عرض بسيط للتسجيلة

المؤلفShamsi, Imran Haider
المؤلفZhang, Qichun
المؤلفMa, Zhengxin
المؤلفNoreen, Sibgha
المؤلفAkhter, Muhammad Salim
المؤلفIqbal, Ummar
المؤلفAdil, Muhammad Faheem
المؤلفKarim, Muhammad Fazal
المؤلفUllah, Najeeb
تاريخ الإتاحة2023-10-11T07:15:13Z
تاريخ النشر2023-09-05
اسم المنشورHeavy Metal Toxicity and Tolerance in Plants: A Biological, Omics, and Genetic Engineering Approach
الاقتباسShamsi, I.H., Zhang, Q., Ma, Z., Noreen, S., Akhter, M.S., Iqbal, U., Adil, M.F., Karim, M.F. and Ullah, N. (2023). Zinc Toxicity and Tolerance in Plants. In Heavy Metal Toxicity and Tolerance in Plants (eds M.A. Hossain, A.Z. Hossain, S. Bourgerie, M. Fujita, O.P. Dhankher and P. Haris). https://doi.org/10.1002/9781119906506.ch13
الترقيم الدولي الموحد للكتاب 9781119906469
معرّف المصادر الموحدhttp://hdl.handle.net/10576/48428
الملخصZinc (Zn) is vital for optimum growth not only for plants but also for humans. In plants, Zn supplement either from natural resources/soil or exogenous application is essential for better flowering and fruiting. The importance of Zn lies in the fact that it works as a co-factor for up to 300 enzymes, i.e. superoxide dismutase, alcohol dehydrogenase, carbonic anhydrase, RNA polymerase, etc. It stabilizes transcription of DNA–RNA binding effects, regulating protein–protein interactions, and chromatin structure. However, its toxicity poses serious concerns, resulting in stunted shoot growth, leaf tip necrosis, curling of younger leaves and chlorosis. The thin line of optimum range of Zn has drawn attention of a lot of scientists apropos of Zn utilization in agricultural production and sustainability. In this chapter, we focused on the multi-omic studies based on pivotal strategies adopted by plants against Zn toxicity, and the advancements in understanding various attenuation mechanisms to cope with Zn fluctuations in agricultural fields, which will help researchers/breeders for enhancing Zn nutritional contents via genetic and agronomic biofortification and optimizing plant Zn efficiency/toxicity to combat Zn malnutrition in the world.
اللغةen
الناشرWiley
الموضوعsuperoxide dismutase
Plants
zinc
attenuation mechanisms
genomics
metabolomics
proteomics
alcohol dehydrogenase
transcriptomics
genome-wide association study
العنوانZinc Toxicity and Tolerance in Plants
النوعBook chapter
الصفحات275-292
الترقيم الدولي الموحد للكتاب (إلكتروني) 9781119906506


الملفات في هذه التسجيلة

Thumbnail

هذه التسجيلة تظهر في المجموعات التالية

عرض بسيط للتسجيلة