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干旱胁迫下玉米幼苗中海藻糖-6-磷酸合酶和海藻糖-6-磷酸磷酸酶基因的鉴定及其差异表达分析

Characterization of Trehalose-6-phosphate Synthase and Trehalose-6-phosphate Phosphatase Genes and Analysis of its Differential Expression in Maize () Seedlings under Drought Stress.

作者信息

Acosta-Pérez Phamela, Camacho-Zamora Bianka Dianey, Espinoza-Sánchez Edward A, Gutiérrez-Soto Guadalupe, Zavala-García Francisco, Abraham-Juárez María Jazmín, Sinagawa-García Sugey Ramona

机构信息

Universidad Autónoma de Nuevo León, Facultad de Agronomía, Lab. de Biotecnología, Calle Francisco I. Madero S/N, Hacienda el Canadá, Cd Gral. Escobedo 66050, N.L., Mexico.

Unidad de Genómica, Centro de Investigación y Desarrollo en Ciencias de la Salud, Campus Ciencias de la Salud, UANL, Dr. Carlos Canseco s/n, Mitras Centro, Monterrey 64460, N.L, Mexico.

出版信息

Plants (Basel). 2020 Mar 3;9(3):315. doi: 10.3390/plants9030315.

Abstract

Maize is the most important crop around the world and it is highly sensitive to abiotic stress caused by drought, excessive salinity, and extreme temperature. In plants, trehalose has been widely studied for its role in plant adaptation to different abiotic stresses such as drought, high and low temperature, and osmotic stress. Thus, the aim of this work was to clone and characterize at molecular level the trehalose-6-phosphate synthase (TPS) and trehalose-6-phosphate phosphatase (TPP) genes from maize and to evaluate its differential expression in maize seedlings under drought stress. To carry out this, resistant and susceptible maize lines were subjected to drought stress during 72 h. Two full-length cDNAs of TPS and one of TPP were cloned and sequenced. Then, TPS and TPP amino acid sequences were aligned with their homologs from different species, showing highly conserved domains and the same catalytic sites. Relative expression of both genes was evaluated by RT-qPCR at different time points. The expression pattern showed significant induction after 0.5 h in resistant lines and after two to four hours in susceptible plants, showing their participation in drought stress response.

摘要

玉米是全球最重要的作物,对干旱、盐分过高和极端温度等非生物胁迫高度敏感。在植物中,海藻糖因其在植物适应干旱、高低温及渗透胁迫等不同非生物胁迫中的作用而受到广泛研究。因此,本研究的目的是从分子水平克隆和鉴定玉米海藻糖-6-磷酸合酶(TPS)和海藻糖-6-磷酸磷酸酶(TPP)基因,并评估其在干旱胁迫下玉米幼苗中的差异表达。为此,对抗性和敏感玉米品系进行了72小时的干旱胁迫处理。克隆并测序了TPS的两个全长cDNA和TPP的一个全长cDNA。然后,将TPS和TPP的氨基酸序列与来自不同物种的同源序列进行比对,结果显示它们具有高度保守的结构域和相同的催化位点。通过RT-qPCR在不同时间点评估了这两个基因的相对表达。表达模式显示,抗性品系在0.5小时后、敏感植株在两到四小时后出现显著诱导,表明它们参与了干旱胁迫响应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b7a/7154934/22346392bad7/plants-09-00315-sch001.jpg

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