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1. Activation of fulvic acid-like in paper mill effluents using H 2 O 2 /TiO 2 catalytic oxidation: Characterization and salt stress bioassays.

3. Transcriptome Profiling of the Salt-Stress Response in Paper Mulberry.

6. Osmoprotectants in the Sugarcane (Saccharum spp.) Transcriptome Revealed by in Silico Evaluation

7. Activation of fulvic acid-like in paper mill effluents using H

8. 超声波对盐胁迫下紫松果菊种子萌发和幼苗生理特性的影响.

9. Xylem-phloem hydraulic coupling explains multiple osmoregulatory responses to salt stress.

10. Osgstu3 and osgtu4, encoding tau class glutathione S-transferases, are heavy metal- and hypoxic stress-induced and differentially salt stress-responsive in rice roots1<FN ID="FN1"><NO>1</NO>The nucleotide sequences reported in this paper have been submitted to the EMBL, GenBank and DDBJ nucleotide sequence databases under the accession numbers AY271619 and AY271620.</FN>

11. Research on Salt Stress in Rice from 2000 to 2021: A Bibliometric Analysis.

12. SOS2-AFP2 module regulates seed germination by inducing ABI5 degradation in response to salt stress in Arabidopsis.

13. Impacts of salinity stress induced by ballast water discharge on the ecosystem of shanghai port, China.

14. The R2R3-MYB transcription factor PgTT2 from Panax ginseng interacts with the WD40-repeat protein PgTTG1 during the regulation of proanthocyanidin biosynthesis and the response to salt stress.

15. Salinity stress alters plant-mediated interactions between above- and below-ground herbivores.

16. Crosstalk between Ethylene, Jasmonate and ABA in Response to Salt Stress during Germination and Early Plant Growth in Cucurbita pepo .

17. A glucomannan produced by Bacillus velezensis HY23 and its growth promoting effect on soybeans under salt stress.

18. Unraveling the mechanisms and responses of aniline-degrading biosystem to salinity stress in high temperature condition: Pollutants removal performance and microbial community.

19. Physiological and transcriptomic analysis provides new insights into osmoregulation mechanism of Ruditapes philippinarum under low and high salinity stress.

20. A Study on the Functional Identification of Overexpressing Winter Wheat Expansin Gene TaEXPA7-B in Rice under Salt Stress.

21. Green-synthesized lignin nanoparticles enhance Zea mays resilience to salt stress by improving antioxidant metabolism and mitigating ultrastructural damage.

22. Synergistic effect of biochar with gypsum, lime, and farm manure on the growth and tolerance in rice plants under different salt-affected soils.

23. Salinity stress on three representative species from Mediterranean semifixed dunes: Assessment of salinity exposure and substrate conductivity data reveal variable response strategies and tolerance between species.

24. Enhancing tomato plants' tolerance to combined heat and salt stress - The role of arbuscular mycorrhizae and biochar.

25. Germination and biological adaptation approaches as salt-stress tolerance process in selected paddy cultivars under salinity stress.

26. Role of plant neurotransmitters in salt stress: A critical review.

27. Post-synthetic modification of nano-chitosan using gibberellic acid: Foliar application on sorghum under salt stress conditions and estimation of biochemical parameters.

28. Populus euphratica PeNADP-ME interacts with PePLDδ to mediate sodium and ROS homeostasis under salinity stress.

29. Tolerance Mechanisms of Olive Tree (Olea europaea) under Saline Conditions.

30. 香樟 NAC 基因家族的全基因组鉴定 及盐胁迫下的表达分析.

31. Physical exercise prevents age-related heart dysfunction induced by high-salt intake and heart salt-specific overexpression in Drosophila

32. Osgstu3 and osgtu4, encoding tau class glutathione S-transferases, are heavy metal- and hypoxic stress-induced and differentially salt stress-responsive in rice roots11The nucleotide sequences reported in this paper have been submitted to the EMBL, GenBank and DDBJ nucleotide sequence databases under the accession numbers AY271619 and AY271620

33. Streptomyces spp. enhance vegetative growth of maize plants under saline stress

34. Phosphatidylserine Synthase from Salicornia europaea Is Involved in Plant Salt Tolerance by Regulating Plasma Membrane Stability

35. Functional characterization of the Arabidopsis SERRATE under salt stress

36. Prospects for the accelerated improvement of the resilient crop quinoa

37. Spatial distribution and identification of bacteria in stressed environments capable to weather potassium aluminosilicate mineral

38. Motility behavior and physiological response mechanisms of aerobic denitrifier, Enterobacter cloacae strain HNR under high salt stress: Insights from individual cells to populations.

39. Achromobacter sp. FB-14 harboring ACC deaminase activity augmented rice growth by upregulating the expression of stress-responsive CIPK genes under salinity stress

40. The protein kinase complex CBL10–CIPK8–SOS1 functions in Arabidopsis to regulate salt tolerance

41. The DEAD-box RNA helicase SHI2 functions in repression of salt-inducible genes and regulation of cold-inducible gene splicing

42. Dodder-transmitted mobile signals prime host plants for enhanced salt tolerance

43. Enhancing soil amendment for salt stress using pretreated rice straw and cellulolytic fungi.

44. Novel lncRNA lncRNA001074 participates in the low salinity–induced response in the sea cucumber Apostichopus japonicus by targeting the let-7/NKAα axis

45. Insights into the phylogeny and transcriptional response of serine proteases in a halotolerant cyanobacterium Halothece sp. PCC7418

46. Xyloglucan endotransglucosylase-hydrolase30 negatively affects salt tolerance in Arabidopsis

47. Arabidopsis heat shock transcription factor HSFA7b positively mediates salt stress tolerance by binding to an E-box-like motif to regulate gene expression

48. MicroRNA414c affects salt tolerance of cotton by regulating reactive oxygen species metabolism under salinity stress

49. NADPH Oxidase-derived ROS promote mitochondrial alkalization under salt stress in

50. Deciphering the regulatory role of PheSnRK genes in Moso bamboo: insights into hormonal, energy, and stress responses.