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水分亏缺条件下智利藜麦(藜麦)的转录反应揭示了脱落酸非依赖型表达模式。

Transcriptional Responses of Chilean Quinoa ( Willd.) Under Water Deficit Conditions Uncovers ABA-Independent Expression Patterns.

作者信息

Morales Andrea, Zurita-Silva Andres, Maldonado Jonathan, Silva Herman

机构信息

Centro de Estudios Avanzados en Zonas Áridas, Universidad de La Serena La Serena, Chile.

Instituto de Investigaciones Agropecuarias, Centro de Investigación Intihuasi La Serena, Chile.

出版信息

Front Plant Sci. 2017 Mar 8;8:216. doi: 10.3389/fpls.2017.00216. eCollection 2017.

Abstract

R49 genotype displayed best performance on selected physiological parameters and highest tolerance to drought.R49 drought over-represented transcripts has exhibited 19% of genes (306 contigs) that presented no homology to published databases.Expression pattern for canonical responses to drought such as ABA biosynthesis and other genes induced in response to drought were assessed by qPCR. Global freshwater shortage is one of the biggest challenges of our time, often associated to misuse, increased consumption demands and the effects of climate change, paralleled with the desertification of vast areas. (Willd.) represents a very promising species, due to both nutritional content and cultivation under water constraint. We characterized drought tolerance of three Chilean genotypes and selected Genotype R49 (Salares ecotype) based upon Relative Water Content (RWC), Electrolyte Leakage (EL) and maximum efficiency of photosystem II (F/F) after drought treatment, when compared to another two genotypes. Exploratory RNA-Seq of R49 was generated by Illumina paired-ends method comparing drought and control irrigation conditions. We obtained 104.8 million reads, with 54 million reads for control condition and 51 million reads for drought condition. Reads were assembled in 150,952 contigs, were 31,523 contigs have a reading frame of at least 300 nucleotides (100 aminoacids). BLAST2GO annotation showed a 15% of genes without homology to NCBI proteins, but increased to 19% (306 contigs) when focused into drought-induced genes. Expression pattern for canonical drought responses such as ABA biosynthesis and other genes induced were assessed by qPCR, suggesting novelty of R49 drought responses.

摘要

R49基因型在选定的生理参数上表现最佳,对干旱具有最高耐受性。R49干旱超表达转录本显示出19%的基因(306个重叠群)与已发表的数据库无同源性。通过定量PCR评估了干旱的典型反应(如脱落酸生物合成)和其他干旱诱导基因的表达模式。全球淡水短缺是我们这个时代最大的挑战之一,这往往与水资源滥用、消费需求增加、气候变化的影响以及大面积荒漠化有关。(Willd.)由于其营养成分和在水分胁迫下的种植特性,是一个非常有前景的物种。与另外两个基因型相比,我们根据干旱处理后的相对含水量(RWC)、电解质渗漏(EL)和光系统II的最大效率(F/F)对三种智利基因型的耐旱性进行了表征,并选择了基因型R49(盐沼生态型)。R49的探索性RNA测序通过Illumina双端方法生成,比较了干旱和对照灌溉条件。我们获得了1.048亿条读数,其中对照条件下有5400万条读数,干旱条件下有5100万条读数。读数组装成150952个重叠群,其中31523个重叠群具有至少300个核苷酸(100个氨基酸)的可读框。BLAST2GO注释显示15%的基因与NCBI蛋白质无同源性,但在关注干旱诱导基因时,这一比例增加到19%(306个重叠群)。通过定量PCR评估了脱落酸生物合成等典型干旱反应和其他诱导基因的表达模式,表明R49干旱反应具有新颖性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f79f/5340777/94ecc80f55df/fpls-08-00216-g0001.jpg

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