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在甘蓝型油菜基因组中鉴定出的16个胞质谷氨酰胺合成酶基因根据氮素状况和叶片衰老而受到不同程度的调控。

Sixteen cytosolic glutamine synthetase genes identified in the Brassica napus L. genome are differentially regulated depending on nitrogen regimes and leaf senescence.

作者信息

Orsel Mathilde, Moison Michaël, Clouet Vanessa, Thomas Justine, Leprince Françoise, Canoy Anne-Sophie, Just Jérémy, Chalhoub Boulos, Masclaux-Daubresse Céline

机构信息

INRA, UMR 1349 Institut de Génétique, Environnement et Protection des Plantes, INRA, Agrocampus Ouest, Université de Rennes 1, F-35653 Le Rheu, France INRA, UMR 1345 Institut de Recherche en Horticulture et Semences, F-49071 Beaucouzé, France Université d'Angers, UMR 1345 Institut de Recherche en Horticulture et Semences, SFR 4207 QUASAV, PRES L'UNAM, F-49045 Angers, France AgroCampus-Ouest, UMR 1345 Institut de Recherche en Horticulture et Semences, F-49045 Angers, France

UMR1318, INRA, Institut Jean-Pierre Bourgin, RD10, 78026 Versailles cedex, France AgroParisTech, Institut Jean-Pierre Bourgin, RD10, 78026 Versailles cedex, France.

出版信息

J Exp Bot. 2014 Jul;65(14):3927-47. doi: 10.1093/jxb/eru041. Epub 2014 Feb 24.

Abstract

A total of 16 BnaGLN1 genes coding for cytosolic glutamine synthetase isoforms (EC 6.3.1.2.) were found in the Brassica napus genome. The total number of BnaGLN1 genes, their phylogenetic relationships, and genetic locations are in agreement with the evolutionary history of Brassica species. Two BnaGLN1.1, two BnaGLN1.2, six BnaGLN1.3, four BnaGLN1.4, and two BnaGLN1.5 genes were found and named according to the standardized nomenclature for the Brassica genus. Gene expression showed conserved responses to nitrogen availability and leaf senescence among the Brassiceae tribe. The BnaGLN1.1 and BnaGLN1.4 families are overexpressed during leaf senescence and in response to nitrogen limitation. The BnaGLN1.2 family is up-regulated under high nitrogen regimes. The members of the BnaGLN1.3 family are not affected by nitrogen availability and are more expressed in stems than in leaves. Expression of the two BnaGLN1.5 genes is almost undetectable in vegetative tissues. Regulations arising from plant interactions with their environment (such as nitrogen resources), final architecture, and therefore sink-source relations in planta, seem to be globally conserved between Arabidopsis and B. napus. Similarities of the coding sequence (CDS) and protein sequences, expression profiles, response to nitrogen availability, and ageing suggest that the roles of the different GLN1 families have been conserved among the Brassiceae tribe. These findings are encouraging the transfer of knowledge from the Arabidopsis model plant to the B. napus crop plant. They are of special interest when considering the role of glutamine synthetase in crop yield and grain quality in maize and wheat.

摘要

在甘蓝型油菜基因组中总共发现了16个编码胞质谷氨酰胺合成酶同工型(EC 6.3.1.2.)的BnaGLN1基因。BnaGLN1基因的总数、它们的系统发育关系和基因定位与芸苔属物种的进化历史一致。根据芸苔属的标准化命名法,发现了两个BnaGLN1.1、两个BnaGLN1.2、六个BnaGLN1.3、四个BnaGLN1.4和两个BnaGLN1.5基因并进行了命名。基因表达显示,在十字花科族中,对氮素供应和叶片衰老具有保守的响应。BnaGLN1.1和BnaGLN1.4家族在叶片衰老期间以及对氮素限制的响应中过度表达。BnaGLN1.2家族在高氮条件下上调。BnaGLN1.3家族的成员不受氮素供应的影响,在茎中的表达高于叶片。两个BnaGLN1.5基因在营养组织中的表达几乎检测不到。植物与其环境(如氮资源)相互作用产生的调控、最终结构以及因此在植物体内的源库关系,在拟南芥和甘蓝型油菜之间似乎是全球保守的。编码序列(CDS)和蛋白质序列、表达谱、对氮素供应的响应以及衰老的相似性表明,不同GLN1家族的作用在十字花科族中是保守的。这些发现鼓励了从拟南芥模式植物向甘蓝型油菜作物植物的知识转移。当考虑谷氨酰胺合成酶在玉米和小麦的作物产量和籽粒品质中的作用时,它们具有特别的意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6450/4106436/5c0404305050/exbotj_eru041_f0001.jpg

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