Suppr超能文献

拟南芥莲座叶中miR159对MYB33/65的普遍抑制作用很强,且不受多种胁迫的干扰。

Ubiquitous miR159 repression of MYB33/65 in Arabidopsis rosettes is robust and is not perturbed by a wide range of stresses.

作者信息

Li Yanjiao, Alonso-Peral Maria, Wong Gigi, Wang Ming-Bo, Millar Anthony A

机构信息

Plant Science Division, Research School of Biology, Australian National University, Canberra, 2601, ACT, Australia.

CSIRO, Agriculture, Canberra, 2601, ACT, Australia.

出版信息

BMC Plant Biol. 2016 Aug 19;16(1):179. doi: 10.1186/s12870-016-0867-4.

Abstract

BACKGROUND

The microR159 (miR159) - GAMYB pathway is conserved in higher plants, where GAMYB, expression promotes programmed cell death in seeds (aleurone) and anthers (tapetum). In cereals, restriction of GAMYB expression to seeds and anthers is mainly achieved transcriptionally, whereas in Arabidopsis this is achieved post-transcriptionally, as miR159 silences GAMYB (MYB33 and MYB65) in vegetative tissues, but not in seeds and anthers. However, we cannot rule out a role for miR159-MYB33/65 pathway in Arabidopsis vegetative tissues; a loss-of-function mir159 Arabidopsis mutant displays strong pleiotropic defects and numerous reports have documented changes in miR159 abundance during stress and hormone treatments. Hence, we have investigated the functional role of this pathway in vegetative tissues.

RESULTS

It was found that the miR159-MYB33/65 pathway was ubiquitously present throughout rosette development. However, miR159 appears to continuously repress MYB33/MYB65 expression to levels that have no major impact on rosette development. Inducible inhibition of miR159 resulted in MYB33/65 de-repression and associated phenotypic defects, indicating that a potential role in vegetative development is only possible through MYB33 and MYB65 if miR159 levels decrease. However, miR159 silencing of MYB33/65 appeared extremely robust; no tested abiotic stress resulted in strong miR159 repression. Consistent with this, the stress responses of an Arabidopsis mutant lacking the miR159-MYB33/65 pathway were indistinguishable from wild-type. Moreover, expression of viral silencing suppressors, either via transgenesis or viral infection, was unable to prevent miR159 repression of MYB33/65, highlighting the robustness of miR159-mediated silencing.

CONCLUSIONS

Despite being ubiquitously present, molecular, genetic and physiological analysis failed to find a major functional role for the miR159-MYB33/65 pathway in Arabidopsis rosette development or stress response. Although it is likely that this pathway is important for a stress not tested here or in different plant species, our findings argue against the miR159-MYB33/65 pathway playing a major conserved role in general stress response. Finally, in light of the robustness of miR159-mediated repression of MYB33/65, it appears unlikely that low fold-level changes of miR159 abundance in response to stress would have any major physiological impact in Arabidopsis.

摘要

背景

微小RNA159(miR159)-GAMYB途径在高等植物中是保守的,在该途径中,GAMYB的表达促进种子(糊粉层)和花药(绒毡层)中的程序性细胞死亡。在谷类作物中,GAMYB的表达限制在种子和花药主要通过转录实现,而在拟南芥中则是通过转录后实现,因为miR159在营养组织中使GAMYB(MYB33和MYB65)沉默,但在种子和花药中则不会。然而,我们不能排除miR159-MYB33/65途径在拟南芥营养组织中的作用;功能缺失的mir159拟南芥突变体表现出强烈的多效性缺陷,并且许多报道记录了在胁迫和激素处理期间miR159丰度的变化。因此,我们研究了该途径在营养组织中的功能作用。

结果

发现miR159-MYB33/65途径在莲座叶发育过程中普遍存在。然而,miR159似乎持续抑制MYB33/MYB65的表达,使其水平对莲座叶发育没有重大影响。对miR159的诱导性抑制导致MYB33/65的去抑制和相关的表型缺陷,表明只有当miR159水平降低时,MYB33和MYB65才可能在营养发育中发挥潜在作用。然而,miR159对MYB33/65的沉默似乎极其稳固;没有一种测试的非生物胁迫能导致miR159的强烈抑制。与此一致的是,缺乏miR159-MYB33/65途径的拟南芥突变体的胁迫反应与野生型没有区别。此外,通过转基因或病毒感染表达病毒沉默抑制子,无法阻止miR159对MYB33/65的抑制,突出了miR159介导的沉默的稳固性。

结论

尽管miR159-MYB33/65途径普遍存在,但分子、遗传和生理学分析未能发现该途径在拟南芥莲座叶发育或胁迫反应中发挥主要功能作用。虽然该途径可能对这里未测试的胁迫或不同植物物种很重要,但我们的研究结果反对miR159-MYB33/65途径在一般胁迫反应中发挥主要保守作用。最后,鉴于miR159介导的对MYB33/65的抑制非常稳固,似乎miR159丰度在胁迫下的低倍数变化不太可能对拟南芥产生任何重大的生理影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a71/4992245/0eb019a852cb/12870_2016_867_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验