College of Agro-grassland Science, Nanjing Agricultural University, Nanjing, China.
Department of Pratacultural Science, College of Agriculture, Hunan Agricultural University, Changsha, China.
Physiol Plant. 2023 Jan;175(1):e13861. doi: 10.1111/ppl.13861.
Expansins are cell-wall loosening proteins involved in plant cell expansion and elongation. Objectives of this study were to identify expansins related to leaf elongation in a perennial grass species and determine the relationship between the expression of expansin genes and leaf elongation. A total of 20 expansin genes were identified in tall fescue (Festuca arundinacea), out of which nine genes belonged to the EXPA- and 11 to the EXPB subfamily. Two genotypes ("TF007" and "TF116") with different growth rates were used to determine the correlation between expansins and leaf growth. Among the 20 expansins, 16 were differentially expressed in the leaf growth zone in "TF007" and "TF116." The further analysis of gene expression in different leaf segments of "TF007" and "TF116" revealed that the expression level of FaEXPB16 was positively correlated with leaf elongation rate, and "TF007" had a higher leaf elongation rate than "TF116" due to the greater expression level of FaEXPB16. FaEXPA7 exhibited significantly higher expression level in leaves of the rapid-growing genotypes than the slow-growing genotypes, suggesting that FaEXPA7 acts as a positive regulator for leaf elongation. FaEXPA7 also exhibited its highest expression level in the cell division zone located in the leaf base. FaEXPB3, FaEXPB4-2, and FaEXPB11-2 showed a negative correlation with the leaf elongation rate in "TF007" and "TF116" and were highly expressed in leaves of the slow-growing genotypes. As promoting or repressing factors for leaf growth, these five expansins could be used as candidate genes in developing the rapid or slow-growing perennial grass species.
扩展蛋白是参与植物细胞扩展和伸长的细胞壁疏松蛋白。本研究的目的是鉴定与多年生草种叶片伸长相关的扩展蛋白,并确定扩展蛋白基因的表达与叶片伸长之间的关系。在高羊茅(Festuca arundinacea)中鉴定出 20 个扩展蛋白基因,其中 9 个基因属于 EXPA 亚家族,11 个基因属于 EXPB 亚家族。使用两种生长速度不同的基因型(“TF007”和“TF116”)来确定扩展蛋白与叶片生长之间的相关性。在 20 个扩展蛋白中,有 16 个在“TF007”和“TF116”的叶片生长区表现出差异表达。对“TF007”和“TF116”不同叶片段的基因表达进一步分析表明,FaEXPB16 的表达水平与叶片伸长率呈正相关,由于 FaEXPB16 的表达水平较高,“TF007”的叶片伸长率高于“TF116”。FaEXPA7 在快速生长基因型的叶片中表达水平显著高于缓慢生长基因型,表明 FaEXPA7 作为叶片伸长的正调节剂。FaEXPA7 也在位于叶片基部的细胞分裂区表达水平最高。FaEXPB3、FaEXPB4-2 和 FaEXPB11-2 在“TF007”和“TF116”中与叶片伸长率呈负相关,在生长缓慢的基因型叶片中高度表达。作为叶片生长的促进或抑制因子,这 5 个扩展蛋白可以作为开发快速或缓慢生长的多年生草种的候选基因。