生物
转录因子
启动(农业)
非生物胁迫
热应力
拟南芥
计算生物学
锌指
基因
瓶颈
基因共表达网络
遗传学
细胞生物学
基因表达
计算机科学
植物
突变体
基因本体论
发芽
动物科学
嵌入式系统
作者
Fereshteh Izadi,Hamid Najafi Zarrini,Ghaffar Kiani,Nadali Babaeian Jelodar
出处
期刊:Plant Omics
[Southern Cross Publishing]
日期:2017-05-20
卷期号:10 (03): 139-145
被引量:8
标识
DOI:10.21475/poj.10.03.17.pne468
摘要
Abiotic stresses including heat are major threats to crop plants especially considering the global warming facts.A pre-exposure to heat stress can prime plants and enable them to encounter a severe dose of stress which is lethal to unprimed plants.In this study, in order to identifying potential key elements involved in priming responses to heat stress we analyzed a microarray series in Arabidopsis thaliana.To this end we conducted differential expression analysis, clustering, annotation and network construction by using the publicly available tools.In agreement with experimentally validated results we noticed that different genes were differentially expressed between primed and unprimed plants from which genes encoding retro-elements and proteins involved in chromatin remodeling were noteworthy.The topology analysis of constructed network highlighted the role of TFs including zinc finger and DREB in heat acclimation after priming phase.A total of 33 transcription factors were differentially expressed in primed versus unprimed plants five of which were detected to be hub and bottleneck nodes in genes network that may play a role in heat stress priming and memory additionally as potential targets to discover new insights to improve stress resistance in crop plants.
科研通智能强力驱动
Strongly Powered by AbleSci AI