Annual Plant Reviews, Plant Nuclear Structure, Genome by David Evans, Katja Graumann, John A. Bryant

By David Evans, Katja Graumann, John A. Bryant

This well timed quantity brings jointly specialist stories of the new major advances in our wisdom and realizing of the supplier of the better plant nucleus, and specifically within the courting among nuclear enterprise and the law of gene expression. speedy growth has been made in a few key components during the last 5 years, together with description and characterization of proteins of the nuclear envelope and nuclear pore complicated, novel insights into nucleoskeletal buildings, in addition to advancements relating to chromatin association, functionality and gene expression. those advances open the best way for brand new learn into parts similar to tension tolerance, plant-pathogen interactions and eventually crop development and meals safeguard. persisted learn into plant nuclear constitution, genome structure and gene legislation additionally enriches our figuring out of the starting place and evolution of the nucleus and its envelope.

Edited via world-class researchers in plant telephone biology, and comprising contributions from internationally-renowned lecturers, this newest quantity within the prestigious Annual Plant experiences sequence brings jointly a wealth of data within the burgeoning box of plant nuclear constitution and genetics.  

Annual Plant studies, quantity forty six: Plant Nuclear constitution, Genome structure and Gene Regulation is a necessary source for complex scholars, researchers and execs in plant technology and similar disciplines. Libraries in all study institutions the place plant technology, biochemistry, molecular biology, genetics and genomics and agricultural technological know-how are taught and studied will locate this glorious quantity a necessary addition to their shelf.

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Additional info for Annual Plant Reviews, Plant Nuclear Structure, Genome Architecture and Gene Regulation (Volume 46)

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2009) Evolutionary position of breviate amoebae and the primary eukaryote divergence. Proceedings of the Royal Society BBiological Sciences 276, 597–604. , Sakaguchi, N. et al. ) Gene 353, 23–30. X. et al. (2003) Chromatin immunoprecipitation reveals that the 180-bp satellite repeat is the key functional DNA element of Arabidopsis thaliana centromeres. Genetics 163, 1221–1225. M. and Caetano-Anolles, G. (2012) Giant viruses coexisted with the cellular ancestors and represent a distinct supergroup along with super-kingdoms Archaea, Bacteria and Eukarya.

G. , 2009) gives no indication of a viral ancestry for the proteins involved in the initiation of DNA replication. , 2008). This is clearly different from the view that that the progenitor of the Eukarya was an actual archaean but it does allow for the presence of archaean features. According to this view, the nucleus represents an archaeal symbiont that either took over the genetic function of the host or that contributed to a larger genome derived from both cells. , 2008). Finally, some authors propose that there is no need to invoke any sort of invasion or symbiosis to explain the origin of the nucleus.

The lamins are 60–80 kDa proteins and possess a characteristic structure with a long rod domain made up of linked ␣-helices and a highly conserved, globular N-terminus. A phosphorylation domain acting at the onset of NE breakdown controls association with lamin binding proteins. , 2004; Meier, 2007; Graumann and Evans, 2010a). , 2009). , 2009) has provided images revealing a complex filamentous structure at the nucleoplasmic face of the INM. Two types of filaments differing in thickness, 10–13 nm and 5–8 nm, were observed to interconnect to the NPC.

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