sodium uptake
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2022 ◽  
Author(s):  
Steve F. Perry ◽  
Tobias Wang
Keyword(s):  

2021 ◽  
Vol 192 ◽  
pp. 104654
Author(s):  
Cibelle Gomes Gadelha ◽  
Ítalo Antônio Cotta Coutinho ◽  
Sergimar Kennedy de Paiva Pinheiro ◽  
Emilio de Castro Miguel ◽  
Humberto Henrique de Carvalho ◽  
...  

Desalination ◽  
2021 ◽  
Vol 520 ◽  
pp. 115341
Author(s):  
Shiyong Wang ◽  
Ningbo Gao ◽  
Gang Wang ◽  
Chi He ◽  
Sihao Lv ◽  
...  

Metabolites ◽  
2021 ◽  
Vol 11 (11) ◽  
pp. 735
Author(s):  
Nayana D. G. de de Silva ◽  
Jhadeswar Murmu ◽  
Denise Chabot ◽  
Keith Hubbard ◽  
Peter Ryser ◽  
...  

Suberin is a cell-wall-associated hetero-polymer deposited in specific plant tissues. The precise role of its composition and lamellae structure in protecting plants against abiotic stresses is unclear. In Arabidopsis thaliana, we tested the biochemical and physiological responses to water deficiency and NaCl treatment in mutants that are differentially affected in suberin composition and lamellae structure. Chronic drought stress increased suberin and suberin-associated waxes in wild-type plants. Suberin-deficient mutants were not more susceptible than the wild-type to the chronic drought stress imposed in this study. Nonetheless, the cyp86a1-1 cyp86b1-1 mutant, which had a severely altered suberin composition and lamellae structure, exhibited increased water loss through the root periderm. Cyp86a1-1 cyp86b1-1 also recorded lower relative water content in leaves. The abcg2-1 abcg6-1 abcg20-1 mutant, which has altered suberin composition and lamellae, was very sensitive to NaCl treatment. Furthermore, cyp86a1-1 cyp86b1-1 recorded a significant drop in the leaf K/Na ratio, indicating salt sensitivity. The far1-2 far4-1 far5-1 mutant, which did not show structural defects in the suberin lamellae, had similar responses to drought and NaCl treatments as the wild-type. Our results provide evidence that the suberin amount and lamellae structure are key features in the barrier function of suberin in reducing water loss and reducing sodium uptake through roots for better performance under drought and salt stresses.


Author(s):  
Maria R. Panuccio ◽  
Federico Romeo ◽  
Federica Marra ◽  
Carmelo Mallamaci ◽  
Muhammad Iftikhar Hussain ◽  
...  

2019 ◽  
Vol 33 (S1) ◽  
Author(s):  
Hayley Catherine Moyer ◽  
Ashwini Krishnamurthy ◽  
Robert S Hoover ◽  
Brandi Michele Wynne

Author(s):  
Alex M. Zimmer ◽  
Agnieszka K. Dymowska ◽  
Yusuke Kumai ◽  
Greg G. Goss ◽  
Steve F. Perry ◽  
...  

Chemosphere ◽  
2018 ◽  
Vol 193 ◽  
pp. 506-513 ◽  
Author(s):  
Marie Renaudin ◽  
Sébastien Leblond ◽  
Caroline Meyer ◽  
Christophe Rose ◽  
Emeline Lequy

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