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Freeze-quenched maize mesophyll and bundle sheath separation uncovers bias in previous tissue-specific RNA-Seq data

机译:冷冻骤冷的玉米叶肉和束鞘分离发现了先前组织特异性RNA-Seq数据中的偏差

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摘要

The high efficiency of C4 photosynthesis relies on spatial division of labor, classically with initial carbon fixation in the mesophyll and carbon reduction in the bundle sheath. By employing grinding and serial filtration over liquid nitrogen, we enriched C4 tissues along a developing leaf gradient. This method treats both C4 tissues in an integrity-preserving and consistent manner, while allowing complementary measurements of metabolite abundance and enzyme activity, thus providing a comprehensive data set. Meta-analysis of this and the previous studies highlights the strengths and weaknesses of different C4 tissue separation techniques. While the method reported here achieves the least enrichment, it is the only one that shows neither strong 3′ (degradation) bias, nor different severity of 3′ bias between samples. The meta-analysis highlighted previously unappreciated observations, such as an accumulation of evidence that aspartate aminotransferase is more mesophyll specific than expected from the current NADP-ME C4 cycle model, and a shift in enrichment of protein synthesis genes from bundle sheath to mesophyll during development. The full comparative dataset is available for download, and a web visualization tool (available at ) facilitates comparison of the the Z. mays bundle sheath and mesophyll studies, their consistencies and their conflicts.
机译:C4光合作用的高效率依赖于分工的空间划分,经典而言是叶肉中的初始碳固定和束鞘中的碳减少。通过在液氮上进行研磨和连续过滤,我们沿发育中的叶片梯度富集了C4组织。该方法以保持完整性和一致性的方式处理两个C4组织,同时允许对代谢物丰度和酶活性进行补充测量,从而提供了一个全面的数据集。对本研究和先前研究的荟萃分析突出了不同C4组织分离技术的优缺点。虽然此处报告的方法实现的富集最少,但它是唯一一种既不显示强3'(降解)偏倚,也不显示样品之间3'偏倚严重程度不同的方法。荟萃分析强调了以前未曾观察到的观察结果,例如大量证据表明天冬氨酸转氨酶比目前的NADP-ME C4周期模型预期的具有更高的叶肉特异性,并且在发育过程中蛋白质合成基因的富集度从束鞘转移到了叶肉。完整的比较数据集可供下载,并且一个网络可视化工具(位于处)可帮助比较玉米。的鞘鞘和叶肉研究,其一致性和冲突。

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