谷子(Setaria italica L.)萌发样蛋白编码基因的基因组组织和结构多样性

Q1 Agricultural and Biological Sciences Agri Gene Pub Date : 2017-03-01 DOI:10.1016/j.aggene.2016.12.001
Dipnarayan Saha , Rajeev Singh Rana , Lalit Arya, Tapan Kumar Mondal
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引用次数: 2

摘要

植物中萌发样蛋白(germinloid protein, GLP)基因构成了一个多基因家族,在植物生长发育和应对非生物和生物胁迫等多种生物过程中发挥作用。现有的谷子(Setaria italica)基因组序列促进了GLP基因家族的鉴定和描述,这可能是在谷子作物中首次报道。在谷子9条染色体中的6条染色体上共定位到20个SiGLP基因。除6个外,大多数SiGLP基因聚集在5个已知的germin (GER)群中,并揭示了其基因结构和保守蛋白基序的群体特异性变化。SiGLP基因在植物基因组内和基因组间具有同源关系,表明在植物进化过程中存在基因复制和扩增。基因表达动力学显示,20个SiGLP基因中有4个在不同组织中具有假定的功能作用。在假定的SiGLP启动子序列和基于同源性的3-D蛋白结构预测中存在多种顺式调控元件,揭示了它们可能的功能多样性。目前的工作包括对SiGLP基因家族成员的组织和功能的分子洞察力。这为谷子及其他相关作物的功能分析和有效利用提供了平台。
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Genomic organization and structural diversity of germin-like protein coding genes in foxtail millet (Setaria italica L.)

Germin-like protein (GLP) genes in plants constitute a multigene family that functions in a variety of biological processes, such as plant growth and development and respond to abiotic and biotic stresses. Available genome sequences of foxtail millet (Setaria italica) have facilitated the identification and delineation of the GLP gene family, which is perhaps the first report in any millet crop. A total of 20 SiGLP genes were mapped in six of the nine foxtail millet chromosomes. The majority of these SiGLP genes, except six, clustered into five known germin (GER) groups and revealed group-specific variations in their gene structure and conserved protein motifs. The SiGLP genes shared homologous relationship within and across plant genomes as per their syntenic chromosomal regions, indicating gene duplication and expansion in course of plant evolution. Gene expression dynamics revealed four out of the 20 SiGLP genes having a putative functional role in different tissues. The presence of diverse cis-acting regulatory elements in the putative SiGLP promoter sequences and homology-based 3-D protein structure predictions revealed their possible functional diversity. The present work encompasses a molecular insight into the organization and functions of SiGLP gene family members. This may serve as a platform for functional analysis and their efficient utilizations in genetic improvement of foxtail millet and other related crops.

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来源期刊
Agri Gene
Agri Gene Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
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期刊介绍: Agri Gene publishes papers that focus on the regulation, expression, function and evolution of genes in crop plants, farm animals, and agriculturally important insects and microorganisms. Agri Gene strives to be a diverse journal and topics in multiple fields will be considered for publication so long as their main focus is on agriculturally important organisms (plants, animals, insects, or microorganisms). Although not limited to the following, some examples of potential topics include: Gene discovery and characterization. Genetic markers to guide traditional breeding. Genetic effects of transposable elements. Evolutionary genetics, molecular evolution, population genetics, and phylogenetics. Profiling of gene expression and genetic variation. Biotechnology and crop or livestock improvement. Genetic improvement of biological control microorganisms. Genetic control of secondary metabolic pathways and metabolic enzymes of crop pathogens. Transcription analysis of beneficial or pest insect developmental stages Agri Gene encourages submission of novel manuscripts that present a reasonable level of analysis, functional relevance and/or mechanistic insight. Agri Gene also welcomes papers that have predominantly a descriptive component but improve the essential basis of knowledge for subsequent functional studies, or which provide important confirmation of recently published discoveries provided that the information is new.
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