[HTML][HTML] Physiological and proteomic analyses revealed the response mechanisms of two different drought-resistant maize varieties

H Li, M Yang, C Zhao, Y Wang, R Zhang - BMC Plant Biology, 2021 - Springer
Background Drought stress severely limits maize seedling growth and crop yield. Previous
studies have elucidated the mechanisms by which maize acquires drought resistance and …

Physiological and proteomic analyses revealed the response mechanisms of two different drought-resistant maize varieties.

H Li, M Yang, C Zhao, Y Wang, R Zhang - 2021 - cabidigitallibrary.org
Background: Drought stress severely limits maize seedling growth and crop yield. Previous
studies have elucidated the mechanisms by which maize acquires drought resistance and …

Physiological and Proteomic Analysis Revealed the Response Mechanisms of two Different Grought-resistant Maize Varieties

H Li, M Yang, C Zhao, Y Wang, R Zhang - 2021 - researchsquare.com
Background: Drought stress seriously limits the seedling growth and yield of maize. Despite
previous studies on drought resistance mechanisms by which maize cope with water …

Physiological and proteomic analyses revealed the response mechanisms of two different drought-resistant maize varieties

H Li, M Yang, C Zhao, Y Wang, R Zhang - BMC Plant Biology, 2021 - search.proquest.com
Background Drought stress severely limits maize seedling growth and crop yield. Previous
studies have elucidated the mechanisms by which maize acquires drought resistance and …

[PDF][PDF] Physiological and Proteomic Analysis Revealed the Response Mechanisms of two Different Grought-resistant Maize Varieties

H Li, M Yang, C Zhao, Y Wang, R Zhang - scholar.archive.org
Background: Drought stress seriously limits the seedling growth and yield of maize. Despite
previous studies on drought resistance mechanisms by which maize cope with water de …

Physiological and proteomic analyses revealed the response mechanisms of two different drought-resistant maize varieties.

H Li, M Yang, C Zhao, Y Wang… - BMC Plant Biology, 2021 - search.ebscohost.com
Background: Drought stress severely limits maize seedling growth and crop yield. Previous
studies have elucidated the mechanisms by which maize acquires drought resistance and …

Physiological and proteomic analyses revealed the response mechanisms of two different drought-resistant maize varieties

H Li, M Yang, C Zhao, Y Wang, R Zhang - 2021 - agris.fao.org
Background Drought stress severely limits maize seedling growth and crop yield. Previous
studies have elucidated the mechanisms by which maize acquires drought resistance and …

[HTML][HTML] Physiological and proteomic analyses revealed the response mechanisms of two different drought-resistant maize varieties

H Li, M Yang, C Zhao, Y Wang… - BMC Plant …, 2021 - bmcplantbiol.biomedcentral.com
Drought stress severely limits maize seedling growth and crop yield. Previous studies have
elucidated the mechanisms by which maize acquires drought resistance and contends with …

[HTML][HTML] Physiological and proteomic analyses revealed the response mechanisms of two different drought-resistant maize varieties

H Li, M Yang, C Zhao, Y Wang, R Zhang - BMC Plant Biology, 2021 - ncbi.nlm.nih.gov
Background Drought stress severely limits maize seedling growth and crop yield. Previous
studies have elucidated the mechanisms by which maize acquires drought resistance and …

Physiological and proteomic analyses revealed the response mechanisms of two different drought-resistant maize varieties.

H Li, M Yang, C Zhao, Y Wang, R Zhang - BMC Plant Biology, 2021 - go.gale.com
Background Drought stress severely limits maize seedling growth and crop yield. Previous
studies have elucidated the mechanisms by which maize acquires drought resistance and …