نتایج جستجو برای: transformed rose petal

تعداد نتایج: 82562  

Journal: :Applied Physics A 2023

Abstract Smart surfaces with externally controlled wettability patterns are ubiquitous building blocks for micro-/nanofluidic and lab-on-chip devices, among others. We develop hierarchical of ZnO nanorods grown on laser-microstructured silicon reversible photo-induced heat-induced wettability. The as-prepared superhydrophilic, very low water contact angles (~ 10°), transition to a wetting state...

2013
Yuri Tanaka Yoshimi Oshima Tomomichi Yamamura Masao Sugiyama Nobutaka Mitsuda Norihiro Ohtsubo Masaru Ohme-Takagi Teruhiko Terakawa

Cyclamen persicum (cyclamen) is a commercially valuable, winter-blooming perennial plant. We cloned two cyclamen orthologues of AGAMOUS (AG), CpAG1 and CpAG2, which are mainly expressed in the stamen and carpel, respectively. Cyclamen flowers have 5 petals, but expression of a chimeric repressor of CpAG1 (CpAG1-SRDX) caused stamens to convert into petals, resulting in a flower with 10 petals. B...

2013
S. Zamani M. Kazemi M. Aran

Effect of salicylic acid combined with glutamin on rose (Rosa Baccara) cut flowers was studied. The study was conducted in a factorial arrangement, carried out in a complete randomized design. The factors were Salicylic acid (0,1, 2 and 4 mM) and glutamin (0, 1.5 and 3 mM).The effects of treatments on the total chlorophyll content, ACC-Oxidase activity, anthocyanin leakage, membrane stability a...

Journal: :Horticulturae 2022

AGAMOUS-LIKE 24 (AGL24) is a key gene regulating floral transition, but its involvement in flower organ identity remains largely unknown. In this study, we found that RhAGL24 strongly related to petal and stamen development rose. Its expression increases rapidly at the primordium stage maintains high level until complete differentiation stage. silencing number of malformed petals decreases stam...

2013
Daofeng Liu Xiaojing Liu Yonglu Meng Cuihui Sun Hongshu Tang Yudong Jiang Muhammad Ali Khan Jingqi Xue Nan Ma Junping Gao

Dehydration is a major factor resulting in huge loss from cut flowers during transportation. In the present study, dehydration inhibited petal cell expansion and resulted in irregular flowers in cut roses, mimicking ethylene-treated flowers. Among the five floral organs, dehydration substantially elevated ethylene production in the sepals, whilst rehydration caused rapid and elevated ethylene l...

2017
Maryam Mirzaei Nima Ahmadi Abdolali Shojaeiyan Alireza Mazaheri Douglas D. Archbold

Damask rose (Rosa damascena Mill.) is an economically important species in the Rosaceae family for rose oil and rose water production, obtained exclusively from freshly-gathered Damask rose flowers. Iran is famous for producing organic rose essential oil, mainly used in the perfume industry and for folk medicines due to its healing properties. Due to their high perishability, postharvest handli...

Damask rose or Rosa damascena Herrm. is one of the most widely-used medicinal herbs in Iranian Traditional Medicine (ITM). Because of different types of phytochemicals such as flavonoids, glycosides, terpenes, and anthocyanins, R. damascena flowers have a wide range of pharmacological effects. Five traditional Rosa phytopharmaceuticals are “Golangebin”/ “Golq...

Journal: :Journal of Experimental Botany 2009
Siddharth Kaushal Tripathi Amar Pal Singh Aniruddha P. Sane Pravendra Nath

Cysteine proteases play an important role in several developmental processes in plants, particularly those related to senescence and cell death. A cysteine protease gene, RbCP1, has been identified that encodes a putative protein of 357 amino acids and is expressed in the abscission zone (AZ) of petals in rose. The gene was responsive to ethylene in petals, petal abscission zones, leaves, and t...

2017
Chiara Busà Jonathan James Stanley Rickard Eugene Chun Yaw Chong Viroshan Navaratnam Pola Goldberg Oppenheimer

The development of a robust, cost-effective, scalable and simple technique that enables the design and construction of well-controlled large area superhydrophobic surface structures which can be easily tuned from lotus-leaf to rose-petal state is essential to enable progress in realising the full applied potential of such surfaces. In this study, we introduce the tuneable carbon nanotubes-based...

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