| Literature DB >> 28094751 |
Chaohui Zhang1, Tao Huang2, Chaohui Shen2, Xiaoting Wang2, Yuancheng Qi2, Jinwen Shen3, Andong Song2, Liyou Qiu2, Yuncan Ai1.
Abstract
Ethylene biosynthesis and function in Agaricus bisporus (the button mushroom) remain uncertain. The enzyme activities of 1-aminocyclopropane-1-carboxylate (ACC) synthase (ACS) and ACC oxidase (ACO) were detectable in A. bisporus AS2796 and inhibited by α-aminooxyacetic acid and Co2+. We cloned and sequenced 2 ACS genes (Ab-ACS1 and Ab-ACS2) and 1 ACO gene (Ab-ACO) from the mushroom strain. Ab-ACS1 and Ab-ACS2 demonstrated low amino acid sequence similarity. Ab-ACO demonstrated an amino acid sequence completely identical to that of ACO1_AGABI from A. bisporus. Antisense ACO significantly reduced ACO gene expression level, ACO enzyme activity, and ethylene production in the mushroom transformants. The transformants grew faster than the wild-type strain in sterilized compost and normally formed primordia when cultivated in sterilized compost with the sterilized casing vermiculite, but the wild-type strain did not. Our results show that ethylene is synthesized in button mushrooms via the ACC pathway. Ethylene inhibited button mushroom mycelial growth and development.Entities:
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Year: 2016 PMID: 28094751 DOI: 10.1615/IntJMedMushrooms.v18.i12.80
Source DB: PubMed Journal: Int J Med Mushrooms ISSN: 1940-4344 Impact factor: 1.921