首页> 美国卫生研究院文献>PLoS Clinical Trials >Reducing cell wall feruloylation by expression of a fungal ferulic acid esterase in Festuca arundinacea modifies plant growth, leaf morphology and the turnover of cell wall arabinoxylans
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Reducing cell wall feruloylation by expression of a fungal ferulic acid esterase in Festuca arundinacea modifies plant growth, leaf morphology and the turnover of cell wall arabinoxylans

机译:通过在阿氏羊茅中表达真菌阿魏酸酯酶减少细胞壁阿魏酸化修饰植物生长,叶片形态和细胞壁阿拉伯木聚糖的更新

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摘要

A feature of cell wall arabinoxylan in grasses is the presence of ferulic acid which upon oxidative coupling by the action of peroxidases forms diferuloyl bridges between formerly separated arabinoxylans. Ferulate cross-linking is suspected of playing various roles in different plant processes. Here we investigate the role of cell wall feruloyaltion in two major processes, that of leaf growth and the turnover of cell wall arabinoxylans on leaf senescence in tall fescue using plants in which the level of cell wall ferulates has been reduced by targeted expression of the Aspergillus niger ferulic acid esterase A (FAEA) to the apoplast or Golgi. Analysis of FAE expressing plants showed that all the lines had shorter and narrower leaves compared to control, which may be a consequence of the overall growth rate being lower and occurring earlier in FAE expressing leaves than in controls. Furthermore, the final length of epidermal cells was shorter than controls, indicating that their expansion was curtailed earlier than in control leaves. This may be due to the observations that the deposition of both ether and ester linked monomeric hydroxycinnamic acids and ferulate dimerization stopped earlier in FAE expressing leaves but at a lower level than controls, and hydroxycinnamic acid deposition started to slow down when peroxidase levels increased. It would appear therefore that one of the possible mechanisms for controlling overall leaf morphology such as leaf length and width in grasses, where leaf morphology is highly variable between species, may be the timing of hydroxycinnamic acid deposition in the expanding cell walls as they emerge from cell division into the elongation zone, controlled partially by the onset of peroxidase activity in this region.
机译:草中细胞壁阿拉伯木聚糖的特征是存在阿魏酸,其在过氧化物酶的作用下氧化偶联后,在先前分离的阿拉伯木聚糖之间形成二铁酰基桥。阿魏酸酯交联被怀疑在不同的植物过程中起着不同的作用。在这里,我们研究了高壁羊茅中细胞壁阿魏酸化在两个主要过程中的作用,即叶片生长和细胞壁阿拉伯木聚糖在叶片衰老中的周转率,其使用的植物通过定向表达曲霉而降低了细胞壁阿魏酸的水平黑质阿魏酸酯酶A(FAEA)到质外体或高尔基体。对表达FAE的植物的分析表明,与对照相比,所有品系的叶片均较短和较窄,这可能是由于表达FAE的叶片的总体生长速度低于对照组,且生长速度较早。此外,表皮细胞的最终长度短于对照,表明它们的扩增比对照叶更早地减少。这可能是由于观察到,醚和酯连接的单体羟基肉桂酸的沉积和阿魏酸二聚作用在表达FAE的叶片中较早停止,但含量低于对照,并且过氧化物酶水平升高时,羟基肉桂酸的沉积开始减慢。因此,似乎控制整体叶片形态(例如草中的叶片长度和宽度)的可能机制之一可能是羟基肉桂酸从细胞中出现时在膨胀的细胞壁中沉积的时间,其中物种之间的叶片形态变化很大。细胞分裂成延伸区,部分受该区域过氧化物酶活性的开始控制。

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