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通过改变细胞壁组成和营养品质对蚜虫抗性进行氧化还原调控。

Redox Control of Aphid Resistance through Altered Cell Wall Composition and Nutritional Quality.

作者信息

Rasool Brwa, McGowan Jack, Pastok Daria, Marcus Sue E, Morris Jenny A, Verrall Susan R, Hedley Peter E, Hancock Robert D, Foyer Christine H

机构信息

Centre for Plant Sciences, School of Biology, Faculty of Biological Sciences, University of Leeds, Leeds LS2 9JT, United Kingdom.

Cell and Molecular Sciences, James Hutton Institute, Invergowrie, Dundee DD2 5DA, United Kingdom.

出版信息

Plant Physiol. 2017 Sep;175(1):259-271. doi: 10.1104/pp.17.00625. Epub 2017 Jul 25.

Abstract

The mechanisms underpinning plant perception of phloem-feeding insects, particularly aphids, remain poorly characterized. Therefore, the role of apoplastic redox state in controlling aphid infestation was explored using transgenic tobacco () plants that have either high (PAO) or low (TAO) ascorbate oxidase (AO) activities relative to the wild type. Only a small number of leaf transcripts and metabolites were changed in response to genotype, and cell wall composition was largely unaffected. Aphid fecundity was decreased significantly in TAO plants compared with other lines. Leaf sugar levels were increased and maximum extractable AO activities were decreased in response to aphids in all genotypes. Transcripts encoding the Respiratory Burst Oxidase Homolog F, signaling components involved in ethylene and other hormone-mediated pathways, photosynthetic electron transport components, sugar, amino acid, and cell wall metabolism, were increased significantly in the TAO plants in response to aphid perception relative to other lines. The levels of galactosylated xyloglucan were decreased significantly in response to aphid feeding in all the lines, the effect being the least in the TAO plants. Similarly, all lines exhibited increases in tightly bound (1→4)-β-galactan. Taken together, these findings identify AO-dependent mechanisms that limit aphid infestation.

摘要

植物感知韧皮部取食昆虫,尤其是蚜虫的机制仍未得到充分表征。因此,利用相对于野生型具有高(PAO)或低(TAO)抗坏血酸氧化酶(AO)活性的转基因烟草()植株,探索了质外体氧化还原状态在控制蚜虫侵染中的作用。仅少数叶片转录本和代谢物因基因型而发生变化,细胞壁组成基本未受影响。与其他品系相比,TAO植株中的蚜虫繁殖力显著降低。在所有基因型中,响应蚜虫取食,叶片糖水平升高,最大可提取AO活性降低。相对于其他品系,在TAO植株中,响应蚜虫感知,编码呼吸爆发氧化酶同源物F、参与乙烯和其他激素介导途径的信号成分、光合电子传递成分、糖、氨基酸和细胞壁代谢的转录本显著增加。在所有品系中,响应蚜虫取食,半乳糖基化木葡聚糖水平显著降低,在TAO植株中这种影响最小。同样,所有品系中紧密结合的(1→4)-β-半乳聚糖均增加。综上所述,这些发现确定了限制蚜虫侵染的AO依赖机制。

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