نتایج جستجو برای: abaxial epidermis

تعداد نتایج: 17657  

Journal: :Plant physiology 1989
T Vani A S Raghavendra

The stomata in the abaxial epidermis of Vicia faba were examined for the location of redox systems using tetrazolium salts. Three distinct redox systems could be demonstrated: chloroplast, mitochondrial, and plasmalemma. The chloroplast activity required light and NADP. Mitochondrial activity required added NADH and was suppressed by preincubation with KCN. The plasmalemma redox system in guard...

Journal: :Journal of Experimental Botany 2008
Nicole M. Hughes Thomas C. Vogelmann William K. Smith

A red/purple coloration of lower (abaxial) leaf surfaces is commonly observed in deeply-shaded understorey plants, especially in the tropics. However, the functional significance of red abaxial coloration, including its role in photosynthetic adaptation, remains unclear. The objective of this study was to test the back-scatter hypothesis for abaxial leaf coloration, which posits that red pigmen...

2011
Zhongyuan Liu Liguo Jia Han Wang Yuke He

HYPONASTIC LEAVES1 (HYL1) is an important regulator of microRNA (miRNA) biogenesis. Incurvature of rosette leaves in loss-of-function mutants of HYL1 implicates the regulation of leaf flatness by HYL1 via miRNA pathways. Recent studies have identified jba-1D, jaw-1D, and oe-160c, the dominant mutants of MIR166g, MIR319a, and MIR160c genes, respectively, which display three types of leaf curvatu...

2014
Ana Maria Rocha de Almeida Roxana Yockteng James Schnable Elena R. Alvarez-Buylla Michael Freeling Chelsea D. Specht

The molecular genetic mechanisms underlying abaxial-adaxial polarity in plants have been studied as a property of lateral and flattened organs, such as leaves. In leaves, laminar expansion occurs as a result of balanced abaxial-adaxial gene expression. Over- or under- expression of either abaxializing or adaxializing genes inhibits laminar growth, resulting in a mutant radialized phenotype. Her...

Journal: :Development 2003
Lin Xu Yi Xu Aiwu Dong Yue Sun Limin Pi Yuquan Xu Hai Huang

The shoot apical meristem (SAM) of seed plants is the site at which lateral organs are formed. Once organ primordia initiate from the SAM, they establish polarity along the adaxial-abaxial, proximodistal and mediolateral axes. Among these three axes, the adaxial-abaxial polarity is of primary importance in leaf patterning. In leaf development, once the adaxial-abaxial axis is established within...

ژورنال: تحقیقات دامپزشکی 2010

به‌دلیل اهمیت بسیار زیادی که ساختار عروقی در بررسی پاتوژنز بیماری‌هایی مانند لامینیت (‌(Laminitis و زخم کف سم دارد، شناخت این ساختارها کاملاً ضروری به‌نظر می‌رسد. مقالات منتشر شده در مورد ساختار عروقی در گوسفند اندک است. اندام خلفی 15 بره 3 ماهه از محل مفصل تارس جدا شد. با جدا کردن سرخرگ ‌ Dorsal metatarsal artery ابتدا سالین جهت شستشو و سپس رزین متاکریلات برای تشکیل کست تزریق شد. سرخرگ‌های Dors...

2012
Maria Jose Rodríguez-López Elisa Garzo Jean Patrick Bonani Rafael Fernández-Muñoz Enrique Moriones Alberto Fereres

BACKGROUND The whitefly Bemisia tabaci (Genn.) causes dramatic damage to plants by transmitting yield-limiting virus diseases. Previous studies proved that the tomato breeding line ABL 14-8 was resistant to B. tabaci, the vector of tomato yellow leaf curl disease (TYLCD). This resistance is based on the presence of type IV glandular trichomes and acylsucrose production. These trichomes deter se...

2011
Li Wang Xiaolu Gu Deyang Xu Wei Wang Hua Wang Minhuan Zeng Zhaoyang Chang Hai Huang Xiaofeng Cui

In plants, cell proliferation and polarized cell differentiation along the adaxial-abaxial axis in the primordium is critical for leaf morphogenesis, while the temporal-spatial relationships between these two processes remain largely unexplored. Here, it is reported that microRNA396 (miR396)-targeted Arabidopsis growth-regulating factors (AtGRFs) are required for leaf adaxial-abaxial polarity i...

Journal: :Plant physiology 2004
Patrick Sieber Michael Petrascheck Alcide Barberis Kay Schneitz

Plant lateral organs exhibit proximal-distal and adaxial-abaxial polarity. In Arabidopsis, abaxial cell fate is regulated in part by putative transcription factors of the YABBY family, such as FILAMENTOUS FLOWER (FIL) and INNER NO OUTER (INO), by a mechanism that currently is not fully understood. NOZZLE (NZZ) encodes a plant-specific nuclear protein. Genetic evidence has shown that NZZ is invo...

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