Fu Zeyu, Song Jiancheng, Zhao Jiqiang, Jameson Paula E
School of Biological Sciences, University of Canterbury, Christchurch 8140, New Zealand.
School of Life Sciences, Yantai University, Yantai 264005, China.
AoB Plants. 2018 Dec 20;11(1):ply076. doi: 10.1093/aobpla/ply076. eCollection 2019 Feb.
Perennial ryegrass () is one of the most important pasture grasses in the world. However, seed production is negatively impacted by the seed shattering (shedding) nature of this species. Recently, genes involved in the seed shattering process have been isolated and functionally characterized in several crop species. The aim of this study was to identify the genes playing critical roles in the seed shattering process in perennial ryegrass. DNA sequences of genes involved in seed shattering in the Poaceae were used to identify and isolate target genes in perennial ryegrass using a comparative genomics strategy. The candidate seed shattering genes were identified using an 'in-house' perennial ryegrass transcriptome database. The relative expression levels of the candidate ryegrass shattering genes were determined using RT-qPCR during different floret and seed developmental stages. Histological analysis of the abscission layer was also conducted. Homologues of seed shattering genes were identified and isolated from perennial ryegrass, and the relative gene expression results suggested that several genes, including and , might have a role in abscission layer formation during seed development. In addition, lignification of the abscission layer may play an important role in the abscission process. A genetic model for seed shattering in perennial ryegrass is suggested and may be useful for directing gene editing towards the production of a reduced-shattering ryegrass.
多年生黑麦草(Lolium perenne)是世界上最重要的牧草之一。然而,种子生产受到该物种种子易脱落特性的负面影响。最近,参与种子脱落过程的基因已在几种作物中被分离并进行了功能表征。本研究的目的是鉴定在多年生黑麦草种子脱落过程中起关键作用的基因。利用比较基因组学策略,使用禾本科中参与种子脱落的基因的DNA序列来鉴定和分离多年生黑麦草中的目标基因。使用“内部”多年生黑麦草转录组数据库鉴定候选种子脱落基因。在不同的小花和种子发育阶段,使用RT-qPCR测定候选黑麦草脱落基因的相对表达水平。还进行了离层的组织学分析。从多年生黑麦草中鉴定并分离出种子脱落基因的同源物,相对基因表达结果表明,包括(此处原文缺失相关基因名称)和(此处原文缺失相关基因名称)在内的几个基因可能在种子发育过程中的离层形成中起作用。此外,离层的木质化可能在脱落过程中起重要作用。提出了多年生黑麦草种子脱落的遗传模型,这可能有助于指导基因编辑以培育种子不易脱落的黑麦草品种。