College of Agronomy, Jiangxi Agricultural University, Nanchang, 330045, Jiangxi, China.
Institute of Kiwifruit, Jiangxi Agricultural University, Nanchang, 330045, Jiangxi, China.
BMC Plant Biol. 2021 Jan 15;21(1):44. doi: 10.1186/s12870-020-02798-2.
NAC transcription factors (TFs) are plant-specific proteins encoded by a large gene family. They play important roles in diverse biological processes, such as plant growth and development, leaf senescence, and responses to biotic or abiotic stresses. Functions of a number of NAC TFs have been identified mainly in model plants. However, very few studies on NAC TFs have been conducted in the fruit tree of kiwifruit.
Genome-wide NAC genes were identified and their phylogeny, genomic structure, chromosomal location, synteny relationships, protein properties and conserved motifs were analyzed. In addition, the fruit developmental process was evaluated in a new kiwifruit cultivar of Actinidia eriantha 'Ganlu 1'. And expressions for all those NAC genes were analyzed by quantitative real-time PCR method in fruits of 'Ganlu 1' during its developmental process. Our research identified 142 NAC TFs which could be phylogenetically divided into 23 protein subfamilies. The genomic structures of those NAC genes indicated that their exons were between one and ten. Analysis of chromosomal locations suggested that 116 out of 142 NACs distributed on all the 29 kiwifruit chromosomes. In addition, genome-wide gene expression analysis showed that expressions of 125 out of 142 NAC genes could be detected in fruit samples.
Our comprehensive study provides novel information on NAC genes and expression patterns in kiwifruit fruit. This research would be helpful for future functional identification of NAC genes involved in kiwifruit fruit development.
NAC 转录因子(TF)是一类由大型基因家族编码的植物特异性蛋白。它们在多种生物学过程中发挥着重要作用,如植物生长和发育、叶片衰老以及对生物或非生物胁迫的响应。许多 NAC TF 的功能主要在模式植物中得到了鉴定。然而,在猕猴桃这种果树中,对 NAC TF 的研究非常少。
本文在猕猴桃中鉴定了全基因组 NAC 基因,并对其系统发育、基因组结构、染色体定位、基因共线性关系、蛋白特性和保守基序进行了分析。此外,还在一个新的猕猴桃品种“甘露 1”中评估了果实发育过程。通过定量实时 PCR 方法分析了“甘露 1”果实发育过程中所有 NAC 基因的表达。本研究共鉴定了 142 个 NAC TF,它们可分为 23 个蛋白亚家族。这些 NAC 基因的基因组结构表明,它们的外显子长度在 1 到 10 个之间。染色体定位分析表明,142 个 NAC 中有 116 个分布在猕猴桃的 29 条染色体上。此外,全基因组基因表达分析显示,在果实样本中可以检测到 142 个 NAC 基因中的 125 个的表达。
本研究为猕猴桃果实中 NAC 基因及其表达模式提供了新的信息。这项研究有助于进一步鉴定参与猕猴桃果实发育的 NAC 基因的功能。