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61.
在静水系统中,骤然改变水体盐度,形成盐度脉冲;研究许氏平鲉Sebastodes fuscescens(Houttuyn)经历该脉冲后其氨氮、活性磷酸盐排泄的情况。结果表明,盐度改变后,许氏平鲉的氨氮排泄率比正常盐度(30)下呈现出不同程度的升高趋势;当盐度由30降为25和20时,随着体重增加,氨氮排泄率先增大,后又减小;当盐度由30上升为35时,氨氮排泄率随体重增加而呈下降趋势。盐度改变后,许氏平鲉的活性磷酸盐排泄率随体重增大呈先增大后减小的趋势。在同一体重下,盐度由30降至20时,活性磷酸盐的排泄率最大;盐度由30升至35时,磷的排泄率最小。方差分析表明,盐度脉冲对许氏平鲉氨氮排泄率有显著的影响(P<0.05),对活性磷酸盐排泄率的影响不显著(P>0.05)。该研究对于鱼类养殖的水质管理、养殖场的布设等有重要的指导意义。 相似文献
62.
Two strains (derepressed-nitrogen fixing, Mac-27 and phosphate solubilizing, PS-21) of Azotobacter chroococcum were inoculated in fish culture ponds, singly and in combination with inorganic fertilizers (urea, single superphosphate–SSP). Physico-chemical parameters of pond waters, plankton production and fish biomass were studied. Inoculation of A. chroococcum (Mac-27) enhanced nitrogenase activity and rate of nitrogen fixation. A slight reduction in nitrogen fixation and nitrogenase activity was noticed when urea at 96 kg ha–1 y–1 was mixed with the biofertilizer (Mac-27). Inoculation of PS-21 enhanced phosphate solubilization, but Kjeldahl-nitrogen concentration values remained low in comparison with controls. On the other hand, inoculation of Azotobacter (either strain) enhanced the accumulation of ammonium-N, nitrite-N and nitrate-N. A significant (p < 0.05) reduction in dissolved oxygen (DO) concentration also took place when Azotobacter (both Mac-27 and PS-21) was inoculated in fish ponds. However, when used along with inorganic fertilizers, the reduction was not significant. The pH values were only slightly lowered when the phosphate-solubilizing strain (PS-21) of Azotobacter was inoculated. Inoculation of biofertilizer enhanced plankton production, net primary productivity and fish biomass. However, highest values in most of these parameters were noticed only in ponds that were treated with the higher doses of inorganic fertilizers (urea 192 kg and SSP 1500 kg ha–1 y–1). © Rapid Science Ltd. 1998 相似文献
63.
典型农田根际土壤伯克霍尔德氏菌群落结构及其多样性 总被引:1,自引:0,他引:1
在根际环境中伯克霍尔德氏菌(Burkholderiales)是一类重要的植物促生菌,其群落结构变化可能会影响植物的生长和发育。本研究针对伯克霍尔德氏菌目,采用特异性引物16S rRNA基因高通量测序技术,研究了田间条件下黑土、潮土和红壤中玉米根际伯克霍尔德氏菌群落结构及其对地上部作物生物量和产量的可能影响。结果表明:在三种土壤类型中,与未施肥相比,施肥对伯克霍尔德氏菌目的丰富度和多样性均没有显著影响。在伯克霍尔德氏菌的科水平主要检测到三类细菌,分别为草酸杆菌科(Oxalobacteraceae)、丛毛单胞菌科(Comamonadaceae)和伯克氏菌科(Burkholderiaceae),且草酸杆菌科是其中的优势菌。此外,施肥显著增加了有机质含量较低的潮土中马赛菌(Massilia spp.和Massilia sp. WG5)和伯克氏菌(Burkholderiaspp.)的相对丰度(P0.05);增加了酸性红壤中草螺旋菌(Herbaspirillumsp.ZM319)的相对丰度,但降低了Noviherbaspirillum spp.的相对丰度(P0.05);而在有机质含量最高的黑土中,所有检测到的伯克霍尔德氏菌均无明显地变化。进一步分析表明,土壤有效磷、速效钾含量和土壤pH是影响这几类细菌的主要因素,而马赛菌群落的变化可能会影响玉米地上部生物量和产量。本研究表明,尽管化学施肥是影响玉米地上部生物量和产量的主要原因,但是伯克霍尔德氏菌等根际微生物群落也可能是影响它们的潜在生物因素。 相似文献
64.
