Shahid Ullah
Khan
*ab,
Muhammad Sirab
Khan
c,
Hui
Wang
a,
Mingchao
Qian
a,
Talha
Javed
d,
Shah
Fahad
*ef and
Kun
Lu
*ab
aIntegrative Science Center of Germplasm Creation in Western China (CHONGQING) Science City and Southwest University, College of Agronomy and Biotechnology, Southwest University, Chongqing, 400715, P.R. China. E-mail: shahidbiochem@wmc.edu.pk; swu0120@swu.edu.cn; qmc2020@email.swu.edu.cn
bEngineering Research Center of South Upland Agriculture, Ministry of Education, Chongqing, 400715, P.R. China. E-mail: drlukun@swu.edu.cn
cDepartment of Botany, University of Science and Technology Bannu, KPK, Pakistan. E-mail: sirabkhan246@gmail.com
dInstitute of Tropical Bioscience and Biotechnology, Chinese Academy of Tropical Agricultural Sciences, Haikou-571101, China. E-mail: talhajaved54321@gmail.com
eDepartment of Agronomy, Abdul Wali Khan University Mardan, Khyber Pakhtunkhwa 23200, Pakistan. E-mail: shahfahad@awkum.edu.pk
fDepartment of Natural Sciences, Lebanese American University, Byblos, Lebanon
First published on 4th July 2024
Correction for ‘Harnessing nanobiotechnology for drought stress: transforming agriculture's future; what, why and how?’ by Shahid Ullah Khan et al., Environ. Sci.: Nano, 2024, https://doi.org/10.1039/d4en00112e.
The Royal Society of Chemistry apologises for these errors and any consequent inconvenience to authors and readers.
This journal is © The Royal Society of Chemistry 2024 |