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The function of BoTCP25 in the regulation of leaf development of Chinese kale

作者:Jiajing Zeng, Mengyu Yang, Jing Deng, Dongyang Zheng, Zhongxiong Lai, Gefu Wang‐Pruski, Xu XuHan, Rongfang Guo · 发表于:Frontiers in Plant Science · 年份:2023 · DOI:10.3389/fpls.2023.1127197 · 被引用次数:3 · 研究领域:Plant Molecular Biology Research、Photosynthetic Processes and Mechanisms、Plant Reproductive Biology

XG Chinese kale ( Brassica oleracea cv. ‘ XiangGu ’) is a variety of Chinese kale and has metamorphic leaves attached to the true leaves. Metamorphic leaves are secondary leaves emerging from the veins of true leaves. However, it remains unknown how the formation of metamorphic leaves is regulated and whether it differs from normal leaves. BoTCP25 is differentially expressed in different parts of XG leaves and respond to auxin signals. To clarify the function of BoTCP25 in XG Chinese kale leaves, we overexpressed BoTCP25 in XG and Arabidopsis , and interestingly, its overexpression caused Chinese kale leaves to curl and changed the location of metamorphic leaves, whereas heterologous expression of BoTCP25 in Arabidopsis did not show metamorphic leaves, but only an increase in leaf number and leaf area. Further analysis of the expression of related genes in Chinese kale and Arabidopsis overexpressing BoTCP25 revealed that BoTCP25 could directly bind the promoter of BoNGA3 , a transcription factor related to leaf development, and induce a significant expression of BoNGA3 in transgenic Chinese kale plants, whereas this induction of NGA3 did not occur in transgenic Arabidopsis . This suggests that the regulation of Chinese kale metamorphic leaves by BoTCP25 is dependent on a regulatory pathway or elements specific to XG and that this regulatory element may be repressed or absent from Arabidopsis . In addition, the expression of miR319’s precursor, a negative regulator of BoTCP25 ...