State Key Laboratory of Crop Stress Biology for Arid Areas and College of Agronomy, Northwest A&F University, Yangling, Shaanxi, China.
Xinxiang Academy of Agricultural Sciences of He'nan Province, Xinxiang, China.
BMC Genomics. 2021 May 15;22(1):350. doi: 10.1186/s12864-021-07647-6.
The serine carboxypeptidase-like protein (SCPL) family plays a vital role in stress response, growth, development and pathogen defense. However, the identification and functional analysis of SCPL gene family members have not yet been performed in wheat.
In this study, we identified a total of 210 candidate genes encoding SCPL proteins in wheat. According to their structural characteristics, it is possible to divide these members into three subfamilies: CPI, CPII and CPIII. We uncovered a total of 209 TaSCPL genes unevenly distributed across 21 wheat chromosomes, of which 65.7% are present in triads. Gene duplication analysis showed that ~ 10.5% and ~ 64.8% of the TaSCPL genes are derived from tandem and segmental duplication events, respectively. Moreover, the Ka/Ks ratios between duplicated TaSCPL gene pairs were lower than 0.6, which suggests the action of strong purifying selection. Gene structure analysis showed that most of the TaSCPL genes contain multiple introns and that the motifs present in each subfamily are relatively conserved. Our analysis on cis-acting elements showed that the promoter sequences of TaSCPL genes are enriched in drought-, ABA- and MeJA-responsive elements. In addition, we studied the expression profiles of TaSCPL genes in different tissues at different developmental stages. We then evaluated the expression levels of four TaSCPL genes by qRT-PCR, and selected TaSCPL184-6D for further downstream analysis. The results showed an enhanced drought and salt tolerance among TaSCPL184-6D transgenic Arabidopsis plants, and that the overexpression of the gene increased proline and decreased malondialdehyde levels, which might help plants adapting to adverse environments. Our results provide comprehensive analyses of wheat SCPL genes that might work as a reference for future studies aimed at improving drought and salt tolerance in wheat.
We conducte a comprehensive bioinformatic analysis of the TaSCPL gene family in wheat, which revealing the potential roles of TaSCPL genes in abiotic stress. Our analysis also provides useful resources for improving the resistance of wheat.
丝氨酸羧肽酶样蛋白(SCPL)家族在应激反应、生长、发育和病原体防御中起着至关重要的作用。然而,在小麦中,SCPL 基因家族成员的鉴定和功能分析尚未进行。
在这项研究中,我们共鉴定到小麦中 210 个候选 SCPL 蛋白编码基因。根据其结构特征,可将这些成员分为三个亚家族:CPI、CPII 和 CPIII。我们共在 21 条小麦染色体上发现了 209 个 TaSCPL 基因,其中 65.7%呈三联体分布。基因复制分析表明,10.5%和64.8%的 TaSCPL 基因分别来自串联和片段复制事件。此外,复制 TaSCPL 基因对的 Ka/Ks 比值均小于 0.6,表明存在强烈的纯化选择作用。基因结构分析表明,大多数 TaSCPL 基因含有多个内含子,且每个亚家族的基序相对保守。顺式作用元件分析表明,TaSCPL 基因启动子序列富含干旱、ABA 和 MeJA 响应元件。此外,我们研究了 TaSCPL 基因在不同发育阶段不同组织中的表达谱。然后通过 qRT-PCR 评估了四个 TaSCPL 基因的表达水平,并选择 TaSCPL184-6D 进行进一步的下游分析。结果表明,TaSCPL184-6D 转基因拟南芥植物在干旱和盐胁迫下表现出增强的耐受性,且基因过表达增加脯氨酸含量,降低丙二醛含量,这可能有助于植物适应不利环境。我们的研究结果为小麦 SCPL 基因提供了全面的分析,可为未来提高小麦抗旱耐盐性的研究提供参考。
我们对小麦 TaSCPL 基因家族进行了全面的生物信息学分析,揭示了 TaSCPL 基因在非生物胁迫中的潜在作用。我们的分析还为提高小麦的抗性提供了有用的资源。