4.7 Article

Natural variations in the non-coding region of ZmNAC080308 contributes maintaining grain yield under drought stress in maize

Journal

BMC PLANT BIOLOGY
Volume 21, Issue 1, Pages -

Publisher

BMC
DOI: 10.1186/s12870-021-03072-9

Keywords

Maize (Zea Mays L; ); NAC transcription factor; Natural variations; Non-coding region; Drought tolerance

Categories

Funding

  1. National Natural Science Foundation of China [31661143010]
  2. National Key Research and Development Program of China [2020YFE0202300]
  3. Hebei Agricultural University [YJ2020045]
  4. State Key Laboratory of North China Crop Improvement and Regulation [NCCIR2020RC-3]
  5. China Scholarship Council

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ZmNAC080308 is identified as a key gene for drought tolerance, with variations in its 5'-UTR region linked to increased grain yield under drought conditions. A functional marker has been developed to improve maize drought tolerance by selecting for this gene. Overexpression of ZmNAC080308 in Arabidopsis enhances drought tolerance.
BackgroundNatural variations derived from both evolutionary selection and genetic recombination, presume to have important functions to respond to various abiotic stresses, which could be used to improve drought tolerance via genomic selection.ResultsIn the present study, the NAC-encoding gene of ZmNAC080308 was cloned and sequenced in 199 inbred lines in maize. Phylogenetic analysis showed that ZmNAC080308 is closely clusteredinto the same group with other well-known NAC genes responding to improve drought tolerance. In total, 86 SNPs and 47 InDels were identified in the generic region of ZmNAC080308, 19 of these variations were associated with GY (grain yield) in different environments. Nine variations in the 5'-UTR region of ZmNAC080308 are closely linked, they might regulate the gene expression and respond to improve GY under drought condition via Sp1-mediated transactivation. Two haplotypes (Hap1 and Hap2) identified in the, 5'-UTR region using the nine variations, and Hap2 containing insertion variants, exhibited 15.47% higher GY under drought stress condition. Further, a functional marker was developed to predict the drought stress tolerance in a US maize inbred line panel. Lines carrying Hap2 exhibited>10% higher GY than those carrying Hap1 under drought stress condition. In Arabidopsis, overexpression ZmNAC080308 enhanced drought tolerance.ConclusionsZmNAC080308 is an important gene responding to drought tolerance, a functional marker is developed for improving maize drought tolerance by selecting this gene.

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