[HTML][HTML] Transcriptome, proteome and functional characterization reveals salt stress tolerance mechanisms in upland cotton (Gossypium hirsutum L.)

K Sun, TG Mehari, H Fang, J Han, X Huo… - Frontiers in Plant …, 2023 - frontiersin.org
Uncovering the underlying mechanism of salt tolerance is important to breed cotton varieties
with improved salt tolerance. In this study, transcriptome and proteome sequencing were …

[HTML][HTML] Transcriptome, proteome and functional characterization reveals salt stress tolerance mechanisms in upland cotton (Gossypium hirsutum L.)

K Sun, TG Mehari, H Fang, J Han, X Huo… - Frontiers in Plant …, 2023 - ncbi.nlm.nih.gov
Uncovering the underlying mechanism of salt tolerance is important to breed cotton varieties
with improved salt tolerance. In this study, transcriptome and proteome sequencing were …

Transcriptome, proteome and functional characterization reveals salt stress tolerance mechanisms in upland cotton (Gossypium hirsutum L.)

K Sun, TG Mehari, H Fang, J Han, X Huo, J Zhang… - 2023 - agris.fao.org
Uncovering the underlying mechanism of salt tolerance is important to breed cotton varieties
with improved salt tolerance. In this study, transcriptome and proteome sequencing were …

Transcriptome, proteome and functional characterization reveals salt stress tolerance mechanisms in upland cotton (Gossypium hirsutum L.).

K Sun, TG Mehari, H Fang, J Han, X Huo, J Zhang… - 2023 - cabidigitallibrary.org
Uncovering the underlying mechanism of salt tolerance is important to breed cotton varieties
with improved salt tolerance. In this study, transcriptome and proteome sequencing were …

[PDF][PDF] Transcriptome, proteome and functional characterization reveals salt stress tolerance mechanisms in upland cotton (Gossypium hirsutum L.)

K Sun, TG Mehari, H Fang, J Han, X Huo, J Zhang… - 2023 - researchgate.net
There are large areas of saline land around the world with complex compositions and
varying degrees of salinity, collectively referred to as saline land (Muchate et al., 2016; …

Transcriptome, proteome and functional characterization reveals salt stress tolerance mechanisms in upland cotton (Gossypium hirsutum L.)

K Sun, TG Mehari, H Fang, J Han… - Frontiers in plant …, 2023 - pubmed.ncbi.nlm.nih.gov
Uncovering the underlying mechanism of salt tolerance is important to breed cotton varieties
with improved salt tolerance. In this study, transcriptome and proteome sequencing were …

Transcriptome, proteome and functional characterization reveals salt stress tolerance mechanisms in upland cotton (Gossypium hirsutum L.)

K Sun, T Mehari, H Fang, J Han, X Huo… - Frontiers in Plant …, 2023 - europepmc.org
Uncovering the underlying mechanism of salt tolerance is important to breed cotton varieties
with improved salt tolerance. In this study, transcriptome and proteome sequencing were …

[引用][C] Transcriptome, proteome and functional characterization reveals salt stress tolerance mechanisms in upland cotton (Gossypium hirsutum L.)

K Sun, TG Mehari, H Fang, J Han, X Huo… - Frontiers in Plant …, 2023 - jglobal.jst.go.jp
Transcriptome, proteome and functional characterization reveals salt stress tolerance
mechanisms in upland cotton (Gossypium hirsutum L.) | Article Information | J-GLOBAL Art J-GLOBAL …

Transcriptome, proteome and functional characterization reveals salt stress tolerance mechanisms in upland cotton (Gossypium hirsutum L.).

K Sun, TG Mehari, H Fang, J Han, X Huo… - Frontiers in Plant …, 2023 - europepmc.org
Uncovering the underlying mechanism of salt tolerance is important to breed cotton varieties
with improved salt tolerance. In this study, transcriptome and proteome sequencing were …

[PDF][PDF] Transcriptome, proteome and functional characterization reveals salt stress tolerance mechanisms in upland cotton (Gossypium hirsutum L.)

K Sun, TG Mehari, H Fang, J Han, X Huo, J Zhang… - 2023 - researchgate.net
There are large areas of saline land around the world with complex compositions and
varying degrees of salinity, collectively referred to as saline land (Muchate et al., 2016; …