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131.
Field investigations of ammonia exchange between barley plants and the atmosphere. I. Concentration profiles and flux densities of ammonia 总被引:5,自引:2,他引:3
J. K. SCHJOERRING A. KYLLINGSBAEK J. V. MORTENSEN S. BYSKOV-NIELSEN 《Plant, cell & environment》1993,16(2):161-167
The exchange of ammonia between the atmosphere and the canopy of spring barley crops growing at three levels of nitrogen application (medium N, high N and excessive N) was studied over two consecutive growing seasons by use of micrometeorological techniques. In most cases, ammonia was emitted from the canopy to the atmosphere. The emission started around 2 weeks before anthesis, and peaked about or shortly after anthesis. The volatilization of ammonia only took place in the daytime. During the night-time, atmospheric ammonia was frequently aborbed by the canopy. Occasionally, plants in the medium and high N treatments also absorbed ammonia from the atmosphere during the daytime. Daytime absorption of ammonia never occurred in the excessive N canopy. The loss of ammonia from the canopy amounted in both years to 0.5–1.5 kg NH3-N ha?1 and increased with the N status of the canopy. In agreement with the small losses of ammonia, the content of 15N-labelled nitrogen in the plants did not decline during the grain-filling period. The experimental years were characterized by very favourable conditions for grain dry matter formation, and for re-utilization of nitrogen mobilized from leaves and stems. Consequently, a very high part of the nitrogen in the mature plants was located in grain dry matter (80–84% in 1989; 74–80% in 1990). The efficient re-utilization of nitrogen may have reduced the volatilization of ammonia. 相似文献
132.
Rapid photosynthetic adaptation to heat stress triggered in potato leaves by moderately elevated temperatures 总被引:17,自引:7,他引:10
M. HAVAUX 《Plant, cell & environment》1993,16(4):461-467
Photosystem II (PSII) is considered to be one of the most thermolabile aspects of photosynthesis. In vivo measurements of chlorophyll fluorescence and photosynthetic oxygen evolution in 25°C-grown potato leaves (cv. Haig) indicated that the threshold temperature Tc above which PSII denatures was indeed rather low–about 38°C–with temperatures higher than Tc causing a rapid and irreversible loss of PSII activity. The present study demonstrates the existence of adaptive processes which rapidly adjust the in vivo thermal stability of PSII in response to temperature increase. Transfer of potato leaves from 25°C to temperatures slightly lower than Tc (between 30 and 35°C) was observed to cause an upward shift of the Tc value without any appreciable loss of PSII activity. This increase in PSII thermotolerance was substantial (around +5°C in the Haig cultivar), rapid (with a half-time of ~20 min) and slowly reversible at 25°C (>24h). As a consequence, high temperatures (e.g. 40°C) which caused a complete and irreversible inhibition of the PSII function had very little effect in 35°C-treated leaves, thus suggesting that the above-described PSII changes could be of prime importance for the plant's behaviour in the field. Accordingly, the rise in Tc at 35°C was much larger (+8°C) in Sahel, a stress-resistant potato variety, than in the heat-sensitive Haig cultivar. 相似文献
133.
Effects of nitrogen supply and high temperature on the growth and physiology of the chickpea 总被引:1,自引:1,他引:0
Chickpeas were grown with or without nitrate nitrogen feeding, or nodulated with Rhizobium leguminosarum. High [40°C day, 25°C night (HT)] and moderate [25°C day, 177°C night (LT)] temperature regimes were employed during growth. Growth rates, photosynthetic capacity and enzymes of carbon and nitrogen metabolism were monitored to assess the acclimatory capacity of the chickpea. Initial growth rates were stimulated by high temperatures, particularly in nitrate-fed and nodulated plants. Older HT plants had fewer laterals, smaller leaves, and fewer flowers were produced than in LT plants. There was some indication of an acclimation of photosynthesis to high temperatures and this was independent of nitrogen supply. Rubisco activity was increased by high growth temperatures. However, HT plants also had higher transpiration rates and lower water use efficiency than LT plants both in respective growth conditions and when compared in a common condition. High temperatures reduced shoot nitrate reductase activity but had little effect on root activity, which was the same if not greater than activity in LT roots. The amino acid, asparagine, was found at high concentrations in all treatments. Concentrations were maintained throughout growth in HT plants but declined with age in LT plants. 相似文献
134.
