Global changes and growing demands have led to the development of new molecular approaches to improve crop physiological performances. Carbonic anhydrase (CA) enzymes, ubiquitous across various life kingdoms, stand out for their critical roles in plant photosynthesis and water relations. We hypothesize that the modulators of human CAs could affect plant physiology.
View Article and Find Full Text PDFAscorbate (Asc) is a major redox buffer of plant cells, whose antioxidant activity depends on the ratio with its one-electron oxidation product monodehydroascorbate (MDHA). The cytoplasm contains millimolar concentrations of Asc and soluble enzymes that can regenerate Asc from MDHA or fully oxidized dehydroascorbate. Also, vacuoles contain Asc, but no soluble Asc-regenerating enzymes.
View Article and Find Full Text PDFIodine is an essential micronutrient for humans, but its role in plant physiology was debated for nearly a century. Recently its functional involvement in plant nutrition and stress-protection collected the first experimental evidence. This study wanted to examine in depth the involvement of iodine in tomato plant nutrition, also evaluating its potential on salt stress tolerance.
View Article and Find Full Text PDFObjective: To explore the associations between intimate relationships, psychological health, and endometriosis-related variables such as pelvic pain and infertility.
Methods: In this cross-sectional study, data were collected with an online survey delivered through Qualtrics and posted on the Facebook page and website of a patient association (Associazione Progetto Endometriosi-APE) in August 2020. The survey was composed of a researcher-made questionnaire and four validated questionnaires assessing relational satisfaction (adapted Quality of Marriage Index), dyadic coping (Dyadic Coping Questionnaire), and psychological health (Hospital Anxiety and Depression Scale and Rosenberg Self-Esteem Scale).
Little is known about the role of iodine in plant physiology. We evaluated the impact of low concentrations of iodine on the phenotype, transcriptome and proteome of . Our experiments showed that removal of iodine from the nutrition solution compromises plant growth, and restoring it in micromolar concentrations is beneficial for biomass accumulation and leads to early flowering.
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