以文蛤(Meretrix meretrix)为受试生物,采用静态法研究了不同pH和盐度下文蛤耗氧率、排氨率、排磷率及氧氮比(O∶N)的变化规律。结果表明:pH为8.7试验组文蛤耗氧率、排氨率及排磷率显著高于6.7、7.7、9.7及10.7试验组(P0.05),pH为7.7和8.7试验组O∶N值显著高于6.7、9.7及10.7试验组(P0.05);pH在6.7~10.7范围内,文蛤耗氧率、排氨率、排磷率及O∶N均随pH的升高呈先升后降的变化趋势,pH为8.7时文蛤耗氧率、排氨率、排磷率以及O∶N均为最大值,依次为5.46 mg·(g·h)-1、0.17 mg·(g·h)-1、0.19 mg·(g·h)~(-1)、27.17。盐度为20试验组文蛤耗氧率、排氨率、排磷率及O∶N显著高于16、18、22及24试验组(P0.05);盐度在16~24范围内,文蛤耗氧率、排氨率、排磷率及O∶N均随盐度的增加呈先升后降的变化趋势,盐度为20时文蛤耗氧率、排氨率、排磷率及O∶N均为最大值,分别为5.66 mg·(g·h)~(-1)、0.20 mg·(g·h)~(-1)、0.30 mg·(g·h)~(-1)和27.40。本实验研究范围内,文蛤生长的最适pH在8.7左右,最适盐度在20左右,为文蛤的人工养殖提供了重要的数据支持。 相似文献
65.
渤海封闭性强,水动力条件和自净能力较弱,其生态系统较为敏感和脆弱。2011年位于渤海中部的蓬莱19-3油田发生重大溢油事故,对渔业生态环境和渔业资源造成了严重影响。为了解和掌握该起溢油污染事故发生后渔业生态环境的变化状况,分别于2012?2014年在渤海中部海域进行了9个航次的生态环境跟踪调查。利用其中部分调查资料,作者对渤海中部活性磷酸盐的时空变化特征及其影响因素进行了分析探讨。结果显示,(1)2012?2014年春季和夏季渤海中部海域活性磷酸盐含量符合第二类海水水质标准要求,秋、冬季部分海域已受到活性磷酸盐的污染。(2)不同季节渤海中部海域活性磷酸盐的平面分布趋势各异,垂直分布也存在季节差异。春季和夏季活性磷酸盐呈现由表层至底层递减的趋势,秋季和冬季接近呈垂直分布均匀状态。(3)渤海中部海域活性磷酸盐平均含量季节变化明显,其含量顺序由高到低依次为冬季、秋季、春季、夏季,冬季明显高于夏季。2014年渤海中部海域活性磷酸盐含量低于2013年,呈逐年降低趋势。(4)渤海中部海域活性磷酸盐时空变化受到诸多因素的影响,营养盐的外源补充、内源再生和生物消耗是影响活性磷酸盐时空变化的最重要因素。 相似文献
66.
67.
