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Growth and cell wall changes in rice roots during spaceflight

机译:航天飞行中水稻根系的生长和细胞壁变化

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We analyzed the changes in growth and cell wall properties of roots of rice (Oryza sativa L. cv. Koshihikari) grown for 68.5, 91.5, and 136 h during the Space Shuttle STS-95 mission. In space, most of rice roots elongated in a direction forming a constant mean angle of about 55° with the perpendicular base line away from the caryopsis in the early phase of growth, but later the roots grew in various directions, including away from the agar medium. In space, elongation growth of roots was stimulated. On the other hand, some of elasticity moduli and viscosity coefficients were higher in roots grown in space than on the ground, suggesting that the cell wall of space-grown roots has a lower capacity to expand than the controls. The levels of both cellulose and the matrix polysaccharides per unit length of roots decreased greatly, whereas the ratio of the high molecular mass polysaccharides in the hemicellulose fraction increased in space-grown roots. The prominent thinning of the cell wall could overwhelm the disadvantageous changes in the cell wall mechanical properties, leading to the stimulation of elongation growth in rice roots in space. Thus, growth and the cell wall properties of rice roots were strongly modified under microgravity conditions during spaceflight.
机译:我们分析了在航天飞机STS-95任务期间生长68.5、91.5和136 h的水稻根的生长和细胞壁特性的变化。在空间上,大多数稻米根系在形成的早期阶段沿与基线垂直方向远离圆锥形的方向形成约55°的恒定平均角的方向伸长,但后来根系向各个方向生长,包括远离琼脂介质。在太空中,刺激了根的伸长生长。另一方面,在空间中生长的根的一些弹性模量和粘度系数比在地面上高,这表明空间生长的根的细胞壁比对照具有较低的扩张能力。单位长度根中纤维素和基质多糖的含量均大大降低,而在空间生长的根中,高分子量多糖在半纤维素级分中的比例增加。细胞壁的显着变薄可能会淹没细胞壁力学性能的不利变化,从而刺激太空中水稻根系的伸长生长。因此,在航天过程中,在微重力条件下,水稻根的生长和细胞壁特性被强烈地改变。

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