果皮
- peel;pericarp;rind;shin of fruit;pill
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[peel;shin of fruit] 果实外壳或外皮
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用一把锋利的刀削去两种水果的外皮和中果皮。
Using a sharp knife , cut away the pith and peel from both fruits
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ApeelSciences称,他们的天然喷雾就像一种额外的果皮,可以减缓水分的流失和氧化。
Apeel Sciences says their natural spray acts like an extra peel and slows down water loss and oxidation .
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不要随地乱扔果皮纸屑。
Don 't scatter garbage all over the place .
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与瘦果相似,不同点在于颖果的果皮和种皮紧密愈合不易分离。
It is similar to an achene except that the ovary wall is fused with the seed coat .
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小麦果皮绿色层中~(14)C标记同化物在胚珠内的分配与定位
Distribution and Localization of ~ ( 14 ) C-labelled Assimilates of Pericarp Green Layer Within the Ovule of Wheat Caryopsis
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单果内维生素C总量的累积头棚果、二棚果均随果重的增加而增加,到果实完全成熟,果皮皱缩,果重减轻时总含量缓慢下降。
The accumulation of vitamin C in the fruit increased with the fruit weight increasing and decreased at late stage of fruit full maturity ;
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柠檬果皮精油挥发性成分的GC-MS分析
Analysis of volatile constituents in peel oil of lemon by GC-MS
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转色前用ABA处理后加速果皮叶绿素的降解,但抑制果皮类胡萝卜素的积累;
ABA treatment accelerated chlorophyll degradation and inhibited carotenoid accumulation ;
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与茄子果皮颜色相关联的AFLP及SCAR标记
AFLP and SCAR Markers Associated with Peel Color in Eggplant
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套袋对莱阳茌梨果皮结构和PPO、POD活性的影响
Effect of Bagging on the Peel Structure and PPO , POD activity of
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果皮、果肉的组织含水量、束缚水含量变化与MDA相似。
The change of content of free water and band water in rind and pulp were similar as MDA .
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荔枝果皮提取物化学成分的GC-MS分析
GC MS Analysis of Components in Litchi Pericarp
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RP-HPLC法测定闽产柑桔果皮中橙皮甙的含量
RP HPLC Method for Determining Content of Hesperidin in Peels of Fujian Produced Citrus
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玉米子粒的果皮是全部继承母本遗传信息的F1代组织1。
Containing the ability of maternally inherited F1 tissue is the pericarp of maize .
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说明果皮POD、PPO和PAL的高活性是果皮油胞病变的重要生理因素。
POD and PAL in the fruit peel were important physiological factors in oil spotting infection .
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此外,还对影响龙眼果皮PPO活性的因素进行优化。
Tests were also designed to optimize the factors that affect longan pericarp PPO activity .
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两品种果实不同部位ca含量差异显著,均以种子、果心含量较高,而以果肉、果皮次之。
Different Ca content were found in different parts of the two cultivars fruit , being higher seed and core and lower flesh and peel .
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与未套袋果实相比,套袋3个月的富士苹果果皮UV吸收物、芦丁、花青苷、槲皮素葡萄糖苷含量降低。
The contents of UV absorbing compounds , rutin , anthocyanins and quercetin glucoside were decreased in the fruits after bagged for three months .
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改良CTAB法从采后荔枝(LitchiChinensisSonn.)果皮中提取总RNA
Extracting Total RNA from Pericarp of Postharvest Litchi ( Litchi chinensis Sonn . ) Fruit by Improved CTAB Method
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MJ可显著提高苹果果皮中LOX活性。
MJ significantly increased LOX activity in apple pericarp .
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转色前用GA3处理后延缓果皮叶绿素的降解,并同样抑制果皮类胡萝卜素的积累,严重阻碍了果皮类胡萝卜素的合成。
GA3 treatment delayed chlorophyll degradation and inhibited carotenoid accumulation and biosynthesis seriously .
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AU涂被处理对红星苹果果皮α-法尼烯和共轭三烯含量的影响
Study on the Effect of AU Edible Coating on the Contents of α - farnesene and Conjugated Trienes in Red Delicious Apple
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果实商品成熟期果皮pH值的增加不利于花色苷红色的表现,pH值对花色苷合成的影响比较复杂,还有待进一步的研究妃子笑荔枝果皮花色苷合成的相关因素分析
The effect of pH on anthocyanin synthesis was complex and further study is required . A Study on Factors Related to Synthesis of Anthocyanin in Pericarp of ' Feizixiao ' Litchi
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Northern杂交结果表明,转反义PG基因加工番茄果实外果皮PG基因表达水平比对照低。
However , the Northern blot hybridization showed that the PG gene expression level of transgenic tomato is less than that of control .
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3,脐橙果实整个发育过程中,可食部分的PG和Cx活性均比果皮的活性高。
Cx and PG activation of pulp is higher than peel during navel orange fruit growth .
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果实发育过程中,2个品种果皮的可滴定酸、可溶性糖、还原性糖、葡萄糖含量总体呈下降趋势,而pH、果糖含量呈上升趋势。
The titratable acid , reducing sugar and glucose showed a decreasing tendency while the pH value and fructose tended to increase in pericarp of both of the two cultivars during fruit development .
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通过DEAESepharose和PhenylSepharose柱层析后,番木瓜果皮ACC氧化酶被纯化了19.5倍。
ACC oxidase has been purified 19.5 fold by using DEAE Sepharose and Phenyl Sepharose columns .
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果皮褐变与籽粒中的TA和SSC含量则表现出相对独立的变化过程。
However , peel browning show little connection with the contents of titrable acid and soluble solids of in the seed .
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福桔(Citrustangerina)贮藏过程中二次生长与果皮细胞无丝分裂
Amitosis on the Pericarp Cell and the Secondary Growth on the Storage of Citrus tangerina
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结果表明:维生素C、可溶性蛋白、果皮叶绿素和类胡萝卜素含量随着果实的发育呈下降趋势,总糖、可溶性固形物含量及糖酸比不断增加。
Results showed that vitamin C , soluble protein , chlorophyll and carotenoids contents in the fruit skin decreased during fruit development , whereas contents of total sugars , total soluble solids and the ratio of sugar / acid increased .