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Summary Vitrification-Hyperhydrous shoot development, effects the survival and quality of several micropropagated plants ex-vitro. The leaves which are the immediate organ to be affected, exhibit abnormal morphology and physiology. Leaf malfunction is apparently a stress response to very rich media and high relative humidity. The understanding of the underlying mechanism of vitrification and its control in vitro can contribute to a more efficient micropropagation. Vitrification was found to be associated with elevated ethylene production which was related to hypolignification and poor cell wall development. Liquid and low agar media induced callose formation along with reduced and disoriented cellulose biosynthesis, manifested also in non-functioning guard cells. Malfunctioning stomata, in addition to defective cuticle contributed to increased transpiration and desiccation of in vitro formed leaves. The activity of various enzymes, associated with cell wall synthesis, was low and total proteins in normal leaves was higher than in vitreous ones. Various measures were found to reduce vitrification; lowered matrix and water potential in the medium, reduction in RH, low NH 4 + , changes in Ca++ levels and the removal of ethylene. These measures improved leaf morphogenesis, survival and the quality of several micropropagated plant species. Presented in the Session-in-Depth Transition of Plants From Culture to Establishment In Vivo,“ at the 41st Annual Meeting of the Tissue Culture Association, Houston, Texas, June 10–13, 1990.  相似文献   
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土壤水肥因子对胡杨幼苗生长权衡和木质化的影响   总被引:4,自引:0,他引:4  
以当年生胡杨幼苗为材料,通过不同水平的水分和养分单因素控制盆栽试验,探讨土壤水肥因子对当年生胡杨幼苗生长权衡和木质化的影响,以明确胡杨生长过程中以及种子更新困难的原因和机理。结果表明:(1)当年生胡杨幼苗生长权衡主要体现在生物量的分配策略上,而主根长/高度没有显著差异。(2)在连续给水处理下,干旱胁迫使幼苗根冠比显著增加,土壤含水量15%处理的根冠比较含水量20%和30%处理分别显著增加了75%和93%;但干旱胁迫抑制了生物量的积累,含水量10%处理下生物量比15%、20%和30%处理分别显著减小53.4%、89.2%、78.6%;在断续给水处理下,随着干旱程度的增加幼苗根冠比显著增加,土壤含水量15%处理的根冠比较含水量20%和30%处理分别显著增加34%和38%;连续给水和断续给水两类干旱胁迫均能明显增加幼苗根系木质化程度。(3)土壤施加氮磷均显著增加幼苗根冠比和木质化,但过量的氮肥抑制根系生物量的积累。可见,胡杨幼苗对于水肥条件胁迫敏感性与生长权衡能力是胡杨林种子更新与种群维持的关键环节,调整立地土壤水肥环境对当年生胡杨幼苗的生长定居有重要的作用。  相似文献   
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The genetic mechanisms underlying fruit development have been identified in Arabidopsis and have been comparatively studied in tomato as a representative of fleshy fruits. However, comparative expression and functional analyses on the bHLH genes downstream the genetic network, ALCATRAZ (ALC) and SPATULA (SPT), which are involved in the formation of the dehiscence zone in Arabidopsis, have not been functionally studied in the Solanaceae. Here, we perform detailed expression and functional studies of ALC/SPT homologs in Nicotiana obtusifolia with capsules, and in Capsicum annuum and Solanum lycopersicum with berries. In Solanaceae, ALC and SPT genes are expressed in leaves, and all floral organs, especially in petal margins, stamens and carpels; however, their expression changes during fruit maturation according to the fruit type. Functional analyses show that downregulation of ALC/SPT genes does not have an effect on gynoecium patterning; however, they have acquired opposite roles in petal expansion and have been co‐opted in leaf pigmentation in Solanaceae. In addition, ALC/SPT genes repress lignification in time and space during fruit development in Solanaceae. Altogether, some roles of ALC and SPT genes are different between Brassicaceae and Solanaceae; while the paralogs have undergone some subfunctionalization in the former they are mostly redundant in the latter.  相似文献   
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Background Lignin is a polyphenolic polymer that strengthens and waterproofs the cell wall of specialized plant cell types. Lignification is part of the normal differentiation programme and functioning of specific cell types, but can also be triggered as a response to various biotic and abiotic stresses in cells that would not otherwise be lignifying.Scope Cell wall lignification exhibits specific characteristics depending on the cell type being considered. These characteristics include the timing of lignification during cell differentiation, the palette of associated enzymes and substrates, the sub-cellular deposition sites, the monomeric composition and the cellular autonomy for lignin monomer production. This review provides an overview of the current understanding of lignin biosynthesis and polymerization at the cell biology level.Conclusions The lignification process ranges from full autonomy to complete co-operation depending on the cell type. The different roles of lignin for the function of each specific plant cell type are clearly illustrated by the multiple phenotypic defects exhibited by knock-out mutants in lignin synthesis, which may explain why no general mechanism for lignification has yet been defined. The range of phenotypic effects observed include altered xylem sap transport, loss of mechanical support, reduced seed protection and dispersion, and/or increased pest and disease susceptibility.  相似文献   