Flash-induced, fast (t
1/2 1 ms), reversible reduction of the high potential cytochrome b-559 (cyt b-559HP) was observed in chloroplasts in the presence of 2 M protonophore, FCCP (carbonylcyanide p-trifluoromethoxyphenylhydrazone), CCCP (carbonylcyanide 3-chlorophenylhydrazone) or SF 6847 (2,6-di-(t-butyl)-4-(2,2-dicyanovinyl)phenol). These protonophores promote autooxidation of cyt b-559HP in the dark (Arnon and Tang 1988, Proc Natl Acad Sci USA 85: 9524). No fast photoreduction could, however, be observed if the molecules were oxidized with ferricyanide in the absence of protonophores. This suggests that the molecules must be deprotonated to be capable for fast photoreduction.Photoreduction of cyt b-559HP was largely insensitive to DBMIB (2,5-dibromo-3-methyl-6-isopropyl-p-benzoquinone), but was inhibited by DCMU (3-(3,4-dichlorophenyl)-1,1-dimethylurea). With a train of flashes, no oscillation could be observed in the amplitudes of photoreduction. These data strongly suggest that cyt b-559HP is reduced by the semireduced secondary quinone acceptor (QB
–) of Photosystem 2.Abbreviations ADRY-
acceleration of the deactivation reactions of the water-splitting enzyme system Y of photosynthesis
- Ant 2p-
2-(3-chloro-4-trifluoromethyl)anilino-3,5-dinitrothiophene
- cyt-
cyto-chrome
- CCCP-
carbonylcyanide 3-chlorophenylhydrazone
- DBMIB-
2,5-dibromo-3-methyl-6-iso-propyl-p-benzoquinone
- DCMU-
3-(3,4-dichlorophenyl)-1,1-dimehtylurea
- FCCP-
carbonylcyanide p-trifluoromethoxyphenylhydrazone
- FeCy-
ferricyanide
- HP-
high potential form
- HQ-
hydroquinone
- PQ-
plastoquinone
- PS 2-
Photosystem 2
- SF 6847-
2,6-di-(t-butyl)-4-(2,2-dicyanovinyl)-phenol 相似文献
135.
136.
Dr Sachio Hayashi Sinji Sasao Yoshiyuki Takasaki Kiyohisa Imada 《Journal of industrial microbiology & biotechnology》1994,13(2):103-105
Summary -Fructofuranosidase, which produces fructo-oligosaccharides (1-kestose and nystose) from sucrose, was purified fromAureobasidium and immobilized on DEAE-cellulose at especially high efficiency (95%). The enzymatic profiles of the immobilized enzyme were almost identical to those of the native form except that the stability was slightly improved. The immobilized enzyme was stable during long-term continuous reaction for up to 360 h. 相似文献
137.
本文报导了根霉属(Rhizopus) 9个菌株天然态及解聚态可溶性蛋白、酯酶同工酶、葡萄糖淀粉酶和SOD电泳图谱的比较研究。结果表明:可溶性蛋白图谱和酯酶同工酶谱能显示五种已知供试菌种间的差异,尤其酯酶同工酶谱还能显示米根霉两个供试菌株之间的微小差异。经综合分析全部试验结果后得出的系统树图显示了9个供试菌株间的亲缘关系,并为未知菌株F1(BR12)和Q303提供了鉴定和命名依据。文中首次报导了根霉的SOD同工酶,并对蛋白质和酶电泳图谱用于根霉分类研究进行了讨论。 相似文献
138.
本文报道海拔3417m和4280m地区世居藏族和移居汉族青少年运动状态下心肺功能的对比研究。结果显示:3417m和4280m世居藏族的最大氧耗量、无氧阈值及最大心输出量都明显大于汉族,血氧饱和度(Sao2)随运动负荷的增加而降低。海拔3417m藏、汉族的△Sao2分别为7.46%和10.03%,4280m处为8.57%和13.75%,最大心率随海拔升高而下降。研究提示,藏族青少年有较高的最大有氧能力,反映了他们对低氧环境的适应优势。 相似文献
139.
辐射增敏剂增敏活性的分子连接性研究 总被引:1,自引:0,他引:1
计算42个辐射增敏剂的各阶分子连接性指数mXt及△mXt,并对其中38个非对称性化合物的分子连接性指数与其增敏活性进行定量构效关系(QuantitatireStructureActivityRelationship,QSAR)的研究,得到相关方程。并分析了影响增敏活性的1gP、ES及σ在一定程度上都可通过分子连接性指数表达出来。对这些增敏剂进行分子对称性的研究,发现对称性会降低分子的极性,进而降低其增敏活性。另外,还发现在这些增敏剂中存在亚类现象,并对各亚类的反应机理进行了探讨。 相似文献
140.
黑曲霉S4生淀粉糖化酶纯化组分的性质及其动力学常数 总被引:1,自引:0,他引:1
生淀粉糖化酶是可以水解生淀粉的葡萄糖糖化酶(Ec3.2.1.3,α-1.4-糖苷酶),它是近代工业中极为重要的酶类之一。虽然对生淀粉糖化酶可水解淀粉中所有的D-糖苷键已经清楚,由单糖逆合成寡糖的动力学研究也比较深入,但有关它对各种常用生淀粉材料的水解动力学以及各生淀粉糖化酶组分之间的相互关系的研究却很少。本研究通过在不同温度和pH下,生淀粉糖化酶的三个组分对寡糖和各种生淀粉作用的动力学常数,以及在不同pH值下它们对各生淀粉 相似文献