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11.
为研究三熟制条件下适合种植的再生稻品种及头季叶片衰老频度对再生力特性的影响,在大田试验条件下,以10个杂交水稻品种为材料,比较分析了这些品种的再生力、再生季产量及头季衰老强度等若干性状。结果表明,头季不同品种结实率与再生季再生力呈正相关关系,相关系数为0.620,头季千粒重、叶干质量下降率、叶绿素含量下降率、产量与再生季再生力呈负相关关系,相关系数分别为-0.522、-0.516、-0.637、-0.676。再生季有效穗数与再生力呈显著正相关关系,与活芽率呈负相关,相关系数分别为0.757和-0.615。头季结实率、叶片叶绿素含量、产量,以及再生季有效穗数和千粒重是影响再生力的重要因素。综合两季产量和再生力特性来看,深两优5814、C两优608、准两优608、丰两优香1号等4个品种可以作为再生稻在江西中北部的三熟制条件下种植。  相似文献   
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棉花早衰是指由于其自身或外部因素,在有效的生育期内,棉株局部或整体过早终止生命活动而影响棉花产量和品质形成的现象。该文综述了棉花早衰的表现及判断指标,分析了引起棉株发生早衰的因素,并提出了预防棉花早衰的对策措施,为今后开展相关工作提供参考。  相似文献   
14.
红壤旱地芝麻防早衰叶面调控剂筛选研究   总被引:2,自引:0,他引:2  
研究结果表明,速效肥料、生长调节剂及抗病药剂对保持芝麻生长中后期的正常生长都能起到积极作用。"磷酸二氢钾+硝酸铵+腐植酸+赤霉素"配制能有效防控红壤旱地芝麻早衰,在此配方基础上,添加代森锰锌能对防控芝麻叶部及茎部病害起到一定的作用,从而增强了红壤旱地上芝麻的抗早衰能力。  相似文献   
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AIM To investigate the role of p300 in aging-related atrial fibrosis in human atrial fibroblasts (HAFs) and its potential mechanism. METHODS HAFs were obtained from human left atrial tissue, and the senescence model was established by cell passage. Senescence-associated β-galactosidase (SA-β-Gal) staining was used to detect the cell senescence, and Western blot was used to determine the protein levels of p300, p53, Smad3 and other senescence and fibrosis associated proteins in HAFs. RESULTS Compared to passage 3 HAFs, the proportion of senescent cells, and the protein levels of p300, p53, p-Smad3 and other senescence and fibrosis associated proteins were increased in HAFs at passage 7 and 11 (P<0.05). After treated with curcumin (a p300 inhibitor) or transfection with p300 small-hairpin (sh) RNA plasmid, the protein levels of p300, and the senescence and fibrosis associated proteins were decreased in HAFs at passage 7(P<0.05). Up-regulation of p300 by transfection with p300 over-expression plasmid increased the protein levels of p53, Smad3 and MMP-2 in HAFs at passage 3 (P<0.05). CONCLUSION p300/p53/Smad3 signaling pathway plays an important role in aging-related atrial fibrosis in HAFs.  相似文献   
17.
《Journal of plant nutrition》2013,36(12):2453-2468
Abstract

The top three leaves play important roles in biomass production and grain yield of rice (Oryza sativa L.) crop since the three leaves not only assimilate majority of carbon for grain filling during ripening phase, but also provide large proportion of remobilized‐nitrogen (N) for grain development during their senescence. The objectives of this study were to (a) compare senescence of the top three leaves and (b) compare the changes in N, chlorophyll, and ribulose‐1,5‐bisphosphate carboxylase/oxygenase (Rubisco) contents of the top three leaves after their full expansion in field‐grown rice plants. When the basis of comparison among the top three leaves was plant age in terms of days after transplanting (DAT), senescence generally started earliest in ?3rd leaf, intermediate in ?2nd leaf, and latest in flag leaf. If the basis of comparison among the top three leaves was leaf age in terms of days after full leaf expansion (DAFE), it was not clear which leaf senesced earlier. Senescence rate was generally greatest in flag leaf, intermediate in ?2nd leaf, and smallest in ?3rd leaf. Ribulose‐1,5‐bisphosphate carboxylase/oxygenase content declined earlier, and at a faster rate than N and chlorophyll contents during the senescence of all top three leaves. Correlation analysis indicated a close relationship between N and chlorophyll contents. Ribulose‐1,5‐bisphosphate carboxylase/oxygenase content correlated with N content better than with chlorophyll content. The suitability of N, chlorophyll, and Rubisco contents for quantifying the leaf senescence of field‐grown rice plants is discussed.  相似文献   
18.
