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1.
大樱桃营养丰富,色泽鲜艳,口感香甜,具有补中益气、祛风湿等功效,非常受市场欢迎。但由于大樱桃采摘后易软化腐败,不易保存,因此需要加强大樱桃保鲜研究。本文介绍了大樱桃采前因素对贮藏品质的影响及控制措施,并总结了大樱桃低温保鲜、气调保鲜、涂膜保鲜、减压保鲜、辐照保鲜及保鲜剂处理等保鲜技术的研究进展,以期促进大樱桃保鲜技术的发展,减少腐损率,提高经济效益。 相似文献
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To clarify the changes in plant photosynthesis and mechanisms underlying those responses to gradually increasing soil drought stress and reveal quantitative relationships between photosynthesis and soil moisture, soil water conditions were controlled in greenhouse pot experiments using 2-year-old seedlings of Forsythia suspensa (Thunb.) Vahl. Photosynthetic gas exchange and chlorophyll fluorescence variables were measured and analyzed under 13 gradients of soil water content. Net photosynthetic rate (P N), stomatal conductance (g s), and water-use efficiency (W UE) in the seedlings exhibited a clear threshold response to the relative soil water content (R SWC). The highest P N and W UE occurred at R SWC of 51.84 and 64.10%, respectively. Both P N and W UE were higher than the average levels at 39.79% ≤ R SWC ≤ 73.04%. When R SWC decreased from 51.84 to 37.52%, P N, g s, and the intercellular CO2 concentration (C i) markedly decreased with increasing drought stress; the corresponding stomatal limitation (L s) substantially increased, and nonphotochemical quenching (N PQ) also tended to increase, indicating that within this range of soil water content, excessive excitation energy was dispersed from photosystem II (PSII) in the form of heat, and the reduction in P N was primarily due to stomatal limitation. While R SWC decreased below 37.52%, there were significant decreases in the maximal quantum yield of PSII photochemistry (F v/F m) and the effective quantum yield of PSII photochemistry (ΦPSII), photochemical quenching (q P), and N PQ; in contrast, minimal fluorescence yield of the dark-adapted state (F 0) increased markedly. Thus, the major limiting factor for the P N reduction changed to a nonstomatal limitation due to PSII damage. Therefore, an R SWC of 37.52% is the maximum allowable water deficit for the normal growth of seedlings of F. suspensa, and a water content lower than this level should be avoided in field soil water management. Water contents should be maintained in the range of 39.79% ≤ R SWC ≤ 73.04% to ensure normal function of the photosynthetic apparatus and high levels of photosynthesis and efficiency in F. suspensa. 相似文献
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中国林产工业集聚水平测度及演进趋势与产业经济增长——基于2003—2016年数据的实证分析 总被引:1,自引:1,他引:0
利用产业集聚指数和产业区域集中度测算2003—2016年中国林产工业两位数产业集聚水平,并实证分析林产工业两位数产业集聚与其经济增长的关系。研究表明:1)木材加工业和家具制造业处于中度集聚状态,而造纸与纸制品制造业处于低度集聚状态;2)木材加工业集聚度呈上升趋势,而家具制造业和造纸与纸制品制造业集聚度呈下降趋势;3)中国林产工业主要集聚在经济发达的江苏、广东、山东和浙江等沿海省份,但木材加工业和家具制造业分别在广西和四川有较快增长趋势;4)木材加工业集聚水平与其产业经济增长呈正相关,而家具制造业和造纸与纸制品制造业集聚与其产业经济增长呈负相关。 相似文献
