مقاله انگلیسی رایگان در مورد هماهنگ کردن دیوار های سلولی و رشد سلول – NCBI 2018

 

مشخصات مقاله
انتشار مقاله سال 2018
تعداد صفحات مقاله انگلیسی 2 صفحه
هزینه دانلود مقاله انگلیسی رایگان میباشد.
منتشر شده در نشریه NCBI
نوع مقاله ISI
عنوان انگلیسی مقاله Coordinating Cell Walls and Cell Growth: A Role for LRX Extensin Chimeras
ترجمه عنوان مقاله هماهنگ کردن دیوار های سلولی و رشد سلول: یک نقش برای LRX Extensin Chimeras
فرمت مقاله انگلیسی  PDF
رشته های مرتبط کشاورزی، زیست شناسی
گرایش های مرتبط زراعت و اصلاح نباتات، علوم سلولی و مولکولی، فیزیولوژی گیاهی
مجله فیزیولوژی گیاهی – Plant Physiology
دانشگاه Department of Biology – Colorado State University – Colorado
کد محصول E7481
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بخشی از متن مقاله:
To regulate the addition of cell wall components as cells expand and to control changes in cell wall composition as cells differentiate, there must be a feedback system that senses the state of the cell wall and transmits this information. The mechanisms underlying cell wall-intracellular signaling remain enigmatic despite the fundamental importance of such a system for normal growth. Cell wall proteins must play a role in this process. The most abundant cell wall proteins are extensins, but their relatively simple structure and the fact that they are covalently cross-linked within the cell wall suggests that they have a role in stabilization rather than signaling. The LRX (for Leu-rich extensin chimera) proteins contain a C-terminal extensin domain and are tightly bound to cell walls, but their N-terminal Leu-rich repeat (LRR) domain presumably recognizes a ligand, and this interaction may participate in a cell wall signaling system (Rubinstein et al., 1995a, 1995b; Ringli, 2010). Consistent with this idea, genetic and biochemical studies have linked LRX proteins to cell growth and cell wall composition in growing root hairs and in overall plant growth (Baumberger et al., 2001; Draeger, et al., 2015). In this issue of Plant Physiology, Wang et al. (2018) and Fabrice et al. (2018) examine the role of LRX proteins in pollen tube growth. Pollen tubes growing in vitro constitute a powerful model system for probing cell wall signaling due to the ease of manipulating growth conditions and imaging pollen tube growth in real time. Both groups carefully analyzed triple and quadruple mutations in the four pollen-expressed LRX genes in Arabidopsis, LRX8, LRX9, LRX10, and LRX11. Their results clearly indicate that LRX proteins are required for pollen tube germination and growth, a conclusion also supported in a brief paper by Sede et al. (2018). Abnormalities in mutant pollen tube growth in vitro included pollen tube bulging, branching, and bursting, phenotypes congruent with defects in cell wall structure. Fabrice et al. delved deeper into mutant phenotypes, documenting abnormalities in pollen and pollen tube cell walls at the ultrastructural level, as well as abnormal vesicle dynamics in growing tubes, and a Ca21 spike just prior to pollen tube bursting.

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