Field experiments were conducted over two growing seasons to investigate the effects of variations in water regime and planting pattern on the growth of rice plant roots and shoots and on yield. Four water regimes were evaluated with split plot design: intermittent flooding during the vegetative stage only (IF‐V); intermittent flooding extending into the reproductive stage (IF‐R); not flooded (NF); and continuously flooded (CF), interacting with three different planting patterns: single seedling per hill with wider 30 × 30 cm spacing (P1); single seedling per hill with closer 20 × 20 cm spacing (P2); and three to four seedlings per hill with 20 × 20 cm spacing (P3). The treatment combination CF/P3 corresponds most closely with current conventional practice. The other combinations were evaluated to contribute to a better understanding of the effects of the two parameters studied, respectively and together. IF‐V/P1 was considered as an approximation of System of Rice Intensification (SRI) practice. This study found that the combination of singly transplanted seedlings, both P1 and P2, with the IF‐V water regime improved root length density, root physiological activity, and chlorophyll content of the upper and lower leaves, leading to higher grain yield compared with the other treatment combinations. With continuous flooding (CF), P2 gave 23 % more yield compared with the P3 planting pattern. Combining IF‐V and P2 produced 32 % more grain yield compared with the CF/P3 treatment. These results showed a synergistic effect on grain yield from reduced intra‐hill competition and IF‐V water management. In these trials, there was no significant yield difference between the IF‐V/P1 and CF/P3 treatments. Wider spacing improved the performance of individual hills when grown under IF‐V water regimes, but tiller number per unit area remained a dominant determinant of yield. The yield reduction observed for CF/P1 compared with CF/P3 indicated that in more hypoxic CF soils, denser plant populations can produce more than sparser ones, whereas the latter benefit from more aerobic soil conditions. Intermittent irrigation during the vegetative growth stage and transplanting single seedlings/hill are major elements of SRI methodology. These findings contribute to an understanding of why SRI methods can produce the higher yields reported. A consideration of the effects of interaction between planting pattern and water regime shows the need to establish empirically the optimum values for these treatments according to varietal, soil and climatic characteristics for the greatest yield response.  相似文献   
19.
以玉米杂交种先玉335和郑单958及其亲本为材料,分析了叶片和子粒在授粉后不同时期衰老相关基因表达的变化规律。结果表明,2个叶绿体绿色保持基因SGR1和SGR2在杂交种先玉335和郑单958及其亲本穗三叶中的表达随着授粉后时间的延长整体上呈现上升趋势,但是先玉335的基因表达量要高于郑单958。叶片衰老诱导基因SAP1在叶片发育过程中上调表达,SAP2则表现出先增后减的趋势。以不同生长发育时期的子粒为材料,分析了子粒发育中衰老相关基因SAG1,SAG2和SAG3的表达规律。结果表明,SAG1基因的表达水平随着子粒的发育而降低,而SAG2和SAG3基因则在子粒的成熟过程中表达量呈现上升的趋势。  相似文献   
20.
A field experiment with three potato cultivars, where plants were inoculated withPhytophthora infestans, was used to parameterize a model of potato growth and blight population dynamics. The model was validated by accurately simulating a field experiment conducted in another year. Sensitivity analysis with the model showed that late cultivars are longer able to maintain a green canopy in the presence of disease, but still suffer more yield loss than early cultivars. The level of partial resistance of a cultivar was more important than its level of tolerance, and other plant characteristics. The model calculations showed that only between 4 and 15% of the yield loss in the experiments was due to accelerated leaf senescence caused by the disease; the major part of the loss was caused by lesion coverage of leaves.  相似文献   
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