Cargando…

Two Hybrid Histidine Kinases Involved in the Ethylene Regulation of the Mycelial Growth and Postharvest Fruiting Body Maturation and Senescence of Agaricus bisporus

Ethylene regulates mycelial growth, primordium formation, and postharvest mushroom maturation and senescence in the white button mushroom, Agaricus bisporus. However, it remains unknown how ethylene is detected by the mushroom. In this study, we found that two hybrid histidine kinases in the mushroo...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Chaohui, Shang, Di, Zhang, Yan, Gao, Xiyang, Liu, Dehai, Gao, Yuqian, Li, Yanan, Qi, Yuancheng, Qiu, Liyou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9603746/
https://www.ncbi.nlm.nih.gov/pubmed/36125274
http://dx.doi.org/10.1128/spectrum.02411-22
_version_ 1784817632665403392
author Zhang, Chaohui
Shang, Di
Zhang, Yan
Gao, Xiyang
Liu, Dehai
Gao, Yuqian
Li, Yanan
Qi, Yuancheng
Qiu, Liyou
author_facet Zhang, Chaohui
Shang, Di
Zhang, Yan
Gao, Xiyang
Liu, Dehai
Gao, Yuqian
Li, Yanan
Qi, Yuancheng
Qiu, Liyou
author_sort Zhang, Chaohui
collection PubMed
description Ethylene regulates mycelial growth, primordium formation, and postharvest mushroom maturation and senescence in the white button mushroom, Agaricus bisporus. However, it remains unknown how ethylene is detected by the mushroom. In this study, we found that two hybrid histidine kinases in the mushroom, designated AbETR1 and AbETR2, showed domain structures similar to those of plant ethylene receptors. The transmembrane helices of AbETR1 and AbETR2 were expressed in yeast cells and showed ethylene-binding activities. Mushroom strains with downregulated expressions of AbETR1 and AbETR2 showed reduced sensitivity to the ethylene inhibition of mycelial growth, ethylene regulation of their own synthesis, postharvest mushroom maturation, and senescence and expression of maturation- and senescence-related genes. Therefore, AbETR1 and AbETR2 are expected to be biologically functional ethylene receptors and exhibit a different mode of action from that of the receptors of plants. Here, we fill gaps in the knowledge pertaining to higher fungus ethylene receptors, discover a novel mode of action of ethylene receptors, confirm ethylene as a novel fungal hormone, and provide a facilitated approach for preventing the maturation and senescence of postharvest button mushrooms. IMPORTANCE Ethylene regulates diverse physiological activities in bacteria, cyanobacteria, fungi, and plants, but how to perceive ethylene by fungi only remains unknown. In this study, we identify two biologically functional ethylene receptors in the basidiomycete fungus Agaricus bisporus, which fills the gaps of deficient fungal ethylene receptors. Furthermore, we found that decreased expression of the ethylene receptors facilitates preventing the maturation and senescence of postharvest button mushrooms, indicating that the two fungal ethylene receptors positively regulate the ethylene response, in contrast to that in plants.
format Online
Article
Text
id pubmed-9603746
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher American Society for Microbiology
record_format MEDLINE/PubMed
spelling pubmed-96037462022-10-27 Two Hybrid Histidine Kinases Involved in the Ethylene Regulation of the Mycelial Growth and Postharvest Fruiting Body Maturation and Senescence of Agaricus bisporus Zhang, Chaohui Shang, Di Zhang, Yan Gao, Xiyang Liu, Dehai Gao, Yuqian Li, Yanan Qi, Yuancheng Qiu, Liyou Microbiol Spectr Research Article Ethylene regulates mycelial growth, primordium formation, and postharvest mushroom maturation and senescence in the white button mushroom, Agaricus bisporus. However, it remains unknown how ethylene is detected by the mushroom. In this study, we found that two hybrid histidine kinases in the mushroom, designated AbETR1 and AbETR2, showed domain structures similar to those of plant ethylene receptors. The transmembrane helices of AbETR1 and AbETR2 were expressed in yeast cells and showed ethylene-binding activities. Mushroom strains with downregulated expressions of AbETR1 and AbETR2 showed reduced sensitivity to the ethylene inhibition of mycelial growth, ethylene regulation of their own synthesis, postharvest mushroom maturation, and senescence