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首页> 外文期刊>Journal of Experimental Botany >Climate and development modulate the metabolome and antioxidative system of date palm leaves
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Climate and development modulate the metabolome and antioxidative system of date palm leaves

机译:气候和发展调节枣棕榈叶的代谢物和抗氧化系统

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Date palms are remarkably tolerant to environmental stresses, but the mechanisms involved remain poorly characterized. Leaf metabolome profiling was therefore performed on mature (ML) and young (YL) leaves of 2-year-old date palm seedlings that had been grown in climate chambers that simulate summer and winter conditions in eastern Saudi Arabia. Cultivation under high temperature (summer climate) resulted in higher YL H2O2 leaf levels despite increases in dehydroascorbate reductase (DHAR) activities. The levels of raffinose and galactinol, tricarboxylic acid cycle intermediates, and total amino acids were higher under these conditions, particularly in YL. The accumulation of unsaturated fatty acids, 9,12-octadecadienoic acid and 9,12,15-octadecatrienoic acid, was lower in ML. In contrast, the amounts of saturated tetradecanoic acid and heptadecanoic acid were increased in YL under summer climate conditions. The accumulation of phenolic compounds was favored under summer conditions, while flavonoids accumulated under lower temperature (winter climate) conditions. YL displayed stronger hydration, lower H2O2 levels, and more negative delta C-13 values, indicating effective reactive oxygen species scavenging. These findings, which demonstrate the substantial metabolic adjustments that facilitate tolerance to the high temperatures in YL and ML, suggest that YL may be more responsive to climate change.
机译:枣椰子对环境压力显着耐受,但涉及的机制仍然存在差。因此,在成熟(ml)和年轻(yl)叶子的2岁枣棕榈幼苗的成熟(ml)和年轻(yl)叶子上进行了叶片代谢物分析,这些棕榈幼苗在气候室中种植,这些植物在沙特阿拉伯东部的夏季和冬季条件下。尽管脱氢血萎树脂还原酶(DHAR)活性增加,但在高温(夏季气候)下培养导致较高的YL H 2 O 2叶水平。在这些条件下,棉花糖和半乳糖醇,三羧酸循环中间体和总氨基酸的水平较高,特别是在Y1中。不饱和脂肪酸,9,12-十八二碳酸甲酸和9,12,15-十八烷丙二酸的积累均低于mL。相反,在夏季气候条件下,在Y1中增加了饱和四乙二酸和庚二烷酸的量。酚类化合物的积累在夏季条件下青睐,而在较低温度(冬季气候)条件下积累的黄酮类化合物。 YL显示出更强的水合,低温H 2 O 2水平,更负的Delta C-13值,表明有效的活性氧物种清除。这些发现表明了促进与ML和ML的高温耐受性的大量代谢调整,表明YL对气候变化可能更响应。

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