Magnitude of modulation of gene expression in aneuploid maize depends on the extent of genomic imbalance

2020 ◽  
Vol 47 (2) ◽  
pp. 93-103
Author(s):  
Adam F. Johnson ◽  
Jie Hou ◽  
Hua Yang ◽  
Xiaowen Shi ◽  
Chen Chen ◽  
...  
2021 ◽  
Author(s):  
Xiaowen Shi ◽  
Hua Yang ◽  
Chen Chen ◽  
Jie Hou ◽  
Katherine M Hanson ◽  
...  

Abstract Genomic imbalance caused by changing the dosage of individual chromosomes (aneuploidy) has a more detrimental effect than varying the dosage of complete sets of chromosomes (ploidy). We examined the impact of both increased and decreased dosage of fifteen distal and one interstitial chromosomal regions via RNA-seq of maize (Zea mays) mature leaf tissue to reveal new aspects of genomic imbalance. The results indicate that significant changes in gene expression in aneuploids occur both on the varied chromosome (cis) and the remainder of the genome (trans), with a wider spread of modulation compared with the whole-ploidy series of haploid to tetraploid. In general, cis genes in aneuploids range from a gene-dosage effect to dosage compensation, whereas for trans genes the most common effect is an inverse correlation in that expression is modulated towards the opposite direction of the varied chromosomal dosage, although positive modulations also occur. Furthermore, this analysis revealed the existence of increased and decreased effects in which expression of many genes under genome imbalance are modulated towards the same direction regardless of increased or decreased chromosomal dosage, which is predicted from kinetic considerations of multicomponent molecular interactions. The findings provide novel insights into understanding mechanistic aspects of gene regulation.


2020 ◽  
Vol 117 (31) ◽  
pp. 18424-18430 ◽  
Author(s):  
Emily K. Bowman ◽  
Matthew Deaner ◽  
Jan-Fang Cheng ◽  
Robert Evans ◽  
Ernst Oberortner ◽  
...  

Most classic genetic approaches utilize binary modifications that preclude the identification of key knockdowns for essential genes or other targets that only require moderate modulation. As a complementary approach to these classic genetic methods, we describe a plasmid-based library methodology that affords bidirectional, graded modulation of gene expression enabled by tiling the promoter regions of all 969 genes that comprise the ito977 model ofSaccharomyces cerevisiae’s metabolic network. When coupled with a CRISPR-dCas9–based modulation and next-generation sequencing, this method affords a library-based, bidirection titration of gene expression across all major metabolic genes. We utilized this approach in two case studies: growth enrichment on alternative sugars, glycerol and galactose, and chemical overproduction of betaxanthins, leading to the identification of unique gene targets. In particular, we identify essential genes and other targets that were missed by classic genetic approaches.


Author(s):  
Valeria Cucciolla ◽  
Adriana Borriello ◽  
Vincenzo Zappia ◽  
Fulvio Della Ragione

2005 ◽  
pp. 168-191
Author(s):  
Fulvio Della Ragione ◽  
Valeria Cucciolla ◽  
Adriana Borriello ◽  
Vincenzo Zappia

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