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氮素供应影响藜麦干旱诱导衰老过程中的光合作用和光保护特性。

Nitrogen Supply Affects Photosynthesis and Photoprotective Attributes During Drought-Induced Senescence in Quinoa.

作者信息

Bascuñán-Godoy Luisa, Sanhueza Carolina, Hernández Cristián E, Cifuentes Leonardo, Pinto Katherine, Álvarez Rodrigo, González-Teuber Marcia, Bravo León A

机构信息

Laboratorio de Fisiología Vegetal, Departamento de Botánica, Facultad de Ciencias Naturales y Oceanográficas, Universidad de Concepción, Concepción, Chile.

Laboratorio de Ecología Evolutiva y Filoinformática, Departamento de Zoología, Facultad de Ciencias Naturales y Oceanográficas, Universidad de Concepción, Concepción, Chile.

出版信息

Front Plant Sci. 2018 Jul 30;9:994. doi: 10.3389/fpls.2018.00994. eCollection 2018.

Abstract

Drought during senescence has become more common in Mediterranean climates in recent years. Willd has been identified as tolerant to poor soil conditions and drought. Previous observations have found that sufficient nitrogen (N) supply mitigates yield losses under terminal drought conditions. However, there is no understanding of the mechanisms behind this effect. We hypothesized that N up-regulates both photosynthetic and photoprotective elements during drought-induced senescence, alleviating the negative impact of drought on yield. The role of N supply and terminal drought on photoprotection was tested using three Chilean quinoa genotypes from different climatic zones: Faro, UdeC9, and BO78. Plants were grown under high nitrogen (HN) or low nitrogen (LN) conditions and subjected to terminal drought at the onset of senescence. Photosynthetic and photochemical and non-photochemical processes were evaluated at both the onset of drought and after 15 days of drought conditions. N supplementation modified most of the physiological parameters related to photochemical dissipation of energy, photosynthesis, and yield in quinoa. In contrast, water restriction did not affect photosynthesis in quinoa, and its effect on yield was dependent on the genotype. A significant interaction N × G was observed in photosynthesis, relative water content, protein content, Fv/Fm, and chlorophylls. In general, Faro was able to maintain higher levels of these attributes under LN conditions than UdeC9 and BO78. In addition, the interacting effects of N × W regulated the level of most pigments in quinoa as well as the photoprotective induction of non-photochemical quenching (NPQ) during senescence. During terminal drought at LN conditions, Faro presented a larger NPQ induction under drought conditions than UdeC9 and BO78, which was supported by a larger zeaxanthin content and de-epoxidation state of the xanthophyll pool. Interestingly, BO78 did not induce NPQ in response to drought-induced senescence but instead enhanced the content of betacyanins. This response needs to be researched in future works. Finally, we observed that LN supply reduced the correlationship between the de-epoxidation state of the xanthophyll cycle and NPQ. This could be an indication that N supply not only compromised the capacity for photosynthetic performance in quinoa plants, but also affected the plasticity of thermal dissipation, restricting further changes during drought-induced senescence.

摘要

近年来,地中海气候区在衰老期出现干旱的情况愈发常见。野生藜麦已被认定对贫瘠土壤条件和干旱具有耐受性。此前的观察发现,充足的氮(N)供应可减轻终末期干旱条件下的产量损失。然而,对于这种效应背后的机制尚不清楚。我们推测,在干旱诱导的衰老过程中,氮上调光合和光保护元件,减轻干旱对产量的负面影响。利用来自不同气候区的三种智利藜麦基因型(法罗、UdeC9和BO78),测试了氮供应和终末期干旱对光保护的作用。植株在高氮(HN)或低氮(LN)条件下生长,并在衰老开始时遭受终末期干旱。在干旱开始时和干旱条件持续15天后,对光合、光化学和非光化学过程进行了评估。氮补充改变了藜麦中与能量光化学耗散、光合作用和产量相关的大多数生理参数。相比之下,水分限制并未影响藜麦的光合作用,其对产量的影响取决于基因型。在光合作用、相对含水量、蛋白质含量、Fv/Fm和叶绿素方面,观察到显著的氮×基因型(N×G)交互作用。总体而言,在低氮条件下,法罗比UdeC9和BO78能够维持更高水平的这些属性。此外,氮×水分(N×W)的交互作用调节了藜麦中大多数色素的水平以及衰老期间非光化学猝灭(NPQ)的光保护诱导。在低氮条件下的终末期干旱期间,法罗在干旱条件下的NPQ诱导比UdeC9和BO78更大,这得到了叶黄素库中玉米黄质含量和脱环氧化状态更高的支持。有趣的是,BO78对干旱诱导的衰老没有诱导NPQ,而是增加了甜菜色素的含量。这种反应需要在未来的研究中进一步探究。最后,我们观察到低氮供应降低了叶黄素循环脱环氧化状态与NPQ之间的相关性。这可能表明氮供应不仅损害了藜麦植株的光合性能,还影响了热耗散的可塑性,限制了干旱诱导衰老期间的进一步变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49a2/6077362/6fd8e0f0134e/fpls-09-00994-g001.jpg

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