JXB:西北寒旱所、兰大丨FADs在植物胁迫耐受中的功能(钙信号)-自主发布-资讯-生物在线

JXB:西北寒旱所、兰大丨FADs在植物胁迫耐受中的功能(钙信号)

作者:旭月(北京)科技有限公司 2019-06-14T14:07 (访问量:1358)

作者:中科院西北生态环境资源研究所石玉兰、兰州大学生科院安黎哲

标题:Integrated regulation triggered by a cryophyte ω-3 desaturase gene confers multiple-stress tolerance in tobacco

主题:ω-3脂肪酸去饱和酶在植物胁迫耐受中的功能

期刊:Journal of Experimental Botany

影响因子:5.354

检测指标:Ca2+

英文摘要

ω-3 fatty acid desaturases (FADs) are thought to contribute to plant stress tolerance mainly through linolenic acid (C18:3)-induced membrane stabilization, but a comprehensive analysis of their roles in stress adaptation is lacking.

Here, we isolated a microsomal ω-3 FAD gene (CbFAD3) from a cryophyte (Chorispora bungeana) and elucidated its functions in stress tolerance. CbFAD3, exhibiting a high identity to Arabidopsis AtFAD3, was up-regulated by abiotic stresses. Its functionality was verified by heterogonous expression in yeast. Overexpression of CbFAD3 in tobacco constitutively increased C18:3 in both leaves and roots, which maintained the membrane fluidity, and enhanced plant tolerance to cold, drought, and salt stresses.

Notably, the constitutively increased C18:3 induced a sustained activation of plasma membrane Ca2+-ATPase, thereby, changing the stress induced Ca2+ signaling. The reactive oxygen species (ROS) scavenging system, which was positively correlated with the level of C18:3, was also activated in the transgenic lines.

Microarray analysis showed that CbFAD3-overexpressing plants increased the expression of stressresponsive genes, most of which are affected by C18:3, Ca2+, or ROS. Together, CbFAD3 confers tolerance to multiple stresses in tobacco through the C18:3-induced integrated regulation of membrane, Ca2+, ROS, and stress-responsive genes. This is in contrast with previous observations that simply attribute stress tolerance to membrane stabilization.

中文摘要(谷歌机翻)

ω-3脂肪酸去饱和酶(FADs)被认为主要通过亚麻酸(C18:3)诱导的膜稳定作用促进植物抗逆性,但缺乏对其在胁迫适应中的作用的综合分析。

在这里,我们从冷冻植物(Chorispora bungeana)中分离出微粒体ω-3 FAD基因(CbFAD3),并阐明其在胁迫耐受中的功能。表现出与拟南芥AtFAD3高度同一性的CbFAD3被非生物胁迫上调。其功能通过酵母中的异源表达来验证。烟草中CbFAD3的过量表达在叶和根中组成性地增加了C18:3,这保持了膜的流动性,并增强了植物对冷,干旱和盐胁迫的耐受性。

值得注意的是,组成型增加的C18:3诱导质膜Ca2+-ATPase的持续活化,从而改变应激诱导的Ca2+信号传导。与C18:3水平正相关的活性氧(ROS)清除系统也在转基因系中被激活。

微阵列分析显示过表达CbFAD3的植物增加了应激反应基因的表达,其中大多数受C18:3,Ca2+或ROS的影响。 CbFAD3一起通过C18:3诱导的膜,Ca2+,ROS和应激反应基因的整合调节赋予对烟草中多种胁迫的耐受性。这与先前的观察结果形成对比,之前的观察结果仅仅将压力耐受性归因于膜稳定。

Ca2+ fluxes in root tips treated with 15% PEG or 200 mM NaCl (n=10 ten-day-old seedling roots).

原文链接:

https://academic.oup.com/jxb/article/69/8/2131/4844070

即日起,中关村NMT联盟统筹安排全国NMT测试服务,如需开展NMT相关实验,请联系联盟:010-8262 4800转12

旭月(北京)科技有限公司 商家主页

地 址: 海淀区苏州街49-3号盈智大厦601室

联系人:

电 话: 010-82622628;010-62656315;010-62523549

传 真: 010-82622629(传真/直拨电话)

Email:china@youngerusa.cn

相关咨询

【成果回顾】MP万建民院士:无损"电生理"Ca2+流作为膜通道功能核心验证手段 为揭示CNGC9通道调控水稻低温响应机制提供证据 (2021-09-17T11:33 浏览数:8065)

S Shabala、陈仲华:叶肉细胞排Cl-排K+速率可用于预测温室和大田水稻生殖期的耐盐能力 (2021-09-17T11:16 浏览数:7690)

New Phytol于彦春/武丽敏:NMT发现KAR酶失活致热激后叶肉吸Ca失调为KAR酶通过调节胁迫信号赋予水稻耐热性提供证据 (2021-09-14T15:51 浏览数:9102)

【成果回顾】种康院士:NMT发现冷胁迫下CIPK7点突变水稻根吸Ca2+​增强 为CIPKs调控水稻耐寒机制的研究提供关键证据 (2021-09-14T15:46 浏览数:8869)

山农学者:种子吸Ca2+速率可作为种子活力快速评价指标 (2021-09-10T15:13 浏览数:10263)

【成果回顾】MP谢旗:NMT发现VPS23A促盐胁迫下根排Na+为ESCRT组分增强SOS模块功能维持拟南芥耐盐提供证据 (2021-09-10T14:57 浏览数:6746)

Crop J南农张阿英:NMT发现CBL5促盐胁迫下根排Na+为CBLs通过调节Na+稳态促谷子耐盐提供直接证据 (2021-09-10T14:33 浏览数:7581)

北林:NMT发现NO促Pb吸收并诱导Ca2+流紊乱 为NO增强Pb毒性的机制研究提供证据 (2021-09-03T16:18 浏览数:8014)

【成果回顾】西北研究院:NMT发现FAD3通过亚麻酸调节Ca2+信号增强烟草对多重胁迫的耐受性 (2021-09-03T15:59 浏览数:6938)

中国林科院张华新、杨秀艳:NMT发现白刺通过维持叶肉排Na+保K+能力及H+泵活性来适应盐胁迫 (2021-08-31T16:01 浏览数:8163)

ADVERTISEMENT