生物
等位基因
遗传学
基因座(遗传学)
糯玉米
转录组
棉子糖
人口
基因
突变体
玉米淀粉
近交系
蔗糖
碳水化合物代谢
遗传变异
扎梅斯
大块分离分析
分子育种
蔗糖合成酶
食品科学
外显子
碳水化合物
代谢途径
代谢组学
单核苷酸多态性
候选基因
淀粉
作者
Ling Zhou,Lihua Ning,Shuaiqiang Liang,Qiang Hu,Wenxiang Zhang,Yuxin Pan,Zhifang Gao,Jun Hong,Yuancong Wang,Wenming Zhao,Yanping Chen,Huixue Dai,Han Zhao
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2025-11-06
标识
DOI:10.1101/2025.11.05.686684
摘要
Abstract Waxy corn and sweet corn are two major types of fresh-eating corn. Each has significant market value due to its unique sensory and nutritional profiles. Developing a variety that combines both traits would meet growing consumer demand and create new market opportunities. From a fast neutron-mutagenized population of the waxy corn inbred line HB522, we identified a mutant, wx-sweet , whose kernels exhibit both waxy and sweet properties at the filling stage. Using bulked segregant analysis (BSA) and fine mapping, we localized the causal locus to SHRUNKEN1 ( Sh1 ) on chromosome 9, which was confirmed by an allelic test with a known Mu-insertion mutant. PCR and sequencing indicated a putative large structural variation in the second and third exons of Sh1 in wx-sweet , likely disrupting the reading frame. This novel sh1 allele significantly reduced sucrose synthase activity. The sh1 and waxy1 mutant genes act synergistically to remodel carbohydrate metabolism in wx-sweet endosperms. This remodeling, revealed by integrated transcriptomic and metabolomic analyses, drives transcriptional reprogramming and restructures metabolic flux. These changes thereby enhance sucrose and raffinose accumulation, which underlies the unique waxy-sweet texture in fresh-eating maize endosperm. In summary, our work not provides valuable genetic resources for fresh-eating corn breeding, but also elucidates, for the first time, the molecular mechanism underlying the synergistic formation of waxy and sweet texture. Key message The novel allele of Sh1 acts synergistically with waxy1 to regulate carbohydrate metabolism, which elucidates the molecular mechanism for the unique waxy-sweet texture in fresh-eating corn endosperm. Our work provides new strategies for sweet-waxy maize breeding.
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