Faculty Opinions recommendation of Ecogenomics of cleistogamous and chasmogamous flowering: genome-wide gene expression patterns from cross-species microarray analysis in Cardamine kokaiensis (Brassicaeae).

Author(s):  
Nico M van Straalen
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Christoph Schwarz ◽  
Christa Mitterbauer ◽  
Heinz M Regele ◽  
Ferdinand Mühlbacher ◽  
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Huiru Li ◽  
Yatong Ding ◽  
Yuancheng Qi ◽  
Yuqian Gao ◽  
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pp. 327-336 ◽  
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Xianwen Zhang ◽  
Hairong Xiong ◽  
Ailing Liu ◽  
Xiaoyun Zhou ◽  
Yan Peng ◽  
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PLoS ONE ◽  
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Yutaka Takumi ◽  
Shin-ya Nishio ◽  
Nobuyoshi Suzuki ◽  
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Genome ◽  
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Vol 58 (6) ◽  
pp. 305-313 ◽  
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Jagesh Kumar Tiwari ◽  
Sapna Devi ◽  
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Genes involved in photoassimilate partitioning and changes in hormonal balance are important for potato tuberization. In the present study, we investigated gene expression patterns in the tuber-bearing potato somatic hybrid (E1-3) and control non-tuberous wild species Solanum etuberosum (Etb) by microarray. Plants were grown under controlled conditions and leaves were collected at eight tuber developmental stages for microarray analysis. A t-test analysis identified a total of 468 genes (94 up-regulated and 374 down-regulated) that were statistically significant (p ≤ 0.05) and differentially expressed in E1-3 and Etb. Gene Ontology (GO) characterization of the 468 genes revealed that 145 were annotated and 323 were of unknown function. Further, these 145 genes were grouped based on GO biological processes followed by molecular function and (or) PGSC description into 15 gene sets, namely (1) transport, (2) metabolic process, (3) biological process, (4) photosynthesis, (5) oxidation-reduction, (6) transcription, (7) translation, (8) binding, (9) protein phosphorylation, (10) protein folding, (11) ubiquitin-dependent protein catabolic process, (12) RNA processing, (13) negative regulation of protein, (14) methylation, and (15) mitosis. RT-PCR analysis of 10 selected highly significant genes (p ≤ 0.01) confirmed the microarray results. Overall, we show that candidate genes induced in leaves of E1-3 were implicated in tuberization processes such as transport, carbohydrate metabolism, phytohormones, and transcription/translation/binding functions. Hence, our results provide an insight into the candidate genes induced in leaf tissues during tuberization in E1-3.


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