Dutra S M F, Von Pinho E V R, Santos H O, Lima A C, Von Pinho R G, Carvalho M L M
Departamento de Produção Vegetal, Universidade Estadual Paulista, Jaboticabal, SP, Brasil.
Departamento de Agricultura, Universidade Federal de Lavras, Lavras, MG, Brasil.
Genet Mol Res. 2015 Dec 22;14(4):18047-58. doi: 10.4238/2015.December.22.31.
The identification of genes related to heat tolerance is fundamental for the development of high-quality seeds that are tolerant to heat stress condition. The objective of this study was to evaluate maize lineages and the gene expression involved in high temperature tolerance during germination using physiological tests, proteomics, and transcriptome analysis. Seeds from six maize lineages (30, 44, 54, 63, 64, and 91) with different levels of tolerance to high temperatures were used. Lineages 54 and 91 were observed to be more tolerant to high temperature conditions. The highest expression of α-amylase was observed in maize seeds from lineages 30 and 91 that were subjected to controlled deterioration. The highest expression of α-amylase was observed in maize seeds from lineages 30 and 91 that were subjected to controlled deterioration; with the controlled deterioration, the highest level of gene expression did not occur in the most tolerant materials; the association of lower expression of genes involved in heat-resistant protein systems was observed in seeds from lineage 44, which were more susceptible to high temperatures, and the highest gene expression of LEA D-34, ZmAN13, and AOX-1 was observed in seeds from lineage 64 when submitted to controlled deterioration.
鉴定与耐热性相关的基因是培育耐热胁迫优质种子的基础。本研究的目的是通过生理测试、蛋白质组学和转录组分析,评估玉米品系以及萌发过程中高温耐受性相关的基因表达。使用了来自六个对高温耐受性不同的玉米品系(30、44、54、63、64和91)的种子。观察到品系54和91对高温条件更具耐受性。在经过人工老化处理的30和91品系玉米种子中,α-淀粉酶的表达最高。在经过人工老化处理的30和91品系玉米种子中,α-淀粉酶的表达最高;经过人工老化处理后,基因表达最高水平并非出现在耐受性最强的材料中;在对高温更敏感的44品系种子中,观察到与耐热蛋白系统相关基因的低表达,而在经过人工老化处理的64品系种子中,LEA D-34、ZmAN13和AOX-1的基因表达最高。