[HTML][HTML] Re-sequencing and transcriptome analysis reveal rich DNA variations and differential expressions of fertility-related genes in neo-tetraploid rice

X Bei, MQ Shahid, J Wu, Z Chen, L Wang, X Liu - PLoS One, 2019 - journals.plos.org
Autotetraploid rice is a useful germplasm for polyploid rice breeding, however, low seed
setting is the major barrier in commercial utilization of autotetraploid rice. Our research …

[HTML][HTML] Re-sequencing and transcriptome analysis reveal rich DNA variations and differential expressions of fertility-related genes in neo-tetraploid rice

X Bei, MQ Shahid, J Wu, Z Chen, L Wang, X Liu - PLoS ONE, 2019 - ncbi.nlm.nih.gov
Autotetraploid rice is a useful germplasm for polyploid rice breeding, however, low seed
setting is the major barrier in commercial utilization of autotetraploid rice. Our research …

[PDF][PDF] Re-sequencing and transcriptome analysis reveal rich DNA variations and differential expressions of fertility-related genes in neo-tetraploid rice

X Bei, MQ Shahid, J Wu, Z Chen, L Wang… - PLoS ONE, 2019 - pdfs.semanticscholar.org
Autotetraploid rice is a useful germplasm for polyploid rice breeding, however, low seed
setting is the major barrier in commercial utilization of autotetraploid rice. Our research …

[引用][C] Re-sequencing and transcriptome analysis reveal rich DNA variations and differential expressions of fertility-related genes in neo-tetraploid rice

X Bei, MQ Shahid, J Wu, Z Chen, L Wang, X Liu - PLoS ONE, 2019 - ui.adsabs.harvard.edu
Re-sequencing and transcriptome analysis reveal rich DNA variations and differential
expressions of fertility-related genes in neo-tetraploid rice - NASA/ADS Now on home page ads …

Re-sequencing and transcriptome analysis reveal rich DNA variations and differential expressions of fertility-related genes in neo-tetraploid rice.

X Bei, MQ Shahid, J Wu, Z Chen, L Wang, X Liu - PLoS ONE, 2019 - go.gale.com
Autotetraploid rice is a useful germplasm for polyploid rice breeding, however, low seed
setting is the major barrier in commercial utilization of autotetraploid rice. Our research …

Re-sequencing and transcriptome analysis reveal rich DNA variations and differential expressions of fertility-related genes in neo-tetraploid rice.

X Bei, MQ Shahid, J Wu, Z Chen, L Wang, X Liu - PLoS ONE, 2019 - search.ebscohost.com
Autotetraploid rice is a useful germplasm for polyploid rice breeding, however, low seed
setting is the major barrier in commercial utilization of autotetraploid rice. Our research …

Re-sequencing and transcriptome analysis reveal rich DNA variations and differential expressions of fertility-related genes in neo-tetraploid rice

X Bei, MQ Shahid, J Wu, Z Chen, L Wang… - PloS one, 2019 - pubmed.ncbi.nlm.nih.gov
Autotetraploid rice is a useful germplasm for polyploid rice breeding, however, low seed
setting is the major barrier in commercial utilization of autotetraploid rice. Our research …

[引用][C] Re-sequencing and transcriptome analysis reveal rich DNA variations and differential expressions of fertility-related genes in neo-tetraploid rice

X Bei, MQ Shahid, J Wu, Z Chen, L Wang, X Liu - PLOS ONE, 2019 - cir.nii.ac.jp
Re-sequencing and transcriptome analysis reveal rich DNA variations and differential
expressions of fertility-related genes in neo-tetraploid rice | CiNii Research CiNii 国立情報学 …

Re-sequencing and transcriptome analysis reveal rich DNA variations and differential expressions of fertility-related genes in neo-tetraploid rice.

X Bei, MQ Shahid, J Wu, Z Chen, L Wang, X Liu - Plos one, 2019 - europepmc.org
Autotetraploid rice is a useful germplasm for polyploid rice breeding, however, low seed
setting is the major barrier in commercial utilization of autotetraploid rice. Our research …

Re-sequencing and transcriptome analysis reveal rich DNA variations and differential expressions of fertility-related genes in neo-tetraploid rice.

X Bei, MQ Shahid, J Wu, Z Chen, L Wang, X Liu - Plos one, 2019 - europepmc.org
Autotetraploid rice is a useful germplasm for polyploid rice breeding, however, low seed
setting is the major barrier in commercial utilization of autotetraploid rice. Our research …