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感染大孢狭顶黑粉菌的玉米叶片的气体交换和叶绿素a荧光

Leaf Gas Exchange and Chlorophyll a Fluorescence in Maize Leaves Infected with Stenocarpella macrospora.

作者信息

Bermúdez-Cardona Maria Bianney, Wordell Filho João Américo, Rodrigues Fabrício Ávila

出版信息

Phytopathology. 2015 Jan;105(1):26-34. doi: 10.1094/PHYTO-04-14-0096-R.

Abstract

This study investigated the effect of macrospora leaf spot (MLS), caused by Stenocarpella macrospora, on photosynthetic gas exchange parameters and chlorophyll a fluorescence parameters determined in leaves of plants from two maize cultivars ('ECVSCS155' and 'HIB 32R48H') susceptible and highly susceptible, respectively, to S. macrospora. MLS severity was significantly lower in the leaves of plants from ECVSCS155 relative to the leaves of plants from HIB 32R48H. In both cultivars, net CO2 assimilation rate, stomatal conductance, and transpiration rate significantly decreased, while the internal to ambient CO2 concentration ratio increased in inoculated plants relative to noninoculated plants. The initial fluorescence and nonphotochemical quenching significantly increased in inoculated plants of ECVSCS155 and HIB 32R48H, respectively, relative to noninoculated plants. The maximum fluorescence, maximum PSII quantum efficiency, coefficient for photochemical quenching, and electron transport rate significantly decreased in inoculated plants relative to noninoculated plants. For both cultivars, concentrations of total chlorophyll (Chl) (a+b) and carotenoids and the Chl a/b ratio significantly decreased in inoculated plants relative to noninoculated plants. In conclusion, the results from the present study demonstrate, for the first time, that photosynthesis in the leaves of maize plants is dramatically affected during the infection process of S. macrospora, and impacts are primarily associated with limitations of a diffusive and biochemical nature.

摘要

本研究调查了由大孢狭顶壳菌(Stenocarpella macrospora)引起的大孢叶斑病(MLS)对分别对大孢狭顶壳菌敏感和高度敏感的两个玉米品种(‘ECVSCS155’和‘HIB 32R48H’)植株叶片光合气体交换参数和叶绿素a荧光参数的影响。相对于‘HIB 32R48H’植株的叶片,‘ECVSCS155’植株叶片上的大孢叶斑病严重程度显著更低。在两个品种中,接种植株相对于未接种植株,净二氧化碳同化率、气孔导度和蒸腾速率均显著降低,而胞间二氧化碳浓度与外界二氧化碳浓度之比升高。相对于未接种植株,‘ECVSCS155’和‘HIB 32R48H’接种植株的初始荧光和非光化学猝灭分别显著增加。相对于未接种植株,接种植株的最大荧光、最大光系统II量子效率、光化学猝灭系数和电子传递速率均显著降低。对于两个品种,接种植株相对于未接种植株,总叶绿素(Chl)(a+b)和类胡萝卜素浓度以及Chl a/b比值均显著降低。总之,本研究结果首次表明,在大孢狭顶壳菌感染过程中,玉米植株叶片的光合作用受到显著影响,且这些影响主要与扩散和生化性质的限制有关。

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