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Ubiquitin Ligase ATL31 Functions in Leaf Senescence in Response to the Balance Between Atmospheric CO2 and Nitrogen Availability in Arabidopsis

机译:拟南芥中泛素连接酶ATL31在叶片衰老中响应大气CO2和氮素利用之间的平衡

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摘要

Carbon (C) and nitrogen (N) are essential elements for metabolism, and their availability, called the C/N balance, must be tightly coordinated for optimal growth in plants. Previously, we have identified the ubiquitin ligase CNI1/ATL31 as a novel C/N regulator by screening plants grown on C/N stress medium containing excess sugar and limited N. To elucidate further the effect of C/N balance on plant growth and to determine the physiological function of ATL31, we performed C/N response analysis using an atmospheric CO2 manipulation system. Under conditions of elevated CO2 and sufficient N, plant biomass and total sugar and starch dramatically increased. In contrast, elevated CO2 with limited N did not increase plant biomass but promoted leaf chlorosis, with anthocyanin accumulation and increased senescence-associated gene expression. Similar results were obtained with plants grown in medium containing excess sugar and limited N, suggesting that disruption of the C/N balance affects senescence progression. In ATL31-overexpressing plants, promotion of senescence under disrupted CO2/N conditions was repressed, whereas in the loss-of-function mutant it was enhanced. The ATL31 gene was transcriptionally up-regulated under N deficiency and in senescent leaves, and ATL31 expression was highly correlated with WRKY53 expression, a key regulator of senescence. Furthermore, transient protoplast analysis implicated the direct activation of ATL31 expression by WRKY53, which was in accordance with the results of WRKY53 overexpression experiments. Together, these results demonstrate the importance of C/N balance in leaf senescence and the involvement of ubiquitin ligase ATL31 in the process of senescence in Arabidopsis.
机译:碳(C)和氮(N)是新陈代谢必不可少的元素,必须紧密协调其可用性(称为C / N平衡),以使植物最佳生长。以前,我们通过筛选在含过量糖和有限N的C / N胁迫培养基上生长的植物,已将泛素连接酶CNI1 / ATL31鉴定为新型C / N调节剂。为进一步阐明C / N平衡对植物生长的影响,以及为了确定ATL31的生理功能,我们使用大气CO2处理系统进行了C / N响应分析。在升高的CO2和充足的氮的条件下,植物生物量以及总糖和淀粉急剧增加。相比之下,氮含量有限的升高的CO2不会增加植物生物量,但会促进叶绿化,花青素积累和衰老相关基因表达增加。在含有过量糖和有限氮的培养基中生长的植物也获得了类似的结果,表明C / N平衡的破坏会影响衰老进程。在过表达ATL31的植物中,在破坏的CO2 / N条件下,衰老的促进受到抑制,而功能丧失的突变体则增强了衰老。在缺氮和衰老的叶子中,ATL31基因在转录上被上调,而ATL31的表达与衰老的关键调控因子WRKY53的表达高度相关。此外,瞬时原生质体分析表明WRKY53直接激活ATL31表达,这与WRKY53过表达实验的结果一致。总之,这些结果证明了C / N平衡在叶片衰老中的重要性以及泛素连接酶ATL31在拟南芥衰老过程中的参与。

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