983 resultados para Sunflower (Helianthus annuus L.)


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Pre-emptive breeding for host disease resistance is an effective strategy for combating and managing devastating incursions of plant pathogens. Comprehensive, long-term studies have revealed that virulence to the R (2) sunflower (Helianthus annuus L.) rust resistance gene in the line MC29 does not exist in the Australian rust (Puccinia helianthi) population. We report in this study the identification of molecular markers linked to this gene. The three simple sequence repeat (SSR) markers ORS795, ORS882, and ORS938 were linked in coupling to the gene, while the SSR marker ORS333 was linked in repulsion. Reliable selection for homozygous-resistant individuals was efficient when the three markers, ORS795, ORS882, and ORS333, were used in combination. Phenotyping for this resistance gene is not possible in Australia without introducing a quarantinable race of the pathogen. Therefore, the availability of reliable and heritable DNA-based markers will enable the efficient deployment of this gene, permitting a more effective strategy for generating sustainable commercial cultivars containing this rust resistance gene.

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Sunflower is an annual dicotyledonous plant, herbaceous, erect and native of North America. It is thermo- and photo-insensitive, hence, can be grown round the year in sub-tropical and tropical countries. Only two spp. H. annuus and H. tuberosum are cultivated for food, remaining spp. are ornamentals, weeds and wild plants. However, H. annuus is allelopathic and inhibit the growth and development of other plants thus reducing their productivity. Much information is available about the allelopathic effects of sunflower crop on following crops in crop rotations. Although it is harmful to all crops, but, is less harmful to crops of Graminae family than other families. It seems that the harmful effects of sunflower in crop rotations are due to release and accumulation of root exudates during crop growth in soil. Soil incorporation of its fresh (green manure) or dry biomass in soil is inhibitory to both crops and weed spp. Several allelochemicals have been characterized from the H. annuus, which inhibit the seed germination and seedling growth of A. albus, A. viridis, Agropyron repens (Elymus repens), Ambrosia artemsiifolia, Avena fatua, Celosia crustata, Chenopodium album, Chloris barbara, Cynodon dactylon, D. sanguinalis, Dactyloctenium ageyptium, Digitaria ciliaris, Echinochloa crus-galli, Flaveria australasica, Parthenium hysterophorus, Portulaca oleracea, Sida spinosa, Trianthema portulacastrum, Veronica perisca the inhibitory effects of this crop may be used for weed management with less herbicides for sustainable agriculture.

