首页> 外文期刊>Journal of Agricultural and Food Chemistry >Tissue-specific patterns of lignification are disturbed in the brown midrib2 mutant of maize (Zea mays L.).
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Tissue-specific patterns of lignification are disturbed in the brown midrib2 mutant of maize (Zea mays L.).

机译:在玉米的棕色midrib2突变体(Zea mays L.)中,木质化的组织特异性模式受到干扰。

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Despite recent progress, several aspects of lignin biosynthesis, including variation in lignin composition between species and between tissues within a given species, are still poorly understood. The analysis of mutants affected in cell wall biosynthesis may help increase the understanding of these processes. We have analyzed the maize brown midrib2 (bm2) mutant, one of the four bm mutants of maize, using pyrolysis-mass spectrometry (Py-MS) and pyrolysis-gas chromatography-mass spectrometry (Py-GC-MS). Vascular tissues from the leaf blade and leaf sheath from different parts of the plant were investigated and compared to the corresponding samples from a wild-type plant of the same genetic background (inbred line A619). Multivariate analysis revealed that the bm2 mutant had reduced amounts of di- and trimeric lignin derivatives, notably species with m/z 272 and m/z 330, and that the ratio of guaiacyl residues to polysaccharides was reduced in the bm2 mutant. In addition, differences in cell wall composition between different parts of the plant (blade versus sheath, young versus old tissue) were much less pronounced in the bm2 mutant. These changes suggest that the functional Bm2 gene is important for the establishment of tissue-specific cell wall composition.
机译:尽管有最新进展,木质素生物合成的几个方面,包括物种之间以及给定物种内的组织之间木质素组成的变化,仍然知之甚少。对受细胞壁生物合成影响的突变体的分析可能有助于增进对这些过程的了解。我们使用热解-质谱法(Py-MS)和热解-气相色谱-质谱法(Py-GC-MS)分析了玉米的棕色midrib2(bm2)突变体,这是玉米的四个bm突变体之一。研究了来自植物不同部位的叶片和叶鞘的血管组织,并将其与来自具有相同遗传背景的野生型植物(自交系A619)的相应样品进行了比较。多变量分析表明,bm2突变体的二聚和三聚体木质素衍生物的数量减少,尤其是具有m / z 272和m / z 330的物种,并且bm2突变体中愈创木脂残基与多糖的比率降低。此外,在bm2突变体中,植物不同部位(叶片与鞘,年轻与旧组织)之间的细胞壁组成差异不明显。这些变化表明功能性Bm2基因对于建立组织特异性细胞壁成分很重要。

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