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81.
hrpZ_(Psta)在转基因大豆中定量表达与疫霉根腐病和灰斑病抗性相关研究 总被引:1,自引:0,他引:1
以T5转hrpZPsta基因大豆JN29-705-15和JL30-187为材料,利用实时荧光定量PCR技术(Quantitative Real Time PCR,qRT-PCR)检测了目标基因在转基因大豆不同组织中的表达量,分别利用下胚轴侵染法和叶面喷施法鉴定疫霉根腐病抗性和灰斑病抗性,并分析目的基因表达量与疫霉根腐病和灰斑病抗性的相关性。结果表明:hrpZPsta基因在大豆的叶、茎、根、籽粒中均有表达,二个株系平均相对表达量分别为8.2/6.1、0.9/0.7、6.5/4.6和0.8/0.7;T5转hrpZPsta基因大豆抗疫霉根腐病和灰斑病能力与野生型相比均有所提高,JN29-705-15对疫霉根腐病抗性从感病提高到中抗,而JL30-187从中抗提高到抗病;hrpZPsta基因在叶中的表达量也与抗灰斑病能力呈正相关,与病情级别呈极显著负相关。试验结果初步证明了外源基因hrp ZPsta在大豆植株中的表达量与受体植株对疫霉根腐病和灰斑病抗性存在一定的相关性。 相似文献
82.
PDCA循环理论由于管理层次多样、运行程序科学严谨,广泛适用于各项管理工作甚至是管理的各个环节。将其引入国家林业局管理干部学院培训教研室制度建设工作中,通过PDCA循环四阶段进行管理,包括科学制定目标和工作计划、认真组织实施制度建设工作、及时检查结果、积极反馈制度建设中存在的问题,提高了培训教研室制度建设和管理质量,使培训教研室制度建设和管理进一步科学化、规范化。 相似文献
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通过对泰兴香荷芋施肥量研究,考查了各处理主要生育期的苗情与长势、成熟期子孙芋产量及商品芋产值效益。结果显示:基施腐熟脱水猪粪15t·hm-2,苗期追施(3.1叶)脱水猪粪15t·hm-2+13-10-18高钾复合肥675kg·hm-2的处理子孙芋产量最高为23 421.90kg·hm-2,商品芋效益为88 506.60元·hm-2;基施有机肥7 500kg·hm-2+苗期追施(3.1叶)有机肥7 500kg·hm-2+13-10-18高钾复合肥450kg·hm-2+膨大肥(8.1叶)13-10-18高钾复合肥900kg·hm-2的处理产量相对较高。 相似文献
86.
以黄瓜、萝卜和白菜种子为试材,采用西洋参水提液处理的方法,研究了不同浓度的健康和患根腐病西洋参水提液对3种受试植物种子萌发率、幼苗下胚轴长、根长和鲜质量的影响,分析健康和患根腐病西洋参的差异性化感作用,以期为进一步筛选和鉴定差异化感物质提供参考依据.结果 表明:患根腐病西洋参水提液分别在25000 mg·L-1和2500 mg·L-1显著抑制黄瓜和白菜种子萌发,抑制率最高分别为37.25%和24.00%,而健康西洋参水提液则无明显抑制作用.此外,患根腐病西洋参水提液也明显降低了黄瓜、白菜、萝卜幼苗的根长和下胚轴长,抑制了幼苗的生长,而健康西洋参水提液不明显.总体上表明健康和根腐病西洋参水提液对黄瓜、萝卜和白菜种子的化感作用存在显著差异性. 相似文献
87.
WU Ting-ting LI Jin-yu WU Cun-xiang SUN Shi MAO Ting-ting JIANG Bing-jun HOU Wen-sheng HAN Tian-fu 《中国农业科学(英文版)》2015,(4):622-632
Soybean(Glycine max(L.) Merr.) is a typical short-day and warm season plant, and the interval between emergence and flowering has long been known to be regulated by environmental factors, primarily photoperiod and temperature. While the effects of photoperiod and temperature on soybean flowering have been extensively studied, a dissection of the component photo-thermal effects has not been documented for Chinese germplasm. Our objective of the current study was to evaluate the independent- and interactive-photo-thermal responses of 71 cultivars from 6 ecotypes spanning the soybean production regions in China. These cultivars were subjected in pot experiments to different temperature regimes by planting in spring(low temperature(LT)) and summer(high temperature(HT)), and integrating with short day(SD, 12 h), natural day(ND, variable day-length), and long day(LD, 16 h) treatments over two years. The duration of the vegetative phase from emergence to first bloom(R1) was recorded, and the photo-thermal response was calculated. The outcome of this characterization led to the following conclusions:(1) There were significant differences in photo-thermal response among the different ecotypes. High-latitude ecotypes were less sensitive to the independent- and interactive-photo-thermal effects than low-latitude ecotypes; and(2) there was an interaction between photoperiod and temperature, with the effect of photoperiod on thermal sensitivity being greater under the LD than the SD condition, and with the effect of temperature on photoperiodic sensitivity being greater under the LT than the HT condition. The strengths and limitations of this study are discussed in terms of implications for current knowledge and future research directions. The study provides better understanding of photo-thermal effects on flowering in soybean genotypes from different ecotypes throughout China and of the implications for their adaptation more broadly. 相似文献
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89.
Junfeng Wang Yujie Shi Yunna Ao Dafu Yu Jiao Wang Song Gao Johannes M. H. Knops Chunsheng Mu Zhijian Li 《Journal of Agronomy and Crop Science》2019,205(6):554-561
Extreme drought events can directly decrease productivity in perennial grasslands. However, for rhizomatous perennial grasses it remains unknown how drought events influence the belowground bud bank which determines future productivity. Ninety‐day‐long drought events imposed on Leymus chinensis, a rhizomatous perennial grass, caused a 41% decrease in the aboveground biomass and a 28% decrease in belowground biomass. Aboveground biomass decreased due to decrease in both the parent and the daughter shoot biomass. The decreases in daughter shoot biomass were due to reductions in both the shoot number and each individual shoot weight. Most importantly, drought decreased the bud bank density by 56%. In addition, drought induced a bud allocation change that decreased by 41% the proportion of buds that developed into shoots and a 41% increase in the buds that developed into rhizomes. Above results were supported by our field experiment with watering treatments. Thus, a 90‐day‐long summer drought event decreases not only current productivity but also future productivity, because the drought reduces the absolute bud number. However, plasticity in plant development does partly compensate for this reduction in bud number by increasing bud development into rhizomes, which increases the relative allocation of buds into future shoots, at the cost of a decrease in current shoots. 相似文献