嗜热 Heliotropium 能适应自然条件下的高土壤温度,是因为其高度活跃的抗氧化系统能保护其光合作用机制。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-07-01 DOI:10.1071/FP23325
Sevgi Bülbül, Asiye Sezgin Muslu, Aykut Saglam, Asim Kadioglu
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引用次数: 0

摘要

嗜热草(紫草科)植物具有很强的抗氧化性。本研究调查了抗氧化系统在保护嗜热草光合作用机制方面的有效性。植物取自土耳其艾登市布哈肯特区的 Kızıldere 地热区。地热区中生长温度在 25-35°C 的植物被视为低温组,而生长温度在 55-65°C 的植物被视为高温组。我们分析了这些植物在两种温度条件下开花前和开花期的生理变化。我们测量了高温对水势、丙二醛、细胞膜稳定性的影响,并分析了过氧化氢,以确定叶片和根部的应激水平。我们还测定了抗氧化酶活性、抗坏血酸和叶绿素含量、叶绿素荧光、光合气体交换参数以及光合酶(Rubisco 和转化酶)活性的变化。结果表明,胁迫水平的变化极小,表明植物对土壤高温有一定的耐受性。总体而言,除了非光化学淬灭(NPQ)和 F v /F m 外,抗氧化酶活性、抗坏血酸含量和所有叶绿素荧光参数都有所增加。尽管 F v /F m 没有变化,但开花前和开花期的 NPQ 都有所下降。此外,光合气体交换参数、Rubisco 和转化酶活性水平也有所上升。高温并不影响光合作用的产量,因为研究发现嗜热草具有抗氧化能力,可以减少氧化损伤,并在高温条件下维持其光合作用机制,因此它对土壤高温具有耐受性。
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Heliotropium thermophilum adapts to high soil temperature in natural conditions due to its highly active antioxidant system protecting its photosynthetic machinery.

Heliotropium thermophilum (Boraginaceae) plants have strong antioxidant properties. This study investigated the effectiveness of the antioxidant system in protecting the photosynthetic machinery of H. thermophilum . Plants were obtained from Kızıldere geothermal area in Buharkent district, Aydın, Turkey. Plants in the geothermal area that grew at 25-35°C were regarded as the low temperature group, while those that grew at 55-65°C were regarded as the high temperature group. We analysed the physiological changes of these plants at the two temperature conditions at stage pre-flowering and flowering. We meaured the effect of high soil temperature on water potential, malondialdehyde, cell membrane stability, and hydrogen peroxide analysis to determine stress levels on leaves and roots. Changes in antioxidant enzyme activities, ascorbate and chlorophyll content, chlorophyll fluorescence, photosynthetic gas exchange parameters, and photosynthetic enzymes (Rubisco and invertase) activities were also determined. Our results showed minimal changes to stress levels, indicating that plants were tolerant to high soil temperatures. In general, an increase in antioxidant enzyme activities, ascorbat levels, and all chlorophyll fluorescence parameters except for non-photochemical quenching (NPQ) and F v /F m were observed. The pre-flowering and flowering stages were both characterised by decreased NPQ, despite F v /F m not changing. Additionally, there was a rise in the levels of photosynthetic gas exchange parameters, Rubisco, and invertase activities. High temperature did not affect photosynthetic yield because H. thermophilum was found to stimulate antioxidant capacity, which reduces oxidative damage and maintains its photosynthetic machinery in high temperature conditions and therefore, it is tolerant to high soil temperature.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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