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Free and Conjugated Benzoic Acid in Tobacco Plants and Cell Cultures. Induced Accumulation upon Elicitation of Defense Responses and Role as Salicylic Acid Precursors1

机译:烟草植物和细胞中游离和共轭的苯甲酸 文化。诱导防御反应后引起的积累 和作为水杨酸前体的作用1

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摘要

Salicylic acid (SA) is a key endogenous component of local and systemic disease resistance in plants. In this study, we investigated the role of benzoic acid (BA) as precursor of SA biosynthesis in tobacco (Nicotiana tabacum cv Samsun NN) plants undergoing a hypersensitive response following infection with tobacco mosaic virus or in tobacco cell suspensions elicited with β-megaspermin, an elicitor from Phytophthora megasperma. We found a small pool of conjugated BA in healthy leaves and untreated cell suspensions of tobacco, whereas free BA levels were barely detectable. Infection of plants with tobacco mosaic virus or elicitation of cells led to a rapid de novo synthesis and accumulation of conjugated BA, whereas free BA was weakly induced. In presence of diphenylene iodonium, an inhibitor of superoxide anion formation, SA accumulation was abolished in elicited cells and much higher BA levels were concomitantly induced, mainly as a conjugated form. Furthermore, piperonylic acid, an inhibitor of cinnamate-4-hydroxylase was used as a powerful tool to redirect the metabolic flow from the main phenylpropanoid pathway into the SA biosynthetic branch. Under these conditions, in vivo labeling and radioisotope dilution experiments with [14C]trans-cinnamic acid as precursor clearly indicated that the free form of BA produced in elicited tobacco cells is not the major precursor of SA biosynthesis. The main conjugated form of BA accumulating after elicitation of tobacco cells was identified for the first time as benzoyl-glucose. Our data point to the likely role of conjugated forms of BA in SA biosynthesis.
机译:水杨酸(SA)是植物局部和全身抗病性的关键内源性成分。在这项研究中,我们调查了苯甲酸(BA)作为SA生物合成前体在烟草花叶病毒感染后受到超敏反应的烟草(Nicotiana tabacum cv Samsun NN)植物中或在β-超精子引起的烟草细胞悬浮液中的作用。巨大疫霉菌的激发子。我们在健康的叶子和未经处理的烟草细胞悬浮液中发现了少量的缀合BA,而几乎无法检测到游离BA水平。用烟草花叶病毒感染植物或引发细胞会导致快速的从头合成和结合BA的积累,而游离BA的诱导却很弱。在存在二苯撑碘鎓(一种超氧阴离子形成的抑制剂)的情况下,被诱导的细胞中的SA积累被消除,伴随而来的BA水平也要高得多,主要是作为共轭形式。此外,胡椒酸(肉桂酸4-羟化酶的抑制剂)被用作一种强大的工具,可将代谢流从主要的苯丙烷通道重新定向到SA生物合成分支中。在这些条件下,以[14C]反式肉桂酸为前体的体内标记和放射性同位素稀释实验清楚地表明,在诱导的烟草细胞中产生的BA的游离形式不是SA生物合成的主要前体。诱导烟草细胞后积累的BA的主要共轭形式首次被鉴定为苯甲酰基-葡萄糖。我们的数据表明,BA的共轭形式在SA生物合成中的可能作用。

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