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Para-Aminobenzoic Acid (PABA) Synthase Enhances Thermotolerance of Mushroom Agaricus bisporus

机译:对氨基苯甲酸(PABA)合酶增强蘑菇双孢蘑菇的耐热性。

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摘要

Most mushrooms are thermo-sensitive to temperatures over 23°C, which greatly restricts their agricultural cultivation. Understanding mushroom’s innate heat-tolerance mechanisms may facilitate genetic improvements of their thermotolerance. Agaricus bisporus strain 02 is a relatively thermotolerant mushroom strain, while strain 8213 is quite thermo-sensitive. Here, we compared their responses at proteomic level to heat treatment at 33°C. We identified 73 proteins that are differentially expressed between 02 and 8213 or induced upon heat stress in strain 02 itself, 48 of which with a known identity. Among them, 4 proteins are constitutively more highly expressed in 02 than 8213; and they can be further upregulated in response to heat stress in 02, but not in 8213. One protein is encoded by the para-aminobenzoic acid (PABA) synthase gene Pabs, which has been shown to scavenge the reactive oxygen species in vitro. Pabs mRNA and its chemical product PABA show similar heat stress induction pattern as PABA synthase protein and are more abundant in 02, indicating transcriptional level upregulation of Pabs upon heat stress. A specific inhibitor of PABA synthesis impaired thermotolerance of 02, while exogenous PABA or transgenic overexpression of 02 derived PABA synthase enhanced thermotolerance of 8213. Furthermore, compared to 8213, 02 accumulated less H2O2 but more defense-related proteins (e.g., HSPs and Chitinase) under heat stress. Together, these results demonstrate a role of PABA in enhancing mushroom thermotolerance by removing H2O2 and elevating defense-related proteins.
机译:大多数蘑菇对超过23°C的温度都具有热敏感性,这极大地限制了其农业种植。了解蘑菇的先天耐热机制可能有助于遗传改良其耐热性。双孢蘑菇菌株02是相对耐热的蘑菇菌株,而菌株8213是相当热敏感的。在这里,我们比较了它们在蛋白质组学水平下对33°C热处理的反应。我们鉴定了73种蛋白质,它们在02和8213之间差异表达或在0​​2菌株本身的热胁迫下诱导,其中48个具有已知身份。其中,4种蛋白在02中的表达高于8213;并且它们可以在02中响应热应激而进一步上调,但在8213中却不响应。一种蛋白由对氨基苯甲酸(PABA)合酶基因Pabs编码,该蛋白已显示在体​​外能清除活性氧。 Pabs mRNA及其化学产物PABA显示出与PABA合酶蛋白类似的热应激诱导模式,并且在02时含量更高,表明Pabs在热应激下转录水平上调。 PABA合成的特异性抑制剂会损害 02 的耐热性,而外源PABA或 02 衍生的PABA合酶的转基因过表达会增强 8213 的耐热性。此外,与 8213 相比, 02 在热胁迫下积累的H2O2少,但与防御相关的蛋白质(例如HSPs和几丁质酶)更多。总之,这些结果证明了PABA在通过去除H2O2和提高防御相关蛋白来增强蘑菇耐热性中的作用。

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