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This indicates that maize development and phenology are influenced by N concentration in the soil.
A two-year field experiment was conducted to investigate the effects of field management practices on soil water, maize development, and yield on the Loess Plateau, China.
Expression analyses suggested that maize CDPK genes are important components of maize development and multiple transduction pathways.
Figure 1 shows the results of our TRF analysis examining telomere length variation as a function of maize development and genotype.
In addition, analyses of expression profiles based on microarray and RNA-seq method unraveled their probable functions during different developmental stages and abiotic stresses and will be useful in studies aimed at revealing the global regulatory network in maize development and abiotic stress responses, thereby contributing to the maize molecular breeding with enhanced quality traits.
DGE signatures were also used to study maize development, and the results from that study provided a basis for the analysis of short-read expression data and resolved specific expression signatures that will help define mechanisms of action of the maize RA3 gene [ 14].
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All these results contribute to a deep probing into the roles of WRKY transcription factors in maize growth and development and stress tolerance.
Microarray-based expression analysis has revealed that 131 WRKY transcripts encoded by 116 genes may participate in the regulation of maize growth and development.
Low phosphate concentrations are frequently a constraint for maize growth and development, and therefore, enormous quantities of phosphate fertilizer are expended in maize cultivation, which increases the cost of planting.
In addition, the phylogenetic relationship between ARF genes in Arabidopsis, rice and maize were also compared, which will help future studies for elucidating the precise roles of ZmARFs in maize growth and development.
A more complete appreciation of the maize circadian clock will reveal where the circadian system impacts maize growth and development, as well as highlight novel approaches for optimization of crop production through targeted modification of the circadian system.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com