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Hui Li Huicheng Xie Zilong Du Xianshuang Xing Jie Zhao Jing Guo Xia Liu Shuyong Zhang 《林业研究》2018,29(4):925-931
The declines in soil fertility and productivity in continuously cropped poplar plantations are related to phenolic acid accumulation in the soil. Nitrogen is a vital life element for poplar and whether the accumulation of phenolic acid could influence nitrogen metabolism in poplar and thereby hinder continuous cropping is not clear. In this study, poplar cuttings of Populus × euramericana ‘Neva’ were potted in vermiculite, and phenolic acids at three concentrations (0X, 0.5X and 1.0X) were added according to the actual content (1.0X) in the soil of a second-generation poplar plantation. Each treatment had eight replicates. We measured gas exchange parameters and the activities of key enzymes related to nitrogen metabolism in the leaves. Leaf photosynthetic parameters varied with the concentration of phenolic acids. The net photosynthetic rate (PN) significantly decreased with increasing phenolic acid concentration, and non-stomatal factors might have been the primary limitation for PN. The activities of nitrate reductase (NR), glutamine synthetase (GS) and glutamate synthase (GOGAT), as well as the contents of nitrate nitrogen, ammonium nitrogen, and total nitrogen in the leaves decreased with increasing phenolic acid concentration. This was significantly and positively related to PN (P < 0.05). The low concentration of phenolic acids mainly affected the transformation process of NO3? to NO2?, while the high concentration of phenolic acids affected both processes, where NO3? was transferred to NO2? and NH4+ was transferred to glutamine (Gln). Overall, phenolic acid had significant inhibitory effects on the photosynthetic productivity of Populus × euramericana ‘Neva’. This was probably due to its influence on the activities of nitrogen assimilation enzymes, which reduced the amount of amino acids that were translated into protein and enzymes. Improving the absorption and utilization of nitrogen by plants could help to overcome the problems caused by continuous cropping. 相似文献
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为查明梭鲈(Lucioperca lucioperca)凸眼病病原,从患病梭鲈病灶眼、肝、脾和肾分离纯化病原菌,进行了生理生化特性测定及16S rRNA基因序列分析,并开展人工感染试验,测定其血清型及MLST分型,并利用纸片扩散法进行药敏特性分析。结果显示:分离菌株(命名为SL1701株)为本次引发梭鲈病害的致病菌,Ib-ST261型。回归感染实验证实,分离得到的细菌SL1701对健康梭鲈具有非常强的致病性,4.5×105CFU/m L时可使80%受感染梭鲈死亡,并可复制出自然发病鱼的症状。菌株SL1701革兰氏染色为阳性链球菌,γ溶血,生理生化特性与普通无乳链球菌基本一致,16S rRNA基因序列与无乳链球菌(Streptococcus agalactiae)同源性最高,综合判定分离菌株为无乳链球菌(Streptococcus agalactiae)。药敏试验结果显示:分离菌株SL1701对氟苯尼考、氟罗沙星等17种抗生素高度敏感,对青霉素、磷霉素等8种抗生素耐药。结果表明,分离菌株SL1701为Ib-ST261型无乳链球菌,养殖时可选用氟苯尼考及氟罗沙星等药物进行防控。 相似文献
