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VviNAC33 促进葡萄营养生长到生殖生长阶段转变过程中的器官脱绿,并抑制营养生长。

VviNAC33 promotes organ de-greening and represses vegetative growth during the vegetative-to-mature phase transition in grapevine.

机构信息

Department of Biotechnology, University of Verona, Verona, 37134, Italy.

Waksman Institute of Microbiology, Rutgers University, Piscataway, NJ, 08854-8020, USA.

出版信息

New Phytol. 2021 Jul;231(2):726-746. doi: 10.1111/nph.17263. Epub 2021 Mar 16.

Abstract

Plants undergo several developmental transitions during their life cycle. In grapevine, a perennial woody fruit crop, the transition from vegetative/green-to-mature/woody growth involves transcriptomic reprogramming orchestrated by a small group of genes encoding regulators, but the underlying molecular mechanisms are not fully understood. We investigated the function of the transcriptional regulator VviNAC33 by generating and characterizing transgenic overexpressing grapevine lines and a chimeric repressor, and by exploring its putative targets through a DNA affinity purification sequencing (DAP-seq) approach combined with transcriptomic data. We demonstrated that VviNAC33 induces leaf de-greening, inhibits organ growth and directly activates the expression of STAY-GREEN PROTEIN 1 (SGR1), which is involved in Chl and photosystem degradation, and AUTOPHAGY 8f (ATG8f), which is involved in the maturation of autophagosomes. Furthermore, we show that VviNAC33 directly inhibits AUXIN EFFLUX FACILITATOR PIN1, RopGEF1 and ATP SYNTHASE GAMMA CHAIN 1T (ATPC1), which are involved in photosystem II integrity and activity. Our results show that VviNAC33 plays a major role in terminating photosynthetic activity and organ growth as part of a regulatory network governing the vegetative-to-mature phase transition.

摘要

植物在其生命周期中经历了几个发育转变。在葡萄藤中,作为一种多年生木本水果作物,从营养生长/绿色到成熟/木质生长的转变涉及到由一小群编码调节剂的基因所调控的转录组重编程,但潜在的分子机制尚未完全了解。我们通过生成和表征转基因葡萄藤过表达系和嵌合抑制剂来研究转录调节因子 VviNAC33 的功能,并通过 DNA 亲和纯化测序(DAP-seq)方法结合转录组数据来探索其潜在的靶标。我们证明 VviNAC33 诱导叶片脱绿,抑制器官生长,并直接激活参与 Chl 和光系统降解的 STAY-GREEN PROTEIN 1(SGR1)以及参与自噬体成熟的 AUTOPHAGY 8f(ATG8f)的表达。此外,我们表明 VviNAC33 直接抑制参与光系统 II 完整性和活性的 AUXIN EFFLUX FACILITATOR PIN1、RopGEF1 和 ATP SYNTHASE GAMMA CHAIN 1T(ATPC1)。我们的研究结果表明,VviNAC33 在终止光合作用和器官生长方面发挥着重要作用,是调节营养生长到成熟阶段转变的调控网络的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86d9/8251598/30abe8a62b0d/NPH-231-726-g002.jpg

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