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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Loss in photosynthesis during senescence is accompanied by an increase in the activity of beta-galactosidase in leaves of Arabidopsis thaliana: modulation of the enzyme activity by water stress
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Loss in photosynthesis during senescence is accompanied by an increase in the activity of beta-galactosidase in leaves of Arabidopsis thaliana: modulation of the enzyme activity by water stress

机译:衰老期间光合作用损失伴随着拟南芥叶片中β-半乳糖苷酶活性的增加:用水胁迫调节酶活性

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The precise nature of the developmental modulation of the activity of cell wall hydrolases that breakdown the wall polysaccharides to maintain cellular sugar homeostasis under sugar starvation environment still remains unclear. In this work, the activity of beta-galactosidase (EC 3.2.1.23), a cell-wall-bound enzyme known to degrade the wall polysaccharides, has been demonstrated to remarkably enhance during senescence-induced loss in photosynthesis in Arabidopsis thaliana. The enhancement in the enzyme activity reaches a peak at the terminal phase of senescence when the rate of photosynthesis is at its minimum. Although the precise nature of chemistry of the interface between the decline in photosynthesis and enhancement in the activity of the enzyme could not be fully resolved, the enhancement in its activity in dark and its suppression in light or with exogenous sugars may indicate the involvement of loss of photosynthetic production of sugars as a key factor that initiates and stimulates the activity of the enzyme. The hydrolase possibly participates in the catabolic network of cell wall polysaccharides to produce sugars for execution of energy-dependant senescence program in the background of loss of photosynthesis. Drought stress experienced by the senescing leaves accelerates the decline in photosynthesis with further stimulation in the activity of the enzyme. The stress recovery of photosynthesis and suppression of the enzyme activity on withdrawal of stress support the proposition of photosynthetic modulation of the cell-wall-bound enzyme activity.
机译:细胞壁水解酶活性的发育调节的精确性质,即在糖饥饿环境下将壁多糖维持细胞糖稳态的细胞多糖的活性仍然尚不清楚。在这项工作中,已经证明了β-半乳糖苷酶(EC 3.2.1.23)的活性(EC 3.2.1.23),一种已知的用于降解壁多糖的细胞壁结合的酶,以显着增强拟南芥的光合作用损失期间。当光合作用率处于最小时,酶活性的增强达到衰老的末端阶段的峰值。虽然在酶活性的光合作用和增强之间的界面之间的化学性质的精确性质不能完全解决,但在暗中的活性和光线中的抑制或与外源糖的抑制中的增强可能表明损失的参与糖的光合作用产量作为引发和刺激酶活性的关键因素。水解酶可能参与细胞壁多糖的分解粘性网络,以产生用于在光合作用损失的背景下执行能量依赖性衰老程序的糖。调情叶经历的干旱压力会加速光合作用的下降,进一步刺激酶的活性。光合作用的应力恢复和抑制酶活性的抑制应力的戒断支持对细胞壁结合酶活性的光合调节的命题。

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