Park Hyungjun, Abe Tomoko, Kunitake Hisato, Hirano Tomonari
Interdisciplinary Graduate School of Agriculture and Engineering, University of Miyazaki, 1-1 Gakuenkibanadainishi, Miyazaki-shi, Miyazaki 889-2192, Japan.
RIKEN Nishina Center for Accelerator-Based Science, Wako, Saitama 351-0198, Japan.
Breed Sci. 2023 Apr;73(2):212-218. doi: 10.1270/jsbbs.22090. Epub 2023 Apr 27.
Sweet potato is a widely cultivated crop with storage roots. Although many studies have been conducted on the mechanism of its storage root formation, the details have not been fully elucidated. We screened mutant lines with inhibition of storage root formation to clarify parts of the mechanism. In this study, the process of storage root formation in one of the mutant lines, C20-8-1, was investigated. The inhibition of storage root formation was observed during the early stages of growth. The roots in C20-8-1 did not show histological differences compared to those in wild type. The transition from fibrous roots to pencil roots, which are the developmental stages prior to mature storage root formation, was delayed or inhibited in C20-8-1. The upregulation of starch biosynthesis-related genes and downregulation of lignin biosynthesis genes with storage root swelling were not confirmed in the root of C20-8-1 during the developmental transition stage, suggesting that most of the roots in C20-8-1 are in the pre-transition state toward the storage root swelling. C20-8-1 showed a mutant phenotype during the critical period of storage root swelling initiation, and further clarification of this mutation is expected to provide new insights into storage root formation.
甘薯是一种广泛种植且具有贮藏根的作物。尽管已经对其贮藏根形成机制进行了许多研究,但细节尚未完全阐明。我们筛选了贮藏根形成受到抑制的突变系,以阐明部分机制。在本研究中,对其中一个突变系C20 - 8 - 1的贮藏根形成过程进行了研究。在生长早期观察到贮藏根形成受到抑制。与野生型相比,C20 - 8 - 1的根在组织学上没有差异。在C20 - 8 - 1中,从纤维根到铅笔根(成熟贮藏根形成之前的发育阶段)的转变被延迟或抑制。在发育转变阶段,C20 - 8 - 1的根中未证实随着贮藏根膨大淀粉生物合成相关基因上调和木质素生物合成基因下调,这表明C20 - 8 - 1中的大多数根处于朝向贮藏根膨大的转变前状态。C20 - 8 - 1在贮藏根膨大起始的关键时期表现出突变表型,进一步阐明这种突变有望为贮藏根形成提供新的见解。