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11.
A pot experiment was conducted in a climate‐controlled greenhouse to investigate the growth, physiology and yield of potato in response to salinity stress under biochar amendment. It was hypothesized that addition of biochar may improve plant growth and yield by mitigating the negative effect of salinity through its high sorption ability. From tuber bulking to harvesting, the plants were exposed to three saline irrigations, that is 0, 25 and 50 mm NaCl solutions, respectively, and two levels of biochar (0 % and 5 % W/W) treatments. An adsorption study was also conducted to study the Na+ adsorption capability of biochar. Results indicated that biochar was capable to ameliorate salinity stress by adsorbing Na+. Increasing salinity level resulted in significant reductions of shoot biomass, root length and volume, tuber yield, photosynthetic rate (An), stomatal conductance (gs), midday leaf water potential, but increased abscisic acid (ABA) concentration in both leaf and xylem sap. At each salinity level, incorporation of biochar increased shoot biomass, root length and volume, tuber yield, An, gs, midday leaf water potential, and decreased ABA concentration in the leaf and xylem sap as compared with the respective non‐biochar control. Decreased Na+, Na+/K+ ratio and increased K+ content in xylem with biochar amendment also indicated its ameliorative effects on potato plants in response to salinity stress. The results suggested that incorporation of biochar might be a promising approach for enhancing crop productivity in salt‐affected soils. 相似文献
12.
大学生普遍存在科研创新意识差、缺乏科研热情的现象.补充相关科研进展,将科研前沿引进课堂成为一种趋势,笔者对植物生理学光合作用这一章关于补充光合碳同化科研进展与否的教学实践结果进行对比分析,采用调查问卷的形式,围绕已讲授和未讲授光合碳同化适应性进化这一科研前沿进行调查,旨在实现学生对光合碳同化途径多元化发展进化的理解和深化,启发学生对固有知识的质疑和求解热情,达到提升科研兴趣和创新能力,实现精品课程培养满足国家和地方发展需要的高素质人才的目的. 相似文献
13.
Sorghum [Sorghum bicolor (L.) Moench] is a drought‐tolerant crop, and its productivity in rain fed environments has increased since the 1950s. This increase is due to changes in agronomic practices and hybrid improvement. The objective of this study was to determine what aspects of grain sorghum morphology, physiology and water use have changed with hybrid improvement and might have contributed to this yield increase. A 2‐year greenhouse experiment was conducted with one hybrid from each of the past five decades. The hybrids were studied in well‐watered and pre‐ and post‐flowering water deficit conditions. Total water use, transpiration, stomatal conductance and photosynthesis were measured during the growing period. Biomass and biomass components were measured at harvest. There was no consistent change in the leaf physiological parameters resulting from hybrid advancement. In contrast, total water use increased in rate of 8.5 cm3 kg soil?1 year?1 from old to new hybrids in the well‐watered treatments. Root biomass also increased in rate of 0.2 g plant?1 year?1. Leaf biomass and panicle length also was greater for the newest compared with the older hybrids. Hybrid advancement was related to increase in panicle length but decrease in peduncle length. Results indicated that hybrid development programmes created hybrids with improved drought avoidance, due to better root density of newly released hybrids, or hybrids with better resource use which ultimately increased yield under rain fed conditions. 相似文献
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15.
Crops limit light for photosynthesis and growth of weeds. We studied the effect of reduced light on performance of six weed species [one invasive species (Amsinckia micrantha), three common species (Veronica persica, Capsella bursa‐pastoris, Viola arvensis) and two less common weeds (Anagallis arvensis and Scleranthus annuus)]. In two glasshouse experiments, six light levels were achieved aiming at 0%, 20%, 50%, 80%, 90% and 95% reduction of light and corresponding with daily light integrals (DLI) of 12.4, 9.63, 7.13, 2.74, 0.95 and 0.69 mol m?2 day?1 in experiment 1 and 21.2, 18.0, 10.7, 3.71, 1.64 and 1.20 mol m?2 day?1 in experiment 2. The number of leaves was strictly controlled by DLI. Chlorophyll content index, maximum photochemical efficiency of photosystem II (Fv/Fm), stomatal conductance, flowering and dry matter were strongly reduced when DLI was reduced to 0.69–3.71 mol m?2 day?1 for all species. Threshold DLI for flowering was ca. 3.71 mol m?2 day?1 for S. annuus, V. arvensis, A. arvensis and V. persica, while C. bursa‐pastoris deviated by flowering at DLI of 0.95 mol m?2 day?1. This may explain why C. bursa‐pastoris is common in the seedbank of Danish arable soils in spite of intensive farming with well‐fertilised and dense crops. 相似文献
16.
草类植物病害是限制草牧业生产和发展的主要因素之一。目前抗病品种的开发利用是目前防治病害最经济有效的方法,植物抗病机制的研究对开发抗病品种和构建生态环境友好型病害防治至关重要。植物受病原菌侵染时形成多种复杂的防御机制,本研究主要从植物组织结构抗性、生理生化抗性、抗性基因和抗性数量性状位点(QTLs)定位等分子机制方面综述草类植物抗病机制研究进展,并提出我国草类植物抗病机制研究中面临的主要问题与解决办法,以期为草类植物抗病育种提供理论依据。 相似文献
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18.
以3个越橘品种‘奥尼尔’‘密斯梯’和‘北陆’为试验材料,比较光合生理特性和果实品质的差异。结果表明:越橘叶片为异面叶,角质层、上表皮和叶片厚度以‘密斯梯’最大,下表皮厚度以‘密斯梯’最小;‘密斯梯’光饱和点(LS,P)比‘奥尼尔’和‘北陆’高,补偿点(LC,P)比‘奥尼尔’和‘北陆’低,对光环境的适应性强;‘奥尼尔’和‘密斯梯’最大净光合速率(Pnmax)高于‘北陆’,光合潜力足;3个越橘品种单果质量由大到小依次为‘密斯梯’、‘奥尼尔’、‘北陆’;可溶性固形物和有机酸质量分数最高的是‘密斯梯’,维生素C质量分数最高的是‘奥尼尔’;单株产量由高到低依次为‘密斯梯’、‘奥尼尔’、‘北陆’。相关性分析表明:Pnmax与叶片厚度呈显著(P<0.05)正相关;LS,P与角质层厚度和上表皮厚度呈极显著(P<0.01)正相关;光合生理各项指标与果实品质存在一定的相关性。 相似文献
19.
为进一步研究玉米品种登海605不同密度和施肥方式对光合生理的影响,挖掘其增产潜力,建立高产栽培模式。本试验设计5个密度处理(D1、D2、D3、D4、D5)、3种施肥方式处理(S1:农大缓释肥、S2:分次施肥、S3:一次性施肥),并对不同处理的光合指标、叶面积指数、光合有效辐射、透光率等指标进行测定,结果表明:不同的施肥方式上层、中层、下层光合指标变化规律表现一致,各层次表现为上层>中层>下层,S2>S1>S3,玉米植株上层无论哪种处理都能获得足够的光能和CO2,光合指标相差不大,适宜的密度和施肥方式将获得更多的光能、有效辐射,合成有机物,形成更多的干物质积累,从而提高产量。 相似文献
20.