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15. Granite outcrops as possible havens for biodiversity in arid land.

16. Synergistic Effect of Arbuscular Mycorrhizal Fungi and Germanium on the Growth, Nutritional Quality, and Health-Promoting Activities of Spinacia oleracea L.

17. Inoculation with Jeotgalicoccus sp. improves nutritional quality and biological value of Eruca sativa by enhancing amino acid and phenolic metabolism and increasing mineral uptake, unsaturated fatty acids, vitamins, and antioxidants.

22. Metabolic Profiling Analysis Uncovers the Role of Carbon Nanoparticles in Enhancing the Biological Activities of Amaranth in Optimal Salinity Conditions

27. Synergistic Impacts of Plant-Growth-Promoting Bacteria and Selenium Nanoparticles on Improving the Nutritional Value and Biological Activities of Three Cultivars of Brassica Sprouts

30. Biochemical and pharmaceutical traits of Marrubium vulgare L. plants treated with plant growth-promoting bacteria and elevated CO2.

31. Biochemical and pharmaceutical traits of Marrubium vulgare L. plants treated with plant growth-promoting bacteria and elevated CO2.

32. Mode of gene action and heterosis for physiological, biochemical, and agronomic traits in some diverse rice genotypes under normal and drought conditions

36. Future climate CO₂ reduces the Tungsten effect in rye plants : a growth and biochemical study

37. Rhodospirillum sp. JY3: An innovative tool to mitigate the phytotoxic impact of galaxolide on wheat (Triticum aestivum) and faba bean (Vicia faba) plants

42. Elevated CO2 reduced antimony toxicity in wheat plants by improving photosynthesis, soil microbial content, minerals, and redox status.

43. Elevated CO2 differentially attenuates beryllium‐induced oxidative stress in oat and alfalfa.

44. Physiological and biochemical responses of wheat to synergistic effects of selenium nanoparticles and elevated CO2 conditions.

46. Future Climate CO 2 Reduces the Tungsten Effect in Rye Plants: A Growth and Biochemical Study.

47. Elevated CO 2 Suppresses the Vanadium Stress in Wheat Plants under the Future Climate CO 2.

49. Low antimony concentration promoted growth, glucosinolate metabolism and antibacterial activity of two Brassica species.

50. Metabolic and biochemical analyses reveal heavy metals tolerance mechanisms in Amaranthus retroflexus L.

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