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干旱会增加豇豆(Vigna unguiculata [L.] Walp.)在感染初期对豇豆严重花叶病毒(CPSMV)的易感性。

Drought increases cowpea (Vigna unguiculata [L.] Walp.) susceptibility to cowpea severe mosaic virus (CPSMV) at early stage of infection.

作者信息

Silva Rodolpho G G, Vasconcelos Ilka M, Martins Thiago F, Varela Anna L N, Souza Pedro F N, Lobo Ana K M, Silva Fredy D A, Silveira Joaquim A G, Oliveira Jose T A

机构信息

Department of Biochemistry and Molecular Biology, Federal University of Ceara, CE, Brazil.

Department of Biochemistry and Molecular Biology, Federal University of Ceara, CE, Brazil.

出版信息

Plant Physiol Biochem. 2016 Dec;109:91-102. doi: 10.1016/j.plaphy.2016.09.010. Epub 2016 Sep 15.

Abstract

The physiological and biochemical responses of a drought tolerant, virus-susceptible cowpea genotype exposed to drought stress (D), infected by Cowpea severe mosaic virus (CPSMV) (V), and to these two combined stresses (DV), at 2 and 6 days post viral inoculation (DPI), were evaluated. Gas exchange parameters (net photosynthesis, transpiration rate, stomatal conductance, and internal CO partial pressure) were reduced in D and DV at 2 and 6 DPI compared to control plants (C). Photosynthesis was reduced by stomatal and biochemical limitations. Water use efficiency increased at 2 DPI in D, DV, and V, but at 6 DPI only in D and DV compared to C. Photochemical parameters (effective quantum efficiency of photosystem II and electron transport rate) decreased in D and DV compared to C, especially at 6 DPI. The potential quantum efficiency of photosystem II did not change, indicating reversible photoinhibition of photosystem II. In DV, catalase decreased at 2 and 6 DPI, ascorbate peroxidase increased at 2 DPI, but decreased at 6 DPI. Hydrogen peroxide increased at 2 and 6 DPI. Peroxidase increased at 6 DPI and chitinase at 2 and 6 DPI. β-1,3-glucanase decreased in DV at 6 DPI compared to V. Drought increased cowpea susceptibility to CPSMV at 2 DPI, as verified by RT-PCR. However, at 6 DPI, the cowpea plants overcome this effect. Likewise, CPSMV increased the negative effects of drought at 2 DPI, but not at 6 DPI. It was concluded that the responses to combined stresses are not additive and cannot be extrapolated from the study of individual stresses.

摘要

评估了一种耐旱、易感病毒的豇豆基因型在病毒接种后2天和6天,暴露于干旱胁迫(D)、感染豇豆重花叶病毒(CPSMV)(V)以及这两种胁迫组合(DV)下的生理生化反应。与对照植株(C)相比,在病毒接种后2天和6天,D组和DV组的气体交换参数(净光合速率、蒸腾速率、气孔导度和胞间CO₂分压)降低。光合作用因气孔限制和生化限制而降低。在病毒接种后2天,D组、DV组和V组的水分利用效率增加,但在病毒接种后6天,与C组相比,只有D组和DV组的水分利用效率增加。与C组相比,D组和DV组的光化学参数(光系统II的有效量子效率和电子传递速率)降低,尤其是在病毒接种后6天。光系统II的潜在量子效率没有变化,表明光系统II发生了可逆光抑制。在DV组中,过氧化氢酶在病毒接种后2天和6天减少,抗坏血酸过氧化物酶在病毒接种后2天增加,但在病毒接种后6天减少。过氧化氢在病毒接种后2天和6天增加。过氧化物酶在病毒接种后6天增加,几丁质酶在病毒接种后2天和6天增加。与V组相比,在病毒接种后6天,DV组中的β-1,3-葡聚糖酶减少。通过逆转录聚合酶链反应(RT-PCR)验证,干旱在病毒接种后2天增加了豇豆对CPSMV的易感性。然而,在病毒接种后6天,豇豆植株克服了这种影响。同样,CPSMV在病毒接种后2天增加了干旱的负面影响,但在病毒接种后

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