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当植株在半干旱条件下生长时,res番茄突变体所表现出的表型改变消失:res突变体对多种胁迫具有耐受性吗?

The phenotype alterations showed by the res tomato mutant disappear when the plants are grown under semi-arid conditions: Is the res mutant tolerant to multiple stresses?

作者信息

Garcia-Abellan José O, Albaladejo Irene, Egea Isabel, Flores Francisco B, Capel Carmen, Capel Juan, Angosto Trinidad, Lozano Rafael, Bolarin Maria C

机构信息

a Department of Stress Biology and Plant Pathology , CEBAS-CSIC , Espinardo-Murcia , Spain.

b Agro-Food Biotechnology Research Center (BITAL), University of Almería, La Cañada de San Urbano , Almería , Spain.

出版信息

Plant Signal Behav. 2017 Nov 2;12(11):e1146847. doi: 10.1080/15592324.2016.1146847. Epub 2016 Feb 23.

Abstract

The res (restored cell structure by salinity) mutant, recently identified as the first tomato mutant accumulating jasmonate (JA) without stress, exhibited important morphological alterations when plants were grown under control conditions but these disappeared under salt stress. Since the defense responses against stresses are activated in the res mutant as a consequence of the increased expression of genes from the JA biosynthetic and signaling pathways, the mutant may display a tolerance response not only to salt stress but also to multiple stresses. Here, we show that when res mutant plants are grown under the summer natural conditions of the Mediterranean area, with high temperatures and low relative humidity, the characteristic leaf chlorosis exhibited by the mutant disappears and leaves become dark green over time, with a similar aspect to WT leaves. Moreover, the mutant plants are able to achieve chlorophyll and fluorescence levels similar to those of WT. These results hint that research on res tomato mutant may allow very significant advances in the knowledge of defense responses activated by JA against multiple stresses.

摘要

res(盐度恢复细胞结构)突变体是最近鉴定出的首个在无胁迫条件下积累茉莉酸(JA)的番茄突变体,当植株在对照条件下生长时,该突变体表现出重要的形态改变,但在盐胁迫下这些改变消失了。由于JA生物合成和信号通路中的基因表达增加,res突变体中针对胁迫的防御反应被激活,因此该突变体可能不仅对盐胁迫,而且对多种胁迫都表现出耐受反应。在此,我们表明,当res突变体植株在地中海地区夏季自然条件下(高温和低相对湿度)生长时,突变体特有的叶片黄化现象消失,随着时间的推移叶片变为深绿色,与野生型叶片外观相似。此外,突变体植株能够达到与野生型相似的叶绿素和荧光水平。这些结果表明,对res番茄突变体的研究可能会在JA激活的针对多种胁迫的防御反应的认识方面取得非常重大的进展。

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