Consensus genomic regions associated with multiple abiotic stress tolerance in wheat and implications for wheat breeding

被引:0
|
作者
Mohammad Jafar Tanin
Dinesh Kumar Saini
Karansher Singh Sandhu
Neeraj Pal
Santosh Gudi
Jyoti Chaudhary
Achla Sharma
机构
[1] Punjab Agricultural University,Department of Plant Breeding and Genetics
[2] Washington State University,Department of Crop and Soil Sciences
[3] G. B. Pant University of Agriculture and Technology,Department of Molecular Biology and Genetic Engineering
[4] Ch. Charan Singh University,Department of Genetics and Plant Breeding
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
In wheat, a meta-analysis was performed using previously identified QTLs associated with drought stress (DS), heat stress (HS), salinity stress (SS), water-logging stress (WS), pre-harvest sprouting (PHS), and aluminium stress (AS) which predicted a total of 134 meta-QTLs (MQTLs) that involved at least 28 consistent and stable MQTLs conferring tolerance to five or all six abiotic stresses under study. Seventy-six MQTLs out of the 132 physically anchored MQTLs were also verified with genome-wide association studies. Around 43% of MQTLs had genetic and physical confidence intervals of less than 1 cM and 5 Mb, respectively. Consequently, 539 genes were identified in some selected MQTLs providing tolerance to 5 or all 6 abiotic stresses. Comparative analysis of genes underlying MQTLs with four RNA-seq based transcriptomic datasets unravelled a total of 189 differentially expressed genes which also included at least 11 most promising candidate genes common among different datasets. The promoter analysis showed that the promoters of these genes include many stress responsiveness cis-regulatory elements, such as ARE, MBS, TC-rich repeats, As-1 element, STRE, LTR, WRE3, and WUN-motif among others. Further, some MQTLs also overlapped with as many as 34 known abiotic stress tolerance genes. In addition, numerous ortho-MQTLs among the wheat, maize, and rice genomes were discovered. These findings could help with fine mapping and gene cloning, as well as marker-assisted breeding for multiple abiotic stress tolerances in wheat.
引用
收藏
相关论文
共 50 条
  • [21] Genome-wide association mapping of genomic regions associated with drought stress tolerance at seedling and reproductive stages in bread wheat
    Reddy, S. Srinatha
    Saini, Dinesh Kumar
    Singh, G. Mahendra
    Sharma, Sandeep
    Mishra, Vinod Kumar
    Joshi, Arun Kumar
    [J]. FRONTIERS IN PLANT SCIENCE, 2023, 14
  • [22] Tolerance mechanisms for breeding wheat against heat stress: A review
    Sarkar, S.
    Islam, A. K. M. Aminul
    Barma, N. C. D.
    Ahmed, J. U.
    [J]. SOUTH AFRICAN JOURNAL OF BOTANY, 2021, 138 : 262 - 277
  • [23] Detection of Genomic Regions Associated with Resistance to Stem Rust in Russian Spring Wheat Varieties and Breeding Germplasm
    Leonova, Irina N.
    Skolotneva, Ekaterina S.
    Orlova, Elena A.
    Orlovskaya, Olga A.
    Salina, Elena A.
    [J]. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2020, 21 (13) : 1 - 13
  • [24] Identification and Validation of the Genomic Regions for Waterlogging Tolerance at Germination Stage in Wheat
    Pang, Yunlong
    Wang, Xiaoqian
    Zhao, Min
    Lu, Yue
    Yan, Qiang
    Sun, Shanyi
    Wang, Yueping
    Liu, Shubing
    [J]. AGRONOMY-BASEL, 2022, 12 (08):
  • [25] Genomic Regions Associated with the Control of Flowering Time in Durum Wheat
    Gupta, Priyanka
    Kabbaj, Hafssa
    El Hassouni, Khaoula
    Maccaferri, Marco
    Sanchez-Garcia, Miguel
    Tuberosa, Roberto
    Bassi, Filippo Maria
    [J]. PLANTS-BASEL, 2020, 9 (12): : 1 - 18
  • [26] Abiotic Stress Signaling in Wheat - An Inclusive Overview of Hormonal Interactions During Abiotic Stress Responses in Wheat
    Abhinandan, Kumar
    Skori, Logan
    Stanic, Matija
    Hickerson, Neil M. N.
    Jamshed, Muhammad
    Samuel, Marcus A.
    [J]. FRONTIERS IN PLANT SCIENCE, 2018, 9
  • [27] Breeding for drought and heat tolerance in wheat
    Langridge, Peter
    Reynolds, Matthew
    [J]. THEORETICAL AND APPLIED GENETICS, 2021, 134 (06) : 1753 - 1769
  • [28] Breeding for drought and heat tolerance in wheat
    Peter Langridge
    Matthew Reynolds
    [J]. Theoretical and Applied Genetics, 2021, 134 : 1753 - 1769
  • [29] Abiotic factors involved in wheat tolerance to frost
    da Silva, Eunice Portela
    da Cunha, Gilberto Rocca
    Pires, Joao Leonardo Fernandes
    Dalmago, Genei Antonio
    Pasinato, Aldemir
    [J]. PESQUISA AGROPECUARIA BRASILEIRA, 2008, 43 (10) : 1257 - 1265
  • [30] High intrinsic seed Zn concentration improves abiotic stress tolerance in wheat
    Muhammad Faran
    Muhammad Farooq
    Abdul Rehman
    Ahmad Nawaz
    Muhammad Kamran Saleem
    Nauman Ali
    Kadambot H. M. Siddique
    [J]. Plant and Soil, 2019, 437 : 195 - 213