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Kentucky, as with many regions around the globe, has a relatively long growing season with significant rainfall that could produce sizeable quantities of perennial herbaceous and woody biomass on land that does not compete with food crops. Additionally, there are limited options for renewable power production from low carbon sources such as solar-photovoltaic, wind and hydroelectric. Recent studies have shown that producing renewable energy from perennial cellulosic crops, as opposed to starch-based biofuel crops, will have a carbon-mitigating outcome. Currently, there is a lack of data regarding regionally suitable genotypes. Herein, we establish baseline values for multiple entry selections of three native C4 grass species, switchgrass (SW) ( Panicum virgatum L.), eastern gamagrass (EG) (Trispicum dactyloides L. ) and big bluestem (BB) (Andropogon gerardii Vitman ) . Yield potential examined over 7 years showed that environment, species and entries had a significant impact on yield, but EG had higher total yield over the duration of the study. Cellulosic biofuel potential was examined by measurement of saccharification efficiency, relative lignocellulosic energy density, cellulose content and lignin content during three growing seasons. EG had significantly higher digestibility rate than SW and BB. Underlying this was a negative correlation between lignification and saccharification efficiency. However, higher lignin content and higher cellulose content among SW entries resulted in higher energy density relative to EG and BB. These data reveal that locally bred EG varieties were most suited to cellulosic ethanol production under the growing conditions of central Kentucky, USA, compared with SW and BB and suggest the importance of regional examination.  相似文献   
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An antisense gene construct of a peroxidase gene (Shpx6a) from a tropical pasture legume Stylosanthes humilis was transferred into tobacco cells via Agrobacterium tumefaciens to test whether peroxidase activity could be decreased and what effect this would have on lignification. A large number of tobacco cell lines were regenerated on selective media and stable integration of the transgene was confirmed in randomly selected putative transformants. Analyses of the primary transgenic plants and their progeny (T 1) demonstrated that the total peroxidase activity was significantly decreased (up to 36%) as compared to that measured in untransformed control plants. Importantly, reduction in peroxidase activity is accompanied by decreases (up to 23%) in lignin content in several transgenic lines.  相似文献   
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Secondary wall deposition in tracheary elements of cucumber grown in vitro   总被引:1,自引:0,他引:1  
It is a matter of controversy whether secondary wall deposition is dependent on lignification during the development of tracheary elements. To understand this, tracheary element differentiation was studied in the homogeneous calli obtained from the cotyledonary explants of Cucumis sativus subsequent to treatment with plant growth regulators, such as naphthalene acetic acid (NAA) and benzylamino purine (BAP), which are necessary for the induction of tracheary elements, along with metabolic blockers such as 2-aminoindan-2-phosphonic acid (AIP), 2,3,5-triiodobenzoic acid (TIBA) and nifedipine. Calli treated with AIP, a potential inhibitor of L-phenylalanine ammonia-lyase (PAL), have no PAL activity at any time during the culture period. There was a complete inhibition of lignification although secondary wall deposition was unaltered. Similar results were obtained using TIBA, an inhibitor of auxin transport, and nifedipine, a known calcium channel blocker. Thus the present study suggests that secondary wall deposition in the course of tracheary element differentiation need not to be dependent on lignification. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   
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