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CsBRC1 样蛋白在黄瓜叶和侧枝发育中的作用。

Roles of CsBRC1-like in leaf and lateral branch development in cucumber.

机构信息

State Key Laboratories of Agrobiotechnology, Beijing Key Laboratory of Growth and Developmental Regulation for Protected Vegetable Crops, MOE Joint Laboratory for International Cooperation in Crop Molecular Breeding, China Agricultural University, Beijing 100193, China.

Shanghai Center for Plant Stress Biology, Chinese Academy of Sciences, Shanghai 201602, China; University of Chinese Academy of Sciences, 100049 Beijing, China.

出版信息

Plant Sci. 2021 Jan;302:110681. doi: 10.1016/j.plantsci.2020.110681. Epub 2020 Oct 9.

Abstract

TEOSINTE BRANCHED1/CYCLOIDEA/PCF (TCP) family genes, as plant-specific transcription factors, play vital roles in flower pattern, leaf development and plant architecture. Our recent study shows that the TCP gene BRANCHED1 (CsBRC1) specifically regulates shoot branching in cucumber. Here, we found CsBRC1 had a closely related paralogous gene CsBRC1-like. The synteny analysis revealed that these two genes originated from a segmental duplication. CsBRC1-like displayed different expression patterns in cucumber compared with CsBRC1, indicating that they may have functional differentiation. Ectopic expression of CsBRC1-like in Arabidopsis brc1-1 mutant resulted in reduced rosette branches and rosette leaves, whereas silencing CsBRC1-like in cucumber only led to a deformed true leaf of seedling rather than affecting the shoot branching. RNA-seq analysis of wild-type and CsBRC1-like-RNAi plants implicated that CsBRC1-like might regulate early leaf development through affecting the transcripts of auxin and cytokinin related genes in cucumber. Moreover, CsBRC1-like directly interacts with CsTCP10a and CsBRC1 in vivo. Our results demonstrated that CsBRC1-like has a specific role in regulating leaf development, and CsBRC1-like and CsBRC1 may have overlapping roles in shoot branching.

摘要

TEOSINTE BRANCHED1/CYCLOIDEA/PCF(TCP)家族基因作为植物特异性转录因子,在花型、叶发育和植物结构中发挥重要作用。我们最近的研究表明,TCP 基因 BRANCHED1(CsBRC1)特异性调节黄瓜的分枝。在这里,我们发现 CsBRC1 有一个密切相关的旁系同源基因 CsBRC1-like。共线性分析表明,这两个基因起源于片段重复。与 CsBRC1 相比,CsBRC1-like 在黄瓜中的表达模式不同,表明它们可能具有功能分化。CsBRC1-like 在拟南芥 brc1-1 突变体中的异位表达导致莲座叶分支减少和莲座叶减少,而在黄瓜中沉默 CsBRC1-like 仅导致幼苗真叶变形,而不影响分枝。野生型和 CsBRC1-like-RNAi 植物的 RNA-seq 分析表明,CsBRC1-like 可能通过影响黄瓜中生长素和细胞分裂素相关基因的转录来调节早期叶发育。此外,CsBRC1-like 在体内直接与 CsTCP10a 和 CsBRC1 相互作用。我们的研究结果表明,CsBRC1-like 在调节叶发育方面具有特定的作用,CsBRC1-like 和 CsBRC1 在分枝方面可能具有重叠作用。

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