数字农科院2.0

Metabolic and Starch Biosynthetic Networks Underlying Yam Waxiness Formation Revealed by Integrated Transcriptomics and Proteomics

文献类型: 外文期刊

作者: Ye Li;Peiting Li;Duoyong Zhao;Fengzhong Wang;Baiyi Lu

作者机构:

关键词: amylase;omics;starch chains;texture

期刊名称: Journal of Agricultural and Food Chemistry

ISSN: 0021-8561

年卷期: 2025 年 73 卷 51 期

页码:

收录情况: SCIE(2025版) ; ; EI(2025版)

摘要: Waxiness, a key starch-related texture determining yam eating quality, remains poorly understood at the genetic and molecular levels, requiring further study for targeted quality improvement. Nine yam varieties with contrasting waxiness were analyzed using integrated transcriptomic and proteomic approaches to elucidate starch structure and metabolism. The results revealed that high-waxiness yam showed elevated expression of sucrose transport and starch precursor genes associated with higher starch content. Starch synthases (SSIII and SSIV) in yam regulated short and intermediate (6 < X ≤ 24) amylopectin chains. Starch branching enzyme (SBE), enriched in high-waxiness samples, catalyzed α-1,6 bond formation to promote long-chain amylopectin (36 < X ≤ 100) synthesis, thereby increasing starch molecular size and enhancing starch stability and rheology, contributing to waxiness formation. Upregulated GBSSII may contribute to a higher starch content in high-waxiness yam. These findings provide a mechanistic basis for waxiness and highlight key gene targets for improving the tuber texture quality.

分类号:

  • 相关文献

[1]The Effect of Duck Bile Acid Extract on the Fecal Microbiota, Short Chain Fatty Acids, Fat Digestibility and Blood Biochemical Indices in Cats. Bing Han,Peng Zhao,Shukun Liang,Zhenlong Wang,Hui Tao,Xiumin Wang,Jie Liu,Jinquan Wang. 2023

[2]Induction of hydrolytic enzyme activities in dormant seeds of Dracocephalum kotschyi Boiss. causes improvement of germination and seedling vigor indices. Rezvan Ghannad,Maryam Madadkar Haghjou,Ali Raza,Mirza Hasanuzzaman. 2022

[3]Laminaria japonica Polysaccharides Improves the Growth Performance and Faecal Digestive Enzyme Activity of Weaned Piglets. Wang C.,Chen W.,Xu Y.,Fu S.,Fu J.,Huang X.,Xiao J.,Liu T.,Jiang X.. 2024

[4]Application of omics technology in the storage and transportation of agricultural products. Bai, Lu,Zhang, Zixuan,Peng, Xin,Gao, Zhiwei,Zhao, Yan,Liang, Kehong. 2023

[5]The elite variations in germplasms for soybean breeding. Li, Delin,Zhang, Zhengwei,Gao, Xinyue,Zhang, Hao,Bai, Dong,Wang, Qi,Zheng, Tianqing,Li, Ying-Hui,Qiu, Li-Juan. 2023

[6]Multi-omics analyses of the effect of carbon ion beam irradiation on cannabis fructus (Cannabis sativa L.) composition. Xiaolu Wang,Jiayu Gu,Junsheng Fu,Chen Wang,Linshu Zhao,Huijun Guo,Hongchun Xiong,Yongdun Xie,Shirong Zhao,Yuping Ding,Libin Zhou,Zhengwu Fang,Luxiang Liu. 2023

[7]Integrated Multi-Omics Perspective to Strengthen the Understanding of Salt Tolerance in Rice. Liping Dai,Peiyuan Li,Qing Li,Yujia Leng,Dali Zeng,Qian Qian. 2022

[8]Single-sex schistosomiasis: a mini review. Zhong, Haoran,Jin, Yamei. 2023

[9]Recent Advances to Enhance Nutritional Quality of Rice. Sundus Zafar,Xu Jianlong. 2023

[10]Histology and multi-omic profiling reveal the mixture toxicity of tebuconazole and difenoconazole in adult zebrafish. Jinhua Jiang,Liezhong Chen,Xingang Liu,Luyan Wang,Shengan Wu,Xueping Zhao. 2021

[11]Editorial: Fat Metabolism and Deposition in Poultry: Physiology, Genetics, Nutrition and Interdisciplinary Research, Volume I. Sami Dridi,Craig W. Maynard,Jie Wen,Elizabeth R. Gilbert. 2022

[12]Integrated Analysis of Metabolome and Transcriptome Reveals Insights for Cold Tolerance in Rapeseed (Brassica napus L.). Ali Raza,Wei Su,Muhammad Azhar Hussain,Sundas Saher Mehmood,Xuekun Zhang,Yong Cheng,Xiling Zou,Yan Lv. 2021

[13]Role of phytohormones in regulating cold stress tolerance: Physiological and molecular approaches for developing cold-smart crop plants. Ali Raza,Sidra Charagh,Shiva Najafi-Kakavand,Saghir Abbas,Yasira Shoaib,Sultana Anwar,Sara Sharifi,Guangyuan Lu,Kadambot H.M. Siddique. 2023

[14]Metabolomics: a systems biology approach for enhancing heat stress tolerance in plants. Ali Raza. 2022

[15]Integrated analysis of transcriptome and metabolome revealed biological basis of sows from estrus to lactation. Shi L.,Li H.,Huang X.,Shu Z.,Li J.,Wang L.,Yan H.,Wang L.. 2023

[16]Editorial: Omics-driven crop improvement for stress tolerance. Qi W.,Chen J.,Han Y.,Li Z.,苏晓峰.,Yeo F.K.S.. 2023

[17]Glucose restriction enhances oxidative fiber formation: A multi-omic signal network involving AMPK and CaMK2. Zhang K.,Xie N.,Ye H.,Miao J.,Xia B.,Yang Y.,Peng H.,Xu S.,Wu T.,Tao C.,Ruan J.,Wang Y.,Yang S.. 2024

[18]Identification of pasteurized mare milk and powder adulteration with bovine milk using quantitative proteomics and metabolomics approaches. Zhongyuan Ji,Junyu Zhang,Chunxia Deng,Tongjun Guo,Rongwei Han,Yongxin Yang,Changjiang Zang,Yong Chen. 2024

[19]Omics-driven advances in the understanding of regulatory landscape of peanut seed development. Zhihui Wang,Yong Lei,Boshou Liao. 2024

[20]Editorial: The role of transcriptional regulation in mycobacterium physiology. Siguo Liu,Ningning Song,Selvakumar Subbian. 2024

作者其他论文 更多>>