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11.
Hiromitsu Furuya Tsutomu Matsumoto Shin-ichi Fuji Hideki Naito 《Journal of General Plant Pathology》2003,69(2):115-119
Rice seedling growth, estimated by plant height and root development and discoloration, was better in pasteurized soil than
in unpasteurized soil obtained from a flooded rice field. Rice seedlings also grew better in sterilized soil modified by adding
roots harvested from the pasteurized soil than in soil modified by adding roots harvested from the unpasteurized soil. The
results demonstrate that seedling growth in the rice field soil was inhibited by soil microorganisms, even though no typical
symptoms such as seedling blight or damping-off appeared. Pythium aristosporum is suggested to be involved in the inhibition. Thus, it appears that inconspicuous restraint of rice seedling growth could
occur in soils of rice paddy fields.
Received: May 20, 2002 / Accepted: October 16, 2002
Acknowledgments The authors thank Dr. T. Ichitani, former professor at Osaka Prefectural University, for providing an isolate of Pythium aristosporum for comparison, and Mr. Mitsuaki Sato of Akita Prefectural College of Agriculture for technical assistance. 相似文献
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防护条件下梭梭幼苗生长及养分吸收特性 总被引:1,自引:0,他引:1
以新疆古尔班通古特沙漠南缘管件防护与传统移栽2种方式移栽的梭梭幼苗为实验材料,通过野外监测与室内分析,探讨了管件防护条件下梭梭幼苗的生长及养分吸收特性。结果表明:整个生育期内,管件防护梭梭幼苗的各生长指标与传统移栽苗相比,增幅最大的为茎粗,其次为株高。年周期内管件防护梭梭幼苗的生物量呈递增趋势,单株生物量累积可达45.25 g·株~(-1);净增加27.10 g·株~(-1),是传统移栽苗的1.38倍(P0.05)。管件防护梭梭幼苗体内的氮素、磷素、钾素含量呈先升高后降低趋势,在同化枝生长期达到峰值,分别为11.376 g·kg~(-1)、1.066 g·kg~(-1)和23.340 g·kg~(-1),较传统移栽苗高24%、15%和8%,差异显著;而其梭梭幼苗氮素、磷素、钾素的总积累量却呈递增趋势,年净增积累量分别为0.297 g·株~(-1)、0.027 g·株~(-1)和0.560 g·株~(-1),是传统移栽苗的2.23倍、1.72倍和1.65倍;各时期梭梭幼苗体内的氮素、磷素、钾素含量及总积累量均高于传统移栽苗。 相似文献
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漠大原油管道SCADA控制系统通讯中断频繁,严重威胁管道的安全运行。基于漠大原油管道通讯中断数据,统计分析了通讯中断时长、通讯中断类型的比例分布特性,结果表明,时长2~12 h的通讯中断频次最高,占总中断次数的44.3%。探讨了漠大原油管道通讯中断原因,其中天气因素与设备故障是导致通讯中断的主要因素,共导致了74.4%的通讯中断时长。为了降低通讯中断频次,结合漠大原油管道的运营现状,提出了4项管理措施:加强天气监控及现场作业管理,做好应急预案;完善管道保护程序;积极开展维护修复工作;加快推进加格达奇以南光缆割接与测试工作。 相似文献
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The weight and composition of soybean seeds (Glycine Max L. Merrill) depend on changes in carbon and nitrogen assimilate supply during grain filling. Soybean pods and seeds are green, evidencing their capacity to capture light. However, the current physiological knowledge does not consider any effect of incident solar radiation reaching the pods on seed weight and composition. The objective of this work was to investigate the response of seed weight and composition to changes in assimilate supply from leaves, to the incident solar radiation