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Gene Expression Profiling Reveals Large Regulatory Switches between Succeeding Stipe Stages in Volvariella volvacea

机译:基因表达谱揭示了沃尔沃菌丝菌的成功菌柄阶段之间的大型监管开关。

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摘要

The edible mushroom Volvariella volvacea is an important crop in Southeast Asia and is predominantly harvested in the egg stage. One of the main factors that negatively affect its yield and value is the rapid transition from the egg to the elongation stage, which has a decreased commodity value and shelf life. To improve our understanding of the changes during stipe development and the transition from egg to elongation stage in particular, we analyzed gene transcription in stipe tissue of V. volvacea using 3′-tag based digital expression profiling. Stipe development turned out to be fairly complex with high numbers of expressed genes, and regulation of stage differences is mediated mainly by changes in expression levels of genes, rather than on/off modulation. Most explicit is the strong up-regulation of cell division from button to egg, and the very strong down-regulation hereof from egg to elongation, that continues in the maturation stage. Button and egg share cell division as means of growth, followed by a major developmental shift towards rapid stipe elongation based on cell extension as demonstrated by inactivation of cell division throughout elongation and maturation. Examination of regulatory genes up-regulated from egg to elongation identified three potential high upstream regulators for this switch. The new insights in stipe dynamics, together with a series of new target genes, will provide a sound base for further studies on the developmental mechanisms of mushroom stipes and the switch from egg to elongation in V. volvacea in particular.
机译:食用菌沃氏天蛾是东南亚的重要农作物,主要在卵期收获。不利地影响其产量和价值的主要因素之一是从鸡蛋快速过渡到延伸阶段,从而降低了商品价值和保质期。特别是为了提高我们对柄的发育过程中的变化以及从卵到伸长阶段的转变的了解,我们使用了基于3'-tag的数字表达谱分析了粘虫的柄组织中的基因转录。结果表明,柄的发育与大量表达的基因相当复杂,并且阶段差异的调节主要由基因表达水平的变化而不是开/关调节来介导。最明显的是从纽扣到卵的细胞分裂强烈上调,而从卵到伸长的细胞强烈下调在成熟阶段持续。纽扣和卵子将细胞分裂作为生长的手段,随后发生了主要的向着基于细胞延伸的快速刀柄延伸的转变,这通过在整个延伸和成熟过程中细胞分裂的失活来证明。从卵到伸长率上调的调节基因的检查确定了该开关的三个潜在的高上游调节子。菌柄动力学的新见解以及一系列新的靶标基因,将为进一步研究蘑菇柄的发育机理,尤其是在菌群中从卵到伸长的转变提供坚实的基础。

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