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Comprehensive review of multiomics applications and remediation of plant heavy metal toxicity
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作者 Tamana Khan labiba shah +6 位作者 Sabba Khan Owais Ali Wani Zahid Nabi Sheikh Baseerat Afroza Rizwan Rashid Faheem shahzad Baloch Sheikh Mansoor 《Stress Biology》 2025年第1期320-347,共28页
Heavy metal pollution severely impacts plant health by inhibiting growth,photosynthesis,enzyme activities,and causing oxidative stress.Plants respond to such stress by activating complex defense mechanisms involving r... Heavy metal pollution severely impacts plant health by inhibiting growth,photosynthesis,enzyme activities,and causing oxidative stress.Plants respond to such stress by activating complex defense mechanisms involving reactive oxygen species and different signaling pathways.These pathways are pivotal in triggering plant defense responses and are currently a major focus of research.Understanding the complex mechanisms of heavy metal uptake,transport,chelation,and signaling can guide strategies to improve plant resilience and stress tolerance.In this review,we aim to highlight the key heavy metals found in soil and the environment,along with their mechanisms of accumulation in plants.We also explore the defense responses of plants through various signaling pathways such as calcium(Ca^(2+)),MAP kinase,and hormone signaling.Additionally,we emphasize the importance of understanding advanced omics technologies,including transcriptomics,metabolomics,and bioinformatic tools,in enhancing our knowledge of plant resilience and stress tolerance.Highlights·Heavy metals are major environmental concern with consequences on plant and public health.·Heavy metal pollution has increased globally decreasing agricultural growth and productivity.·Calcium functions as a messenger in both the regular physiology and against various stressors.·Phytohormones have antagonistic and synergistic effects that control response to stressors.·Bioinformatic tools aid in processing,analyzing,and interpreting data in stress research. 展开更多
关键词 Heavy metals Plant toxicity Stress signalling Multiomics REMEDIATION
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