and expression of maturation- and senescence-related genes. Therefore, AbETR1 and AbETR2 are expected to be biologically functional ethylene receptors and exhibit a different mode of action from that of the receptors of plants. Here, we fill gaps in the knowledge pertaining to higher fungus ethylene receptors, discover a novel mode of action of ethylene receptors, confirm ethylene as a novel fungal hormone, and provide a facilitated approach for preventing the maturation and senescence of postharvest button mushrooms. IMPORTANCE Ethylene regulates diverse physiological activities in bacteria, cyanobacteria, fungi, and plants, but how to perceive ethylene by fungi only remains unknown. In this study, we identify two biologically functional ethylene receptors in the basidiomycete fungus Agaricus bisporus, which fills the gaps of deficient fungal ethylene receptors. Furthermore, we found that decreased expression of the ethylene receptors facilitates preventing the maturation and senescence of postharvest button mushrooms, indicating that the two fungal ethylene receptors positively regulate the ethylene response, in contrast to that in plants. American Society for Microbiology 2022-09-20 /pmc/articles/PMC9603746/ /pubmed/36125274 http://dx.doi.org/10.1128/spectrum.02411-22 Text en Copyright © 2022 Zhang et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Zhang, Chaohui
Shang, Di
Zhang, Yan
Gao, Xiyang
Liu, Dehai
Gao, Yuqian
Li, Yanan
Qi, Yuancheng
Qiu, Liyou
Two Hybrid Histidine Kinases Involved in the Ethylene Regulation of the Mycelial Growth and Postharvest Fruiting Body Maturation and Senescence of Agaricus bisporus
title Two Hybrid Histidine Kinases Involved in the Ethylene Regulation of the Mycelial Growth and Postharvest Fruiting Body Maturation and Senescence of Agaricus bisporus
title_full Two Hybrid Histidine Kinases Involved in the Ethylene Regulation of the Mycelial Growth and Postharvest Fruiting Body Maturation and Senescence of Agaricus bisporus
title_fullStr Two Hybrid Histidine Kinases Involved in the Ethylene Regulation of the Mycelial Growth and Postharvest Fruiting Body Maturation and Senescence of Agaricus bisporus
title_full_unstemmed Two Hybrid Histidine Kinases Involved in the Ethylene Regulation of the Mycelial Growth and Postharvest Fruiting Body Maturation and Senescence of Agaricus bisporus
title_short Two Hybrid Histidine Kinases Involved in the Ethylene Regulation of the Mycelial Growth and Postharvest Fruiting Body Maturation and Senescence of Agaricus bisporus
title_sort two hybrid histidine kinases involved in the ethylene regulation of the mycelial growth and postharvest fruiting body maturation and senescence of agaricus bisporus
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9603746/
https://www.ncbi.nlm.nih.gov/pubmed/36125274
http://dx.doi.org/10.1128/spectrum.02411-22
work_keys_str_mv AT zhangchaohui twohybridhistidinekinasesinvolvedintheethyleneregulationofthemycelialgrowthandpostharvestfruitingbodymaturationandsenescenceofagaricusbisporus
AT shangdi twohybridhistidinekinasesinvolvedintheethyleneregulationofthemycelialgrowthandpostharvestfruitingbodymaturationandsenescenceofagaricusbisporus
AT zhangyan twohybridhistidinekinasesinvolvedintheethyleneregulationofthemycelialgrowthandpostharvestfruitingbodymaturationandsenescenceofagaricusbisporus
AT gaoxiyang twohybridhistidinekinasesinvolvedintheethyleneregulationofthemycelialgrowthandpostharvestfruitingbodymaturationandsenescenceofagaricusbisporus
AT liudehai twohybridhistidinekinasesinvolvedintheethyleneregulationofthemycelialgrowthandpostharvestfruitingbodymaturationandsenescenceofagaricusbisporus
AT gaoyuqian twohybridhistidinekinasesinvolvedintheethyleneregulationofthemycelialgrowthandpostharvestfruitingbodymaturationandsenescenceofagaricusbisporus
AT liyanan twohybridhistidinekinasesinvolvedintheethyleneregulationofthemycelialgrowthandpostharvestfruitingbodymaturationandsenescenceofagaricusbisporus
AT qiyuancheng twohybridhistidinekinasesinvolvedintheethyleneregulationofthemycelialgrowthandpostharvestfruitingbodymaturationandsenescenceofagaricusbisporus
AT qiuliyou twohybridhistidinekinasesinvolvedintheethyleneregulationofthemycelialgrowthandpostharvestfruitingbodymaturationandsenescenceofagaricusbisporus