首页> 美国卫生研究院文献>The Plant Cell >The Variability of Sesquiterpenes Emitted from Two Zea mays Cultivars Is Controlled by Allelic Variation of Two Terpene Synthase Genes Encoding Stereoselective Multiple Product Enzymes
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The Variability of Sesquiterpenes Emitted from Two Zea mays Cultivars Is Controlled by Allelic Variation of Two Terpene Synthase Genes Encoding Stereoselective Multiple Product Enzymes

机译:从两个玉米品种产生的倍半萜的变异性受编码立体选择性多种产物酶的两个萜合酶基因的等位基因变异控制。

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摘要

The mature leaves and husks of Zea mays release a complex blend of terpene volatiles after anthesis consisting predominantly of bisabolane-, sesquithujane-, and bergamotane-type sesquiterpenes. The varieties B73 and Delprim release the same volatile constituents but in significantly different proportions. To study the molecular genetic and biochemical mechanisms controlling terpene diversity and distribution in these varieties, we isolated the closely related terpene synthase genes terpene synthase4 (tps4) and tps5 from both varieties. The encoded enzymes, TPS4 and TPS5, each formed the same complex mixture of sesquiterpenes from the precursor farnesyl diphosphate but with different proportions of products. These mixtures correspond to the sesquiterpene blends observed in the varieties B73 and Delprim, respectively. The differences in the stereoselectivity of TPS4 and TPS5 are determined by four amino acid substitutions with the most important being a Gly instead of an Ala residue at position 409 at the catalytic site of the enzyme. Although both varieties contain tps4 and tps5 alleles, their differences in terpene composition result from the fact that B73 has only a single functional allele of tps4 and no functional alleles of tps5, whereas Delprim has only a functional allele of tps5 and no functional alleles of tps4. Lack of functionality was shown to be attributable to frame-shift mutations or amino acid substitutions that greatly reduce the activity of their encoded proteins. Therefore, the diversity of sesquiterpenes in these two maize cultivars is strongly influenced by single nucleotide changes in the alleles of two terpene synthase genes.
机译:开花后,Zea mays的成熟叶子和果壳释放出复杂的萜烯挥发物混合物,主要由Bisabolane,倍半萜烯和香柠檬素型倍半萜组成。 B73和Delprim品种释放相同的挥发性成分,但比例明显不同。为了研究控制这些品种中萜烯多样性和分布的分子遗传和生化机制,我们从两个品种中分离了紧密相关的萜烯合酶基因萜烯合酶4(tps4)和tps5。编码的酶TPS4和TPS5各自从前体法呢基二磷酸酯形成了倍半萜的相同复杂混合物,但产物比例不同。这些混合物分别对应于品种B73和Delprim中观察到的倍半萜烯混合物。 TPS4和TPS5立体选择性的差异是由四个氨基酸取代确定的,最重要的是在酶催化位点409处的Gly而不是Ala残基。尽管两个变种都包含tps4和tps5等位基因,但它们在萜烯成分上的差异是由于B73仅具有tps4的一个功能等位基因,而tps5没有功能的等位基因,而Delprim仅具有tps5的功能等位基因,而tps4的功能等位基因。缺乏功能可归因于移码突变或氨基酸取代,这大大降低了其编码蛋白的活性。因此,这两个玉米品种中倍半萜的多样性受到两个萜烯合酶基因等位基因中单核苷酸变化的强烈影响。

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