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Apple Intrinsic Factors Modulating the Global Regulator LaeA the Patulin Gene Cluster and Patulin Accumulation During Fruit Colonization by Penicillium expansum

机译:苹果内在因子调节全球调节剂LaeA棒曲霉素基因簇和在扩张青霉的果实定殖过程中积累的棒曲霉素。

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摘要

The mycotoxin patulin is produced in colonized tissue by Penicillium expansum during storage of apples and is significantly affected by environmental factors that contribute to its accumulation. Few reports have, however, examined the effect of natural intrinsic factors associated with the fruit on the production of patulin. Here, we find that with advancing maturity, Golden Delicious apples show increased concentrations of total soluble solids (TSS) from 14 to 17% associated with the increased expression of the global transcription factor involved in regulation of secondary metabolite biosynthesis in filamentous fungi, laeA expression and patulin accumulation. However, the apple cultivar Granny Smith, with similar TSS values but differing in pH levels and malic acid concentrations, showed reduced expression levels of laeA and the patulin biosynthesis gene cluster (pat genes) and patulin accumulation, suggesting a complexity of host factors contribution to patulin accumulation during P. expansum colonization. To start elucidating these apple intrinsic factors, we examined their in vitro impact on laeA and pat gene expression concomitant with patulin synthesis. Increasing sucrose concentrations from 15 to 175 mM repressed laeA and pat gene expression and patulin production. However, this affect was modified and often reversed and sometimes accentuated by changes in pH, or the addition of malic acid or the major apple phenolic compounds, chlorogenic acid and epicatechin. While the increase in malic acid from 0 to 1% increased laeA and pat gene expression, the decrease in pH from 3.5 to 2.5 reduced their expression. Also the increased laeA and pat genes expressions at increasing epicatechin concentrations from 0 to 1 mM, was reversed by increasing sucrose concentrations, all together suggesting the complexity of the interactions in vivo.
机译:霉菌毒素棒曲蛋白是在苹果贮藏过程中由扩张青霉在定植的组织中产生的,并受到有助于其积累的环境因素的显着影响。然而,很少有报告检查与水果相关的天然内在因素对棒曲霉素产生的影响。在这里,我们发现随着成熟度的提高,Golden Delicious苹果的总可溶性固形物(TSS)浓度从14%增至17%,与参与调控丝状真菌次生代谢产物生物合成的全球转录因子的表达增加相关,laeA表达和棒曲霉素的积累。然而,苹果品种Granny Smith具有相似的TSS值,但pH值和苹果酸浓度不同,显示出laeA和patulin生物合成基因簇(pat基因)的表达水平降低以及patulin积累,表明宿主因子对扩展体育菌定殖过程中棒曲霉素的积累。为了阐明这些苹果的内在因素,我们检查了它们对laeA和patulin合成伴随的pat基因表达的体外影响。蔗糖浓度从15 mM增加到175 mM抑制了laeA和pat基因的表达以及棒曲蛋白的产生。但是,这种影响已经改变,并且通常会因pH的变化或加入苹果酸或主要的苹果酚类化合物,绿原酸和表儿茶素而加剧,有时甚至会加剧。苹果酸从0%增加到1%可以增加laeA和pat基因的表达,而pH从3.5降低到2.5则会降低其表达。此外,通过增加蔗糖浓度可以逆转表儿茶素浓度从0到1 mM时增加的laeA和pat基因表达,这共同表明了体内相互作用的复杂性。

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