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Molecular analysis of phosphomannomutase (PMM) genes reveals a unique PMM duplication event in diverse Triticeae species and the main PMM isozymes in bread wheat tissues

BACKGROUND: Phosphomannomutase (PMM) is an essential enzyme in eukaryotes. However, little is known about PMM gene and function in crop plants. Here, we report molecular evolutionary and biochemical analysis of PMM genes in bread wheat and related Triticeae species. RESULTS: Two sets of homoeologous...

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Autores principales: Yu, Chunmei, Li, Yiwen, Li, Bin, Liu, Xin, Hao, Lifang, Chen, Jing, Qian, Weiqiang, Li, Shiming, Wang, Guanfeng, Bai, Shiwei, Ye, Hua, Qin, Huanju, Shen, Qianhua, Chen, Liangbiao, Zhang, Aimin, Wang, Daowen
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3017832/
https://www.ncbi.nlm.nih.gov/pubmed/20920368
http://dx.doi.org/10.1186/1471-2229-10-214
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author Yu, Chunmei
Li, Yiwen
Li, Bin
Liu, Xin
Hao, Lifang
Chen, Jing
Qian, Weiqiang
Li, Shiming
Wang, Guanfeng
Bai, Shiwei
Ye, Hua
Qin, Huanju
Shen, Qianhua
Chen, Liangbiao
Zhang, Aimin
Wang, Daowen
author_facet Yu, Chunmei
Li, Yiwen
Li, Bin
Liu, Xin
Hao, Lifang
Chen, Jing
Qian, Weiqiang
Li, Shiming
Wang, Guanfeng
Bai, Shiwei
Ye, Hua
Qin, Huanju
Shen, Qianhua
Chen, Liangbiao
Zhang, Aimin
Wang, Daowen
author_sort Yu, Chunmei
collection PubMed
description BACKGROUND: Phosphomannomutase (PMM) is an essential enzyme in eukaryotes. However, little is known about PMM gene and function in crop plants. Here, we report molecular evolutionary and biochemical analysis of PMM genes in bread wheat and related Triticeae species. RESULTS: Two sets of homoeologous PMM genes (TaPMM-1 and 2) were found in bread wheat, and two corresponding PMM genes were identified in the diploid progenitors of bread wheat and many other diploid Triticeae species. The duplication event yielding PMM-1 and 2 occurred before the radiation of diploid Triticeae genomes. The PMM gene family in wheat and relatives may evolve largely under purifying selection. Among the six TaPMM genes, the transcript levels of PMM-1 members were comparatively high and their recombinant proteins were all enzymatically active. However, PMM-2 homoeologs exhibited lower transcript levels, two of which were also inactive. TaPMM-A1, B1 and D1 were probably the main active isozymes in bread wheat tissues. The three isozymes differed from their counterparts in barley and Brachypodium distachyon in being more tolerant to elevated test temperatures. CONCLUSION: Our work identified the genes encoding PMM isozymes in bread wheat and relatives, uncovered a unique PMM duplication event in diverse Triticeae species, and revealed the main active PMM isozymes in bread wheat tissues. The knowledge obtained here improves the understanding of PMM evolution in eukaryotic organisms, and may facilitate further investigations of PMM function in the temperature adaptability of bread wheat.
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spelling pubmed-30178322011-01-10 Molecular analysis of phosphomannomutase (PMM) genes reveals a unique PMM duplication event in diverse Triticeae species and the main PMM isozymes in bread wheat tissues Yu, Chunmei Li, Yiwen Li, Bin Liu, Xin Hao, Lifang Chen, Jing Qian, Weiqiang Li, Shiming Wang, Guanfeng Bai, Shiwei Ye, Hua Qin, Huanju Shen, Qianhua Chen, Liangbiao Zhang, Aimin Wang, Daowen BMC Plant Biol Research Article BACKGROUND: Phosphomannomutase (PMM) is an essential enzyme in eukaryotes. However, little is known about PMM gene and function in crop plants. Here, we report molecular evolutionary and biochemical analysis of PMM genes in bread wheat and related Triticeae species. RESULTS: Two sets of homoeologous PMM genes (TaPMM-1 and 2) were found in bread wheat, and two corresponding PMM genes were identified in the diploid progenitors of bread wheat and many other diploid Triticeae species. The duplication event yielding PMM-1 and 2 occurred before the radiation of diploid Triticeae genomes. The PMM gene family in wheat and relatives may evolve largely under purifying selection. Among the six TaPMM genes, the transcript levels of PMM-1 members were comparatively high and their recombinant proteins were all enzymatically active. However, PMM-2 homoeologs exhibited lower transcript levels, two of which were also inactive. TaPMM-A1, B1 and D1 were probably the main active isozymes in bread wheat tissues. The three isozymes differed from their counterparts in barley and Brachypodium distachyon in being more tolerant to elevated test temperatures. CONCLUSION: Our work identified the genes encoding PMM isozymes in bread wheat and relatives, uncovered a unique PMM duplication event in diverse Triticeae species, and revealed the main active PMM isozymes in bread wheat tissues. The knowledge obtained here improves the understanding of PMM evolution in eukaryotic organisms, and may facilitate further investigations of PMM function in the temperature adaptability of bread wheat. BioMed Central 2010-10-05 /pmc/articles/PMC3017832/ /pubmed/20920368 http://dx.doi.org/10.1186/1471-2229-10-214 Text en Copyright ©2010 Yu et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Yu, Chunmei
Li, Yiwen
Li, Bin
Liu, Xin
Hao, Lifang
Chen, Jing
Qian, Weiqiang
Li, Shiming
Wang, Guanfeng
Bai, Shiwei
Ye, Hua
Qin, Huanju
Shen, Qianhua
Chen, Liangbiao
Zhang, Aimin
Wang, Daowen
Molecular analysis of phosphomannomutase (PMM) genes reveals a unique PMM duplication event in diverse Triticeae species and the main PMM isozymes in bread wheat tissues
title Molecular analysis of phosphomannomutase (PMM) genes reveals a unique PMM duplication event in diverse Triticeae species and the main PMM isozymes in bread wheat tissues
title_full Molecular analysis of phosphomannomutase (PMM) genes reveals a unique PMM duplication event in diverse Triticeae species and the main PMM isozymes in bread wheat tissues
title_fullStr Molecular analysis of phosphomannomutase (PMM) genes reveals a unique PMM duplication event in diverse Triticeae species and the main PMM isozymes in bread wheat tissues
title_full_unstemmed Molecular analysis of phosphomannomutase (PMM) genes reveals a unique PMM duplication event in diverse Triticeae species and the main PMM isozymes in bread wheat tissues
title_short Molecular analysis of phosphomannomutase (PMM) genes reveals a unique PMM duplication event in diverse Triticeae species and the main PMM isozymes in bread wheat tissues
title_sort molecular analysis of phosphomannomutase (pmm) genes reveals a unique pmm duplication event in diverse triticeae species and the main pmm isozymes in bread wheat tissues
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3017832/
https://www.ncbi.nlm.nih.gov/pubmed/20920368
http://dx.doi.org/10.1186/1471-2229-10-214
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