The Pyrus bretschneideri invertase gene family: identification, phylogeny and expression patterns

Plant invertases comprise a family of enzymes that catalyze the irreversible hydrolysis of sucrose into glucose and fructose, which plays a crucial role in carbohydrate partitioning and regulating plant growth and development. However, currently, there is little information on the roles of invertase...

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Main Authors: Tao Wu, Zheng Liu, Li Yang, Yinsheng Cheng, Junfan Tu, Fuchen Yang, Hongyan Zhu, Xianming Li, Yonghong Dai, Xianshuang Nie, Zhongqi Qin
Format: Article
Language:English
Published: Taylor & Francis Group 2020-01-01
Series:Biotechnology & Biotechnological Equipment
Subjects:
Online Access:http://dx.doi.org/10.1080/13102818.2020.1745688
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author Tao Wu
Zheng Liu
Li Yang
Yinsheng Cheng
Junfan Tu
Fuchen Yang
Hongyan Zhu
Xianming Li
Yonghong Dai
Xianshuang Nie
Zhongqi Qin
author_facet Tao Wu
Zheng Liu
Li Yang
Yinsheng Cheng
Junfan Tu
Fuchen Yang
Hongyan Zhu
Xianming Li
Yonghong Dai
Xianshuang Nie
Zhongqi Qin
author_sort Tao Wu
collection DOAJ
description Plant invertases comprise a family of enzymes that catalyze the irreversible hydrolysis of sucrose into glucose and fructose, which plays a crucial role in carbohydrate partitioning and regulating plant growth and development. However, currently, there is little information on the roles of invertases in the development of pear trees. In this study, we performed genome-wide identification of a total of 23 invertases from the predicted genome data of the pear plant (Pyrus bretschneideri R.). Based on phylogenetic analysis, the pear invertases could be clustered into 13 acid invertase genes and 10 alkaline/neutral invertase genes. Chromosome location showed that tandem duplication and segmental duplication have played an important role in the expansion of acid and neutral/alkaline invertases in pear plants. Evolutionary analysis of invertases from pear and two model plant species (Arabidopsis thaliana and Oryza sativa) indicated that the evolutionary divergence of invertases occurred before the common ancestor of dicots and monocots. Tissue-specific expression analysis showed that the transcripts of all the identified invertase genes were detectable in various tissues. We hypothesize that the identified invertase genes all participate in regulating pear growth and development.
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spelling doaj.art-1870658bdec14ebc9542baa56a2c5bb52022-12-21T23:20:37ZengTaylor & Francis GroupBiotechnology & Biotechnological Equipment1310-28181314-35302020-01-0134131932910.1080/13102818.2020.17456881745688The Pyrus bretschneideri invertase gene family: identification, phylogeny and expression patternsTao Wu0Zheng Liu1Li Yang2Yinsheng Cheng3Junfan Tu4Fuchen Yang5Hongyan Zhu6Xianming Li7Yonghong Dai8Xianshuang Nie9Zhongqi Qin10Department of Pear Research, Institute of Fruit & Tea, Hubei Academy of Agricultural SciencesDepartment of Pear Research, Institute of Fruit & Tea, Hubei Academy of Agricultural SciencesDepartment of Pear Research, Institute of Fruit & Tea, Hubei Academy of Agricultural SciencesDepartment of Pear Research, Institute of Fruit & Tea, Hubei Academy of Agricultural SciencesDepartment of Pear Research, Institute of Fruit & Tea, Hubei Academy of Agricultural SciencesDepartment of Pear Research, Institute of Fruit & Tea, Hubei Academy of Agricultural SciencesDepartment of Pear Research, Institute of Fruit & Tea, Hubei Academy of Agricultural SciencesDepartment of Pear Research, Institute of Fruit & Tea, Hubei Academy of Agricultural SciencesDepartment of Pear Research, Institute of Fruit & Tea, Hubei Academy of Agricultural SciencesDepartment of Pear Research, Institute of Fruit & Tea, Hubei Academy of Agricultural SciencesDepartment of Pear Research, Institute of Fruit & Tea, Hubei Academy of Agricultural SciencesPlant invertases comprise a family of enzymes that catalyze the irreversible hydrolysis of sucrose into glucose and fructose, which plays a crucial role in carbohydrate partitioning and regulating plant growth and development. However, currently, there is little information on the roles of invertases in the development of pear trees. In this study, we performed genome-wide identification of a total of 23 invertases from the predicted genome data of the pear plant (Pyrus bretschneideri R.). Based on phylogenetic analysis, the pear invertases could be clustered into 13 acid invertase genes and 10 alkaline/neutral invertase genes. Chromosome location showed that tandem duplication and segmental duplication have played an important role in the expansion of acid and neutral/alkaline invertases in pear plants. Evolutionary analysis of invertases from pear and two model plant species (Arabidopsis thaliana and Oryza sativa) indicated that the evolutionary divergence of invertases occurred before the common ancestor of dicots and monocots. Tissue-specific expression analysis showed that the transcripts of all the identified invertase genes were detectable in various tissues. We hypothesize that the identified invertase genes all participate in regulating pear growth and development.http://dx.doi.org/10.1080/13102818.2020.1745688sucrose metabolisminvertase gene familygene structureexpression analysis
spellingShingle Tao Wu
Zheng Liu
Li Yang
Yinsheng Cheng
Junfan Tu
Fuchen Yang
Hongyan Zhu
Xianming Li
Yonghong Dai
Xianshuang Nie
Zhongqi Qin
The Pyrus bretschneideri invertase gene family: identification, phylogeny and expression patterns
Biotechnology & Biotechnological Equipment
sucrose metabolism
invertase gene family
gene structure
expression analysis
title The Pyrus bretschneideri invertase gene family: identification, phylogeny and expression patterns
title_full The Pyrus bretschneideri invertase gene family: identification, phylogeny and expression patterns
title_fullStr The Pyrus bretschneideri invertase gene family: identification, phylogeny and expression patterns
title_full_unstemmed The Pyrus bretschneideri invertase gene family: identification, phylogeny and expression patterns
title_short The Pyrus bretschneideri invertase gene family: identification, phylogeny and expression patterns
title_sort pyrus bretschneideri invertase gene family identification phylogeny and expression patterns
topic sucrose metabolism
invertase gene family
gene structure
expression analysis
url http://dx.doi.org/10.1080/13102818.2020.1745688
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