首页> 外文期刊>Journal of Experimental Botany >Ammonium intensifies CAM photosynthesis and counteracts drought effects by increasing malate transport and antioxidant capacity in Guzmania monostachia
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Ammonium intensifies CAM photosynthesis and counteracts drought effects by increasing malate transport and antioxidant capacity in Guzmania monostachia

机译:铵加剧了CAM光合作用,通过增加古兹曼尼亚莫塞其西亚的雄性转运和抗氧化能力来抵消抗旱效应

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Guzmania monostachia (Bromeliaceae) is a tropical epiphyte capable of up-regulating crassulacean acid metabolism (CAM) in its photosynthetic tissues in response to changing nutrient and water availability. Previous studies have shown that under drought there is a gradient of increasing CAM expression from the basal (youngest) to the apical (oldest) portion of the leaves, and additionally that nitrogen deficiency can further increase CAM intensity in the leaf apex of this bromeliad. The present study investigated the inter-relationships between nitrogen source (nitrate and/ or ammonium) and water deficit in regulating CAM expression in G. monostachia leaves. The highest CAM activity was observed under ammonium nutrition in combination with water deficit. This was associated with enhanced activity of the key enzyme phosphoenolpyruvate carboxylase, elevated rates of ATP-and PPi-dependent proton transport at the vacuolar membrane in the presence of malate, and increased transcript levels of the vacuolar malate channelencoding gene, ALMT. Water deficit was consistently associated with higher levels of total soluble sugars, which were maximal under ammonium nutrition, as were the activities of several antioxidant enzymes (superoxide dismutase, catalase, ascorbate peroxidase, and glutathione reductase). Thus, ammonium nutrition, whilst associated with the highest degree of CAM induction in G. monostachia, also mitigates the effects of water deficit by osmotic adjustment and can limit oxidative damage in the leaves of this bromeliad under conditions that may be typical of its epiphytic habitat.
机译:Guzmania Monostachia(Bromeliaceae)是一种热带又具有能够在其光合组织中调节鲫鱼代谢(CAM)的热带旁肢体,以应对不断变化的营养和水可用性。以前的研究表明,在干旱下,存在从基部(最小)到叶子的基底(最古)的凸轮表达增加的梯度,并且另外,氮缺乏可以进一步增加该溴脲的叶子顶点中的凸轮强度。本研究调查了氮源(硝酸盐和/或铵)与水缺损在调节G. Monostachia叶中的凸轮表达之间的间相互关系。在铵营养与水赤字结合时观察到最高的CAM活性。这与关键酶磷酸丙烯酚丙酮酸羧化酶的增强活性有关,在苹果酸盐存在下真空膜的升高的ATP和PPI依赖性质子传输速率,以及较高的丙酸盐丙酸酯犬肠道,ALMT的转录物水平增加。水缺陷始终如一与含铵营养的最大可溶性糖水平的含量,这是几种抗氧化酶(超氧化物歧化酶,过氧化氢酶,抗坏血酸过氧化物酶和谷胱甘肽还原酶)的活性。因此,铵营养,同时与G. monostachia中的最高凸轮诱导相关的营养,同时通过渗透调节来减轻水缺损的影响,并且可以在可能是其果实栖息地的典型条件下限制该溴洲叶片的氧化损伤。

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