Higher Control of Na+ and Cl- Transport to the Shoot Along With K+/Na+ Selectivity is Determinant for Differential Salt Resistance in Grapevine Rootstocks

被引:4
|
作者
Silva, Marcela Maria Albuquerque [1 ]
Santos, Hugo Rafael Bentzen [1 ]
Silva, Evandro Nascimento [2 ]
Neto, Juracy Barroso [1 ]
Herminio, Pedro Jose [1 ]
Ramalho, Thais Lima [1 ]
Nunes, Vitor Gomes [1 ]
Simoes, Adriano Nascimento [1 ]
Souza, Eduardo Soares [1 ]
Ferreira-Silva, Sergio Luiz [1 ]
机构
[1] Univ Fed Rural Pernambuco, Postgrad Program Plant Prod, Serra Talhada Acad Unit, CP 063, BR-56909535 Serra Talhada, PE, Brazil
[2] Univ Estadual Ceara, Fac Educ Sci & Letters Cent Sertao, Quixada, Ceara, Brazil
关键词
Ionic homeostasis; Photosynthesis; Rootstocks; Salinity; Vitis vinifera; PLASMA-MEMBRANE; GAS-EXCHANGE; WATER RELATIONS; TOLERANCE; ANTIPORTER; SALINITY; CHLORIDE; IMPROVES; GROWTH; PHOTOSYNTHESIS;
D O I
10.1007/s00344-023-10952-x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
In this study, a comparative analysis between two grapevine rootstocks was carried out to characterize their salt sensibility in terms of growth, Na+ and Cl- exclusion from shoots, and K+/Na+ selectivity in the whole plant level associated with photosynthesis efficiency. In the first greenhouse experiment, the 'IAC 313' and 'Paulsen' grapevine rootstocks were subjected to salinity (80 mM NaCl) for 15 d followed by a salt recovery period (10 d). Later, a second assay was performed using plants incubated in a liquid medium to evaluate the kinetics of root K+ uptake in the absence and presence of NaCl. Salinity affected dry weight (DW) in both rootstocks, but this effect was more severe for 'Paulsen' rootstock. Better DW of 'IAC 313' under salinity was associated with higher restriction of Na+ and Cl- flux for shoots due to better retention capacity of these ions in roots. In addition, 'IAC 313' also showed higher K+/Na+ selectivity in both root uptake and partitioning processes at the whole plant. Under salinity, maximum CO2 assimilation (P-Nmax), maximum electron transport (J(max)), and Rubisco carboxylation (V-cmax) were also affected more in the 'Paulsen' than in 'IAC 313.' Our findings show that the characteristic of more favorable ionic homeostasis presented by 'IAC 313' rootstock was associated with higher growth, water balance, and carbon assimilation under salinity. In summary, this suggest that the 'IAC 313' rootstock is clearly more acclimated to salinity compared to 'Paulsen' rootstock.
引用
收藏
页码:5713 / 5726
页数:14
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