Am J Bot. 1998 Aug;85(8):1068.
We tested Wilhelm Hofmeister's hypothesis that the outer layers of herbaceous stem tissues are held in a preferential state of longitudinal tension by more internal stem tissues that are held in a reciprocal state of compression. We measured (1) the biaxial stiffness of dandelion peduncles that were barometrically inflated with a Scholander pressure bomb, and (2) the stiffness and mechanical behavior of different layers of tissues that were surgically manipulated as longitudinal strips placed in uniaxial tension. Hofmeister's hypothesis predicts that stems will shorten and expand in girth as their volume transiently increases (due to barometric or hydrostatic inflation), that they will longitudinally rupture when excessively inflated, and that the principal stiffening agents in their outer tissues will be aligned in the longitudinal direction with respect to stem length. Our experiments confirmed these predictions: (1) the longitudinal strains observed for inflated peduncles were negative and smaller than the circumferential strains such that stems contracted in length and expanded in girth, (2) peduncles longitudinally ruptured when excessively inflated, (3) surgical experiments indicated that the epidermis was stiffer in longitudinal tension than any other immature peduncle tissue and was as stiff as any other tissue region in mature stems, and (4) microscopic analyses showed that the net orientation of cellulose microfibrils in the cell walls of the outer region of stem tissues was parallel to stem length. A strong positive correlation existed between the tensile stiffness of tissues and the net orientation of cell wall microfibrils.
我们验证了威廉·霍夫迈斯特(Wilhelm Hofmeister)的假说,即草本茎组织的外层通过更内部的茎组织保持在优先的纵向张力状态,而这些更内部的茎组织则保持在相互压缩的状态。我们测量了(1)使用 Scholander 压力弹体气压膨胀的蒲公英花梗的双轴刚度,以及(2)作为放置在单轴拉伸中的纵向条带进行手术处理的不同组织层的刚度和机械行为。霍夫迈斯特假说预测,当它们的体积暂时增加(由于气压或静水压力膨胀)时,茎将缩短并在周长上扩展,当过度膨胀时,它们将纵向破裂,并且它们外层组织中的主要增强剂将相对于茎长度沿纵向对齐。我们的实验证实了这些预测:(1)膨胀花梗观察到的纵向应变是负的,并且小于周向应变,使得茎缩短长度并扩展周长,(2)当过度膨胀时,花梗纵向破裂,(3)手术实验表明,表皮在纵向拉伸时比任何其他未成熟的花梗组织都更硬,并且与成熟茎中的任何其他组织区域一样硬,(4)显微镜分析表明,细胞壁外层组织中纤维素微纤维的净取向与茎长度平行。组织的拉伸刚度与细胞壁微纤维的净取向之间存在很强的正相关关系。