980 resultados para Root production
Resumo:
Propagation of subtropical eucalypts is often limited by low production of rooted cuttings in winter. This study tested whether changing the temperature of Corymbia citriodora and Eucalyptus dunnii stock plants from 28/23A degrees C (day/night) to 18/13A degrees C, 23/18A degrees C or 33/28A degrees C affected the production of cuttings by stock plants, the concentrations of Ca and other nutrients in cuttings, and the subsequent percentages of cuttings that formed roots. Optimal temperatures for shoot production were 33/28A degrees C and 28/23A degrees C, with lower temperatures reducing the number of harvested cuttings. Stock plant temperature regulated production of rooted cuttings, firstly by controlling shoot production and, secondly, by affecting the ensuing rooting percentage. Shoot production was the primary factor regulating rooted cutting production by C. citriodora, but both shoot production and root production were key determinants of rooted cutting production in E. dunnii. Effects of lower stock plant temperatures on rooting were not the result of reduced Ca concentration, but consistent relationships were found between adventitious root formation and B concentration. Average rooting percentages were low (1-15% for C. citriodora and 2-22% for E. dunnii) but rooted cutting production per stock plant (e.g. 25 for C. citriodora and 52 for E. dunnii over 14 weeks at 33/28A degrees C) was sufficient to establish clonal field tests for plantation forestry.
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Fine roots play an important part in forest carbon, nutrient and water cycles. The turnover of fine roots constitutes a major carbon input to soils. Estimation of fine root turnover is difficult, labour intensive and is often compounded by artefacts created by soil disturbance. In this work, an alternative approach of using inclusion nets installed in an undisturbed soil profile was used to measure fine root production and was compared to the in-growth core method. There was no difference between fine root production estimated by the two methods in three southern taiga sites with contrasting soil conditions and tree species composition in the Central Forest State Biosphere Reserve, Russia. Expressed as annual production over standing biomass, Norway spruce fine root turnover was in the region of 0.10 to 0.24 y-1. The inclusion net technique is suitable for field based assessment of fine root production. There are several advantages over the in-growth core method, due to non-disturbance of the soil profile and its potential for very high rate of replication.
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Allochthonous Norway spruce stands in the Kysucké Beskydy Mts. (north-western Slovakia) have been exposed to substantial acid deposition in the recent past and grow in acidified soil conditions with mean pH of about 4.0 in the topsoil. We selected 90 spruce trees representing 30 triples of different crown status: healthy, stressed and declining to assess the relationship between crown and fine root status. Sequential coring and in-growth bags were applied to each triplet to investigate fine root biomass and growth in the soil depths of 0-10 and 10-20 cm. Fine root quantity (biomass and necromass), turnover (production over standing stock), morphological features (specific root length, root tip density) and chemical properties (Ca:Al molar ratio) were compared among the abovementioned health status categories. Living fine root biomass decreased with increasing stress, while the ratio of living to dead biomass increased. Annual fine root production decreased and specific root length increased in stressed trees when compared to healthy or declining trees, a situation which may be related to the position of trees in the canopy (healthy and declining – dominant, stressed – co-dominant). The Ca:Al ratio decreased with increasing crown damage, indicating a decreased ability to filter out aluminium. In conclusion, fine root status appears to be linked to visible crown damage and can be used as a tree health indicator.
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Zinc (Zn)-deficient soils constrain rice (Oryza sativa) production and cause Zn malnutrition. The identification of Zn-deficiency-tolerant rice lines indicates that breeding might overcome these constraints. Here, we seek to identify processes underlying Zn-deficiency tolerance in rice at the physiological and transcriptional levels. A Zn-deficiency-tolerant line RIL46 acquires Zn more efficiently and produces more biomass than its nontolerant maternal line (IR74) at low Zn(ext) under field conditions. We tested if this was the result of increased expression of Zn(2+) transporters; increased root exudation of deoxymugineic acid (DMA) or low-molecular-weight organic acids (LMWOAs); and/or increased root production. Experiments were performed in field and controlled environment conditions. There was little genotypic variation in transcript abundance of Zn-responsive root Zn(2+)-transporters between the RIL46 and IR74. However, root exudation of DMA and LMWOA was greater in RIL46, coinciding with increased root expression of putative ligand-efflux genes. Adventitious root production was maintained in RIL46 at low Zn(ext), correlating with altered expression of root-specific auxin-responsive genes. Zinc-deficiency tolerance in RIL46 is most likely the result of maintenance of root growth, increased efflux of Zn ligands, and increased uptake of Zn-ligand complexes at low Zn(ext); these traits are potential breeding targets.
