Hussain, H.; Cheng, Y.; Wang, Y.; Yuan, Y.; Adnan; Li, Y.; Tian, H.; Hussain, S.; Chen, S.; Lin, R.;
et al. ASR1 and ASR2, Two Closely Related ABA-Induced Serine-Rich Transcription Repressors, Function Redundantly to Regulate ABA Responses in Arabidopsis. Plants 2023, 12, 852.
https://doi.org/10.3390/plants12040852
AMA Style
Hussain H, Cheng Y, Wang Y, Yuan Y, Adnan, Li Y, Tian H, Hussain S, Chen S, Lin R,
et al. ASR1 and ASR2, Two Closely Related ABA-Induced Serine-Rich Transcription Repressors, Function Redundantly to Regulate ABA Responses in Arabidopsis. Plants. 2023; 12(4):852.
https://doi.org/10.3390/plants12040852
Chicago/Turabian Style
Hussain, Hadia, Yuxin Cheng, Yating Wang, Yuan Yuan, Adnan, Yingying Li, Hainan Tian, Saddam Hussain, Siyu Chen, Rao Lin,
and et al. 2023. "ASR1 and ASR2, Two Closely Related ABA-Induced Serine-Rich Transcription Repressors, Function Redundantly to Regulate ABA Responses in Arabidopsis" Plants 12, no. 4: 852.
https://doi.org/10.3390/plants12040852
APA Style
Hussain, H., Cheng, Y., Wang, Y., Yuan, Y., Adnan, Li, Y., Tian, H., Hussain, S., Chen, S., Lin, R., Wang, T., & Wang, S.
(2023). ASR1 and ASR2, Two Closely Related ABA-Induced Serine-Rich Transcription Repressors, Function Redundantly to Regulate ABA Responses in Arabidopsis. Plants, 12(4), 852.
https://doi.org/10.3390/plants12040852