Money Nicholas P, Ravishankar J P
Department of Botany, Miami University, Oxford, Ohio 45056, USA.
Mycol Res. 2005 May;109(Pt 5):627-34. doi: 10.1017/s0953756205002509.
Stipe elongation in fruit bodies of Coprinopsis cinerea (syn. Coprinus cinereus) was examined from a biomechanical perspective. Two strains were studied: the self-compatible Amut Bmut homokaryon that produces normal fruit bodies with relatively short stipes, and mutant B1918 that produces abnormally elongated stipes. Measurements of the pressure exerted by developing mushrooms were made using strain gauges, and these data were compared with measurements of the pressures exerted by vegetative hyphae of the same strains. The experiments demonstrate that AmutBmut hyphae elongating within stipe tissue push with the same pressure (approx. 0.5 atmosphere) as vegetative hyphae growing through their food sources. In purely biomechanical terms, the fruit body may therefore be viewed as a relatively uncomplicated sum of its parts. Analysis of the mutant strain B1918 demonstrated that hyperelongation of the stipe is not associated with any difference in the pressure exerted by the fruit body. The fault in the mechanism of stipe extension in B1918 may be reflected in the increased fluidity of the cell wall of vegetative hyphae of this strain, but further work is necessary to resolve this.
从生物力学角度研究了灰盖鬼伞(Coprinopsis cinerea,同义词:Coprinus cinereus)子实体的菌柄伸长情况。研究了两个菌株:自交亲和的Amut Bmut同核体,它能产生菌柄相对较短的正常子实体;以及突变体B1918,它能产生异常伸长的菌柄。使用应变片测量发育中的蘑菇施加的压力,并将这些数据与相同菌株的营养菌丝施加的压力测量值进行比较。实验表明,在菌柄组织内伸长的AmutBmut菌丝施加的压力(约0.5个大气压)与通过其食物来源生长的营养菌丝相同。因此,从纯粹的生物力学角度来看,子实体可以被视为其各个部分相对简单的总和。对突变菌株B1918的分析表明,菌柄的过度伸长与子实体施加的压力没有任何差异。B1918菌柄延伸机制的缺陷可能反映在该菌株营养菌丝细胞壁流动性的增加上,但需要进一步的研究来解决这一问题。