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Transcriptome Analysis of Shade-Induced Inhibition on Leaf Size in Relay Intercropped Soybean

机译:遮荫对套作大豆叶片大小的抑制的转录组分析

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摘要

Multi-species intercropping is a sustainable agricultural practice worldwide used to utilize resources more efficiently. In intercropping systems, short crops often grow under vegetative shade of tall crops. Soybean, one important legume, is often planted in intercropping. However, little is known about the mechanisms of shade inhibition effect on leaf size in soybean leaves at the transcriptome level. We analyzed the transcriptome of shaded soybean leaves via RNA-Seq technology. We found that transcription 1085 genes in mature leaves and 1847 genes in young leaves were significantly affected by shade. Gene ontology analyses showed that expression of genes enriched in polysaccharide metabolism was down-regulated, but genes enriched in auxin stimulus were up-regulated in mature leaves; and genes enriched in cell cycling, DNA-replication were down-regulated in young leaves. These results suggest that the inhibition of higher auxin content and shortage of sugar supply on cell division and cell expansion contribute to smaller and thinner leaf morphology, which highlights potential research targets such as auxin and sugar regulation on leaves for crop adaptation to shade in intercropping.
机译:多物种间作是世界范围内的可持续农业实践,用于更有效地利用资源。在间作系统中,矮农作物通常生长在高作物的荫凉下。大豆是一种重要的豆类,通常在间作中种植。然而,关于转录组水平上的大豆叶片叶片尺寸的遮荫抑制作用机理知之甚少。我们通过RNA-Seq技术分析了阴影大豆叶片的转录组。我们发现,成熟叶片的转录1085基因和幼叶的1847基因受到阴影的显着影响。基因本体分析表明,富含多糖代谢的基因的表达下调,而富含植物生长素刺激的基因在成熟叶片中的表达上调。以及丰富的细胞周期基因,DNA复制在幼叶中被下调。这些结果表明,较高的生长素含量抑制和糖分供应不足对细胞分裂和细胞扩张的贡献有助于叶片形态的变小和变薄,这突出了潜在的研究目标,例如对作物间作遮阴作物的叶片进行生长素和糖分调节。

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