reaching the pods and to the combination of both, changes in assimilate supply from the leaves and incident solar radiation on pods of soybean plants. Field experiments were performed during two growing seasons at Balcarce, Argentina. Treatments modified the amount of assimilates supplied by the leaves (plant shading, defoliation), the solar radiation reaching the pods (pod shading) or both (defoliation and pod shading) during seed filling. Plant shading and defoliation reduced seed weight, oil concentration and oil and protein content and increased the concentration of saturated and poli-unsaturated fatty acids while reduced oleic acid percentage. Pod shading increased the concentration of stearic acid and reduced the concentration of linolenic acid. When pods were shaded on defoliated plants, seed weight and oil and protein content decreased while fatty acid composition was similar to values obtained under defoliation treatment. Based on these results, a conceptual model that considers photoheterotrophic nature of reproductive structures of soybean is proposed. Seed weight, oil and protein content and oil fatty acid composition depended on assimilate availability for the seeds. The response of oil and protein content to assimilate supply depended on whether leaves were present or not. The effect of solar radiation incident on pods depended on the amount of assimilates available for the seeds: (i) when carbon allocated was low (defoliation treatments), pods contributed to seed carbon economy but solar radiation incident on them did not affect fatty acid composition; (ii) when carbon allocated to the seeds was high (intact plants), contribution of pods to seed carbon economy was not significant, but the amount of solar radiation incident on pods produced significant changes in fatty acid composition. 相似文献
19.
饲料资源缺乏一直以来都是制约中国畜牧业发展的主要因素。从长远看,常规饲料已不能维持中国畜牧业的可持续发展,开发新的饲料资源是解决饲料不足的重要途径之一。向日葵副产物营养价值较高、来源广、价格低,是一种非常具有开发价值的新型饲料。向日葵副产物包括向日葵饼粕、向日葵盘、向日葵秸秆及葵花籽壳:向日葵饼粕蛋白质含量高、纤维含量低,是一种优质的植物蛋白来源,可以提高奶牛乳汁的营养价值、促进肉牛生长、提高羊的瘤胃发酵效果;向日葵盘粗脂肪含量高,含有大量的膳食纤维,可以提高奶牛的产奶量和乳脂率,促进肉牛增重,提高羊瘤胃挥发性脂肪酸浓度以及粗蛋白质、粗纤维、中性洗涤纤维的消化率;向日葵秸秆富含氮、磷、钾、钙、镁等矿物质元素以及少量的蛋白质,可以为肉牛提供一些常量元素和微量元素,提高羊的日增重,降低料重比;葵花籽壳的主要成分是纤维素和木质素,含有丰富的生物活性物质,可以提高奶牛日增重、肉牛饲料转化率。作者具体介绍了向日葵副产物饼粕、葵盘、秸秆、葵花籽壳的营养价值,以及目前它们在反刍动物饲料中的应用情况,以期为今后向日葵副产物的开发利用提供理论依据。 相似文献
20.
本研究以甘草无菌苗为试验材料,采用植物组织培养的方法,分析50 mmol·L-1 NaHCO3 胁迫下外源海藻糖对甘草幼苗生长量、叶绿素含量、渗透调节物质含量、抗氧化保护酶活性和总黄酮含量的影响。结果表明: 50 mmol·L-1 NaHCO3 胁迫显著降低了甘草幼苗的生长量、叶绿体色素含量、K+ 浓度、抗氧化保护酶(SOD、POD、CAT)活性和总黄酮含量,显著提高了丙二醛、脯氨酸和可溶性糖含量以及Na+浓度;施加15 mmol·L-1 海藻糖可显著提高甘草幼苗的生长量,提高叶绿素含量、K+ 浓度和总黄酮含量,降低丙二酸含量、脯氨酸含量、可溶性糖含量和Na+ 浓度,并且提高抗氧化保护酶活性。因此,NaHCO3胁迫下施加外源海藻糖对甘草幼苗生长具有良好的调节作用,可以增强甘草的抗碱能力,促进甘草幼苗生长。本研究为外源海藻糖提高甘草耐碱性和揭示其调控机制提供理论依据。 相似文献