
Journal:  BMC Plant Biol       Date:  2022-10-05       Impact factor: 5.260

4.  The genome of Cymbidium sinense revealed the evolution of orchid traits.

Authors:  Feng-Xi Yang; Jie Gao; Yong-Lu Wei; Rui Ren; Guo-Qiang Zhang; Chu-Qiao Lu; Jian-Peng Jin; Ye Ai; Ya-Qin Wang; Li-Jun Chen; Sagheer Ahmad; Di-Yang Zhang; Wei-Hong Sun; Wen-Chieh Tsai; Zhong-Jian Liu; Gen-Fa Zhu
Journal:  Plant Biotechnol J       Date:  2021-08-25       Impact factor: 9.803

  4 in total

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