Suppr超能文献

比较转录组分析揭示了玉米叶片中响应低氮的共有基因和发育阶段特异性基因。

Comparative Transcriptome Analysis Reveals Common and Developmental Stage-Specific Genes That Respond to Low Nitrogen in Maize Leaves.

作者信息

Guo Song, Arshad Adnan, Yang Lan, Qin Yusheng, Mu Xiaohuan, Mi Guohua

机构信息

Institute of Agricultural Resources and Environment, Sichuan Academy of Agricultural Sciences, Chengdu 610066, China.

College of Resources and Environmental Science, China Agricultural University, Beijing 100193, China.

出版信息

Plants (Basel). 2022 Jun 10;11(12):1550. doi: 10.3390/plants11121550.

Abstract

A growing leaf can be divided into three sections: division zone, elongation zone, and maturation zone. In previous studies, low nitrogen (LN) inhibited maize growth and development, especially leaf growth; however, the gene expression in response to LN in different regions in leaf were not clear. Here, using hydroponics and a transcriptome approach, we systematically analyzed the molecular responses of those zones and differentially expressed genes (DEG) in response to LN supply. Developmental stage-specific genes (SGs) were highly stage-specific and involved in distinct biological processes. SGs from division (SGs-DZ) and elongation zones (SGs-EZ) were more related to developmentally dependent processes, whereas SGs of the maturation zone (SGs-MZ) were more related to metabolic processes. The common genes (CGs) were overrepresented in carbon and N metabolism, suggesting that rebalancing carbon and N metabolism in maize leaves under LN condition was independent of developmental stage. Coexpression modules (CMs) were also constructed in our experiment and a total of eight CMs were detected. Most of SGs-DZ and SGs-EZ were classified into a set termed CM turquoise, which was mainly enriched in ribosome and DNA replication, whereas several genes from SGs-MZ and CGs were clustered into CM blue, which mainly focused on photosynthesis and carbon metabolism. Finally, a comprehensive coexpression network was extracted from CM blue, and several maize () genes seemed to participate in regulating photosynthesis in maize leaves under LN condition in a developmental stage-specific manner. With this study, we uncovered the LN-responsive CGs and SGs that are important for promoting plant growth and development under insufficient nitrogen supply.

摘要

一片正在生长的叶子可分为三个部分

分生区、伸长区和成熟区。在先前的研究中,低氮(LN)抑制了玉米的生长发育,尤其是叶片生长;然而,叶片不同区域对低氮的基因表达尚不清楚。在此,我们采用水培法和转录组方法,系统分析了这些区域对低氮供应的分子响应以及差异表达基因(DEG)。发育阶段特异性基因(SGs)具有高度的阶段特异性,并参与不同的生物学过程。分生区(SGs-DZ)和伸长区(SGs-EZ)的SGs与发育依赖过程更为相关,而成熟区(SGs-MZ)的SGs与代谢过程更为相关。共同基因(CGs)在碳和氮代谢中过度富集,这表明在低氮条件下玉米叶片中碳和氮代谢的重新平衡与发育阶段无关。我们的实验还构建了共表达模块(CMs),共检测到8个CMs。大多数SGs-DZ和SGs-EZ被归类为一个名为CM绿松石色的集合,主要富集于核糖体和DNA复制,而来自SGs-MZ和CGs的几个基因则聚类到CM蓝色集合中,主要集中在光合作用和碳代谢上。最后,从CM蓝色集合中提取了一个综合共表达网络,几个玉米()基因似乎以发育阶段特异性的方式参与了低氮条件下玉米叶片光合作用的调控。通过这项研究,我们发现了对低氮供应下促进植物生长发育至关重要的低氮响应CGs和SGs。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3cb/9230787/180fbf144e64/plants-11-01550-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验