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1.
樟子松人工林冠下植物种类动态变化因子分析   总被引:1,自引:0,他引:1  
本文对林分下层植物种类组成和林分内光照与林冠叶量的变化进行了研究 ,结果表明 :樟子松人工林林下生态类型划分为A、B、C三个类型 ,其营养条件排序A 相似文献   
2.
中国野生种毛葡萄光合特性的研究   总被引:17,自引:1,他引:16  
毛葡萄(VitisquinquangularisRehd)的净光合速率日变化值明显高于山葡萄、宝石、白玉霓,且无栽培品种光合作用的“午休”现象。毛葡萄的净光合速率与其它野生种葡萄和栽培品种比较也表现出较高水平。在进行CO2饱和点和补偿点测定时,毛葡萄也较栽培品种白玉霓有较强的光合作用,因此,毛葡萄是葡萄高光合效率育种的优良野生种质资源。  相似文献   
3.
棉花冠层对不同灌水量的反应及其产量形成研究   总被引:1,自引:0,他引:1  
张伟  吕新 《干旱区研究》2004,21(4):425-429
通过探讨新疆北部棉区推广棉种新陆早6号与新陆早8号,在不同灌水量条件下冠层结构特征的差异性,得出新陆早6号对限量滴灌反应不敏感,而新陆早8号对限量滴灌反应较敏感。因此,在限量滴灌条件下,选择新陆早6号种植较适宜。叶面积指数低,叶片平均倾斜角度大,群体散射辐射透过系数和群体直射辐射透过系数增加,光能的截获率降低,由此得出,不同品种对灌水量的反应表现及理想群体冠层结构的合理指标,为增加棉花产量和提高水分利用效率提供了理论依据。  相似文献   
4.
依据陈毓荃等首次提出的连续升温电导法,研制了NKJ-1型农作物抗旱性鉴定仪,对14种小麦抗旱性的鉴定结果与田间观测结果一致,也适于果树抗热性鉴定。  相似文献   
5.
在果核硬化期和果实最后迅速生长期,对艳丰一号桃果实浸涂10倍和100倍的液体石蜡溶液,与果实未浸涂液体石蜡的对照相比,果实蒸腾强度分别降低了57.9%和41.4%,且源叶净光合效率(Pn)和气孔导度(Gs)降低而叶表面温度(Tl)升高,并在果实迅速生长期间,果实浸涂液体石蜡处理和对照之间存在显著性差异。进一步研究表明,无论是在果核硬化期还是在果实最后迅速生长期,当Gs小于0.2mol/m2·s时,Pn和Gs呈极显著直线正相关关系,且果实浸涂液体石蜡处理的源叶的Tl随Gs减小急剧升高。源叶Pn对Tl的响应均呈极显著抛物线相关关系,但同一Tl条件下,果实浸涂液体石蜡处理的Pn低于对照。因此认为,果实蒸腾强度可能通过作用叶片的Gs调节Tl进而对源叶的Pn进行调控,气孔开张度减小、Tl升高,可能是果实蒸腾强度减弱时调控Pn重要机制之一。  相似文献   
6.
对从国内外引进的31个苜蓿品种分枝期—结英期的冠层温度及其农艺性状指标进行了相关分析和偏相关分析。结果表明,苜蓿冠层温度与分枝期和现蕾期的茎叶比、开花期的叶面积和产量间存在显著的偏相关关系,可作为产量高低的间接或直接指标;由于农艺性状指标间互相关的影响,冠层温度与农艺性状指标间的单相关系数可靠性差,且与偏相关系数有明显的差异;排除农艺性状指标间互相关影响后,偏相关系数可靠性大,可作为变量间关系密切程度的量化指标。  相似文献   
7.
8.
