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1.
Nutrient transfer between the root zones of soybean and maize plants connected by a common mycorrhizal mycelium 总被引:8,自引:0,他引:8
Gabor J. Bethlenfalvay Maria G. Reyes-Solis Susan B. Camel Ronald Ferrera-Cerrato 《Physiologia plantarum》1991,82(3):423-432
The objective of the study was to determine whether nutrient fluxes mediated by hyphae of vesicular-arbuscular mycorrhizal (VAM) fungi between the root zones of grass and legume plants differ with the legume's mode of N nutrition. The plants, nodulating or nonnodulating isolines of soybean [ Glycine max (L.) Merr.], were grown in association with a dwarf maize ( Zea mays L.) cultivar in containers which interposed a 6-cm-wide root-free soil bridge between legume and grass container compartments. The bridge was delimited by screens (44 μm) which permitted the passage of hyphae, but not of roots and minimized non VAM interactions between the plants. All plants were colonized by the VAM fungus Glomus mosseae (Nicol. & Gerd.) Gerd. and Trappe. The effects of N input to N-sufficient soybean plants through N2 -fixation or N-fertilization on associated maize-plant growth and nutrition were compared to those of an N-deficient (nonnodulating, unfertilized) soybean control. Maize, when associated with the N-fertilized soybean, increased 19% in biomass, 67% in N content and 77% in leaf N concentration relative to the maize plants of the N-deficient association. When maize was grown with nodulated soybean, maize N content increased by 22%, biomass did not change, but P content declined by 16%. Spore production by the VAM fungus was greatest in the soils of both plants of the N-fertilized treatment. The patterns of N and P distribution, as well as those of the other essential elements, indicated that association with the N-fertilized soybean plants was more advantageous to maize than was association with the N2 -fixing ones. 相似文献
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The fatty acid composition of ER, Golgi and peribacteroid membrane (PBM) from root nodules formed on Glycine max after infection with different strains of Bradyrhizobium japonicum has been analysed by gas chromatography. In each plant-microsymbiont combination the fatty acid composition (FAC) of the PBM is distinct from ER and Golgi. The similarity between ER and PBM fatty acid composition is significantly stronger than between Golgi and PBM. In addition the fatty acid composition of all membrane systems in nodules is affected by the microsymbiont strain. A comparison of four strains of Bradyrhizobium japonicum grown in agar surface culture and isolated as the symbiotic bacteroids reveals a decrease in oleic acid during bacteroid differentiation. 相似文献
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本文根据日本血吸虫尾蚴发育分期,除胚细胞(SI)已有报道(胡敏等,1991)外,对胚球期(S2)、尾蚴雏体期(S3)、成熟前期(S4)及成熟期(S5)在透射电镜对体被及其要素(tegumental elements)进行剖析。结果原(始)体被最早出现于S2,表性分布。随后(S3—S5)消失而为真正体被所取代。体被皱褶亦随高隆。基膜及体棘为各期基本结构。感觉乳突于S3、S4出现。到了S5渐趋复杂而完善并对其结构作了较精细的描述。糖膜直至成熟期(S5)才出现,为尾期成熟的标志。近期对糖膜组份有较深入的研究并对其生理功能进行讨论。 相似文献
