数字农科院2.0

Variation of Macro-and Microelements, and Trace Metals in Spring Wheat Genetic Resources in Siberia

文献类型: 外文期刊

作者: Sergey Shepelev;Alexey Morgounov;Paulina Flis;Hamit Koksel;Huihui Li;Timur Savin;Ram Sharma;Jingxin Wang;Vladimir Shamanin

作者机构:

关键词: Biofortification;Cereals;Nutritional quality;Protein concentration

期刊名称: Plants

ISSN: 2223-7747

年卷期: 2022 年 11 卷 2 期

页码:

收录情况: JCR(2021版)

摘要: Western Siberia is one of the major spring wheat regions of Russia, cultivating over 7 Mha. The objective of the study was to evaluate the variation of macro-and microelements, and of trace metals in four distinct groups of genetic resources: primary synthetics from CIMMYT (37 entries), primary synthetics from Japan (8), US hard red spring wheat cultivars (14), and material from the Kazakhstan–Siberian Network on Spring Wheat Improvement (KASIB) (74). The experiment was conducted at Omsk State Agrarian University, using a random complete block design with four replicates in 2017 and 2018. Concentrations of 15 elements were included in the analysis: macroelements, Ca, K, Mg, P, and S; microelements, Fe, Cu, Mn, and Zn; toxic trace elements, Cd, Co, Ni; and trace elements, Mo, Rb, and Sr. Protein content was found to be positively correlated with the concentrations of 11 of the elements in one or both years. Multiple regression was used to adjust the concentration of each element, based on significant correlations with agronomic traits and macroelements. All 15 elements were evaluated for their suitability for genetic enhancement, considering phenotypic variation, their share of the genetic component in this variation, as well as the dependence of the element concentration on other traits. Three trace elements (Sr, Mo, and Co) were identified as traits that were relatively easy to enhance through breeding. These were followed by Ca, Cd, Rb, and K. The important biofortification elements Mn and Zn were among the traits that were difficult to enhance genetically. The CIMMYT and Japanese synthetics had significantly higher concentrations of K and Sr, compared to the local check. The Japanese synthetics also had the highest concentrations of Ca, S, Cd, and Mo. The US cultivars had concentrations of Ca as high as the Japanese synthetics, and the highest concentrations of Mg and Fe. KASIB’s germplasm had near-average values for most elements. Superior germplasm, with high macro-and microelement concentrations and low trace-element concentrations, was found in all groups of material included.

分类号:

  • 相关文献

[1]Emulsifying properties of sweet potato protein: Effect of protein concentration and oil volume fraction. Guo, Q.,Mu, T. H..

[2]Research of Heavy Metals Determination in Cereals by Inductively Coupled Plasma Mass Spectrometry. Wang Bu-jun. 2012

[3]QuEChERS Purification Combined with Ultrahigh-Performance Liquid Chromatography Tandem Mass Spectrometry for Simultaneous Quantification of 25 Mycotoxins in Cereals. Sun, Juan,Li, Weixi,Zhang, Yan,Hu, Xuexu,Wu, Li,Wang, Bujun,Sun, Juan,Li, Weixi,Zhang, Yan,Hu, Xuexu,Wu, Li,Wang, Bujun. 2016

[4]A quick, easy, cheap, effective, rugged, and safe method for the simultaneous detection of four triazolone herbicides in cereals combined with ultrahigh performance liquid chromatography with tandem mass spectrometry. Tao, Yan,Xu, Jun,Liu, Xingang,Cheng, Youpu,Liu, Na,Chen, Zenglong,Dong, Fengshou,Zheng, Yonguan.

[5]On-farm conservation of 12 cereal crops among 15 ethnic groups in Yunnan (PR China). Xu, Furong,A, Xinxiang,Zhang, Feifei,Zhang, Enlai,Tang, Cuifeng,Dong, Chao,Yang, Yayun,Dai, Luyuan,Xu, Furong,A, Xinxiang,Zhang, Feifei,Zhang, Enlai,Tang, Cuifeng,Dong, Chao,Yang, Yayun,Dai, Luyuan,Xu, Furong,A, Xinxiang,Zhang, Feifei,Zhang, Enlai,Tang, Cuifeng,Dong, Chao,Yang, Yayun,Dai, Luyuan,Xu, Furong,A, Xinxiang,Zhang, Feifei,Zhang, Enlai,Tang, Cuifeng,Dong, Chao,Yang, Yayun,Dai, Luyuan,Liu, Xu.

[6]Detoxification of gramine by the cereal aphid Sitobion avenae. Cai, Qing-Nian,Han, Ying,Hu, Yuan,Zhao, Xin,Cao, Ya-Zhong.

