Transcriptome Analysis Revealed that GhPP2C43-A Negatively Regulates Salinity Tolerance in an Introgression Line from a Semi-Wild Upland Cotton

C Cui, L Feng, C Zhou, H Wan… - Plant and Cell Physiology, 2023 - academic.oup.com
Salt damage is a major threat to sustainable cotton production owing to the limited arable
land in China, which is mainly occupied by the production of staple food crops. Salt-stress …

Transcriptome Analysis Revealed that GhPP2C43-A Negatively Regulates Salinity Tolerance in an Introgression Line from a Semi-Wild Upland Cotton

C Cui, L Feng, C Zhou, H Wan… - Plant & cell …, 2023 - pubmed.ncbi.nlm.nih.gov
Salt damage is a major threat to sustainable cotton production owing to the limited arable
land in China, which is mainly occupied by the production of staple food crops. Salt-stress …

Transcriptome Revealed GhPP2C43-A Negatively Regulates Salinity Tolerance in an Introgression Line from a Semi-wild Upland Cotton.

C Cui, L Feng, C Zhou, H Wan, B Zhou - Plant & Cell Physiology, 2023 - europepmc.org
Salt damage is one of the major threats to sustainable cotton production owing to the limited
arable land in China mainly occupied by the production of staple food crops. Salt-stress …

Transcriptome analysis revealed that GhPP2C43-A negatively regulates salinity tolerance in an introgression line from a semi-wild upland cotton.

C Cui, L Feng, C Zhou, H Wan, B Zhou - 2023 - cabidigitallibrary.org
Salt damage is a major threat to sustainable cotton production owing to the limited arable
land in China, which is mainly occupied by the production of staple food crops. Salt-stress …

Transcriptome Analysis Revealed that GhPP2C43-A Negatively Regulates Salinity Tolerance in an Introgression Line from a Semi-Wild Upland Cotton

C Cui, L Feng, C Zhou, H Wan… - Plant And Cell …, 2023 - academic.oup.com
Salt damage is a major threat to sustainable cotton production owing to the limited arable
land in China, which is mainly occupied by the production of staple food crops. Salt-stress …