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GC‐MS metabolite profiling for specific detection of dwarf somaclonal variation in banana plants

机译:GC‐MS代谢物谱分析可用于香蕉植物中矮小体细胞克隆变异的特异性检测

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Premise of the Study The production of banana ( Musa spp.; Musaceae) plants is affected by various types of somaclonal variations (SV), including dwarfism. However, methods for specific detection of SV are still scarce. To overcome this, a metabolite‐based method for detection of dwarf variants was evaluated. Methods The gas chromatography–mass spectrometry (GC‐MS) metabolite profile of dwarf banana variants was investigated and compared to that of normal‐healthy (N) and cucumber mosaic virus (CMV)–infected plants using principal components analysis and partial least squares discriminant analysis (PLS‐DA). Results Significant differences among the sample groups were observed in 82 metabolites. Rhamnose was exclusively present in dwarf plants but allothreonine and trehalose were present in all but SV samples. Cellobiose was only detected in N plants, while 45 other metabolites, including methyl‐glucopyranoside, allopyranose, lactose, phenylalanine, and l ‐lysine were detected in all but CMV‐infected samples. PLS‐DA models were able to detect SV, CMV, and N plants with 100% accuracy and specificity. Discussion The GC‐MS metabolite profile can be used for the rapid, specific detection of SV at early plant production stages. This is the first metabolite‐based characterization and detection of somaclonal variation in plants.
机译:研究的前提香蕉(Mus spp。; Musaceae)植物的生产受到各种矮小体细胞变异(SV)的影响,包括侏儒症。但是,仍然缺乏用于SV的特异性检测的方法。为了克服这个问题,评估了一种基于代谢物的矮人变种检测方法。方法使用主成分分析和偏最小二乘判别法,研究了矮香蕉变异体的气相色谱-质谱(GC-MS)代谢产物谱,并将其与正常健康(N)和黄瓜花叶病毒(CMV)感染的植物进行了比较。分析(PLS‐DA)。结果在82种代谢产物中观察到样品组之间的显着差异。鼠李糖仅存在于矮小植物中,但除SV样品外,其他所有成分均存在苯丙氨酸和海藻糖。仅在N种植物中检测到纤维二糖,而除CMV感染的所有样品中均检测到了45种其他代谢产物,包括甲基吡喃葡萄糖,异吡喃糖,乳糖,苯丙氨酸和l赖氨酸。 PLS‐DA模型能够以100%的准确性和特异性检测SV,CMV和N植物。讨论GC-MS代谢物谱可用于在植物早期生产阶段快速,特异地检测SV。这是植物中首次基于代谢物的表征和体细胞克隆变异的检测。

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