We previously reported an alfalfa half‐sib family, HS‐B, with improved salt tolerance, compared to parental plants, P‐B. In this study, we conducted additional experiments to address potential physiological mechanisms that may contribute to salt tolerance in HS‐B. Vegetatively propagated HS‐B and P‐B plants were treated with a nutrient solution (control) or a nutrient solution containing NaCl (EC = 12 dS/m). Shoots and roots were harvested at various time points after treatment for quantification of proline, soluble sugar, and H2O2 using spectrophotometers. Subcellular localization and quantification of Na in roots were conducted using a Na+‐specific dye under a confocal microscope. HS‐B produced 86 and 89% greater shoot and root dry biomass, respectively, compared to parental plants, P‐B, under salinity in the greenhouse. Under saline conditions the HS‐B shoots accumulated 115% and roots 55% more soluble sugars than P‐B counterparts. The non‐saline HS‐B shoots, however, showed 72% less soluble sugars than the non‐saline P‐B plants. Under saline conditions HS‐B accumulated 39% less proline in shoots, while roots accumulated 56% more proline, compared to their P‐B parents. HS‐B plants also showed a greater reduction of stomatal conductance under mild saline stress. HS‐B shoots and roots contained 3–4 times less reactive oxygen species (H2O2) after salt treatment compared to P‐B plants. Sodium localization and distribution analysis using Na+‐specific dye revealed HS‐B plants accumulated 88% and 48% less Na+ in stele and xylem vessels compared to P‐B. The study provides insights into the potential mechanisms that may contribute to salt tolerance in HS‐B: maintaining RWC by accumulating soluble sugars while reducing transpiration, maintaining healthy status by reducing oxidative stresses, and preventing salt toxicity by reducing accumulation of Na+ inside root cells and xylem.  相似文献   
9.
Brassica rapa L. is a genetically diverse parent species of the allotetraploid species, oilseed rape (B. napus) and a potential source of drought tolerance for B. napus. We examined the effect of a 13‐day drought stress period during the early reproductive phase, relative to a well‐watered (WW) control, on subsequent growth and development in nine accessions of B. rapa and one accession of Brassica juncea selected for their wide morphological and genetic diversity. We measured leaf water potential, stomatal conductance, water use, and leaf and bud temperatures during the stress period and aboveground dry weight of total biomass at maturity. Dry weight of seeds and reproductive tissue were not useful measures of drought tolerance due to self‐incompatibility in B. rapa. The relative total biomass (used as the measure of drought tolerance in this study) of the 10 accessions exposed to drought stress ranged from 47 % to 117 % of the WW treatment and was negatively correlated with leaf‐to‐air and bud‐to‐air temperature difference when averaged across the 13‐day stress period. Two wild‐type (B. rapa ssp. sylvestris) accessions had higher relative total and non‐reproductive biomass at maturity and cooler leaves and buds than other types. We conclude that considerable genotypic variation for drought tolerance exists in B. rapa and cooler leaves and buds during a transient drought stress in the early reproductive phase may be a useful screening tool for drought tolerance.  相似文献   
10.
The physiological response of multiple rice cultivars, eighteen initially and eight cultivars later on, to suboptimal temperatures (ST) conditions was investigated in laboratory and outdoor experimental conditions. Treatment with ST decreased growth in different extents according to the cultivar and affected the PSII performance, determined by chlorophyll fluorescence fast‐transient test, and stomatal conductance, regardless the experimental condition. Two groups of cultivars could be distinguished on the base of their growth and physiological parameters. The group of cultivars presenting higher growths displayed optimal JIP values, and higher instantaneous water use efficiency (WUEi), due to a lower Gs under ST, unlike cultivars showing lower growth values, which presented worse JIP values and could not adjust their Gs and hence their WUEi. In this work, we detected at least two cultivars with superior tolerance to ST than the cold tolerant referent Koshihikari. These cultivars could be used as parents or tolerance donors in breeding for new crop varieties. On other hand, positive and significant correlations between data obtained from laboratory and outdoor experiments suggest that laboratory measurements of most of the above mentioned parameters would be useful to predict the response of rice cultivars to ST outdoor.  相似文献   
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