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We present a simple, generic model of annual tree growth, called "T". This model accepts input from a first-principles light-use efficiency model (the "P" model). The P model provides values for gross primary production (GPP) per unit of absorbed photosynthetically active radiation (PAR). Absorbed PAR is estimated from the current leaf area. GPP is allocated to foliage, transport tissue, and fine-root production and respiration in such a way as to satisfy well-understood dimensional and functional relationships. Our approach thereby integrates two modelling approaches separately developed in the global carbon-cycle and forest-science literature. The T model can represent both ontogenetic effects (the impact of ageing) and the effects of environmental variations and trends (climate and CO2) on growth. Driven by local climate records, the model was applied to simulate ring widths during the period 1958–2006 for multiple trees of Pinus koraiensis from the Changbai Mountains in northeastern China. Each tree was initialised at its actual diameter at the time when local climate records started. The model produces realistic simulations of the interannual variability in ring width for different age cohorts (young, mature, and old). Both the simulations and observations show a significant positive response of tree-ring width to growing-season total photosynthetically active radiation (PAR0) and the ratio of actual to potential evapotranspiration (α), and a significant negative response to mean annual temperature (MAT). The slopes of the simulated and observed relationships with PAR0 and α are similar; the negative response to MAT is underestimated by the model. Comparison of simulations with fixed and changing atmospheric CO2 concentration shows that CO2 fertilisation over the past 50 years is too small to be distinguished in the ring-width data, given ontogenetic trends and interannual variability in climate.
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Root respiration uses a significant proportion of photosynthetically fixed carbon (C) and is a globally important source of C liberated from soils. Mangroves, which are an important and productive forest resource in many tropical and subtropical countries, sustain a high ratio of root to shoot biomass which may indicate that root respiration is a particularly important component in mangrove forest carbon budgets. Mangroves are often exposed to nutrient pollution from coastal waters. Here we assessed the magnitude of fine root respiration in mangrove forests in Belize and investigated how root respiration is influenced by nutrient additions. Respiration rates of excised fine roots of the mangrove, Rhizophora mangle L., were low (4.01 +/- 0.16 nmol CO2 g(-1) s(-1)) compared to those measured in temperate tree species at similar temperatures. In an experiment where trees where fertilized with nitrogen (N) or phosphorus (P) in low productivity dwarf forests (1-2 m height) and more productive, taller (47 m height) seaward fringing forests, respiration of fine roots did not vary consistently with fertilization treatments or with forest stature. Fine roots of taller fringe trees had higher concentrations of both N and P compared to dwarf trees. Fertilization with P enhanced fine root P concentrations in both dwarf and fringe trees, but reduced root N concentrations compared to controls. Fertilization with N had no effect on root N or P concentrations. Unlike photosynthetic C gain and growth, which is strongly limited by P availability in dwarf forests at this site, fine root respiration (expressed on a mass basis) was variable, but showed no significant enhancements with nutrient additions. Variation in fine root production and standing biomass are, therefore, likely to be more important factors determining C efflux from mangrove sediments than variations in fine root respiration per unit mass.
