生长素
下胚轴
拟南芥
叶柄(昆虫解剖学)
避光
生物
光敏色素
细胞生物学
向光性
拟南芥
突变体
光形态发生
植物
生物化学
基因
蓝光
红灯
膜翅目
物理
光学
作者
Nayoung Lee,Dae Yeon Hwang,Hong Gil Lee,Hyeona Hwang,Hye Won Kang,Wonbok Lee,Moonseok Choi,Ye Jin Ahn,Chaemyeong Lim,Jeong‐Il Kim,Moonhyuk Kwon,Sun Tae Kim,Nam‐Chon Paek,Hyunwoo Cho,Kee Hoon Sohn,Pil Joon Seo,Young Hun Song
标识
DOI:10.1093/plphys/kiae550
摘要
Abstract In plants, balancing growth and environmental responses is crucial for maximizing fitness. Close proximity among plants and canopy shade, which negatively impacts reproduction, elicits morphological adjustments such as hypocotyl growth and leaf hyponasty, mainly through changes in light quality and auxin levels. However, how auxin, synthesized from a shaded leaf blade, distally induces elongation of hypocotyl and petiole cells remains to be elucidated. We demonstrated that ASYMMETRIC LEAVES1 (AS1) promotes leaf hyponasty through the regulation of auxin biosynthesis, polar auxin transport, and auxin signaling genes in Arabidopsis (Arabidopsis thaliana). AS1 overexpression leads to elongation of the abaxial petiole cells with auxin accumulation in the petiole, resulting in hyponastic growth, which is abolished by the application of an auxin transport inhibitor to the leaf blade. In addition, the as1 mutant exhibits reduced hypocotyl growth under shade conditions. We observed that AS1 protein accumulates in the nucleus in response to shade or far-red light. Chromatin immunoprecipitation analysis identified the association of AS1 with the promoters of YUCCA8 (YUC8) and INDOLE-3-ACETIC ACID INDUCIBLE 19 (IAA19). In addition, AS1 forms complexes with PHYTOCHROME INTERACTING FACTORs in the nucleus and synergistically induces YUC8 and IAA19 expression. Our findings suggest that AS1 plays a crucial role in facilitating phenotypic plasticity to the surroundings by connecting light and phytohormone action.
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