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芝麻基因组中HD-ZIP转录因子的系统分析以及I类SiHD-ZIP在幼苗早期干旱胁迫响应中的基因表达谱分析。

Systematic analysis of HD-ZIP transcription factors in sesame genome and gene expression profiling of SiHD-ZIP class I entailing drought stress responses at early seedling stage.

作者信息

Mehmood Maryam, Khan Muhammad Jadoon, Khan Muhammad Jawad, Akhtar Nadeem, Mughal Fizza, Shah Syed Tahir Abbas, Hyder Muhammad Zeeshan, Farrakh Sumaira, Sadiq Irfan

机构信息

Department of Biosciences, COMSATS University Islamabad, Park Road, Islamabad, Pakistan.

Illinois Informatics Institute, University of Illinois, Urbana-Champaign, USA.

出版信息

Mol Biol Rep. 2022 Mar;49(3):2059-2071. doi: 10.1007/s11033-021-07024-2. Epub 2022 Jan 7.

Abstract

BACKGROUND

Sesame is an ancient oilseed crop, known for its high oil content and quality. Its sensitivity to drought at early seedling stage is one of the limiting factors affecting its world-wide growth and productivity. Among plant specific transcription factors, the association of HD-ZIPs with sesame drought responses at early seedling stage is not well-established yet and is very important to develop our molecular understanding on sesame drought tolerance.

METHODS AND RESULTS

In this study, total 61 sesame HD-ZIP proteins were identified, based on their protein sequence homology with Arabidopsis and protein domain(s) architecture prediction, followed by their phylogenetic, conserved domain(s) motifs and gene structure analyses to classify them into four classes (HD-ZIP Class I-IV). HD-ZIP Class I was also subdivided into four subgroups: α (SiHZ25, SiHZ43, SiHZ9 and SiHZ16), β1 (SiHZ10, SiHZ30, SiHZ32 and SiHZ26), β2 (SiHZ42 and SiHZ45) and γ (SiHZ17, SiHZ7 and SiHZ35) by a comparative phylogenetic analysis of sesame with Arabidopsis and maize. Afterwards, twenty-one days old sesame seedlings were exposed to drought stress by withholding water for 7 days (when soil moisture content reduced to ~16%) and gene expression of HD-ZIP Class I (13 members) was performed in well- watered (control) and drought stressed seedlings. The gene expression analysis showed that the expressions of SiHZ7 (6.8 fold) and SiHZ35 (2.6 fold) from γ subgroup were significantly high in drought seedlings.

CONCLUSIONS

This study is useful in demonstrating the role of SiHD-ZIP Class I in sesame drought responses at early seedling stage and to develop its novel drought tolerant varieties.

摘要

背景

芝麻是一种古老的油料作物,以其高含油量和优质油而闻名。其在幼苗早期对干旱的敏感性是影响其全球生长和生产力的限制因素之一。在植物特异性转录因子中,HD-ZIPs与芝麻幼苗早期干旱反应之间的关联尚未完全明确,而这对于深化我们对芝麻耐旱性的分子理解非常重要。

方法与结果

在本研究中,基于与拟南芥的蛋白质序列同源性和蛋白质结构域预测,共鉴定出61个芝麻HD-ZIP蛋白,随后通过系统发育、保守结构域基序和基因结构分析将它们分为四类(HD-ZIP I-IV类)。通过与拟南芥和玉米的比较系统发育分析,HD-ZIP I类又细分为四个亚组:α(SiHZ25、SiHZ43、SiHZ9和SiHZ16)、β1(SiHZ10、SiHZ30、SiHZ32和SiHZ26)、β2(SiHZ42和SiHZ45)和γ(SiHZ17、SiHZ7和SiHZ35)。之后,对21日龄的芝麻幼苗进行7天断水处理(使土壤含水量降至约16%)以施加干旱胁迫,并在充分浇水(对照)和干旱胁迫的幼苗中对HD-ZIP I类(13个成员)进行基因表达分析。基因表达分析表明,γ亚组的SiHZ7(6.8倍)和SiHZ35(2.6倍)在干旱幼苗中的表达显著升高。

结论

本研究有助于阐明SiHD-ZIP I类在芝麻幼苗早期干旱反应中的作用,并有助于培育新型耐旱芝麻品种。

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