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In this study, we examined oil body development in endosperm of jatropha developing seeds, identified fatty acid and lipid biosynthetic genes from a normalized cDNA library of jatropha developing endosperm and determined their expression patterns in developing seeds.
In order to investigate storage lipid accumulation, especially the oil body development in endosperm cells of jatropha seeds, developing endosperm at 14, 28, 42 and 56 DAF was subjected to transmission electron microscopy (TEM) study.
Limnoperdon incarnatum is a structurally simple fungus, and relatively easy to grow in culture, suggesting it may have potential as a model organism for fruit body development in general.
They may be novel and specific to fruiting body development in C. cinerea.
We speculate that these genes are fundamental and unique to fruiting body development in basidiomycetes despite their roles being unclear.
This study serves to advance our understanding of the molecular mechanisms of fruiting body development in the model mushroom C. cinerea.
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Strain 2CP-C possesses putative gene homologs responsible for sporulation in M. xanthus, though essential genes for fruiting body development and sporulation in M. xanthus (e.g., devRS and fruCD) [34], [35] are lacking in strain 2CP-C.
Sequence and expression conservation might imply an essential role of these genes in fruiting body development and sexual reproduction in basidiomycetes.
The evolutionary history of genes known to be required for fruiting body development was examined in order to glean some insight into principles guiding the evolution of this group of organisms.
We did not noticed any difference between the P. anserina mat+ and mat− strains in their ability to engage sexual reproduction when grown in optimal conditions: they produce equal number of male and female gametes, fruiting body development are differentiated in equal numbers and timing.
The weight of the reticulo-rumen accompanied body development and was heavier in these animals.
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