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31.
项雷文 《氨基酸和生物资源》2009,31(3):15-17
目的:为研究乌龙茶生产工艺对其咖啡因含量的影响。方法:利用紫外分光光度法测定各个生产工序的安溪乌龙茶本山品种半成品中咖啡因含量。结果:安溪乌龙茶本山品种成品相对其他工序的半成品而言,咖啡因含量明显增多,比鲜叶提高了16.1%。结论:生产工艺尤其是加热对安溪乌龙茶本山品种中咖啡因含量有较大影响。 相似文献
32.
良种茶树芽叶中氨基酸研究 总被引:2,自引:0,他引:2
黄秋转 《氨基酸和生物资源》1996,18(1):13-15
本文报导利用日立-EG型氨基酸自动分析仪测定的六个茶树良种芽叶中十九种氨基酸组成情况,并以此为依据对良好的品质风格进行了探讨。 相似文献
33.
云南茶树地方品种农艺性状与品质性状遗传多样性分析 总被引:10,自引:0,他引:10
蒋会兵 《植物遗传资源学报》2013,14(4):634-640
为发掘具有优异农艺性状与品质性状的茶树品种资源,对51份云南茶树地方品种进行农艺和品质性状遗传多样性分析。结果表明,云南茶树地方品种农艺和品质性状存在丰富的遗传变异,农艺性状变异系数平均为25.84%,多样性指数平均为1.94;生化成分变异系数平均为16.53%,多样性指数平均为1.88;茶叶感官审评红茶品质总分达87.5分~94.2分,绿茶品质总分达78.8分~91.5分,茶树品种红、绿茶适制性的多样性指数平均为0.92和0.94;聚类分析将供试材料分为3类:第Ⅰ类品种主要适合制作红茶,第Ⅱ类品种主要适合制作绿茶,第Ⅲ类为生化成分特异性品种。并从中筛选出18份优异品种资源,为今后的生产和育种提供利用。 相似文献
34.
【目的】明确沃尔巴克氏菌Wolbachia对茶尺蠖两近缘种杂交卵孵化的影响及相关机制。【方法】使用2.5 mg/mL四环素浸液处理1 min后的新鲜茶树叶片连续饲喂灰茶尺蠖Ectropis grisescens幼虫3代,建立不携带Wolbachia的灰茶尺蠖种群。通过携带和不携带Wolbachia的灰茶尺蠖成虫分别与小茶尺蠖E.obliqua成虫进行杂交,探究Wolbachia对二者杂交卵孵化的影响。同时利用iTRAQ技术检测并分析携带和不携带Wolbachia的灰茶尺蠖精子蛋白的差异。【结果】与自然携带Wolbachia的灰茶尺蠖相比,去除Wolbachia后的灰茶尺蠖与小茶尺蠖杂交卵孵化率从3.92%显著提高到56.20%,表明Wolbachia诱导胞质不亲合。精子蛋白差异分析显示,携带和不携带Wolbachia的灰茶尺蠖的精子蛋白中,共有128个蛋白显著差异表达,其中KEGG数据库注释到45个差异蛋白富集到鞘脂类代谢、唾液分泌、溶酶体、鞘脂信号通路和鞘糖脂生物合成等106个通路中,其中鞘脂类代谢通路中与神经酰胺合成相关的神经酰胺酶和磷酸酯酶显著上调表达。【结论】共生菌Wolbac... 相似文献
35.
南方红壤区3年生茶园土壤呼吸特征 总被引:4,自引:0,他引:4
为探讨南方红壤区茶园的土壤呼吸特征,采用LI-Cor8100开路式土壤碳通量测定系统观测3年生茶园系统的土壤呼吸速率,对茶园土壤呼吸速率的季节变化和在茶行尺度上的空间异质性进行了研究。结果表明,茶园土壤呼吸速率的月动态变化呈明显的单峰曲线特征,峰值出现在8月;茶园土壤呼吸速率的月动态变化与温度呈极显著相关(P<0.01),土壤10 cm的温度能够解释茶园不同观测区域土壤呼吸速率月动态变化的67.79%~88.52%;用指数方程计算的茶园不同观测区域土壤呼吸Q10值为1.58~1.86。在茶行尺度上,茶园土壤呼吸速率存在明显的空间异质性,土壤呼吸速率通常在距离茶树基部较近的位置较高;根系生物量能够解释茶园土壤呼吸速率在茶行尺度上空间变异的82.68%。因此,根系分布的空间差异是造成茶园土壤呼吸速率空间异质性的主要原因。 相似文献
36.
