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51.
在人工气候室中,对盆栽条件下不同熟期的紧凑型与平展型玉米比较研究表明,单株玉米对土壤养分的反应株型间无规律性差异;不同熟期玉米间存在明显的规律性差异。植株苗期生长速率及高低土壤肥力下的差异与叶片N、K含量,光俣速率及不同光强,不同CO2浓度与的反应差异间存在明显的相关性。不同品种间苗期光合速率差异明显,土壤肥力高低对玉米苗期光合速率影响很大。 相似文献
52.
植物对磷饥饿的反应研究进展 总被引:4,自引:0,他引:4
磷是构成生命的重要元素之一,也是土壤中有效性最低的一种营养元素。我国是世界上最大的小麦生产国。但是我国耕地中有59%的土壤缺磷。农作物的产量常受到缺磷的影响而受损。土壤缺磷并不是土壤中总磷量低,而是土壤中可供植物直接吸收利用的有效态磷含量低。植物在磷饥饿时会发生各种各样的变化,以尽最大可能满足自身对磷的需求。植物对缺磷的反应是一个复杂的网络过程。大约有100多个基因参与了植物对缺磷的反应。其中主要的有磷转运蛋白基因、核糖核酸酶基因、磷酸酶基因等。植物在吸收外界的磷的过程中磷转运蛋白发挥了重要作用。植物磷转运蛋白基因按照序列相似性可以划分为H+/Pi共转运家族(Pht1家族)和Na+/Pi共转运家族(Pht2家族)。按照吸收动力学的标准可以分为高亲和力磷转运蛋白和低亲和力磷转运蛋白两种。磷饥饿时植物对磷吸收能力的增强的原因之一是增加了磷转运蛋白分子的合成数目。目前尽管人们对植物吸收磷的理解已经有了长足的进步,但是在植物对磷的具体调控机制、磷的跨液泡膜运输等重要方面仍然没有明确的结果。 相似文献
53.
苎麻悬浮细胞原生质体培养再生植株 总被引:5,自引:0,他引:5
苎麻品种浏阳大叶绿的子叶在含有2,4-D0.5mg/L、KT0.5mg/L的MSB固体培养基上,形成愈伤组织。愈伤组织经3 ̄4次继代培养后作液体振荡培养,产生悬浮细胞系。从悬浮系分离的原生质体,只有以海藻酸钠包埋方式培养在KM8P培养基中,50天左右才能形成肉眼可见的小愈伤组织。该愈伤组织在附加2,4-D0.2mg/L、6-BA0.1mg/L的MSB生长培养基上增殖,然后转入附加6-BA2.0mg 相似文献
54.
55.
基于状态机的植物生长模型可视化研究 总被引:3,自引:4,他引:3
在分析植物生长形态生理变化的基础上,揭示植物生长时空状态的变化规律,提出基于状态机的植物生长模型,并引入随机矢量真实预测植物的生长。根据该模型构建植物生长的可视化算法,合理组织有关植物生长的数据,并开发一个原型系统验证了该模型的有效性。 相似文献
56.
Sap flow meters based on the stem heat balance method were used to measure the mass flow rates or water use in young potted tea (Camellia sinensis L.) plants of clones AHP S15/10 and BBK35. The meters were constructed on site and installed onto the stem or branch sections of field growing plants in an experiment originally designed to study the effects of plant population density and drought on the productivity and water use of young tea clones. The objective of the study was to use the SHB method as a first attempt to use sap flow meters for determining the water use of young tea growing in the field under well watered conditions in Tanzania. The results are reported and recommendation made for further work on using the technique. 相似文献
57.
M. Dingkuhn B.B. Singh B. Clerget J. Chantereau B. Sultan 《Agricultural Water Management》2006,80(1-3):241-261
Asia's Green Revolution of the 1960s and 1970s has largely bypassed West Africa, and “modern” (high-yielding, input responsive) germplasm for staple crops has found comparatively little adoption, except for systems that are have good access to markets and sufficient water resources. It is unlikely, however, that breeding objectives conserving traditional crop characteristics as found in extensive systems would have been more successful. The authors identify systems caught in the agricultural transition from subsistence to intensified, market-oriented production as the most important target for crop improvement, and provide examples of new breeding objectives for cowpea, sorghum and upland rice. In each of these cases, breeders, with the help of physiologists, have developed innovative plant-type concepts that combine improved yield potential and input responsiveness with specific traditional crop characteristics that remain essential during the agricultural transition. In the case of cowpea, dual-purpose varieties were developed that produce a good grain yield due to an erect plant habit, then produce new leaves enabling a second harvest of green foliage. For upland rice systems that are limited by labour (mainly needed to control weeds that abound due to shortened fallow periods), a weed competitive plant type was developed from Oryza sativa × Oryza glaberrima crosses. Lastly, sorghum breeders who had previously deselected photoperiod sensitivity are now re-inserting sensitivity into plants having “modern” architecture, in order to allow for flexible sowing dates while maintaining an agro-ecologically optimal time of flowering near the end of the wet season. The ecophysiological basis of these plant types, their place in current and future cropping systems, as well as the problem of under-funding for their realisation, are discussed. 相似文献
58.
The root zone water quality model (RZWQM) was developed primarily for water quality research with a generic plant growth module primarily serving as a sink for plant nitrogen and water uptake. In this study, we coupled the CERES-Maize Version 3.5 crop growth model with RZWQM to provide RZWQM users with the option for selecting a more comprehensive plant growth model. In the hybrid model, RZWQM supplied CERES with daily soil water and nitrogen contents, soil temperature, and potential evapotranspiration, in addition to daily weather data. CERES-Maize supplied RZWQM with daily water and nitrogen uptake, and other plant growth variables (e.g., root distribution and leaf area index). The RZWQM-CERES hybrid model was evaluated with two well-documented experimental datasets distributed with DSSAT (Decision Support System for Agrotechnology Transfer) Version 3.5, which had various nitrogen and irrigation treatments. Simulation results were compared to the original DSSAT-CERES-Maize model. Both models used the same plant cultivar coefficients and the same soil parameters as distributed with DSSAT Version 3.5. The hybrid model provided similar maize prediction in terms of yield, biomass and leaf area index, as the DSSAT-CERES model when the same soil and crop parameters were used. No overall differences were found between the two models based on the paired t test, suggesting successful coupling of the two models. The hybrid model offers RZWQM users access to a rigorous new plant growth model and provides CERES-Maize users with a tool to address soil and water quality issues under different cropping systems. 相似文献
59.
60.
OsI2基因的克隆及其植物表达载体的构建 总被引:1,自引:0,他引:1
在旱稻IRAT109干旱胁迫下cDNA芯片分析结果的基础上,通过RT-PCR,5'-RACE及3'-RACE方法,从IRAT109总RNA中扩增得到了干旱胁迫下芯片表达谱中上升表达强度第二的基因全长序列,命名为OsI2,全长有523 bp,并对基因序列结构进行了分析.该基因与全长cDNA文库中的CT836140.1有99%同源.OsI2基因编码产物对应1个包含57个氨基酸的开放阅读框(ORF),为一功能未知蛋白.其编码产物也可能对应两个中间相隔19 bp的较小ORFs(43个氨基酸和42个氨基酸),都是功能未知的蛋白.在pBI121载体的基础上,将OsI2基因与CaMV35S连接成功构建了pBl121-OsI2植物表达载体,为进一步研究其功能创造了条件. 相似文献