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皱果 1 蛋白,一种在从拟南芥胚胎的油脂积累组织到油棕中果皮中普遍存在的调节蛋白。

Wrinkled1, a ubiquitous regulator in oil accumulating tissues from Arabidopsis embryos to oil palm mesocarp.

机构信息

Department of Plant Biology, Michigan State University, East Lansing, Michigan, United States of America.

出版信息

PLoS One. 2013 Jul 26;8(7):e68887. doi: 10.1371/journal.pone.0068887. Print 2013.

Abstract

Wrinkled1 (AtWRI1) is a key transcription factor in the regulation of plant oil synthesis in seed and non-seed tissues. The structural features of WRI1 important for its function are not well understood. Comparison of WRI1 orthologs across many diverse plant species revealed a conserved 9 bp exon encoding the amino acids "VYL". Site-directed mutagenesis of amino acids within the 'VYL' exon of AtWRI1 failed to restore the full oil content of wri1-1 seeds, providing direct evidence for an essential role of this small exon in AtWRI1 function. Arabidopsis WRI1 is predicted to have three alternative splice forms. To understand expression of these splice forms we performed RNASeq of Arabidopsis developing seeds and queried other EST and RNASeq databases from several tissues and plant species. In all cases, only one splice form was detected and VYL was observed in transcripts of all WRI1 orthologs investigated. We also characterized a phylogenetically distant WRI1 ortholog (EgWRI1) as an example of a non-seed isoform that is highly expressed in the mesocarp tissue of oil palm. The C-terminal region of EgWRI1 is over 90 amino acids shorter than AtWRI1 and has surprisingly low sequence conservation. Nevertheless, the EgWRI1 protein can restore multiple phenotypes of the Arabidopsis wri1-1 loss-of-function mutant, including reduced seed oil, the "wrinkled" seed coat, reduced seed germination, and impaired seedling establishment. Taken together, this study provides an example of combining phylogenetic analysis with mutagenesis, deep-sequencing technology and computational analysis to examine key elements of the structure and function of the WRI1 plant transcription factor.

摘要

皱果 1 号(AtWRI1)是调控植物种子和非种子组织中油脂合成的关键转录因子。目前,人们对 AtWRI1 中与功能相关的结构特征还知之甚少。通过比较多个不同植物物种的 WRI1 同源物,发现了一个保守的 9 个碱基对的外显子,编码“VYL”氨基酸。对 AtWRI1 中“VYL”外显子内的氨基酸进行定点突变,未能恢复 wri1-1 种子的完整含油量,这为该小外显子在 AtWRI1 功能中的重要作用提供了直接证据。拟南芥 WRI1 预计有三种选择性剪接形式。为了了解这些剪接形式的表达情况,我们对拟南芥发育中的种子进行了 RNA-seq 分析,并查询了来自多个组织和植物物种的其他 EST 和 RNA-seq 数据库。在所有情况下,只检测到一种剪接形式,并且在所有研究的 WRI1 同源物的转录本中都观察到了 VYL。我们还对一个系统发育上较远的 WRI1 同源物(EgWRI1)进行了特征分析,它是一种高度表达在油棕中果皮组织中的非种子同工型。EgWRI1 的 C 端区域比 AtWRI1 短 90 多个氨基酸,且序列保守性低得惊人。然而,EgWRI1 蛋白可以恢复拟南芥 wri1-1 功能丧失突变体的多种表型,包括降低种子含油量、“皱缩”种皮、降低种子萌发率和幼苗定植受损。总之,本研究提供了一个将系统发育分析与诱变、深度测序技术和计算分析相结合的范例,用于研究 WRI1 植物转录因子的结构和功能的关键要素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbf1/3724841/3fd15354e61e/pone.0068887.g001.jpg

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