Young anthers excised from closed tea flower buds ( Camellia sinensis L.) were stained as fresh tissues with p-dimethylaminocinnamaldehyde reagent to localize flavanols associated with nuclei and chromosomes, apart from those flavanols stored in vacuoles. This staining reagent yields a blue colour for flavanols. In the nonsporogenic somatic cells of developing anthers, flavanols were found to be attached to chromosomes at all mitotic stages. Male meiosis started at a bud size of about 3.5 mm in diameter in pollen mother cells which displayed generally more or less pronounced blue nuclei and cytoplasm. The meiotic divisions from prophase I to telophase II were characterized by blue stained nuclei and chromosomes, but within the cytoplasm there was, if any, a random and very poor reaction for flavanols. Metaphase and telophase of meiotic divisions showed maximally condensed chromosomes staining dark blue. Early in telophase II, the cytoplasm was again stained blue; this faded at late tetrad stage. Flavanols of young mitotic and older non-mitotic anthers were determined using high pressure liquid chromatography--chemical reaction detection (HPLC-CRD). Catechin, epicatechin, B2, and epigallocatechin were minor compounds, whereas epicatechin gallate and epigallocatechin gallate were found in higher amounts. The major flavanol compound of the anthers, epicatechin gallate, exhibited a significant affinity to histone sulphate, as shown by UV-VIS spectroscopic titration. 相似文献
37.
红茶菌抗菌蛋白提取与纯化 总被引:7,自引:0,他引:7
红茶菌液经过滤、离心、减压浓缩 ,丙酮加盐沉淀 ,Sephadex G-50柱层析后 ,得到两个分子量部分 ,其中小分子量部分有抗菌活性 ,采用尿素— SDS—PAGE测定抗菌蛋白分子量未获成功 相似文献
38.
39.
Regiane Cristina Oliveira de Freitas Bueno Jos Roberto Postali Parra Adeney de Freitas Bueno 《Biological Control》2009,51(3):355-361
A new strain of the parasitoid Trichogramma pretiosum, was collected in Rio Verde County, State of Goiás, Central Brazil, and designated as T. pretiosum RV. This strain was then found to be the most effective one among several different strains of T. pretiosum tested in a parasitoid selection assay. Therefore, its biological characteristics and thermal requirements were studied, aiming at allowing its multiplication under controlled environmental conditions in the laboratory. The parasitoid was reared on eggs of Pseudoplusia includens and Anticarsia gemmatalis at different constant temperatures within an 18–32 °C temperature range. The number of annual generations of the parasitoid was also estimated at those temperatures. Results have shown that T. pretiosum RV developmental time, from egg to adult, was influenced by all temperatures tested within the range, varying from 6.8 to 20.3 days and 6.0 to 17.0 days on eggs of P. includens and A. gemmatalis, respectively. The emergence of T. pretiosum RV from eggs of A. gemmatalis was higher than 94% at all temperatures tested. When this variable was evaluated on eggs of P. includens, however, the figures were higher than that within the 18–30 °C range (more than 98%), and were also statistically higher than the emergence observed at 32 °C (90.2%). The sex ratio of the parasitoids emerged from eggs of A. gemmatalis decreased from 0.55 to 0.29 at 18–32 °C, respectively. However, for those emerged from eggs of P. includens, the sex ratio was similar (0.73, 0.72 and 0.71) at 20, 28 and 32 °C, respectively. The lower temperature threshold (Tb) and thermal constant (K) were 10.65 °C and 151.25 degree-days when the parasitoid was reared on eggs of P. includens; and 11.64 °C and 127.60 degree-days when reared on eggs of A. gemmatalis. The number of generations per month increased from 1.45 to 4.23 and from 1.49 to 4.79 when the parasitoid was reared on eggs of P. includens and A. gemmatalis, respectively, following the increases in the temperature. 相似文献
40.