协调的细胞伸长单独驱动蘑菇子实体茎的热带弯曲。

J. P. Greening, C. Sánchez, D. Moore
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引用次数: 12

摘要

在蘑菇子实体茎的热带弯曲过程中,大部分伸展发生在茎的上部20 ~ 30%。通过将惰性标记附着在茎上,结果表明,弯曲的外侧翼最初具有更快的扩展速度,尽管在随后的响应中,内侧翼与此生长速度相匹配。因此,弯曲是由于生长速率的差异增强而不是持续的差异。在热带弯曲茎中观察到的直径达85微米的大空洞在内外侧翼的数量上没有显着差异,但由于它们不在未弯曲的茎中,因此与弯曲有关。这样的空隙可以防止在弯曲过程中裂纹通过茎组织的扩展。外部和管腔表面的折痕也是弯曲茎所特有的,可能代表局部应力积累引起的收缩。对弯曲两侧横切面的细胞形态计量学分析显示,菌丝直径、分布和细胞类型群体没有显著差异,但外侧翼的细胞比内侧翼的细胞长4 - 5倍。因此,热带弯曲只需要增加外侧翼组织中预先存在的膨胀菌丝的长度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coordinated cell elongation alone drives tropic bending in stems of the mushroom fruit body of Coprinus cinereus.
During tropic bending in the stem of the mushroom fruit body of Coprinus cinereus the majority of extension occurred in the upper 20-30% of the stem. By attaching inert markers to the stem, it was shown that the outer flank of the bend initially has a faster rate of extension, although the inner flank matches this growth rate later in the response. Thus bending results from differential enhancement of growth rate rather than sustained differences. Large voids, up to 85 micrometers in diameter, observed in tropically bent stems showed no significant difference in number between inner and outer flanks but are implicated in bending because of their absence from unbent stems. Such voids may prevent the propagation of cracks through the stem tissue during bending. Creases at the external and lumen surfaces were also peculiar to bent stems and could represent constrictions caused by localized accumulation of stresses. Cell morphometric analysis of transverse sections of both flanks of the bend revealed no significant differences in hyphal diameter, distribution, or populations of cell types, but cells of the outer flank were four to five times longer than those of the inner. Thus, tropic bending requires only an increase in length of pre-existing inflated hyphae in the outer flank tissue.
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