[7]Rapid And Sensitive Double-Label Based I.mmunochromatographic Assay For Zearalenone D etection In Cereals. Wang, D, Zhang, ZW, Zhang, Q, Wang, ZZ, Zhang, W, Yu, L, Li, H, Jiang, J, Li, PW. 2018

[8]Soluble starch synthase enzymes in cereals: An updated review. Ahsan Irshad,Huijun Guo,Shoaib Ur Rehman,Xueqing Wang,Chaojie Wang,Ali Raza,Chunyun Zhou,Yuting Li,Luxiang Liu. 2021

[9]A review of starch biosynthesis in cereal crops and its potential breeding applications in rice (Oryza Sativa L.). Ruiqing Li,Wenyin Zheng,Meng Jiang,Huali Zhang. 2021

[10]Simultaneous determination of succinate-dehydrogenase-inhibitor fungicide traces in cereals by QuEChERS preparation and UPLC-MS/MS analysis. Haoran Zhao,Minmin Li,Xiaowei Liu,Jiajie Yang,Xueyao Li,Jieyin Chen,Xiaofeng Dai,Jesus Simal-Gandara,Zhiqiang Kong,Zhizhong Li. 2022

[11]Nitrogen Use Efficiency In Cereals U.nder High Plant Density: M anufacturing, Management Strategies And Future Prospects. Sher, A, Zhang, LG, Noor, MA, Nadeem, M, Ashraf, U, Baloch, SK, Ameen, A, Yuan, XY, Guo, PY. 2019

[12]Multiple antibodied based immunoaffinity columns preparation for the simultaneous analysis of deoxynivalenol and T-2 toxin in cereals by liquid chromatography tandem mass spectrometry. Yanshen Li,Anqi Chen,Xin Mao,Mingxue Sun,Shupeng Yang,Juan Li,Yanli You,Yongning Wu,Guibin Jiang. 2021

[13]A review of starch biosynthesis in cereal crops and its potential breeding applications in rice (Oryza Sativa L.). Ruiqing Li,Wenyin Zheng,Meng Jiang,Huali Zhang. 2022

[14]Preparation of Molecularly Imprinted Polymer for Selective Solid-Phase Extraction and Simultaneous Determination of Five Sulfonylurea Herbicides in Cereals. Liu, Yuan,Wang, Jian,Wang, Fengli,Han, Zhengzheng,Zhu, Xuran,Liu, Yang,Cheng, Ming,Song, Mengmeng,Wang, Rui,Wang, Tianrui,Miao, Yutian,Liu, Jia,She, Yongxin. 2022

[15]Anti-Idiotypic Nanobody Alkaline Phosphatase Fusion Protein-Triggered On-Off-On Fluorescence Immunosensor for Aflatoxin in Cereals. Yu, Gege,Wang, Jiamin,Zhang, Yao,Wu, Haofen,Wang, Yueqi,Cui, Yan,Yang, Yuefan,Tang, Xiaoqian,Zhang, Qi,Wang, Jianlong,Sun, Jing,Chen, Ran,Wang, Yanru,Li, Peiwu. 2023

[16]Predicting energetic values of cereal grains and byproducts using a computer-controlled simulated digestion system for growing pigs. Qingtao Gao,Feng Zhao,Ya Wang,Hu Zhang,Jiangtao Zhao,Lixiang Gao,Xuelan Liu,Yuming Wang. 2023

[17]Conflicting stakeholder priorities produce sustainability tradeoffs for cereal production in Northeast China. Liang, Shefang,Davis, Kyle Frankel,Rao, Narasimha D.,Singh, Deepti,Sun, Jing,Wu, Wenbin,Tang, Huajun,Yang, Peng,Defries, Ruth. 2025

[18]Review: Breeding wheat for enhanced micronutrients. Xu, Yunfeng,An, Diaoguo,Xu, Hongxing,Li, Hongjie. 2011

[19]Nicotianamine synthase gene family as central components in heavy metal and phytohormone response in maize. Zhou, Mei-Liang,Qi, Lei-Peng,Zhang, Qian,Shao, Ji-Rong,Zhou, Mei-Liang,Pang, Jun-Feng,Lei, Zhi,Tang, Yi-Xiong,Wu, Yan-Min,Zhou, Mei-Liang,Zhu, Xue-Mei.

[20]Selenium Biofortification: Strategies, Progress and Challenges. Ofori Prince Danso,Bismark Asante-Badu,Zezhou Zhang,Jiaping Song,Zhangmin Wang,Xuebin Yin,Renbin Zhu. 2023

作者其他论文 更多>>