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Patterns of mangrove vegetation in two distinct basins of Florida Coastal Everglades (FCE), Shark River estuary and Taylor River Slough, represent unique opportunities to test hypotheses that root dynamics respond to gradients of resources, regulators, and hydroperiod. We propose that soil total phosphorus (P) gradients in these two coastal basins of FCE cause specific patterns in belowground biomass allocation and net primary productivity that facilitate nutrient acquisition, but also minimize stress from regulators and hydroperiod in flooded soil conditions. Shark River basin has higher P and tidal hydrology with riverine mangroves, in contrast to scrub mangroves of Taylor basin with more permanent flooding and lower P across the coastal landscape. Belowground biomass (0–90 cm) of mangrove sites in Shark River and Taylor River basins ranged from 2317 to 4673 g m-2, with the highest contribution (62–85%) of roots in the shallow root zone (0–45 cm) compared to the deeper root zone (45–90 cm). Total root productivity did not vary significantly among sites and ranged from 407 to 643 g m-2 y-1. Root production in the shallow root zone accounted for 57–78% of total production. Root turnover rates ranged from 0.04 to 0.60 y-1 and consistently decreased as the root size class distribution increased from fine to coarse roots, indicating differences in root longevity. Fine root biomass was negatively correlated with soil P density and frequency of inundation, whereas fine root turnover decreased with increasing soil N:P ratios. Lower P availability in Taylor River basin relative to Shark River basin, along with higher regulator and hydroperiod stress, confirms our hypothesis that interactions of stress from resource limitation and long duration of hydroperiod account for higher fine root biomass along with lower fine root production and turnover. Because fine root production and organic matter accumulation are the primary processes controlling soil formation and accretion in scrub mangrove forests, root dynamics in the P-limited carbonate ecosystem of south Florida have a major controlling role as to how mangroves respond to future impacts of sealevel rise.
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Turfgrasses range from extremely salt sensitive to highly salt tolerant. However, the selection of a salt tolerant turf is not a 'silver bullet' solution to successful turf growth on salt-affected parklands. Interactions between factors such as cultivar, construction practices, establishment, and maintenance can be complex and should not be considered in isolation of one another. Taking this holistic approach, a study investigating cultivar evaluation for salt-affected sites also included a comparison of topsoil materials as turf underlay, as well as pre-treatment of the sod. The turf species and cultivars used in the study were: Cynodon dactylon, cultivar 'Oz Tuff (I) '; Paspalum vaginatum, cultivars 'Sea Isle 1 (I) ' and 'Velvetene (I) '; Zoysia matrella cultivar 'A-1 (I) '; and Zoysia japonica, cultivar 'Empire (I) '. The two underlay materials were compost (100%) or a sandy clay topsoil each applied above a coastal sand profile to a depth of 10 cm. Rooting depth or root dry weight did not significantly differ among turf cultivars. Compost profile treatment had significantly greater root mass than the topsoil among all turf cultivars. This higher root production was reflected by improved quality of all turf at the final evaluation. Turfgrass grown on compost had a higher normalised difference vegetation index (NDVI), regardless of whether full sod or bare-rooted turfgrass was used. The use of a quality underlay was paramount to the successful growth of the turf cultivars investigated. While each cultivar had superior performance in sub-optimal conditions, the key to success was the selection of the right species and cultivar for each situation combined with proper establishment and maintenance of each turf grass.
