Figure S2. Effects of low N condition on second leaf of a newly formed hexaploid (neo-6×), its diploid (2×) and tetraploid (4×) parents, and natural allohexaploid (nat-6×). The seedlings were subjected to low N condition (0.1 mM) for 28 days. Second leaf at below showed a clear difference among the four wheat lines under low N condition. (TIF 7026 kb
Table S2. Mean senescence (visual injury) measured across two years (2016 and 2017). (XLSX 17Â kb
Figure S2. Frequency distribution of fold changes in protein abundance between extracted tetraploid ...
Figure S4. Six WAG plants grown nitrogen-sufficient or -deficient conditions. Aseptically grown 2 WA...
Figure S7. Effects of low N condition on the contents of amino acids in roots of a newly formed hexa...
Figure S9. Effects of low N condition on the expression of nitrate transporter genes in a newly form...
Figure S8. Percent change of amino acids of the roots under low N condition compared to control cond...
Figure S6. Percent change of amino acids of the shoots under low N condition compared to control con...
Figure S5. Effects of low N condition on the activities of enzymes involved in nitrogen assimilation...
Figure S4. Effects of low N condition on the chlorophyll and carotenoid contents of synthetic hexapl...
Figure S3. Effects of low N condition on photosynthetic electron transport in a newly formed hexaplo...
Abstract Background It is known that hexaploid common wheat (Triticum aestivum L.) has stronger adap...
Table S1. Summary of the soil nitrate-nitrogen contents within the 0â20âcm layer in each environ...
(A) WT and mutant wheat plants were grown in low-N nutrient solutions for 13 days. The red arrow ind...
Lineages of three pairs of NIL contrasting for the presence or absence of the 2DL QTL for FHB resist...
Table S1. Mean percentage chlorophyll reduction measured across two years (2016 and 2017). (XLSX 22Â...
Table S2. Mean senescence (visual injury) measured across two years (2016 and 2017). (XLSX 17Â kb
Figure S2. Frequency distribution of fold changes in protein abundance between extracted tetraploid ...
Figure S4. Six WAG plants grown nitrogen-sufficient or -deficient conditions. Aseptically grown 2 WA...
Figure S7. Effects of low N condition on the contents of amino acids in roots of a newly formed hexa...
Figure S9. Effects of low N condition on the expression of nitrate transporter genes in a newly form...
Figure S8. Percent change of amino acids of the roots under low N condition compared to control cond...
Figure S6. Percent change of amino acids of the shoots under low N condition compared to control con...
Figure S5. Effects of low N condition on the activities of enzymes involved in nitrogen assimilation...
Figure S4. Effects of low N condition on the chlorophyll and carotenoid contents of synthetic hexapl...
Figure S3. Effects of low N condition on photosynthetic electron transport in a newly formed hexaplo...
Abstract Background It is known that hexaploid common wheat (Triticum aestivum L.) has stronger adap...
Table S1. Summary of the soil nitrate-nitrogen contents within the 0â20âcm layer in each environ...
(A) WT and mutant wheat plants were grown in low-N nutrient solutions for 13 days. The red arrow ind...
Lineages of three pairs of NIL contrasting for the presence or absence of the 2DL QTL for FHB resist...
Table S1. Mean percentage chlorophyll reduction measured across two years (2016 and 2017). (XLSX 22Â...
Table S2. Mean senescence (visual injury) measured across two years (2016 and 2017). (XLSX 17Â kb
Figure S2. Frequency distribution of fold changes in protein abundance between extracted tetraploid ...
Figure S4. Six WAG plants grown nitrogen-sufficient or -deficient conditions. Aseptically grown 2 WA...