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首页> 外文期刊>Plant Science >PHOTOSYNTHETIC PHENOTYPE PLASTICITY AND THE ROLE OF PHOSPHOENOLPYRUVATE CARBOXYLASE IN HYDRILLA VERTICILLATA
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PHOTOSYNTHETIC PHENOTYPE PLASTICITY AND THE ROLE OF PHOSPHOENOLPYRUVATE CARBOXYLASE IN HYDRILLA VERTICILLATA

机译:黄萎病菌的光合表型可塑性和磷脂酰丙酮酸羧化酶的作用

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An inhibitor [3,3-dichloro-2-(dihydroxyphosphinoylmethyl)-propenoate (DCDP)] of phosphoenolpyruvate carboxylase (Pepcase) was used to investigate the participation of this carbon fixing-enzyme in the gas exchange characteristics of the low-photorespiratory phenotype of the submersed aquatic angiosperm Hydrilla verticillata (L.F.) Royle. Exposure of such low photorespiratory plants to DCDP resulted in increases in the CO2 compensation point (Gamma, from 10 to 59 mu l l(-1)), O-2 inhibition of photosynthesis (from 0.5 to 15% at 21% O-2) and CO2 evolution in the dark by 51%. These DCDP-exposed individuals exhibited a 27% decrease in apparent photosynthesis. In contrast, DCDP had no negative effects upon high photorespiratory individuals. By directly inhibiting the enzyme, these data confirm that Pepcase participates in the expression of low photorespiratory gas exchange characteristics in H. verticillata, Following the induction of the low photorespiratory phenotype, both old tissue originally in the high photorespiratory state (Gamma = 53 mu l l(-1)) and new tissue produced during induction exhibited Gamma values of <20 mu l l(-1). Therefore, induction of the low photorespiratory state seems not to depend on shoot age. Although Pepcase activity was negatively correlated with Gamma during induction of the low photorespiratory phenotype, the relationship appears to be non-linear suggesting that expression of low photorespiratory gas exchange characteristics might require subsequent induction of C-4 photosynthetic enzymes other than Pepcase. [References: 27]
机译:磷酸烯醇丙酮酸羧化酶(Pepcase)的抑制剂[3,3-二氯-2-(二羟基膦酰基甲基)-丙烯酸(DCDP)]用于研究这种碳固定酶参与低光呼吸表型的气体交换特性的过程。淹没的被子植物Hydrilla verticillata(LF)Royle。将如此低水平的光呼吸植物暴露于DCDP会导致CO2补偿点(γ,从10到59 mu ll(-1))增加,O-2抑制光合作用(21%的O-2从0.5到15%)在黑暗中二氧化碳排放量增加了51%。这些暴露于DCDP的个体的表观光合作用降低了27%。相反,DCDP对高光呼吸的个体没有负面影响。通过直接抑制酶,这些数据证实了Pepcase参与了黄褐藻中低光呼吸气体交换特征的表达,在诱导了低光呼吸表型后,两个老组织原本都处于高光呼吸状态(Gamma = 53 mu ll)。 (-1))和诱导过程中产生的新组织表现出的伽玛值小于20μll(-1)。因此,低光呼吸状态的诱导似乎不取决于芽龄。尽管在诱导低光呼吸性表型过程中,Pepcase活性与Gamma呈负相关,但这种关系似乎是非线性的,表明低光呼吸性气体交换特征的表达可能需要随后诱导除Pepcase之外的C-4光合酶。 [参考:27]

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