Comparative transcriptome analysis of root hairs proliferation induced by water deficiency in maize

被引:0
作者
Tingchun Li
Huaying Yang
Wei Zhang
Dafeng Xu
Qing Dong
Fang Wang
Yanli Lei
Guihu Liu
Yingbing Zhou
Hongjian Chen
Cheng Li
机构
[1] Anhui Academy of Agricultural Sciences,Corn Research Center, Tobacco Research Institute
来源
Journal of Plant Biology | 2017年 / 60卷
关键词
Candidate genes; Drought-induced root hairs; Maize; Transcriptome analysis;
D O I
暂无
中图分类号
学科分类号
摘要
Root hairs functions as water channels and nutritional components transporters in plants. It has been shown to enhance nutrient uptake including phosphate, nitrogen, potassium and calcium. In the experiment, the droughtinduced root hairs were collected. By transcriptome sequence and analysis, the molecular mechanisms and differentially expressed genes related to root hairs growth and development were studied. As a result, by using the HiSeq 2500 platform, 61,872,790 clean reads with 96.23% Q20 bases and 9.28 Gb clean bases with 58.88% GC ratio were obtained for normal root. In contrast with Control group, 67,650,572 clean reads with 96.43% Q20 bases and 10.15 Gb clean bases with 58.3% GC content were obtained for drought-induced root hairs. Totally, 323 differentially expressed genes (DEGs) were identified. Among these DEGs, 109 genes were upregulated and 214 genes were downregulated in drought-induced root hairs. Moreover, metabolic pathway enrichment analysises on the 323 DEGs revealed that totally 10 metabolic pathways were distinctly regulated. In details, alanine, aspartate and alutamate metabolism, galactose metabolism and nitrogen metabolism were significantly upregulated. 7 metabolic pathways such as phenylpropanoid biosynthesis, phenylalanine metabolism, biosynthesis of secondary metabolites and flavonoid biosynthesis were significantly downregulated. Furthermore, functional genes and transcription factors were both found to be involved in drought-induced root hair proliferation. These results will help us understand better the molecular mechanism of maize root hair growth and development.
引用
收藏
页码:26 / 34
页数:8
相关论文
共 190 条
[1]  
An LJ(2012)A zinc finger protein gene ZFP5 integrates phytohormone signaling to control root hair development in Arabidopsis Plant J 72 474-490
[2]  
Zhou ZJ(2010)Differential expression analysis for sequence count data Genome Biol 11 R106-2885
[3]  
Sun LL(2007)AP2-ERF transcription factors mediate nod factor–dependent Mt ENOD11 activation in root hairs via a novel cis-regulatory motif Plant Cell 19 2866-300
[4]  
Yan A(1995)Controlling the false discovery rate: a practical and powerful approach to multiple testing J R Stat Soc Ser B 57 289-5495
[5]  
Xi WY(2014)Proline-rich proteinlike PRPL1 controls elongation of root hairs in Arabidopsis thaliana J Exp Bot 65 5485-328
[6]  
Yu N(2012)What are the implications of variation in root hair length on tolerance to phosphorus deficiency in combination with water stress in barley (Hordeum vulgare) Ann Bot 110 319-105
[7]  
Cai WJ(2013)Influence of nutrient deficiency on root architecture and root hair morphology of trifoliate orange ( Sci Hortic 162 100-14
[8]  
Chen XY(2011) L. Raf.) seedlings under sand culture Plant Soil 346 1-1311
[9]  
Yu H(2009)Root hairs: development, growth and evolution at the plant-soil interface Cell Research 19 1309-60
[10]  
Schiefelbein J(2000)A transcription factor with a bHLH domain regulates root hair development in rice Trends Plant Sci 5 56-6281