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短期高温处理对不同耐热性葡萄品种光合性能的影响。

Effect of Short-Time High-Temperature Treatment on the Photosynthetic Performance of Different Heat-Tolerant Grapevine Cultivars.

机构信息

Research Institute of Forestry and Pomology, Shanghai Academy of Agricultural Science, Shanghai, 201403, China.

出版信息

Photochem Photobiol. 2021 Jul;97(4):763-769. doi: 10.1111/php.13381. Epub 2021 Jan 31.

Abstract

To explore the photosynthetic response of short-term high-temperature treatments to the leaves of different grape varieties (Shenyue and Shenfeng), we performed 45°C treatments on annual potted grapes in an artificial climate chamber to simulate the summer high-temperature period. We measured the rapid A-Ci response curve, 1,5-ribulose bisphosphate carboxylase/oxygenase (Rubisco) activity and chlorophyll a fluorescence. Photosynthetic performance-related parameters of grapevine leaves were found to be adversely affected by high temperature; the maximum rates of carboxylation of Rubisco and ribulose diphosphate regeneration and Rubisco activity were all significantly reduced. The JI of the JIP-test curve disappeared under high-temperature treatment, and the K peak appeared, indicating that the oxygen-evolving complex (OEC) had been destroyed. Principal component analysis showed that PSII activity (F /F , DF , φ , ABS/RC) was greatly affected by high temperature. It was also found that the Rubisco activity and OEC destruction strength were greater in one of the cultivars, and we were able to determine heat resistance based on the phenotype and photosynthetic performance. It can be seen from the above that Shenyue leaves have higher heat tolerance and stronger photosynthetic performance than Shenfeng leaves. This shows that photosynthetic performance is strongly correlated with a grapevine's tolerance to abiotic stress.

摘要

为了探究短期高温处理对不同葡萄品种(神悦和神锋)叶片的光合响应,我们在人工气候室中对一年生盆栽葡萄进行 45°C 处理,以模拟夏季高温期。我们测量了快速 A-Ci 响应曲线、1,5-二磷酸核酮糖羧化酶/加氧酶(Rubisco)活性和叶绿素 a 荧光。发现高温对葡萄叶片的光合性能相关参数有不利影响;Rubisco 羧化和核酮糖二磷酸再生的最大速率以及 Rubisco 活性均显著降低。高温处理下 JIP 测试曲线的 JI 消失,出现 K 峰,表明放氧复合体(OEC)已被破坏。主成分分析表明 PSII 活性(F /F, DF, φ, ABS/RC)受高温影响较大。还发现其中一个品种的 Rubisco 活性和 OEC 破坏强度更大,我们可以根据表型和光合性能来确定耐热性。由此可见,神悦叶片比神锋叶片具有更高的耐热性和更强的光合性能。这表明光合性能与葡萄对非生物胁迫的耐受性密切相关。

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