Litcius/Paper detail

Benzylaminopurine and Abscisic Acid Mitigates Cadmium and Copper Toxicity by Boosting Plant Growth, Antioxidant Capacity, Reducing Metal Accumulation and Translocation in Bamboo [Pleioblastus pygmaeus (Miq.)] Plants

Abolghassem Emamverdian, Yulong Ding, Mohammed Nasser Alyemeni, James Barker, Guo‐Hua Liu, Yang Li, Farzad Mokhberdoran, Parvaiz Ahmad

2022Antioxidants16 citationsDOIOpen Access PDF

Abstract

(Miq.) Nakai.) contaminated by 100 µM Cd and 100 µM Cu both individually and in combination were treated with 10 µM, 6-benzylaminopurine and 10 µM abscisic acid. The results revealed that while 100 µM Cd and 100 µM Cu accelerated plant cell death and decreased plant growth and development, 10 µM 6-benzylaminopurine and 10 µM abscisic acid, both individually and in combination, increased plant growth by boosting antioxidant activities, non-antioxidants indices, tyrosine ammonia-lyase activity (TAL), as well as phenylalanine ammonia-lyase activity (PAL). Moreover, this combination enhanced protein thiol, total thiol, non-protein, glycine betaine (GB), the content of proline (Pro), glutathione (GSH), photosynthetic pigments (Chlorophyll and Carotenoids), fluorescence parameters, dry weight in shoot and root, as well as length of the shoot. It was then concluded that 6-benzyl amino purine and abscisic acid, both individually and in combination, enhanced plant tolerance under Cd and Cu through several key mechanisms, including increased antioxidant activity, improved photosynthesis properties, and decreased metals accumulation and metal translocation from root to shoot.

Topics & Concepts

Abscisic acidShootAntioxidantProlineChlorophyllChemistryGlutathioneChlorophyll fluorescenceCadmiumBotanyPhotosynthesisHorticultureBiochemistryBiologyAmino acidEnzymeOrganic chemistryGenePlant Stress Responses and ToleranceBamboo properties and applicationsPlant responses to water stress