Divergent Retention of Sucrose Metabolism Genes after Whole Genome Triplication in the Tomato (Solanum lycopersicum)

Author:

Xu Yang12,Yao Zhuping1,Cheng Yuan1ORCID,Ruan Meiying1,Ye Qingjing1,Wang Rongqing1,Zhou Guozhi1,Liu Jia13,Liu Chaochao4ORCID,Wan Hongjian1ORCID

Affiliation:

1. State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro-Products, Institute of Vegetables, China-Australia Research Centre for Crop Improvement, Zhejiang Academy of Agricultural Sciences, Hangzhou 310021, China

2. College of Horticulture and Gardening, Yangtze University, Jingzhou 434025, China

3. Wulanchabu Academy of Agricultural and Forestry Sciences, Wulanchabu 012000, China

4. College of Biotechnology, Jiangsu University of Science and Technology, Zhenjiang 212018, China

Abstract

Sucrose, the primary carbon transport mode and vital carbohydrate for higher plants, significantly impacts plant growth, development, yield, and quality formation. Its metabolism involves three key steps: synthesis, transport, and degradation. Two genome triplication events have occurred in Solanaceae, which have resulted in massive gene loss. In this study, a total of 48 and 65 genes from seven sucrose metabolism gene families in Vitis vinifera and Solanum lycopersicum were identified, respectively. The number of members comprising the different gene families varied widely. And there were significant variations in the pattern of gene duplication and loss in the tomato following two WGD events. Tandem duplication is a major factor in the expansion of the SWEET and Acid INV gene families. All the genes are irregularly distributed on the chromosomes, with the majority of the genes showing collinearity with the grape, particularly the CIN family. And the seven gene families were subjected to a purifying selection. The expression patterns of the different gene families exhibited notable variations. This study presents basic information about the sucrose metabolism genes in the tomato and grape, and paves the way for further investigations into the impact of SCT events on the phylogeny, gene retention duplication, and function of sucrose metabolism gene families in the tomato or Solanaceae, and the adaptive evolution of the tomato.

Funder

Key Research and Development Program of Zhejiang

State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro-products

Zhejiang Provincial Major Agricultural Science and Technology Projects of New Varieties Breeding

China Agriculture Research System of MOF and MARA

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

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