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向日葵原产自北美,通过人工培育,形成了具有不同遗传多态性的品种,是一种集观赏、药用、食用、油用于一体,经济价值很高的资源植物。前人已经利用传统育种、辐射育种以及现代生物技术手段对向日葵种质资源的开发和保护进行了深入研究,这也加速了向日葵新品种的选育。随着离子注入等新型辐射方式的出现,离子注入对向日葵的诱变育种研究逐渐成为向日葵新品种选育的一个新增长点。另外,作为世界四大油料作物之一,向日葵种子老化问题一直存在于向日葵种质资源保存过程。向日葵种子作为向日葵的主要物质储存库,除了含有丰富的油、脂肪酸外,还含有丰富的维生素E资源。提高向日葵种子维生素E含量可以延长向日葵种子保存时间,也可以提高向日葵的经济价值。本文以向日葵种子为实验材料,分别用蛋白质组学的方法和生理方法对N+注入后向日葵种子、人工衰老向日葵种子以及向日葵种子成熟过程中维生素E代谢进行了初步分析。 对N+注入后向日葵种子蛋白质组变异研究发现,对照种子蛋白中的No.29特异蛋白与MADS盒转录因子HAM59有23.48%的匹配率;处理种子中的No.279特异蛋白与亮氨酸拉链蛋白的同源蛋白HAHB-4有23.20%的匹配率。说明离子注入能引起向日葵种胚蛋白质组水平上的变异,以期对离子注入的诱变机制进行初步探讨,为进一步探讨离子注入对于DNA及蛋白质的是否存在诱变热点提供一些初步的证据。 种子在高温和高含水量情况下曝露数天诱发的加速衰老比一般衰老引起更多的生化分解;另一方面,在长期贮存条件下的低温贮存环境和种子低含水量可能使种子处于玻璃态。种子胞质的极高粘度和低分子运动能够阻止或抑制很多有害过程。尽管种子衰老的生理机制已有大量研究,但衰老过程中的主要过程和相互作用仍未完全清楚。本文报道向日葵种子在较宽范围的含水量和温度条件下的脂过氧化、非酶蛋白糖基化对种子衰老的影响;同时,对种子玻璃态在长期贮存中对生化分解的阻滞作用并由此延长种子存活力也进行了探讨;与此同时我们借用蛋白质组学手段对加速老化的向日葵种子进行蛋白质组变异分析,结果发现随着老化程度的加深,出现部分蛋白含量随之增加,同时老化速率随之下降。通过质谱鉴定发现其中两个蛋白分别与resistance gene analog NBS4和 NBS5具有一定的同源性。因此我们推测,在加速老化过程中,亦可出现一些延缓老化的蛋白质,同时这些蛋白的出现是否标志着加速老化过程中也存在“玻璃态”有待于进一步的证实。 另外,我们以20份向日葵种质资源为实验材料,通过对维生素E含量、含油率、皮壳率以及百粒重的测定及统计分析,试图了解向日葵种质资源中维生素E含量变异及相关数据。结果表明,在20份向日葵种质资源中,油葵的维生素E含量和含油率明显高于食葵;含油率与维生素E含量在0.01水平呈极显著正相关,含油率与百粒重在0.05水平呈显著负相关;百粒重与皮壳率在0.01水平呈极显著负相关。通过初步评价,发现3份富含天然维生素E的向日葵种质。为了提高向日葵种子中维生素E含量,我们对向日葵胚胎发育过程中维生素E的积累以及短时高温对维生素E代谢的影响做了分析。我们发现,生育酚含量在开花后12到33天期间呈线性增长,并于33天后基本达到最大值,直至种子成熟。在上述生育酚增长期,我们将以每7天作为一个时间单位,对向日葵种胚发育过程进行高温处理。我们发现,高温对维生素E积累具有明显的刺激作用(以干重为基础)。但是由于在开花后12到19天之内高温处理会极大的影响干重的增加,因此当温度超过35℃时,生育酚总量还是大大下降的。然而,35℃的高温在向日葵开花后12到19天内并没有影响种胚的干重,而大大提高了单粒种子中的生育酚含量。因此,这些结果说明,我们可以调整播种时间提高向日葵中生育酚的含量,从而提高向日葵油的品质和向日葵种质的价值。

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观赏向日葵作为一种新型花卉,具有巨大的市场开发潜力。而花色作为向日葵的重要观赏性状之一,对其的研究却比较少。本文从向日葵花色多样性、花色遗传规律、花色与虫媒传粉的关系及其对向日葵花色遗传的影响做了分析和讨论,利用英国皇家园艺学会比色卡和分光色差仪对向日葵的花色做了归类总结,并且利用高效液相色谱法对向日葵的花青苷成分做了分析研究。 本研究结果表明,彩色向日葵色系可以分为两大类,即黄色系和红色系,其中红色系向日葵的花色变异较小;而黄色系向日葵的花色变异较大,可以再细分为橙黄色和柠檬黄色两个亚类。利用高效液相色谱法测定了39份向日葵舌状花瓣中的花青苷大概有9种(A、B、C、D、E、F、G、H、I),这9种花青苷并不是在所有39份样品中都出现,且红色系向日葵中花青苷的种类较多。花青苷G在红色系和黄色系向日葵中均被检出。对红色向日葵花瓣的花青苷提取液进行多级质谱分析发现,花青苷元类型主要是矢车菊苷元,其糖苷类型主要是和葡萄糖、鼠李糖和/或阿拉伯糖结合;而在纯黄色的向日葵中通过多级质谱分析未检测到这些花青苷,说明矢车菊类花青苷是红色向日葵舌状花红色形成的化学基础。

