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Characterization of Novel Sesquiterpenoid Biosynthesis in Tobacco Expressing a Fungal Sesquiterpene Synthase.

机译:烟草中表达真菌倍半萜合酶的新型倍半萜生物合成的表征。

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摘要

The gene encoding trichodiene synthase (Tri5), a sesquiterpene synthase from the fungus Fusarium sporotrichioides, was used to transform tobacco (Nicotiana tabacum). Trichodiene was the sole sesquiterpene synthase product in enzyme reaction mixtures derived from unelicited transformant cell-suspension cultures, and both trichodiene and 5-epi-aristolochene were observed as reaction products following elicitor treatment. Immunoblot analysis of protein extracts revealed the presence of trichodiene synthase only in transformant cell lines producing trichodiene. In vivo labeling with [3H]mevalonate revealed the presence of a novel trichodiene metabolite, 15-hydroxytrichodiene, that accumulated in the transformant cell-suspension cultures. In a trichodiene-producing transformant, the level of 15-hydroxytrichodiene accumulation increased after elicitor treatment. In vivo labeling with [14C]acetate showed that the biosynthetic rate of trichodiene and 15-hydroxytrichodiene also increased after elicitor treatment. Incorporation of radioactivity from [14C]acetate into capsidiol was reduced following elicitor treatment of a trichodiene-producing transformant as compared with wild type. These results demonstrate that sesquiterpenoid accumulation resulting from the constitutive expression of a foreign sesquiterpene synthase is responsive to elicitation and that the farnesyl pyrophosphate present in elicited cells can be utilized by a foreign sesquiterpene synthase to produce high levels of novel sesquiterpenoids.
机译:编码毛虫二孢合酶(一种来自镰孢镰刀菌属的倍半萜烯合酶)的基因被用于转化烟草(烟草)。在未引发的转化细胞悬浮培养物衍生的酶反应混合物中,天花粉二烯是唯一的倍半萜烯合酶产物,在引发剂处理后,观察到天花粉二烯和5-表位-抗雌激素都是反应产物。蛋白质提取物的免疫印迹分析表明,仅在产生毛滴二烯的转化细胞系中存在毛滴二烯合酶。用[3H]甲羟戊酸进行的体内标记显示存在新的trichodiene代谢产物15-羟基三茂二烯,其在转化细胞悬浮培养物中积累。在产生三甲叉二烯的转化体中,激发子处理后15-羟基三苯甲基二烯积累的水平增加。用[14C]乙酸酯进行的体内标记显示,引发剂处理后,三氯二烯和15-羟基三茂铁的生物合成速率也增加了。与野生型相比,引发剂处理产生三甲叉二烯的转化体后,减少了[14C]乙酸盐向辣椒素中的放射性结合。这些结果证明,由外源倍半萜合酶的组成型表达引起的倍半萜积累对诱导是响应的,并且外源倍半萜合酶可以利用存在于被诱导细胞中的法呢基焦磷酸来产生高水平的新型倍半萜。

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