Plants maintain extensive growth flexibility under different environmental conditions, allowing them to continuously and rapidly adapt to alterations in their environment. A large portion of many plant genomes consists of transposable elements (TEs) that create new genetic variations within plant species. Different types of mutations may be created by TEs in plants. Many TEs can avoid the host's defense mechanisms and survive alterations in transposition activity, internal sequence and target site. Thus, plant genomes are expected to utilize a variety of mechanisms to tolerate TEs that are near or within genes. TEs affect the expression of not only nearby genes but also unlinked inserted genes. TEs can create new promoters, leading to novel...
Transposable elements (TEs) are self-mobilized DNA sequences that constitute a large portion of plan...
Transposable elements are powerful drivers of genome evolution in many eukaryotes. Although they are...
Transposable elements are powerful drivers of genome evolution in many eukaryotes. Although they are...
Genomic programs are yielding tremendous amounts of data about plant genomes and their expression. I...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
In plants, transposable elements (TEs) represent a large fraction of the genome, with potential to a...
Transposable elements (TEs) are the DNA sequences that have ability to change their position within ...
Transposable elements (TEs) constitute major fractions of plant genomes. Their potential to be mobil...
Transposable elements (TEs) constitute major fractions of plant genomes. Their potential to be mobil...
Transposable elements (TEs) constitute major fractions of plant genomes. Their potential to be mobil...
Transposable elements (TEs) constitute major fractions of plant genomes. Their potential to be mobil...
Transposable elements (TEs) occupy a substantial portion of the genome of most plant species, differ...
Transposable elements (TEs) are self-mobilized DNA sequences that constitute a large portion of plan...
Transposable elements are powerful drivers of genome evolution in many eukaryotes. Although they are...
Transposable elements are powerful drivers of genome evolution in many eukaryotes. Although they are...
Genomic programs are yielding tremendous amounts of data about plant genomes and their expression. I...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
In plants, transposable elements (TEs) represent a large fraction of the genome, with potential to a...
Transposable elements (TEs) are the DNA sequences that have ability to change their position within ...
Transposable elements (TEs) constitute major fractions of plant genomes. Their potential to be mobil...
Transposable elements (TEs) constitute major fractions of plant genomes. Their potential to be mobil...
Transposable elements (TEs) constitute major fractions of plant genomes. Their potential to be mobil...
Transposable elements (TEs) constitute major fractions of plant genomes. Their potential to be mobil...
Transposable elements (TEs) occupy a substantial portion of the genome of most plant species, differ...
Transposable elements (TEs) are self-mobilized DNA sequences that constitute a large portion of plan...
Transposable elements are powerful drivers of genome evolution in many eukaryotes. Although they are...
Transposable elements are powerful drivers of genome evolution in many eukaryotes. Although they are...