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The development of research that aim to reduce or even eliminate the environmental impacts provided by anthropogenic actions. One of these main action is the discard of industrial waste in the biotic compartments such as soil, water and air, gained more space in academic settings and in private. A technique of phytoremediation involving the use of plants (trees, shrubs, creepers and aquatic) and their associated microorganisms in order to remove, degrade or isolate toxic substances to the environment. This study aimed to evaluate the potential for phytoremediation of castor bean (Ricinus communis L.) and sunflower (Helianthus annuus L.), wild crops suitable region of Rio Grande do Norte, to reduce concentrations of lead and toluene present in synthetic wastewater that simulate the characteristics of treated water production originated in the petrochemical Guamaré. The experiment was accomplished in randomized blocks in four replicates. Seeds of BRS Energy for the development of seedlings of castor beans and sunflower for Catissol 01, both provided by EMPARN (Empresa de Pesquisa Agropecuária do Rio Grande do Norte) were used. Lead concentrations tested were 250, 500 and 1000 mg/L called T2, T3 and T4, respectively, for toluene the concentrations used were 125, 256 and 501 μg/L, called T5, T6 and T7, respectively. The data for removal of lead in relation to sewage systems applied in castor bean and sunflower were 43.89 and 51.85% (T2), 73.60 and 73.74% (T3) and 85.66 and 87.80 % (T4), respectively, and toluene were approximately 52.12 and 25.54% (T5), 55.10 and 58.05% (T6) and 79.77 and 74.76% (T7) for castor and sunflower seeds, respectively. From the data obtained, it can be deduce that mechanisms involved in reducing the contaminants were of phytoextraction, in relation to lead and phytodegradation for toluene. However, it can be concluded that the castor bean and sunflower crops can be used in exhaust after-treatment of industrial effluents that have this type of contaminant

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Light interception is a major factor influencing plant development and biomass production. Several methods have been proposed to determine this variable, but its calculation remains difficult in artificial environments with heterogeneous light. We propose a method that uses 3D virtual plant modelling and directional light characterisation to estimate light interception in highly heterogeneous light environments such as growth chambers and glasshouses. Intercepted light was estimated by coupling an architectural model and a light model for different genotypes of the rosette species Arabidopsis thaliana (L.) Heynh and a sunflower crop. The model was applied to plants of contrasting architectures, cultivated in isolation or in canopy, in natural or artificial environments, and under contrasting light conditions. The model gave satisfactory results when compared with observed data and enabled calculation of light interception in situations where direct measurements or classical methods were inefficient, such as young crops, isolated plants or artificial conditions. Furthermore, the model revealed that A. thaliana increased its light interception efficiency when shaded. To conclude, the method can be used to calculate intercepted light at organ, plant and plot levels, in natural and artificial environments, and should be useful in the investigation of genotype-environment interactions for plant architecture and light interception efficiency. This paper originates from a presentation at the 5th International Workshop on FunctionalStructural Plant Models, Napier, New Zealand, November 2007.

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RESUMO: O presente trabalho teve como objetivo avaliar genótipos de girassol semeados em segunda safra no ano de 2014 em Campo Novo do Parecis ? MT, no campo experimental do Instituto Federal de Educação Ciência e Tecnologia de Mato Grosso. O delineamento experimental utilizado foi o de blocos casualizados, com 16 tratamentos (16 genótipos) e quatro repetições. As parcelas experimentais foram constituídas de 4 linhas com 6,5 m de comprimento, com espaçamento entrelinhas de 0,45 m, contendo área de 11,7 m², totalizando uma área de 748m². Foi utilizada a população de 45000 plantas por hectare. Os dados foram submetidos à análise de variância e ao teste Scott-Knott, a 5% de probabilidade. Para a massa de mil aquênios, os genótipos que se destacaram foram BRS 323, MG 360 e M734 enquanto que as os mais produtivos foram os genótipos MG 360, AGUARÁ 06, MG 305, AGUARÁ 04, CF 101, SYN 045, GNZ NEON, HELIO 251 e SYN 3950HO. ABSTRACT: This study aimed to evaluate genotypes of sunflower seeded second harvest in the year 2014 in Campus Campo Novo do Parecis, in the experimental field of the Instituto Federal de Educação Ciência e Tecnologia de Mato Grosso. The experimental design was a randomized block design with treatments 16 (16 genotypes) and four replications. The experimental plots consisted of four rows 6.5 m long with row spacing of 0.45 m, containing area of 11.7 m², totaling an area of 748 m². The population of 45000 plants per hectare is used. Data were subjected to analysis of variance and the Scott - Knott test at 5 % probability. For the mass of thousand achenes, genotypes that stood out were BRS 323, MG 360 and M734 while the most productive genotypes were the MG 360, AGUARÁ 06, MG 305, AGUARÁ 04, CF 101, SYN 045, GNZ NEON, HELIO 251 and SYN 3950HO.