《Communications in Soil Science and Plant Analysis》2012,43(5):483-495
Abstract When sugarbeet seedlings are transferred from a complete nutrient solution to one from which Ca has been withheld, the rootlets and tops fail to develop. The same transfer at the eight‐leaf stage causes the rootlets to become stubby and swollen at the tips and blade expansion becomes modified; particularly the upper portions of the blades attaining nearly full development, which pucker and often develop a cupping or hooding effect; a unique symptom characteristic of Ca deficiency. As each new leaf develops, the blade area becomes smaller until only a black tip remains at the apex of the petiole, which is the symptom referred to as tip‐burn for this petiole and the successively . shorter petioles formed as Ca deficiency increases in severity. Strangely, these symptoms also appear during periods of rapid growth when the nutrient solution contains as much as 10 to 28 milliequivalents per liter of Ca or when soils are high in Ca. This implies that Ca absorption and possibly translocation limits the Ca supply at the growing point. Increasing Mg in the nutrient solution decreases Ca uptake and increases Ca deficiency. Potassium deficiency, unexpectedly, induces Ca deficiency apparently by decreasing the translocation of Ca to the growing point. These phenomena suggest the hypothesis that when ion absorption takes place from the root exchange site that has the affinity for H > Ca > Mg > K > Na, then the H generated internally replaces, and the roots absorb, Na, K and Mg preferentially. Externally, Ca would be adsorbed preferentially from the nutrient solution by the exchange complex, and with the addition of Mg, it would compete for the common adsorption site of Ca and limit Ca absorption internally. Under these conditions potassium‐deficient nutrient solutions would not induce Ca deficiency by decreasing Ca absorption but rather by decreasing Ca translocation. Theoretically, Ba would replace H more readily than Ca on the exchange complex, and therefore, Ba would be adsorbed preferentially and Ca uptake would increase. This effect of Ba was verified experimentally. Since the translocation of 45Ca to the growing point was found to be unrestricted under Ca‐sufficient and Ca‐deficient conditions and since the formation of insoluble Ca compounds such as phosphate or oxalate did not account for the Ca deficiency at the growing point, the cause of the Ca deficiency at the growing point is most likely the higher priority of the storage root for Ca over tops when leaf blades and storage root are both expanding rapidly. However, Ca retransport from older to younger parts of the sugarbeet plant may be restricted by the formation of Ca phosphate under Ca‐deficient conditions and Ca oxalate under Ca‐sufficient conditions. Calcium deficiency increases net photosynthesis per unit blade area initially, probably because of blade puckering, but not on a per unit chlorophyll basis. 相似文献
68.
用淀粉凝胶电泳及琼脂覆盖技术对山丹马的血液红细胞6磷酸葡萄糖脱氢酶和葡萄糖磷酸异构酶的电泳变异进行了测定。在6磷酸葡萄糖脱氢酶座位发现了3种表现型,即FF,FD和FS,其频率分别为0.958,0.021和0.021。在葡萄糖磷酸异构酶座位发现了两种表现型,即II和FI,其频率分别为0.771和0.229。等位基因频率直接通过表型计算出:PGDF为0.979,PGDD为0.0104,PGDS为0.0104;GPIF为0.1146,GPII为0.8854。亲子关系排除概率在6PGD和GPI座位点分别为0.1009和0.0912。两座位的个体识别概率分别为0.081和0.353。 相似文献
69.
The Effects of Replacing Dicalcium Phosphate with Busumbu Rock Phosphate on Performance and the Mechanical Properties of Bone in Growing Chicks 总被引:1,自引:0,他引:1
Odongo NE Plaizier J van Straaten P McBride B 《Tropical animal health and production》2002,34(4):349-358
Three hundred, day-old broiler chicks, with an average initial weight of 41.8±1.79 g, were used in a 15-day study (10 birds per battery cage) to characterize their performance and fluorine status when dicalcium phosphate (DCP) was replaced by Busumbu rock phosphate (BRP) as the source of phosphorus in the chicks' ration. The treatments comprised a standard ration with BRP replacing 0, 25%, 50%, 75% or 100% of DCP. Replacing DCP with BRP significantly reduced the final weight of the chicks (p<0.01), feed intake (p<0.01), weight gains (p<0.01) and dry matter digestibility (p<0.05) but increased (p<0.05) the feed-to-gain ratio. True phosphorus absorption and the percentage of phosphorus in the tibia were not affected by increasing amounts of BRP in the diet. Increasing levels of BRP in the diet linearly reduced (p<0.01) the percentage bone ash, calcium, Ca:P ratio, ultimate breaking force, bending moment, stress, and modulus of elasticity. Leg stiffness, lameness, reduced feed intake, and a decline in general health were recorded in 10–40% of the chicks on 75% and 100% BRP, respectively. These results suggest that excessive ingestion of fluorine from the BRP caused the reduction in the chicks' performance. 相似文献
70.