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In areas with short growing seasons, poor early vegetative growth of soybean (Glycine max [L.] Merr.) is often attributed to the restrictive effect of cool soil conditions on nodulation and N2-fixation by this subtropical grain legume. However, there are few studies regarding potential genetic variability of soybean and Bradyrhizobium japonicum genotypes for nodulation at cool root-zone temperatures (RZT). Experiments were conducted to (1) test for a threshold temperature for low RZT inhibition of soybean nodulation and (2) ascertain whether this threshold temperature response depends mainly on the micro- or macrosymbiont. In experiment 1 soybean seedlings (Glycine max [L.] Merr. cv. Maple Arrow) were inoculated with 1 ml of a log phase culture of B. japonicum strain 532C, H8 or H15 (the latter two strains were isolated from cold soils of Hokkaido, northern Japan) and maintained at either 16, 17.5, 19 or 25°C RZT. In experiment 2 seedlings of cv. Maple Arrow and a cold-tolerant Evans isoline were combined with strain 532C and two Hokkaido strains (H5, H30) at both 19 and 25°C RZT. Results indicated that N2-fixation at 44 days after inoculation was substantially reduced (30–40%) by RZT as high as 19°C, due to development of less nodule mass and to a delay in the onset of N2-fixation and a small decrease in the number of nodules formed. However, the number of nodules formed was sharply reduced and the time required for the first appearance of nodules was significantly delayed below an RZT of 17.5°C. Differences between cultivars for nodulation and N accumulation were apparent at 25°C, but were abolished by growth at 19°C, indicating that, in spite of differences in growth potential between the cultivars under optimum RZT, both cultivars were equally limited by low RZT. Differences between B. japonicum strains were consistent across temperatures and were largely attributable to higher rates of specific nodule activity recorded for strain 532C, which seemed well adapted to low RZT. These results suggest that the host plant mediates the sensitivity of N2-fixation under low RZT and that inoculation with B. japonicum strains from cold environments is unlikely to enhance soybean N2-fixation under cool soil conditions. 相似文献
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本实验用平截末端连接法把卡那霉素抗性基因插入到大豆根瘤菌(Brahyrh;zobiumjaponicum)110的苹果酸脱氢酶(mdh)基因中,致使mdh基因失活,再通过电激法把这一重组基因转入大豆根瘤菌(Brahyrhizobiumjaponicum)2143中,进而探讨mdh基因失活对大豆固氮作用的影响。 相似文献
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日本血吸虫尾蚴发育的超微结构观察:Ⅱ.腺体 总被引:1,自引:1,他引:0
在透射电镜下观察不同发育期日本血吸虫尾蚴的腺体。结果:胚球期(S2)主要出现体细胞分裂与分化,首次证明分泌细胞及其小体在S2出现,雏体期(S3)见到前钻腺细胞体与钻腺管束及分泌小体。成熟前期(S4)钻腺分泌小体基质分A/B为主两型,分别演变为成熟期(S)5的后/前钻腺分泌小体。头腺分泌小体亦在S4出现。从前钻腺体排至头器远端腺管的分泌小体,显眼透明球消失成为致密同质性小体,已为大家共识。而在后钻腺 相似文献
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日本血吸虫中国株次黄嘌呤鸟嘌呤磷酸核糖转移酶的克隆、表达及其免疫保护性研究 总被引:6,自引:0,他引:6
根据基因库中日本血吸虫次黄嘌呤鸟嘌呤磷酸核糖转移酶 (HGPRT) EST (BU803192) 以及日本血吸虫成虫cDNA文库载体λgt11多克隆位点邻近核苷酸序列设计引物,以日本血吸虫成虫cDNA文库为模板,采用锚式PCR对SjHGPRT基因不完整的3′端和5′端进行扩增、测序,用电子软件拼接,获得SjHGPRT全长cDNA (1 270 bp),经序列分析,推断该片段含有编码SjHGPRT基因的完整阅读框,其编码基因与曼氏血吸虫次黄嘌呤鸟嘌呤磷酸核糖转移酶 (SmHGPRT) 全长编码基因碱基一致性为82%,其理论推导的氨基酸组成与曼氏血吸虫次黄嘌呤鸟嘌呤磷酸核糖转移酶的一致性约为83%. 将其编码基因克隆到表达载体pQE30上,在大肠杆菌M15中获得准确、高效表达,表达产物分子质量约为28 ku. 用日本血吸虫成虫抗原免疫血清对表达产物进行蛋白质印迹检测,在预测位置上出现明显的识别条带. 重组蛋白动物免疫保护性结果显示:在虫荷、每克肝卵、每克粪卵和雌子宫内卵数方面,疫苗组与对照组比较差异均具有显著性 (P < 0.05,P < 0.01). 结果表明,日本血吸虫次黄嘌呤鸟嘌呤磷酸核糖转移酶 (SjHGPRT) 全长cDNA成功克隆并在大肠菌中得到表达,表达产物具有良好的抗原性和动物免疫保护效果,是一种潜在的具有部分免疫保护性的抗血吸虫病疫苗候选分子. 相似文献
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