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 studies of the hot major advances in our wisdom and realizing of the employer of the better plant nucleus, and specifically within the dating among nuclear enterprise and the legislation of gene expression. speedy development has been made in a few key parts during the last 5 years, together with description and characterization of proteins of the nuclear envelope and nuclear pore advanced, novel insights into nucleoskeletal buildings, in addition to advancements on the topic of chromatin association, functionality and gene expression. those advances open the best way for brand new examine into parts equivalent to tension tolerance, plant-pathogen interactions and eventually crop development and foodstuff safety. endured examine into plant nuclear constitution, genome structure and gene rules additionally enriches our figuring out of the starting place and evolution of the nucleus and its envelope.

Edited via world-class researchers in plant mobilephone biology, and comprising contributions from internationally-renowned teachers, this most up-to-date quantity within the prestigious Annual Plant reports sequence brings jointly a wealth of information within the burgeoning box of plant nuclear constitution and genetics.  

Annual Plant stories, 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 examine institutions the place plant technological know-how, biochemistry, molecular biology, genetics and genomics and agricultural technological know-how are taught and studied will locate this wonderful quantity a vital addition to their shelf.

Chapter 1 advent: Mysteries, Molecules and Mechanisms (pages 1–17): John A. Bryant
Chapter 2 The Nuclear Envelope — constitution and Protein Interactions (pages 19–55): Katja Graumann and David E. Evans
Chapter three The Plant Nuclear Pore advanced — The Nucleocytoplasmic Barrier and past (pages 57–91): Xiao Zhou, Joanna Boruc and Iris Meier
Chapter four Nucleoskeleton in crops: The practical association of Filaments within the Nucleus (pages 93–122): Martin W. Goldberg
Chapter five Genomics and Chromatin Packaging (pages 123–156): Eugenio Sanchez?Moran
Chapter 6 Heterochromatin Positioning and Nuclear structure (pages 157–190): Emmanuel Vanrobays, Melanie Thomas and Christophe Tatout
Chapter 7 Telomeres in Plant Meiosis: Their constitution, Dynamics and serve as (pages 191–227): Nicola Y. Roberts, Kim Osman, F. Chris, H. Franklin, Monica Pradillo, Javier Varas, Juan L. Santos and Susan J. Armstrong
Chapter eight The Nuclear Pore advanced in Symbiosis and Pathogen Defence (pages 229–254): Andreas Binder and Martin Parniske

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Extra info for Annual Plant Reviews: Plant Nuclear Structure, Genome Architecture and Gene Regulation, Volume 46

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2005). , 2003; Schirmer and Gerace, 2005). , 1988) is a key link between the nuclear lamina and INM. , 2006). The N-terminus is located in the nucleoplasm and binds to lamin B and chromatin. Both LBR and its binding partners are absent from plants. In a recent review, Olins et al. (2010) provide evidence that LBR is conserved in organisms from the vertebrates including avians and amphibians to man, though it has not been detected in lower organisms and (of particular importance for this chapter) plants.

It is therefore of great importance to identify these components and study their functional relationships with the nucleoskeleton and chromatin. To date two INM intrinsic proteins – the SUN domain proteins AtSUN1 and AtSUN2 have been identified and their functions are discussed in following sections. 2). , 2010) and KASH domain proteins of the ONM. The two families interact through their respective SUN and KASH domains in the periplasmic space separating the two membranes. 3), KASH-domain proteins are more diverse, permitting interactions with a wide range of cytoskeletal elements (Starr and Fridolfsson, 2010).

2005) Archaeal cell cycle progress. Current Opinion in Microbiology 8, 662–668. I. J. (2008) A conserved mechanism for replication origin recognition and binding in Archaea. Biochemical Journal 409, 511–518. Margulis, L. (1971a) Symbiosis and evolution. Scientific American 225, 48–57. Margulis, L. (1971b) Origin of plant and animal cells. American Scientist 59, 230–235. Margulis, L. (1981) Symbiosis in Cell Evolution: Life and Its Environment on the Early Earth. H. Freeman, New York. J. F. (2007) Eukaryosis: phagocytosis and hydrogenases.

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