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- W4386444293 abstract "Since the forms of soil aluminum (Al) and their solubilities are high at a pH of 5 or less, Al toxicity becomes one of the major growth-limiting factors in acid soils. The toxic Al ions inhibit root growth and ultimately reduce crop yields. Root elongation is considered as a consequence of toxicity to the root apex. NRAT1 (NRAMP aluminum transporter 1) is a specific Al transporter that is involved in the uptake of Al to cells for sequestration in vacuoles. It is localized in the plasma membrane. In wheat, both major genes (two to three dominant genes) as well as a polygene controlling Al tolerance have been reported on chromosome 4DL. Then, 48 QTLs including 16 putative and 32 suggestive QTLs were identified for all studied traits. In rice, more discussions have been emphasized due to GWAS and QTL fine-mapping. Haplotype analysis around the NRAT1 gene identified susceptible and tolerant haplotypes explaining 40% of the Al tolerance variation within the aus subpopulation. Sequence analysis of NRAT1 gene identified a trio of non-synonymous mutations predictive of Al sensitivity. Root transcriptome in both rice and wheat revealed efficient cell signaling to Al toxicity tolerance." @default.
- W4386444293 created "2023-09-06" @default.
- W4386444293 creator A5052749362 @default.
- W4386444293 creator A5088490528 @default.
- W4386444293 date "2023-09-05" @default.
- W4386444293 modified "2023-09-27" @default.
- W4386444293 title "Breeding Approaches for Aluminum Toxicity Tolerance in Rice and Wheat" @default.
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- W4386444293 doi "https://doi.org/10.1002/9781119906506.ch5" @default.
- W4386444293 hasPublicationYear "2023" @default.
- W4386444293 type Work @default.