指尖刺激改变了生物能源高粱茎的解剖和生物力学特性。

O. Zargar, Qing Li, Chiedu Nwaobi, M. Pharr, S. Finlayson, A. Muliana
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引用次数: 4

摘要

高粱(Sorghum bicolor(L.)Moench)是一种热带草本植物,可以用作生物能源作物,但当暴露于机械刺激(如雨和风)时,通常会发生茎结构故障(倒伏)。机械刺激可以通过激活激素、蛋白质、转录因子和靶基因的调节网络来触发植物茎的适应性生长(thigmomorphygenesis),最终改变其生理、形态和生物力学特性。本研究的目的是:1)研究对照和机械刺激植物节间形态解剖生物力学特性的差异;2)检查这些变化是否也取决于刺激时的植物发育阶段。甜高粱品种Della在温室中生长,生长条件有两种:有机械刺激和没有机械刺激。机械刺激包括在七周的生长期内,茎向一个方向周期性弯曲。成熟时,对受刺激和未受刺激茎的解剖特征进行了表征,包括节间长度和直径,以及生物力学特性,包括弹性(瞬时)模量、弯曲刚度、强度和弯曲时随时间变化的顺应性。研究了机械刺激时处于不同发育阶段的两个茎节的形态解剖和生物力学特征。与较老的节间相比,较年轻的节间反应更灵敏,并且由于刺激而经历了更明显的长度变化。统计分析显示,受刺激和未受刺激的脑干在解剖和生物力学特性方面存在差异。机械刺激产生了直径稍大的较短节间,以及更柔软(更柔顺)和更强的茎。
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Thigmostimulation alters anatomical and biomechanical properties of bioenergy sorghum stems.
Sorghum [Sorghum bicolor (L.) Moench] is a tropical grass that can be used as a bioenergy crop but commonly suffers from stem structural failure (lodging) when exposed to mechanical stimuli, such as rain and wind. Mechanical stimulation can trigger adaptive growth in plant stems (thigmomorphogenesis) by activating regulatory networks of hormones, proteins, transcription factors, and targeted genes, which ultimately alters their physiology, morphology, and biomechanical properties. The goals of this study are 1) to investigate differences in the morpho-anatomical-biomechanical properties of internodes from control and mechanically-stimulated plants and 2) to examine whether the changes also depend on the plant developmental stages at the time of stimulation. The sweet sorghum cultivar Della was grown in a greenhouse under two growth conditions: with and without mechanical stimulation. The mechanical stimulation involved periodic bending of the stems in one direction during a seven-week growth period. At maturity, the anatomical traits of the stimulated and non-stimulated stems were characterized, including internode lengths and diameters, and biomechanical properties, including elastic (instantaneous) modulus, flexural stiffness, strength, and time-dependent compliance under bending. The morpho-anatomical and biomechanical characteristics of two internodes of the stems that were at different stages of development at the time of mechanical stimulation were examined. Younger internodes were more responsive and experienced more pronounced changes in length due to the stimulation when compared to the older internodes. Statistical analyses showed differences between the stimulated and non-stimulated stems in terms of both their anatomical and biomechanical properties. Mechanical stimulation produced shorter internodes with slightly larger diameters, as well as softer (more compliant) and stronger stems.
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