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Combined Effects of Ozone and Drought on the Physiology and Membrane Lipids of Two Cowpea (Vigna unguiculata (L.) Walp) Cultivars

机译:臭氧和干旱对两种Cow豆(Vigna unguiculata(L.)Walp)品种的生理和膜脂的联合影响

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摘要

The interactive effects of drought and ozone on the physiology and leaf membrane lipid content, composition and metabolism of cowpea (Vigna unguiculata (L.) Walp.) were investigated in two cultivars (EPACE-1 and IT83-D) grown under controlled conditions. The drought treatment (three-week water deprivation) did not cause leaf injury but restricted growth through stomatal closure. In contrast, the short-term ozone treatment (130 ppb 12 h daily during 14 day) had a limited impact at the whole-plant level but caused leaf injury, hydrogen peroxide accumulation and galactolipid degradation. These effects were stronger in the IT83-D cultivar, which also showed specific ozone responses such as a higher digalactosyl-diacylglycerol (DGDG):monogalactosyl-diacylglycerol (MGDG) ratio and the coordinated up-regulation of DGDG synthase (VuDGD2) and ω-3 fatty acid desaturase 8 (VuFAD8) genes, suggesting that membrane remodeling occurred under ozone stress in the sensitive cultivar. When stresses were combined, ozone did not modify the stomatal response to drought and the observed effects on whole-plant physiology were essentially the same as when drought was applied alone. Conversely, the drought-induced stomatal closure appeared to alleviate ozone effects through the reduction of ozone uptake.
机译:在控制条件下种植的两个品种(EPACE-1和IT83-D)中研究了干旱和臭氧对and豆(Vigna unguiculata(L.)Walp。)的生理和叶片膜脂质含量,组成和代谢的相互作用。干旱处理(缺水三周)没有引起叶片损伤,但通过气孔关闭限制了生长。相反,短期臭氧处理(14天内每天12小时每天130 ppb)对整个植物的影响有限,但会导致叶片损伤,过氧化氢积累和半乳糖脂降解。这些效应在IT83-D品种中更强,它还表现出特定的臭氧响应,例如更高的二​​半乳糖基-二酰基甘油(DGDG):单半乳糖基-二酰基甘油(MGDG)比率以及DGDG合酶(VuDGD2)和ω- 3个脂肪酸去饱和酶8(VuFAD8)基因,表明在臭氧胁迫下敏感品种发生了膜重塑。当组合压力时,臭氧不会改变气孔对干旱的反应,观察到的对整株生理的影响与单独施用干旱时基本相同。相反,干旱引起的气孔关闭似乎可以通过减少臭氧的吸收来减轻臭氧的影响。

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