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两种柑橘接穗/砧木组合应对干旱胁迫的不同适应策略。

Different adaptation strategies of two citrus scion/rootstock combinations in response to drought stress.

作者信息

Dutra de Souza Joadson, de Andrade Silva Edson Mario, Coelho Filho Mauricio Antônio, Morillon Raphaël, Bonatto Diego, Micheli Fabienne, da Silva Gesteira Abelmon

机构信息

Universidade Estadual de Santa Cruz (UESC), Departamento de Ciências Biológicas (DCB), Centro de Biotecnologia e Genética (CBG), Rodovia Ilhéus-Itabuna, Ilhéus-BA, Brazil.

Embrapa Mandioca e Fruticultura, Departamento de Biologia Molecular, Rua Embrapa, s/n°, Cruz das Almas, Bahia, Brazil.

出版信息

PLoS One. 2017 May 17;12(5):e0177993. doi: 10.1371/journal.pone.0177993. eCollection 2017.

Abstract

Scion/rootstock interaction is important for plant development and for breeding programs. In this context, polyploid rootstocks presented several advantages, mainly in relation to biotic and abiotic stresses. Here we analyzed the response to drought of two different scion/rootstock combinations presenting different polyploidy: the diploid (2x) and autotetraploid (4x) Rangpur lime (Citrus limonia, Osbeck) rootstocks grafted with 2x Valencia Delta sweet orange (Citrus sinensis) scions, named V/2xRL and V/4xRL, respectively. Based on previous gene expression data, we developed an interactomic approach to identify proteins involved in V/2xRL and V/4xRL response to drought. A main interactomic network containing 3,830 nodes and 97,652 edges was built from V/2xRL and V/4xRL data. Exclusive proteins of the V/2xRL and V/4xRL networks (2,056 and 1,001, respectively), as well as common to both networks (773) were identified. Functional clusters were obtained and two models of drought stress response for the V/2xRL and V/4xRL genotypes were designed. Even if the V/2xRL plant implement some tolerance mechanisms, the global plant response to drought was rapid and quickly exhaustive resulting in a general tendency to dehydration avoidance, which presented some advantage in short and strong drought stress conditions, but which, in long terms, does not allow the plant survival. At the contrary, the V/4xRL plants presented a response which strong impacts on development but that present some advantages in case of prolonged drought. Finally, some specific proteins, which presented high centrality on interactomic analysis were identified as good candidates for subsequent functional analysis of citrus genes related to drought response, as well as be good markers of one or another physiological mechanism implemented by the plants.

摘要

接穗/砧木相互作用对植物发育和育种计划至关重要。在此背景下,多倍体砧木具有多种优势,主要体现在应对生物和非生物胁迫方面。本文分析了两种不同多倍体的接穗/砧木组合对干旱的响应:二倍体(2x)和同源四倍体(4x)的兰普柚(Citrus limonia, Osbeck)砧木分别与二倍体瓦伦西亚三角洲甜橙(Citrus sinensis)接穗嫁接,分别命名为V/2xRL和V/4xRL。基于先前的基因表达数据,我们开发了一种互作组学方法来鉴定参与V/2xRL和V/4xRL干旱响应的蛋白质。从V/2xRL和V/4xRL数据构建了一个包含3830个节点和97652条边的主要互作网络。鉴定出了V/2xRL和V/4xRL网络的特有蛋白质(分别为2056个和1001个)以及两个网络共有的蛋白质(773个)。获得了功能簇,并设计了V/2xRL和V/4xRL基因型的两种干旱胁迫响应模型。尽管V/2xRL植株实施了一些耐受机制,但其对干旱的整体响应迅速且很快耗尽,导致普遍的避旱倾向,这在短期和强烈干旱胁迫条件下具有一定优势,但从长期来看,不允许植株存活。相反,V/4xRL植株的响应虽然对发育有强烈影响,但在长期干旱情况下具有一些优势。最后,在互作组学分析中具有高中心性的一些特定蛋白质被确定为后续柑橘干旱响应相关基因功能分析的良好候选对象,以及植株实施的一种或另一种生理机制的良好标记。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c2f/5435350/0115bb82ab6f/pone.0177993.g001.jpg

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