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充足底墒播后不灌水时肥料和播期组合对小麦生长和耗水的影响 总被引:2,自引:1,他引:2
在充足底墒播后不灌水条件下,进行了适当晚播(10月15日播)与超晚播条件下的小麦肥料试验。主要结果为:(1)播后不灌水条件下超晚播减产严重,主要是单位面积总粒数下降太多,通过适当提高穗密度难以补偿;(2)高施磷条件下(施磷二铵450kg/hm2),随施氮量的增加,开花前的耗水量没有增加,而灌浆期的耗水量则随氮肥用量增加而增加;(3)控制花前无效生长,降低花前耗水,优化开花后的群体结构,提高灌浆期的灌浆强度是降低总耗水、提高水分利用效率的基本途径。 相似文献
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LING Yun-biao XU Rui-yun QIU Wan-shou CHU Zhong-hua YANG Hong-zhi TAN Zhi OU Qing-jia 《园艺学报》2003,19(12):1649-1652
AIM: To investigate the effect of Chinese herbs, Ganxianfang(GXF), on rat hepatic stellate cells (HSC) proliferation and collagen synthesis. METHODS: Two types of herb serum, portal venous serum and circumferential venous serum, were prepared from rats infused intragastrically with 16, 8, 4 times adult dose of GXF decoction. HSC isolated from rat liver were processed with the above sera in vitro. Then we mensurated the radioactivity of HSC admixed with [[3H]H]proline and [[3H]H]thymine to judge the effect on proliferation and collagen synthesis of HSC. RESULTS: Both two types of serum collected 0.5, 1, 2 h after intragastrical infusion inhibited HSC proliferation (P<0.05), and the serum collected 1 h after intragastrical infusion had the strongest effect (P<0.05). Portal serum decreasea collagen synthesis (P<0.05), but circumferential serum had no effect (P>0.05). CONCLUSION: Inhibition of HSC proliferation and decrease of collagen synthesis may contribute to the GXF antifibrotic action. 相似文献
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Effects of aqueous extracts and decomposition of Mikania micrantha H.B.K.
debris on selected agronomic crops 总被引:2,自引:0,他引:2
Laboratory and greenhouse experiments were conducted to determine the effects of aqueous extract and the debris of Mile-a-Minute ( Mikania micrantha H.B.K.) on the germination and growth of four test species, viz. tomato ( Lycopersicon esculentum Mill.), Chinese cabbage ( Brassica chinensis L.), corn ( Zea mays L.) and long bean ( Vigna sesquipedalis L.). Germination percentage, radicle length and fresh weight of two crops, Chinese cabbage and tomato, decreased progressively when plants were exposed to increasing concentrations (12.5, 25, 37.5 and 50 g L−1 ) of aqueous extract of Mikania , but did not affect those of corn and long bean seedlings. The emergence of tomato and Chinese cabbage was greatly reduced when Mikania debris was incorporated into the soil, irrespective of the amount of debris and the decomposition period. In contrast, the emergence of corn and long bean seedlings was not affected. The application of fertilizer (NPK 15 : 15 : 15) enhanced the fresh weight of all seedlings tested as compared with those not supplied with the fertilizer. Four compounds were identified in the leaf extract of Mikania , viz. caffeic acid, p -hydroxybenzaldehyde, resorcinol and vanillic acid. 相似文献
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大白菜子叶离体培养再生植株 总被引:14,自引:0,他引:14
探讨了植物激素、AgNO3 和琼脂浓度对大白菜子叶培养芽再生和植株再生的影响。结果表明:优化培养基条件为MS 培养基中加入5 mg / L BA、0. 5 mg/ L NAA、2 mg/ L AgNO3 和1. 2%~ 1. 6 %琼脂。培养过程中, 子叶的乙烯释放量对芽再生起很重要的作用, 具有高芽再生率的基因型或高浓度琼脂的培养条件下, 子叶产生的乙烯量较少。培养基中有AgNO3 存在时, 尽管子叶的乙烯释放量增加, 芽再生率也有提高。对子叶的乙烯释放量和不定芽再生的关系进行了讨论。 相似文献
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AIM: To observe the effect of Jiawei Sini Decoction (JWSND) on glucocorticoid receptor (GCR) in thymocytes of chronic psychological stress rats. METHODS: The rats were randomly divided into 4 groups, control group (C), model group (M), group treated by JWSND C1, group treated by ginsenosides C2. The number of thymocyte GCR sites and the GCR nuclear thanslocation rate were detected by radioimmunoassay. RESULTS: Compared with the control group, in the model group, the thymocyte weight index lowered significantly ( P<0.05 ), and the GCR nuclear thanslocation rate was increased significantly ( P<0.01 ), but the number of thymocyte GCR sites was unchanged. Compared with the model group, thymus gland weight indexes of C1 and C2 were increased significantly ( P<0.05 ), while the GCR nuclear thanslocation rate lowered significantly ( P<0.01 ). Moreover, no significant difference was found in all indexes between C1 and control group. CONCLUSION: The inhibitory effect of glucocorticoid on the thymus could be significantly reversed by JWSND via suppressing the thanslocation of GCR from cytoplasm to nucleus in chronic psychological stress rats. 相似文献