Genomics, physiology, and molecular breeding approaches for improving salt tolerance

AM Ismail, T Horie - Annual review of plant biology, 2017 - annualreviews.org
Salt stress reduces land and water productivity and contributes to poverty and food
insecurity. Increased salinization caused by human practices and climate change is …

Genomics, Physiology, and Molecular Breeding Approaches for Improving Salt Tolerance

AM Ismail, T Horie - Annual review of plant biology, 2017 - pubmed.ncbi.nlm.nih.gov
Salt stress reduces land and water productivity and contributes to poverty and food
insecurity. Increased salinization caused by human practices and climate change is …

Genomics, Physiology, and Molecular Breeding Approaches for Improving Salt Tolerance

AM Ismail, T Horie - Annual Review of Plant Biology, 2017 - cir.nii.ac.jp
抄録< jats: p> Salt stress reduces land and water productivity and contributes to poverty and
food insecurity. Increased salinization caused by human practices and climate change is …

[PDF][PDF] Genomics, Physiology, and Molecular Breeding Approaches for Improving Salt Tolerance

AM Ismail, T Horie - Annual Review of Plant Biology, 2017 - scholar.archive.org
Salt stress reduces land and water productivity and contributes to poverty and food
insecurity. Increased salinization caused by human practices and climate change is …

Genomics, Physiology, and Molecular Breeding Approaches for Improving Salt Tolerance.

AM Ismail, T Horie - Annual Review of Plant Biology, 2017 - europepmc.org
Salt stress reduces land and water productivity and contributes to poverty and food
insecurity. Increased salinization caused by human practices and climate change is …

Genomics, physiology, and molecular breeding approaches for improving salt tolerance.

AM Ismail, T Horie - 2017 - cabidigitallibrary.org
Salt stress reduces land and water productivity and contributes to poverty and food
insecurity. Increased salinization caused by human practices and climate change is …