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Plant 'muscles': fibers with a tertiary cell wall

机译:植物“肌肉”:带有三级细胞壁的纤维

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Plants, although sessile organisms, are nonetheless able to move their body parts; for example, during root contraction of geophytes or in the gravitropic reaction by woody stems. One of the major mechanisms enabling these movements is the development of specialized structures that possess contractile properties. Quite unlike animal muscles, for which the action is driven by protein-protein interactions in the protoplasma, the action of plant muscles' is polysaccharide-based and located in the uniquely designed, highly cellulosic cell wall that is deposited specifically in fibers. This review describes the development of such cell walls as a widespread phenomenon in the plant kingdom, gives reasons why it should be considered as a tertiary cell wall, and discusses the mechanism of action of the muscles'. The origin of the contractile properties lies in the tension of the axially oriented cellulose microfibrils due to entrapment of rhamnogalacturonan-I aggregates that limits the lateral interaction of microfibrils. Long side chains of the nascent rhamnogalacturonan-I are trimmed off during cell wall maturation leading to tension development. Similarities in the tertiary cell wall design in fibers of different plant origin indicate that the basic principles of tension creation may be universal in various ecophysiological situations.
机译:植物,虽然是无梗死生物,但仍然能够移动身体部位;例如,在Geophytes的根部收缩或由木质茎中的重力反应。实现这些运动的主要机制之一是开发具有收缩性质的专业结构。与动物肌肉不同,该动作由原生质中的蛋白质 - 蛋白质相互作用驱动,植物肌肉的作用是基于多糖的,并且位于唯一设计的高度纤维素的细胞壁中,该纤维素覆盖在纤维中。该审查描述了这种细胞壁的发展,作为植物王国的广泛现象,给出了原因,为什么它应该被视为第三级细胞壁,并讨论了肌肉的作用机制。收缩性质的起源是由于抑制脊髓灰质炎-I聚集物的轴向取向的纤维素微纤维的张力,其聚集物限制微纤维的横向相互作用。在细胞壁成熟期间,新生rhamnogalactuRonan-i的长边链被修剪关,导致张力开发。不同植物来源的纤维中三级细胞壁设计的相似性表明,各种生理情况下,张力创造的基本原则可能是普遍的。

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