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非生物胁迫影响羊茅属植物中PIP和TIP水通道蛋白的转录丰度。

Abiotic stresses influence the transcript abundance of PIP and TIP aquaporins in Festuca species.

作者信息

Pawłowicz Izabela, Rapacz Marcin, Perlikowski Dawid, Gondek Krzysztof, Kosmala Arkadiusz

机构信息

Institute of Plant Genetics, Polish Academy of Sciences, Strzeszynska 34, 60-479, Poznan, Poland.

Department of Plant Physiology, Faculty of Agriculture and Economics, University of Agriculture in Krakow, Podluzna 3, 30-239, Krakow, Poland.

出版信息

J Appl Genet. 2017 Nov;58(4):421-435. doi: 10.1007/s13353-017-0403-8. Epub 2017 Aug 4.

Abstract

Festuca arundinacea and F. pratensis are the models in forage grasses to recognize the molecular basis of drought, salt and frost tolerance, respectively. Transcription profiles of plasma membrane intrinsic proteins (PIPs) and tonoplast intrinsic proteins (TIPs) aquaporin genes were obtained for leaves of Festuca species treated with different abiotic stimuli. F. arundinacea plants were exposed to drought and salt stress, whereas F. pratensis plants were cold-hardened. Changes in genes expression measured with use of real time qRT-PCR method were compared between two genotypes characterized with a significantly different level of each stress tolerance. Under drought the transcript level of PIP1;2 and TIP1;1 aquaporin decreased in both analyzed F. arundinacea genotypes, whereas for PIP2;1 only in a high drought tolerant plant. A salt treatment caused a reduction of PIP1;2 transcript level in a high salt tolerant genotype and an increase of TIP1;1 transcript abundance in both F. arundinacea genotypes, but it did not influence the expression of PIP2;1 aquaporin. During cold-hardening a decrease of PIP1;2, PIP2;1, and TIP1;1 aquaporin transcripts was observed, both in high and low frost tolerant genotypes. The obtained results revealed that the selected genotypes responded in a different way to abiotic stresses application. A reduced level of PIP1;2 transcript in F. arundinacea low drought tolerant genotype corresponded with a faster water loss and a lowering of photosynthesis efficiency and gas exchange during drought conditions. In F. pratensis, cold acclimation was associated with a lower level of aquaporin transcripts in both high and low frost tolerant genotypes. This is the first report on aquaporin transcriptional profiling under abiotic stress condition in forage grasses.

摘要

高羊茅和草地羊茅分别是用于识别耐旱、耐盐和耐霜分子基础的牧草模型。获得了用不同非生物刺激处理的羊茅属植物叶片的质膜内在蛋白(PIPs)和液泡膜内在蛋白(TIPs)水通道蛋白基因的转录谱。高羊茅植株遭受干旱和盐胁迫,而草地羊茅植株进行抗寒锻炼。在两种具有显著不同胁迫耐受水平的基因型之间,比较了使用实时定量逆转录-聚合酶链反应(qRT-PCR)方法测量的基因表达变化。在干旱条件下,两种分析的高羊茅基因型中PIP1;2和TIP1;1水通道蛋白的转录水平均下降,而PIP2;1仅在高耐旱植株中下降。盐处理导致高耐盐基因型中PIP1;2转录水平降低,两种高羊茅基因型中TIP1;1转录丰度增加,但不影响PIP2;1水通道蛋白的表达。在抗寒锻炼期间,高耐霜和低耐霜基因型中均观察到PIP1;2、PIP2;1和TIP1;1水通道蛋白转录本减少。获得的结果表明,所选基因型对非生物胁迫的响应方式不同。高羊茅低耐旱基因型中PIP1;2转录本水平降低,与干旱条件下更快的水分流失以及光合作用效率和气体交换降低相对应。在草地羊茅中,抗寒驯化与高耐霜和低耐霜基因型中较低水平的水通道蛋白转录本相关。这是关于牧草在非生物胁迫条件下水通道蛋白转录谱分析的首次报道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f242/5655603/bb4b9ddc2aef/13353_2017_403_Fig1_HTML.jpg

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