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Poplar woody taproot under bending stress: the asymmetric response of the convex and concave sides

机译:杨木木质主根在弯曲应力下:凸面和凹面的不对称响应

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摘要

>Background and Aims Progress has been made in understanding the physiological and molecular basis of root response to mechanical stress, especially in the model plant Arabidopsis thaliana, in which bending causes the initiation of lateral root primordia toward the convex side of the bent root. In the case of woody roots, it has been reported that mechanical stress induces an asymmetric distribution of lateral roots and reaction wood formation, but the mechanisms underlying these responses are largely unknown. In the present work, the hypothesis was tested that bending could determine an asymmetric response in the two sides of the main root axis as cells are stretched on the convex side and compressed on the concave side.>Methods Woody taproots of 20 seedlings were bent to an angle of 90° using a steel net. Changes in the anatomy, lignin and phytohormone content and proteome expression in the two sides of the bent root were analysed; anatomical changes, including dissimilarities and similarities to those found in poplar bent woody stem, were also considered.>Key Results Compression forces at the concave side of poplar root induced the formation of reaction wood which presented a high lignin content and was associated with the induction of cambium cell activity. Auxin seemed to be the main hormone triggering lignin deposition and cell wall strengthening in the concave sides. Abscisic acid appeared to function in the water stress response induced by xylem structures and/or osmotic alterations in the compression sides, whereas gibberellins may control cell elongation and gravitropisms.>Conclusions Poplar root reaction wood showed characteristics different from those produced in bent stem. Besides providing biomechanical functions, a bent root ensures water uptake and transport in the deforming condition induced by tension and compression forces by two different strategies: an increase in xylem thickness in the compressed side, and lateral root formation in the tension side.
机译:>背景和目的在了解根对机械应力的响应的生理和分子基础方面取得了进展,尤其是在模型植物拟南芥中,其中弯曲导致侧根原基向凸侧的萌生弯曲的根。在木本根的情况下,据报道机械应力引起侧根的不对称分布和反应木的形成,但是这些响应的基础机制尚不清楚。在本研究中,检验了以下假设:当细胞在凸侧拉伸并在凹侧压缩时,弯曲可以确定主根轴两侧的不对称响应。>方法使用钢网将20个幼苗中的20个弯曲到90°的角度。分析了弯曲根两侧的解剖结构,木质素和植物激素含量以及蛋白质组表达的变化; >主要结果杨树根凹面的压缩力诱导了反应木的形成,木质素含量高。并与形成层细胞活性的诱导有关。生长素似乎是触发木质素沉积和凹面细胞壁增强的主要激素。脱落酸似乎在木质部结构和/或受压侧渗透变化引起的水分胁迫响应中发挥作用,而赤霉素可能控制细胞的伸长和向性性。>结论杨树根反应木表现出的特性不同于那些产生于弯曲的茎。除了提供生物力学功能外,弯曲的根还通过两种不同的策略来确保在由拉伸和压缩力引起的变形条件下的水分吸收和运输:在压缩侧增加木质部厚度,在拉伸侧形成侧向根。

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