This study has aimed to carry out the description of fruits and seeds and germination process of desert rose, from two years of observations. The fruits and seeds were characterized based on length, diameter and number of seeds per fruit. The seeds internal structure and germinating process were also described. Germination test was performed at 25 and 30 °C temperatures, determining the germination percentage and germination speed index. Seeds harvested in 2013 were stored for 12 months and submitted to a new germination test. Parallel to these tests, the seeds imbibition curve was determined in substrates over and between sheets of paper at 15, 20, 25 and 30 °C temperatures. The fruits and seeds had similar lengths and diameters in both years of observations. The seeds can be stored for up to 12 months without loss in viability and temperatures of 25 and 30 °C are suitable for performing the germination test of this species. The water absorption curve of desert rose seeds follows a triphasic pattern of soaking.
ResumoAs temperaturas ótimas para a germinação de sementes de cactos variam com a espécie. AbstractThe optimum temperature for germination of cacti vary with the species. With this work, we aimed to evaluate the seeds germination of pitaya genotypes under different temperatures. The used genotypes were: Hylocereus undatus (PB), H. polyrhizus (PV), Selenicereus megalanthus (PA), H. undatus x H. costaricensis (PH1) and H. costaricensis x H. undatus (PH2). For each genotype we used four replicates of 50 seeds, in a completely randomized design. The sowing was carried out on blotter paper in boxes type Gerbox ®, maintained at temperatures of 15, 20, 25, 30 and 35 o C constant and 15-25, 20-30 and 25-35 o C alternating with photoperiod 12 hours. The test lasted 30 days which were appraised the
Over the past decade the desert rose received fame in the flower market due to its striking and sculptural forms; however, the commercial production of these species is quite recent and little is known about its crop management, including substrates recommendation. The objectives of this study were to investigate the effect of different substrates on desert rose seed germination and production of its seedlings. Experiment I: freshly harvested seeds of desert rose were sown in different substrates e.g. sand, coconut fiber, semi-composted pine bark, sand + coconut fiber, semi-composted pine bark + sand and coconut fiber + semicomposted pine bark. These substrates were evaluated to study the emergence percentage of seeds, initial growth of seedlings and seedling emergence speed index (ESI). Experiment II: desert rose from the experiment I were transferred to plastic pots filled with the same substrates as in experiment I. The pH and electrical conductivity (EC) of the substrates were noted every 30 days while the growth parameters of seedlings were recorded after 240 days. Results from experiment I showed higher germination rate and seedling growth in substrates containing semi-composted pine bark. Similarly, in experiment II, better quality seedlings were observed in substrates containing semi-composted pine bark. Thus, for desert rose seed germination and seedling growth, it is recommended to use substrates containing semi-composted pine bark.
In the past decades, desert rose has become a very popular ornamental plant, especially among collectors, due to its exotic and sculptural forms. However, it has been grown on a commercial scale only recently, and little is known about how to best manage it as a container-grown plant, or even which potting medium (substrate) to recommend. Therefore, the aim of this study was to investigate the interactions between potting media and irrigation levels for growing desert rose as a potted ornamental plant. The experiment was conducted in a greenhouse using a 6 x 2 factorial arrangement with six replications, six potting media and two irrigation levels. The mixes were characterized by measuring their physical properties, specifically the density and water retention capacity (WRC), as well as chemical properties, such as the pH and electrical conductivity (EC). After 210 days, plant growth and plant water consumption were evaluated and measured. A lower dry density for the vermiculite mixes was observed in comparison to that for the sand mixes. However, WRC ranged from 428 to 528 mL L-1 among the mixes, values considered close to ideal. In general, plant growth exhibited higher increases in mixes consisting of coconut fiber + sand or vermiculite, regardless of the irrigation level. Mixes of vermiculite + coconut fiber and sand + coconut fiber can be used to grow desert rose in pots, as long as irrigation is used to maintain the moisture content of the potting medium (mix) between 60-70% and 80-90% of the WRC.
RESUMO:As orquídeas do gênero Vanda são apreciadas pela exuberância de suas floradas e, diferentemente de outras orquídeas, essas plantas, de crescimento lento e monopodial, não apresentam brotações laterais que dão origem a novas mudas, características estas que lhes conferem alto valor de mercado. Então, para produzi-las em escala comercial, é preciso recorrer às técnicas de propagação in vitro, em que o meio de cultura adequado é um dos fatores mais importantes para o desenvolvimento das plântulas. Plântulas de Vanda tricolor, aos 150 dias de idade, foram subcultivadas em meio MS e meios de cultura à base de fertilizantes comerciais, com e sem adição de polpa de banana 'Nanica' (100 g L -1 ). O delineamento experimental adotado foi o inteiramente casualizado, composto por 12 tratamentos e seis repetições, com sete plântulas. Aos 180 dias, avaliaram-se as variáveis: área foliar; número de folhas e raízes; comprimento médio do sistema radicular e a matéria seca das folhas, raízes e total. Conclui-se que é possível utilizar o meio simplificado à base de fertilizante Biofert ® (08-09-09) acrescido de polpa de banana em substituição ao meio MS para o desenvolvimento in vitro de V. tricolor.
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