Department of Applied Microbiology, Forestry and Forest Products Research Institute, Tsukuba-Norin, Japan.
FEMS Microbiol Lett. 2010 Jun;307(1):72-9. doi: 10.1111/j.1574-6968.2010.01966.x. Epub 2010 Mar 25.
In response to a change in the direction of gravity, morphogenetic changes of fruiting bodies of fungi are usually observed as gravitropism. Although gravitropism in higher fungi has been studied for over 100 years, there is no convincing evidence regarding the graviperception mechanism in mushrooms. To understand gravitropism in mushrooms, we isolated differentially expressed genes in Pleurotus ostreatus (oyster mushroom) fruiting bodies developed under three-dimensional clinostat-simulated microgravity. Subtractive hybridization, cDNA representational difference analysis was used for gene analysis and resulted in the isolation of 36 individual genes (17 upregulated and 19 downregulated) under clinorotation. The phenotype of fruiting bodies developed under simulated microgravity vividly depicted the gravitropism in mushrooms. Our results suggest that the differentially expressed genes responding to gravitational change are involved in several potential cellular mechanisms during fruiting body formation of P. ostreatus.
在重力方向发生变化时,真菌的生殖体通常会表现出向重性,即向地性。尽管高等真菌的向重性已经研究了 100 多年,但对于蘑菇中的重感知机制还没有令人信服的证据。为了了解蘑菇的向重性,我们分离了在三维回旋仪模拟微重力下发育的糙皮侧耳(牡蛎蘑菇)生殖体中的差异表达基因。消减杂交、cDNA 代表性差异分析用于基因分析,结果在回旋分离下分离出 36 个单个基因(17 个上调和 19 个下调)。在模拟微重力下发育的生殖体的表型生动地描绘了蘑菇中的向重性。我们的结果表明,对重力变化做出响应的差异表达基因参与了糙皮侧耳生殖体形成过程中的几个潜在的细胞机制。