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O gênero Passiflora ocorre principalmente em regiões de clima tropical, sendo o Brasil um importante centro de diversidade. Passiflora foetida L. é uma espécie silvestre que apresenta características de interesse ornamental e medicinal. O objetivo deste trabalho foi o estabelecimento de sistemas de cultura de tecidos e criopreservação para P. foetida. Explantes caulinares foram excisados de culturas primárias obtidas a partir de plântulas derivadas da germinação in vitro. Para isso foram inoculados em meio MSM, suplementado com diferentes concentrações de ANA, PIC, TDZ e BAP utilizado isoladamente ou em combinação com ANA, e mantidos na presença ou ausência de luz. Foi observada a produção de brotos, calos e raízes adventícias, de acordo com o tipo e a concentração do regulador de crescimento testado e da condição de cultura utilizada. A produção de plantas ocorreu via organogênese direta e indireta em resposta a BAP, enquanto que a formação de calos não morfogênicos foi observada a partir de ambos explantes em resposta a PIC. A produção de raízes adventícias ocorreu em resposta a ANA. Tendo em vista a produção de raízes observada em meio sólido, segmentos internodais foram inoculados em meio líquido suplementado com diferentes auxinas e mantidos em imersão contínua ou sobre pontes de papel de filtro. A maior taxa de multiplicação de raízes foi observada a partir de entrenós mantidos no sistema de ponte de papel de filtro, em resposta a ANA. Segmentos radiculares excisados das culturas primárias também foram utilizados visando à produção de brotos e a multiplicação de raízes. Contudo, apenas foi observada a formação de gemas, sem posterior desenvolvimento de brotos. Além disso, a capacidade proliferativa dos segmentos radiculares inoculados em meio suplementado com ANA foi menor que a obtida a partir dos entrenós cultivados nas mesmas condições. Neste trabalho, foram também testados diferentes protocolos de criopreservação para ápices caulinares de P. foetida por meio de vitrificação e encapsulamento-vitrificação. A recuperação de plantas pós-congelamento foi observada unicamente a partir de ápices encapsulados e expostos à solução de vitrificação PVS2 por 120 minutos. Tendo em vista o potencial medicinal já descrito para P. foetida, através dos diferentes sistemas de cultura desenvolvidos neste trabalho serão obtidos materiais para a avaliação de diferentes atividades biológicas.
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Cleome spinosa é uma espécie herbácea de uso na medicina popular, especialmente no Nordeste do Brasil. A cultura in vitro de raízes adventícias da espécie foi iniciada com segmentos radiculares (0,5 e 1,0 cm) obtidos a partir de duas fontes de explantes: plantas propagadas in vitro e plantas oriundas do processo de germinação in vitro. Os explantes foram inoculados em meio MS líquido suplementado ou não com as auxinas ANA, AIA e AIB em diferentes concentrações (0,5; 1,0; 1,5; 3,0; 5,0 mg.L-1). As culturas foram mantidas em sala de crescimento, sob agitação (100 rpm) e sob fotoperíodo de 16h ou no escuro, com subculturas a cada 45 dias. Explantes oriundos de plantas propagadas in vitro também foram cultivados em meio contendo a citocinina BAP em associação com auxinas, na presença de sorbitol (isoladamente ou em associação com sacarose), em meio MS contendo redução na concentração total de sais minerais (MS1/2 e MS1/4) e em meio sólido. Os resultados mostraram que a adição de auxinas ao meio de cultura foi essencial à multiplicação das raízes, uma vez que em meio MS0 ocorreu significativo desenvolvimento de brotos. A suplementação com ANA não foi eficiente para a produção de raízes e acarretou no calejamento dos explantes, enquanto que a presença de AIA e AIB resultaram na multiplicação das raízes. Ainda assim, independentemente das manipulações realizadas no meio de cultivo, a capacidade de multiplicação mostrou-se reduzida. Uma expressiva multiplicação de raízes foi observada em culturas iniciadas a partir de explantes oriundos de plantas obtidas por germinação in vitro. A maior produção de biomassa foi alcançada em culturas iniciadas com segmentos radiculares de plantas obtidas por germinação in vitro cultivadas em meio contendo com 3,0 mg.L-1 de AIB e mantidas no escuro. Culturas estabelecidas nas melhores condições para acúmulo de biomassa foram acompanhadas por três subculturas, sendo avaliados períodos de cultura de 45 dias e de 60 dias. Culturas mantidas a intervalos de 45 dias apresentaram maior produção de raízes durante a segunda subcultura, enquanto que para o intervalo de 60 dias, embora tenha sido observada a capacidade de multiplicação das raízes, a maior produção de biomassa ocorreu nos primeiros 