Cookson Sarah Jane, Yadav Umesh Prasad, Klie Sebastian, Morcuende Rosa, Usadel Björn, Lunn John Edward, Stitt Mark
INRA, ISVV, EGFV, UMR 1287, Villenave d'Ornon, F-33140, France.
Max Planck Institute of Molecular Plant Physiology, Am Mühlenberg 1, Potsdam-Golm, 14476, Germany.
Plant Cell Environ. 2016 Apr;39(4):768-86. doi: 10.1111/pce.12642. Epub 2015 Dec 1.
To investigate whether the transcriptional response to carbon (C) depletion and sucrose resupply depends on the duration and severity of the C depletion, Arabidopsis seedlings were grown in liquid culture and harvested 3, 6, 12, 24, 48 and 72 h after removing sucrose from the medium and 30 min after resupplying sucrose at each time. Expression profiling revealed early transcriptional inhibition of cell wall synthesis and remodelling of signalling, followed by induction of C recycling and photosynthesis and general inhibition of growth. The temporal sequence differed from the published response to progressive exhaustion of C during a night and extended night in vegetatively growing plants. The response to sucrose readdition was conserved across the C-depletion time course. Intriguingly, the vast majority of rapidly responding transcripts decreased rather than increased. The majority of transcripts that respond rapidly to sucrose and many transcripts that respond during C depletion also decrease after treating seedlings with the transcriptional inhibitor cordycepin A. Comparison with published responses to overexpression of otsA, AKIN10 and bZIP11 revealed that many genes that respond to C depletion, and especially sucrose resupply, respond to one or more of these C-signalling components. Thus, multiple factors contribute to C responsiveness, including many signalling components, transcriptional regulation and transcript turnover.
为了研究对碳(C)耗尽和蔗糖再供应的转录反应是否取决于C耗尽的持续时间和严重程度,拟南芥幼苗在液体培养中生长,并在从培养基中去除蔗糖后的3、6、12、24、48和72小时以及每次重新供应蔗糖后30分钟收获。表达谱分析显示,细胞壁合成和信号重塑受到早期转录抑制,随后是C循环和光合作用的诱导以及生长的普遍抑制。这种时间顺序不同于已发表的关于营养生长植物在夜间和延长夜间期间C逐渐耗尽的反应。在整个C耗尽时间过程中,对蔗糖重新添加的反应是保守的。有趣的是,绝大多数快速反应的转录本减少而不是增加。在用转录抑制剂虫草素A处理幼苗后,对蔗糖快速反应的大多数转录本以及许多在C耗尽期间反应的转录本也会减少。与已发表的对otsA、AKIN10和bZIP11过表达的反应进行比较发现,许多对C耗尽,尤其是对蔗糖再供应有反应的基因,对这些C信号成分中的一种或多种有反应。因此,多种因素导致C反应性,包括许多信号成分、转录调控和转录本周转。