000 04169nam a22004095i 4500
001 81284
003 ES-MaUEC
005 20230207040322.0
007 cr nn 008mamaa
008 141114s2015 gw | s |||| 0|eng d
020 _a9783319116112
024 7 _a10.1007/978-3-319-11611-2
_2doi
050 4 _aQK898.E58
_bP363 2015
100 1 _aPandey, Girdhar K.
_985242
_0Local
245 1 0 _aGTPases :
_bVersatile Regulators of Signal Transduction in Plants
_cby Girdhar K. Pandey, Manisha Sharma, Amita Pandey, Thiruvenkadam Shanmugam.
260 _aCham, Switzerland
_bSpringer
_c2015
300 _a1 recurso en línea (XI, 81 páginas)
_b18 ilustraciones en color
336 _aTexto
_btxt
_2rdacontent
337 _aelectrónico
_bc
_2rdamedia
338 _arecurso electrónico
_bcr
_2rdacarrier
490 0 _aSpringerBriefs in Plant Science
_x2192-1229
505 0 _aOverview of G Proteins (GTP binding proteins) in Eukaryotes -- Overview of SmallÂ{u7510}Pase Signaling Proteins in Plants -- Â{u9925}entification and Classification of Rho GTPases in Plants -- Sequence, Structure and Domain Analysis of GTPases in Plants -- Expression of Small GTPases Under Stress and Developmental Conditions in Plants -- Emerging Roles of Rho GTPases in Plants -- Cellular Localization of Small GTPases -- Functional Genomic Perspective of Small GTPases -- Systemic Approaches to Resolve Spatio-Temporal Regulation of GTPase Signaling -- Key Questions and Future Prospects.
520 3 _aG proteins are the key regulators for a wide range of cellular processes in animals and plants. In comparison to animals and yeast, plants have a single Rho-GTPase subfamily called Rho-like GTPases (ROPs). The ROP family of monomeric GTPases has emerged as a versatile and key regulator in plant signal transduction processes. During the past few yearsâ€{u0CF4}udies on plant RHO-type (ROP) GTPase have generated new insights into their role in diverse processes ranging from cytoskeletal organization, polar growth, development to stress and hormonal responses. Â{u3D35}dies have shown that plants have evolved specific regulators and effector molecules. ROP GTPases possess the ability to interact with these multiple regulator and effector molecules that ultimately determines their signaling specificity. Recently, genome wide studies in plants have shown that the Arabidopsis genome encodes 93, and rice has nearly 85 small GTPase homologs. And we have been able to identify four new homologs in the rice genome. Here, we focus on the complete phylogenetic, domain, structural and expression analysis during stress and various developmental processes of small GTPases in plants. The comparison of gene expression patterns of the individual members of the GTPase family may help to reveal potential plant specific signaling mechanisms and their relevance. Also, we are summarizing the role of currently known ROP GTPases and their interacting proteins with brief description, simultaneously, comparing their expression pattern based on microarray data. Overall, we will be discussing the functional genomic perspective of plant Rho like GTPases and their role in regulating several physiological processes such as stress, hormonal, pollen tube, root hair-growth and other developmental responses.
710 2 _aSpringerLink (Online service)
_0Local
_9106996
942 _2lcc
_cLE
988 _aEBOOK, EBSPRINGER, asignarmaterias_11febrero
650 7 _aGenética vegetal
_0
_2embne
_9139640
650 7 _aPatología vegetal
_0
_2embne
_9139455
650 2 7 _aGenética vegetal
_0
_2embne
_9139640
700 1 _aSharma, Manisha.
_993623
_0Local
700 1 _aPandey, Amita.
_985241
_0Local
700 1 _aShanmugam, Thiruvenkadam.
_993624
_0Local
856 4 0 _uhttps://go.openathens.net/redirector/universidadeuropea.es?url=https://link.springer.com/book/10.1007/978-3-319-11611-2
_zAcceso a este recurso digital (usuarios Universidad Europea de Madrid)
907 _a.b12898740
_b10-10-17
_c18-01-16
998 _am
_a_alco
_a_vill
_b - -
_cm
_dz
_e-
_feng
_ggw
_h0
945 _aQK898.E58 P363 2015 EB
_g1
_ieBOOK
_j0
_lmae
_o-
_pEUR0.00
_q-
_r-
_sb
_t15
_u0
_v0
_w0
_x0
_y.i11568367
_z06-04-17
999 _c81284
_d81284
_x1