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首页> 外文期刊>Plant physiology >CIRCADIAN CLOCK-ASSOCIATED1 Controls Resistance to Aphids by Altering Indole Glucosinolate Production
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CIRCADIAN CLOCK-ASSOCIATED1 Controls Resistance to Aphids by Altering Indole Glucosinolate Production

机译:昼夜时钟相关的1通过改变吲哚葡萄糖苷生产来控制抗蚜虫的抗性

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CIRCADIAN CLOCK-ASSOCIATED1 (CCA1), a well-known central circadian clock regulator, coordinates plant responses to environmental challenges. Its daily rhythmic expression in Arabidopsis (Arabidopsis thaliana) confers host resistance to the caterpillar Trichoplusia ni. However, it is unclear whether CCA1 plays a role in defense against phloem sap-feeding aphids. In this study, we showed that green peach aphid (Myzus persicae) displayed an intrinsic circadian feeding rhythm. Under constant light, wild-type Columbia-0 (Col-0) Arabidopsis plants coentrained with aphids in the same light/dark cycles exhibited greater antixenotic activity than plants preentrained in the opposite cycle from the aphids. Consistently, circadian mutants cca1-1, cca1-11, lhy-21, ztl-1, ztl-4, and lux-2 suffered more severe damage than Col-0 plants when infested by aphids, suggesting that the Arabidopsis circadian clock plays a defensive role. However, the arrhythmic CCA1 overexpression line (CCA1-OX) displayed strong antixenotic and antibiotic activities despite its loss of circadian regulation. Aphids feeding on CCA1-OX plants exhibited lower reproduction and smaller body size and weight than those on Col-0. Apparently, CCA1 regulates both clock-dependent and -independent defense responses. Systematic investigation based on bioinformatics analyses indicated that resistance to aphids in CCA1-OX plants was due primarily to heightened basal indole glucosinolate levels. Interestingly, aphid feeding induced alternatively spliced intron-retaining CCA1a/b transcripts, which are normally expressed at low levels, whereas expression of the major fully spliced CCA1 transcript remained largely unchanged. We hypothesize that posttranscriptional modulation of CCA1 expression upon aphid infestation maximizes the potential of circadian-mediated defense and stress tolerance while ensuring normal plant development.
机译:昼夜时钟相关的1(CCA1)是一家着名的中央昼夜节日调节器,坐标对环境挑战的植物反应。其在拟南芥(Arabidopsis Thaliana)中的每日节奏表达赋予宿主对毛虫Trichoplusia Ni的抵抗力。然而,目前尚不清楚CCA1是否在防御饲料饲喂蚜虫中起作用。在这项研究中,我们展示了绿色桃蚜(Myzus Persicae)显示了一个内在的昼夜喂养节奏。在恒定的光下,在相同光/黑暗循环中与蚜虫的野生型哥伦比亚-0(COL-0)拟查植物具有比蚜虫相反循环中的植物更大的抗凸状活动。始终如一地,昼夜突变体CCA1-1,CCA1-11,LHY-21,ZTL-1,ZTL-4和Lux-2在蚜虫感染时比Col-0植物更严重损伤,这表明拟南芥昼夜钟戏防御角色。然而,尽管有昼夜调节,但仍然显示出抗蠕动和抗生素的活性的心律失常CCA1过度表达线(CCA1-OX)。饲喂CCA1-OX植物的蚜虫表现出较低的繁殖和体重减轻而不是Col-0上的体重和重量。显然,CCA1规范了时钟依赖性和依赖的防御反应。基于生物信息学分析的系统调查表明,CCA1-OX植物中对蚜虫的抗性主要是由于加强的基础吲哚葡萄糖苷水平。有趣的是,蚜虫喂养诱导的可替代地剪接内含子系统的CCA1A / B转录物,其通常在低水平下表达,而主要完全剪接的CCA1转录物的表达在很大程度上保持不变。我们假设CCA1表达对蚜虫侵染的后术后调节最大化昼夜介导的防御和应力耐受性的潜力,同时确保正常的植物发育。

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