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The aim of the study was to determine the time-dependent formation of arsenic-phytochelatin (As-PC) complexes in the roots, stems and leaves of an arsenic-nontolerant plant (Helianthus annuus) during exposure to 66 mol l(-1) arsenite (As(III)) or arsenate (As(V)). We used our previously developed method of simultaneous element-specific (inductively coupled plasma mass spectrometry, ICP-MS) and molecular-specific (electrospray-ionization mass spectrometry, ES-MS) detection systems interfaced with a suitable chromatographic column and eluent conditions, which enabled us to identify and quantify As-PC complexes directly. Roots of As-exposed H. annuus contained up to 14 different arsenic species, including the complex of arsenite with two (gamma-Glu-Cys)(2)-Gly molecules [As((III))-(PC(2))(2)], the newly identified monomethylarsonic phytochelatin-2 or (gamma-Glu-Cys)(2)-Gly CH(3)As (MA((III))-PC(2)) and at least eight not yet identified species. The complex of arsenite with (gamma-Glu-Cys)(3)-Gly (As((III))-PC(3)) and the complex of arsenite with glutathione (GSH) and (gamma-Glu-Cys)(2)-Gly (GS-As((III))-PC(2)) were present in all samples (roots, stems and leaves) taken from plants exposed to As. The GS-As((III))-PC(2) complex was the dominant complex after 1 h of exposure. As((III))-PC(3) became the predominant As-PC complex after 3 h, binding up to 40% of the As present in the exposed plants. No As-PC complexes were found in sap (mainly xylem sap from the root system), in contrast to roots, stems and leaves, which is unequivocal evidence that As-PC complexes are not involved in the translocation of As from root to leaves of H. annuus.

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Oilseeds are a high-value natural resource, due to its use as a substitute for petroleum. However, the storage time can reduce seed viability and oil quality. Therefore, scientific efforts have been made to provide a increment of storage time, germination rates and plant establishment of high-value oilseeds. The seedling establishment depends of the plant pass over the functional transition stage, characterized by a metabolic change from heterotrophic condition to autotrophic one. The storage oil mobilization is performed by β-oxidation process and the glyoxylate cycle. Also, the functional transition involves acclimation to photosynthetic condition, which generally includes the participation of antioxidant system and the reactive oxygen species, the latter are produced in various reactions of primary and secondary metabolism. In the present study, Catalase was inhibited during the functional transition of sunflower and safflower, after were performed many analyzes to elucidate the effects caused on the SOD and APX antioxidant systems. Also, were checked the changes in expression pattern of the glyoxylate cycle enzymes markers, ICL and MLS. It was observed that after CAT inhibition, the SOD and APX antioxidant systems allow the seedling establishment. Besides, was verified that both oilseeds can be accelerate the reverse mobilization and the photosynthetic establishment when Catalase activity has dramatically decreased

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O efeito de doses crescentes de nitrogênio, fósforo e potássio, bem como de suas interações, no desenvolvimento de plantas de girassol, variedade Uruguai, foi estudado através de um experimento em vasos, como solo LVa, em Botucatu, SP. O nitrogênio e o fósforo, tanto isoladamente como em combinações influíram decisivamente nos parâmetros estudados, a saber, altura, numero de folhas, pesos de matéria seca e matéria verde das diferentes partes da planta. A influência do potássio foi relativamente pequena e verificada nos pesos de matéria seca do caule e de matéria seca da parte aérea total das plantas e no peso da água dos limbos foliares; esta influência foi constatada apenas quando em presença da dose mais alta de fósforo (166 ppm de P).