60 dias de cultivo. A partir de materiais in vivo e in vitro foram realizadas extrações com solventes de polaridade crescente (hexano, diclorometano, acetato de etila e metanol) e os extratos foram submetidos a avaliações cromatográficas. As análises por cromatografia em camada delgada mostraram a presença de terpenos nos extratos obtidos com hexano e diclorometano, tanto em material obtido a campo como naqueles produzidos in vitro e de compostos fenólicos nos extratos em acetato de etila obtidos a partir de material de campo. Pelas análises por cromatografia líquida associada à espectrometria de massas foi possível observar a presença de flavonoides nas culturas in vitro, não detectados no material de campo. As análises por cromatografia de fase gasosa associada à espectrometria de massas apontaram a presença de esteroides nos extratos em hexano de raízes coletadas a campo e nas culturas in vitro de raízes. Os resultados obtidos mostraram a viabilidade da produção de culturas de raízes in vitro para a espécie C. spinosa e o potencial deste material para a produção de substâncias bioativas, algumas não encontradas em material coletado a campo
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The response of arsenate and non-tolerant Holcus lanatus L. phenotypes, where tolerance is achieved through suppression of high affinity phosphate/arsenate root uptake, was investigated under different growth regimes to investigate why there is a polymorphism in tolerance found in populations growing on uncontaminated soil. Tolerant plants screened from an arsenic uncontaminated population differed, when grown on the soil from the populations origin, from non-tolerants, in their biomass allocation under phosphate fertilization: non-tolerants put more resources into tiller production and down regulated investment in root production under phosphate fertilization while tolerants tillered less effectively and did not alter resource allocation to shoot biomass under phosphate fertilization. The two phenotypes also differed in their shoot mineral status having higher concentrations of copper, cadmium, lead and manganese, but phosphorus status differed little, suggesting tight homeostasis. The polymorphism was also widely present (40%) in other wild grass species suggesting an important ecological role for this gene that can be screened through plant root response to arsenate.
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Background Entry into mitosis is regulated by cyclin dependent kinases that in turn are phosphoregulated. In most eukaryotes, phosphoregulation is through WEE1 kinase and CDC25 phosphatase. In higher plants a homologous CDC25 gene is unconfirmed and hence the mitotic inducer Schizosaccharomyces pombe (Sp) cdc25 has been used as a tool in transgenic plants to probe cell cycle function. Expression of Spcdc25 in tobacco BY-2 cells accelerates entry into mitosis and depletes cytokinins; in whole plants it stimulates lateral root production. Here we show, for the first time, that alterations to cytokinin and ethylene signaling explain the rooting phenotype elicited by Spcdc25 expression in Arabidopsis. Results Expressing Spcdc25 in Arabidopsis results in increased formation of lateral and adventitious roots, a reduction of primary root width and more isodiametric cells in the root apical meristem (RAM) compared with wild type. Furthermore it stimulates root morphogenesis from hypocotyls when cultured on two way grids of increasing auxin and cytokinin concentrations. Microarray analysis of seedling roots expressing Spcdc25 reveals that expression of 167 genes is changed by > 2-fold. As well as genes related to stress responses and defence, these include 19 genes related to transcriptional regulation and signaling. Amongst these was the up-regulation of genes associated with ethylene synthesis and signaling. Seedlings expressing Spcdc25 produced 2-fold more ethylene than WT and exhibited a significant reduction in hypocotyl length both in darkness or when exposed to 10 ppm ethylene. Furthermore in Spcdc25 expressing plants, the cytokinin receptor AHK3 was down-regulated, and endogenous levels of iPA were reduced whereas endogeous IAA concentrations in the roots increased. Conclusions We suggest that the reduction in root width and change to a more isodiametric cell phenotype in the RAM in Spcdc25 expressing plants is a response to ethylene over-production. The increased rooting phenotype in Spcdc25 expressing plants is due to an increase in the ratio of endogenous auxin to cytokinin that is known to stimulate an increased rate of lateral root production. Overall, our data reveal important cross talk between cell division and plant growth regulators leading to developmental changes.