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ABCC蛋白为ABC转运蛋白超家族中的一个亚家族,主要参与将各种分子从细胞质输出到外部介质或细胞器基质的过程。为了研究OsABCC10基因是否参与水稻Na+的运输,本研究从水稻基因组中克隆出OsABCC10基因,该基因cDNA全长4539 bp,编码1513个氨基酸。OsABCC10基因表达分析发现,其主要在水稻根中表达,表达量随盐处理浓度的升高及处理时间的延长而增强,表明OsABCC10基因的表达受盐胁迫的调控。亚细胞定位分析证实OsABCC10定位于液泡膜上。盐胁迫条件下,与野生型相比,osabcc10突变体表现出对盐更敏感,而且木质部汁液中Na+浓度升高。然而,当OsABCC10基因导入野生型酵母菌株BY4741表达时,与对照组实验相比,有OsABCC10表达的酵母细胞的生长受到了抑制。该结果与植物生理实验结果相反,这可能与OsABCC10蛋白在酵母中的定位有关。本研究初步推测OsABCC10基因参与水稻Na^+的转运,是一个新的耐盐基因。 相似文献
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B型烟粉虱取食能够诱导烟草产生对烟蚜的抗性反应,为了明确水杨酸和茉莉酸防御信号途径与烟粉虱诱导抗蚜防御之间的关系,采用生化分析、实时定量PCR、蚜虫生物活性测定等方法比较了烟粉虱若虫取食对烟草水杨酸、茉莉酸含量、通路下游防御基因表达水平的影响及外源水杨酸、茉莉酸对烟蚜生长发育的影响。结果显示:烟粉虱侵染能够显著激活水杨酸防御途径,在取食15天后,水杨酸水平较对照升高1.40倍,水杨酸下游防御基因PR-1a及PR-2a分别较对照升高3.22和0.74倍;然而烟粉虱侵染后烟草叶片茉莉酸含量与对照相比无显著变化,JA下游防御基因PI-II和TPI的转录水平分别较对照降低73.91%和56.73%。生测结果显示,外源施用水杨酸对烟蚜的存活率和相对平均生长率具有显著不利影响。烟草叶片施用1 mmol/L水杨酸后,蚜虫的存活率及相对生长率分别较对照降低43.2%和11.54%;然而喷施茉莉酸甲酯对蚜虫的生长发育无不利影响。上述结果表明,水杨酸介导的防御应答在B型烟粉虱取食诱导烟草的抗蚜防御中起重要作用。 相似文献
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Suying Hou Guoquan Chen Wenji Wang Liqun Xia Zhiwen Wang Yishan Lu 《Journal of fish diseases》2020,43(5):571-581
Nocardia seriolae, a Gram-positive bacterium, is the main pathogen of fish nocardiosis. Protein NlpC/P60 is a cell-wall peptidase and a potential virulence factor of N. seriolae. Subcellular localization research revealed that both NlpC/P60-GFP and NlpC/P60Δsig-GFP fusion proteins were evenly distributed in the whole cell of fathead minnow (FHM) cells. Furthermore, typical apoptotic features, such as nuclear pyrosis and apoptotic bodies, were observed in the transfected FHM cells and grouper spleen cells by the overexpression of protein NlpC/P60. Then, quantitative assays of mitochondrial membrane potential (ΔΨm) value, caspase-3 activity and apoptosis-related gene (Bax, BNIP3, TNF1 and TNF6) mRNA expression were conducted. The results showed that ΔΨm was decreased, caspase-3 was significantly activated, and the mRNA expression of pro-apoptotic genes (Bax and BNIP3) and tumour necrosis factors (TNF1 and TNF6) was up-regulated in NlpC/P60-overexpressed cells. Taken together, the results indicated that the protein NlpC/P60 of N. seriolae might involve in apoptosis regulation. This study may lay the foundation for further study on the function of N. seriolae NlpC/P60 and promote the understanding of the virulence factors and pathogenic mechanism of N. seriolae. 相似文献
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本研究在网室内利用蜜蜂为6个棉花不育系材料授粉,以人工授粉作为对照,研究蜜蜂授粉和人工授粉在农艺性状等指标上的差异。结果表明,蜜蜂授粉和人工授粉的单株结铃数和空果枝数有极显著差异;不同不育系的单株结铃数差异极显著,果枝数有显著差异。晋56-1A、晋56-3A、晋56-6A的单株结铃数在蜜蜂授粉和人工授粉间有显著性差异,晋56-2A和晋56-5A的单株结铃数在不同授粉方式下有极显著差异;晋56-4A和晋56-6A的空果枝数有极显著差异。室内考种表明,蜜蜂授粉的衣分范围为26.3%~39.6%,人工授粉的衣分为29.4%~35.3%,人工授粉衣分范围相对较小。人工授粉的单铃籽粒数、制种产量均比蜜蜂授粉大,铃重、籽指、发芽率相差不大。蜜蜂授粉制种产量达人工授粉的80%左右;而制种成本可节约50%以上。因此,选择强群势蜂群、适时有效的虫害管理等措施,可提高棉花不育系制种效率,对棉花“三系”的发展有重要的推动作用。 相似文献