Institut Jean-Pierre Bourgin, INRA, AgroParisTech, CNRS, Université Paris-Saclay, 78000 Versailles, France.
Institute of Plant Sciences Paris-Saclay (IPS2), CNRS, INRA, Université Paris-Sud, Université d'Evry, Université Paris-Saclay, Bâtiment 630, Plateau de Moulon, 91192 Gif sur Yvette, France.
Int J Mol Sci. 2018 Oct 27;19(11):3364. doi: 10.3390/ijms19113364.
In their natural environment, plants are generally confronted with multiple co-occurring stresses. However, the interaction between stresses is not well known and transcriptomic data in response to combined stresses remain scarce. This study aims at characterizing the interaction between transcriptomic responses to biotic stress and nitrogen (N) limitation. Plants were grown in low or full N, infected or not with () and plant gene expression was analyzed through microarray and qRT-PCR. Most -responsive genes had the same profile (induced/repressed) in response to in low and full N. In response to stress combination, one third of modulated transcripts responded in a manner that could not be deduced from their response to each individual stress. Many defense-related genes showed a prioritization of their response to biotic stress over their response to N limitation, which was also observed using as a second pathosystem. Our results indicate an interaction between transcriptomic responses to N and biotic stress. A small fraction of transcripts was prioritized between antagonistic responses, reflecting a preservation of the plant defense program under N limitation. Furthermore, this interaction also led to a complex and specific response in terms of metabolism and cellular homeostasis-associated genes.
在自然环境中,植物通常会面临多种同时发生的胁迫。然而,人们对胁迫之间的相互作用知之甚少,而且关于联合胁迫的转录组数据仍然很少。本研究旨在描述生物胁迫和氮(N)限制转录组反应之间的相互作用。在低氮或高氮条件下,植物受到或未受到 () 的感染,并通过微阵列和 qRT-PCR 分析植物基因表达。大多数对 () 有响应的基因在低氮和高氮条件下对 的响应具有相同的模式(诱导/抑制)。对于胁迫组合,三分之一的调节转录本的响应方式不能从它们对每种单独胁迫的响应中推断出来。许多与防御相关的基因表现出对生物胁迫的响应优先于对 N 限制的响应,这在用作为第二个病理系统时也观察到了。我们的结果表明,N 和生物胁迫的转录组反应之间存在相互作用。一小部分转录本在拮抗反应之间被优先考虑,这反映了在 N 限制下植物防御程序的保存。此外,这种相互作用还导致与代谢和细胞内稳态相关基因的复杂和特异性反应。