Biotechnology Bulletin ›› 2026, Vol. 42 ›› Issue (7): 148-162.doi: 10.13560/j.cnki.biotech.bull.1985.2025-0877
HUANG Xu-sheng1, ZHOU Ya-li1, JIA Zheng-rong2, SHEN Shan3, CHEN Jin-chai1, ZHOU Guang-li1, LI Xin-xin1, WANG Ji-ping1, LI Run-zhi1, JIA Xiao-yun3(
)
Received:2025-08-12
Online:2026-07-26
Published:2026-07-20
Contact:
JIA Xiao-yun
E-mail:jiaxiaoyun@sxau.edu.cn
HUANG Xu-sheng, ZHOU Ya-li, JIA Zheng-rong, SHEN Shan, CHEN Jin-chai, ZHOU Guang-li, LI Xin-xin, WANG Ji-ping, LI Run-zhi, JIA Xiao-yun. Whole-genome Identification of the Perilla frutescens ARF Transcription Factor Family and Functional Analysis of Its Role in Abiotic Stress Responses[J]. Biotechnology Bulletin, 2026, 42(7): 148-162.
Fig. 3 Conserved motif pattern and gene structure analysis of PfARF members in P. frutescensA: Evolutionary relationship of PfARF members. B: Protein functional domain. C: Conserved motif pattern. D: Gene structure
Fig. 5 Collinearity relationship of ARF genes among P. frutescens, A. thaliana and S. indicumThe blue lines indicate the collinearity relationship of ARF genes between P. frutescens and A. thaliana; the pink lines indicate the collinearity relationship of ARF genes between P. frutescens and S. indicum
Fig. 7 Expression analysis of PfARF genes at different stages of seed development in P. frutescens10, 20, and 30 DAF indicate the seeds of perilla at 10, 20, and 30 d after flowering, respectively
Fig. 8 Analysis of phenotype (A) and PfARF genes expression (B) of P. frutescens seedlings under low temperature stressThe data are the mean values ± standard errors (mean ± SE) of three biological replicates. Different lowercase letters indicate significant differences between samples (P<0.05, Tukey’s multiple comparison method). The same below
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