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On the practical side, many genes have more than one effect, and swapping out the bad version of a gene can have unpredictable complications.
Many genes have been sequenced in numerous organisms, and the complete genome has been sequenced in various species ranging from humans to viruses.
Many genes have been implicated in these complex traits.
Many genes have been implicated in the development of congenital heart disease (CHD).
Many genes have been implicated in this process, including those involved in neural cell adhesion, mRNA transport, translation control, and cAMP-PKA signaling.
These resources have contributed to remarkable advances in rice functional genomics during the last two decades, and many genes have been functionally characterized (Jiang et al. 2011).
While many genes have been identified with great potential for abiotic-stress engineering, most of them, more or less, affect rice morphology when they are constitutively overexpressed.
In recent years, many genes have been identified that are important for plant domestication and act by increasing yield, grain or fruit size or altering plant architecture.
Several approaches to express multiple sgRNAs and Cas9 in plants for the purpose of simultaneous editing or transcriptional regulation of many genes have recently been reported.
Many genes have GOSlim terms in more than one category.
Many genes have now been linked to these virulence factors.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com