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Nutrition Metabolism Plays an Important Role in the Alternate Bearing of the Olive Tree (Olea europaea L.)

机译:营养代谢在橄榄树(Olea europaea L.)的备用轴承中起重要作用

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摘要

The olive tree (Olea europaea L.) is widely known for its strong tendency for alternate bearing, which severely affects the fruit yield from year to year. Microarray based gene expression analysis using RNA from olive samples (on-off years leaves and ripe-unripe fruits) are particularly useful to understand the molecular mechanisms influencing the periodicity in the olive tree. Thus, we carried out genome wide transcriptome analyses involving different organs and temporal stages of the olive tree using the NimbleGen Array containing 136,628 oligonucleotide probe sets. Cluster analyses of the genes showed that cDNAs originated from different organs could be sorted into separate groups. The nutritional control had a particularly remarkable impact on the alternate bearing of olive, as shown by the differential expression of transcripts under different temporal phases and organs. Additionally, hormonal control and flowering processes also played important roles in this phenomenon. Our analyses provide further insights into the transcript changes between >on year> and >off year> leaves along with the changes from unrpipe to ripe fruits, which shed light on the molecular mechanisms underlying the olive tree alternate bearing. These findings have important implications for the breeding and agriculture of the olive tree and other crops showing periodicity. To our knowledge, this is the first study reporting the development and use of an olive array to document the gene expression profiling associated with the alternate bearing in olive tree. © 2013 Turktas et al.
机译:橄榄树(Olea europaea L.)以交替结实的强烈趋势而广为人知,每年严重影响果实的产量。基于微阵列的基因表达分析,使用来自橄榄样品(不计其数的年叶和未成熟的果实)的RNA,对于了解影响橄榄树周期性的分子机制特别有用。因此,我们使用包含136,628个寡核苷酸探针组的NimbleGen Array进行了涉及橄榄树不同器官和时间阶段的全基因组转录组分析。基因的聚类分析表明,源自不同器官的cDNA可以分为不同的组。营养控制对橄榄的交替结实具有特别显着的影响,如转录物在不同时相和器官下的差异表达所表明的。另外,激素控制和开花过程在该现象中也起重要作用。我们的分析为深入分析> onyear>和> offyear>叶片之间的转录本变化,以及从un茎到成熟果实的变化提供了进一步的见识,从而揭示了橄榄树交替轴承的分子机制。这些发现对橄榄树和其他表现出周期性的农作物的育种和农业具有重要意义。据我们所知,这是第一项报道橄榄阵列的开发和使用的研究,该阵列用于记录与橄榄树中备用轴承相关的基因表达谱。 ©2013 Turktas等。

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