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Le but de cette étude est de comprendre l’effet d’une irrigation par les eaux usées et /ou de la fertilisation par les engrais chimiques sur la productivité aérienne et souterraine d’une plantation de saule Salix miyabeana SX67 en CICR dans un contexte de filtre végétal. Nous avons d’une part évalué l’impact de diverses doses d’eau usées et/ou de la fertilisation minérale sur les rendements en biomasse ligneuse d’une culture de saules au cours d’un cycle de croissance de deux ans. D’autre part et pour la même période nous avons comparé le développement racinaire (biomasse, morphologie et distribution dans le sol) suite aux divers traitements. Les résultats ont montré qu’au terme de deux ans de croissance, les traitements par les eaux usées aussi bien que celle par les engrais a permis l’augmentation des rendements de la biomasse aérienne de notre culture de saules avec un effet plus prononcé suite au traitements des eaux usées qu’à celui du fertilisant chimique. Nous avons mesuré des productivités en biomasse aussi élevées que 39,4 Mg ha-1 et 54,7 Mg ha-1 et ce pour les parcelles qui ont reçu la plus grande quantité d'eaux usées, respectivement pour les saules non fertilisé et fertilisé (D3-NF et D3-F). La majeure partie du système racinaire était en superficie avec 92-96% des racines (racine fine et racine grosse) concentrées dans les premiers 40 cm de sol et nous avons trouvé que la biomasse des racines fines était comprise entre 1,01 et 1,99 Mg ha-1. Généralement la fertilisation chimique n’a pas eu d’effet sur les rendements en biomasse des racines totales et/ou fines. Bien que l’irrigation par les eaux usées ait entraîné une réduction statistiquement significative de la biomasse racinaire, néanmoins cette réduction n'était pas linéaire (avec une réduction de la biomasse de D0 à D1, une augmentation de D1 à D2 pour réduire de nouveau de D2 à D3). Cette tendance porte à penser qu'au-delà d'une certaine quantité d'eau et de nutriments (suite à l’irrigation par les eaux usées), le développement du système racinaire des saules est affecté négativement, et bien que la biomasse aérienne soit restée élevée sous le traitement D3, nous pensons que le développement de la plante a été quelque peu déséquilibré. Aucun changement significatif n'a été constaté dans les traits morphologiques liés à l'irrigation par les eaux usées.
Influência do armazenamento de ramas para plantio em algumas características agronômicas da mandioca
Resumo:
Nas condições do Estado de São Paulo é freqüente o armazenamento de ramas de mandioca (Manihot esculenta Crantz) para aguardar a melhor oportunidade de efetuar o plantio. Utilizam-se os sistemas de empilhamento horizontal e vertical, sendo mais comum o primeiro. Raramente, empregam-se ramas recém-colhidas para plantio. 0 presente trabalho teve por objetivo estudar o efeito do material de plantio em alguns parâmetros fitotécnicos da cultura, em função dos diferentes estádios fisiológicos causados pelo armazenamento ou não das ramas. Num esquema fatorial de 2 x 3, em blocos ao acaso com quatro repetições, utilizaram-se dois cultivares - IAC 12-829 e SRT 1287-Fibra, de alta e baixa capacidade de ramificação respectivamente - e três tipos de manivas, originárias de ramas recém-colhidas e de ramas conservadas por 105 dias nos sistemas de empilhamento horizontal e vertical. O experimento foi desenvolvido no ano agrícola 1991/92, na Estação Experimental do Vale do Paranapanema (IAC), Assis (SP), em latossolo vermelho-escuro, álico, textura média. Os resultados mais relevantes mostraram que: (a) O armazenamento de ramas em pilhas horizontais provocou aumento no número de hastes primárias dos dois cultivares e aumentou o peso da parte aérea do SRT 1287-Fibra; (b) O SRT 1287-Fibra foi mais influenciado pelo armazenamento da rama na posição horizontal que o IAC 12-829; (c) Este, em média, foi superior na produção de raízes, não diferindo, entretanto, do primeiro quando as manivas provinham de ramas armazenadas na posição horizontal; (d) As ramas procedentes do armazenamento na posição vertical comportaram-se similarmente às não armazenadas.