生物
非生物成分
栽培
突变体
非生物胁迫
近交系
混合的
生物量(生态学)
表观遗传学
基因
表型
园艺
农学
耐旱性
植物
杂种优势
嫁接
生物技术
作物产量
产量(工程)
基因组
植物生理学
砧木
分子育种
植物育种
干旱胁迫
遗传学
适应(眼睛)
多年生植物
等位基因
性状
茄科
基因表达
作者
Huifang Hou,Yuanhao Li,Nini Su,Ying Ding,Chunyu Shang,Xiangyu Li,Ziqing Xiong,Yu-Ying Sun,Wenhui Zhan,Yaling Wang,Xingguo Zhang,Yu Pan,Lang Wu,Jinhua Li
出处
期刊:Plant Journal
[Wiley]
日期:2025-12-01
卷期号:124 (5): e70607-e70607
摘要
Vegetable grafting is a horticultural technique employed to develop specialized plant varieties by effectively enhancing resistance to both biotic and abiotic stresses, as well as improving fruit quality and yield. However, these advantageous traits are generally non-heritable. The MSH1 gene induced heritable enhancement-through-grafting (HEG) effect on growth vigor, demonstrating promising application potential. In this study, we employed the msh1 mutant tomato as a rootstock to induce heritable superior traits and combined this approach with hybridization techniques to enhance tomato cultivars. Three Slmsh1 mutants were generated using CRISPR/Cas9 which exhibited a dwarf phenotype with whitened spots. By grafting several distinct inbred lines onto Slmsh1, we observed significant HEG, drought stress tolerance, and fruit quality. Under drought conditions, Slmsh1-grafted tomato seedlings exhibited increased biomass and enhanced drought tolerance through the regulation of antioxidant enzyme activities. Differential expression and methylation analyses of the graft progeny revealed that these heritable enhanced traits (HETs) are likely attributable to epigenetic modifications in the expression of ROS-scavenging- and hormone-related genes. Furthermore, to explore practical applications, we crossed inbred lines with HETs and evaluated the growth, yield, and fruit quality of the resulting hybrid combinations. The results indicated that these hybrid combinations improved fruit yield and quality, enhancing the total soluble solids, soluble sugar, and soluble protein content. These findings suggest that Slmsh1-grafted progenies enhanced plant biomass and drought resistance, while their hybrid combinations positively influenced root growth, yield, and fruit quality, providing new insights into the synergistic integration of genome editing and conventional breeding.
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