• There had some stroma lamella in chloroplast.

    叶绿体一些基质

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  • Cell chloroplast density and higher granum lamellae decreased as well. 

    叶绿体高基粒片逐渐减小。

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  • This is the chloroplast.

    叶绿体

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  • This picture shows the chloroplast structure.

    图画是叶绿体的结构。

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  • In C4 plants there are two types of chloroplast.

    C4植物两种类型叶绿体

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  • Transport to the chloroplast involves a similar process.

    运输叶绿体涉及一个类似的过程

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  • The chloroplast envelope has the light yellow color of violaxanthin.

    叶绿体套膜质的黄色。

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  • SOD, POD, CAT activity changes and changes in chloroplast ultrastructure.

    PODCAT活性变化以及叶绿体超微结构的变化。

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  • Our group is interested in G-protein signaling and chloroplast development.

    我们研究兴趣主要集中G -蛋白信号转导叶绿体发育

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  • Chloroplast genetic transformation is a new way of plant genetic engineering.

    叶绿体遗传转化植物基因工程方向

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  • Water stress can significantly affect root, leaf and chloroplast ultra-structure.

    水分胁迫显著影响柑橘叶片根系细胞叶绿体超微结构。

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  • A brief review of chloroplast structure is useful before discussing these experiments.

    在讨论这些试验以前,叶绿体结构简短的概述有益的

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  • Normal chloroplasts are indicated by white arrow, while abnormal chloroplast by blue arrow.

    白色箭头指示正常叶绿体蓝色箭头指示异常叶绿体

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  • The structure of chloroplast was integrity, osmiophilic granule was dispersing in plastids.

    叶绿体等细胞器结构完整嗜锇颗粒分散质体中。

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  • CP43 and CP47, the core antenna of PSII, were isolated and purified from spinach chloroplast.

    菠菜叶绿体分离纯化PSII内周天线CP43CP47色素蛋白复合物。

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  • The outer of the two membranes around a chloroplast could be regarded as the host exclusion membranes.

    围着叶绿体外面可以看作寄主排斥的膜。

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  • The chloroplast RNA were extracted from the chloroplasts with a mixture of extracting buffer and phenol.

    叶绿体提取缓冲液、苯酚混合匀浆叶绿体RNA

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  • The main pigments absorbing the light energy are chlorophyll and carotenoid in chloroplast of plant leaves.

    植物叶片叶绿体中的俘色素主要叶绿素类胡萝卜素。

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  • Inside the chloroplast is a fluid called stroma, which contains a series of flattened stacks of thylakoids.

    叶绿体里面一种基质液体含有一系列扁平成堆类囊体

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  • Our results suggested that PPF1 gene might regulate plant development by controlling chloroplast development.

    我们结果提示P PF 1基因可能通过控制叶绿体发育状况来调节植物发育

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  • Drought stress and the strong light stress haa significant effects on chloroplast membrane protein expression.

    干旱胁迫强光胁迫叶绿体蛋白表达具有显著影响

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  • Chlorophyll content was 1.2 SPAD, and the chloroplast did not develop, with only small vesicle-like structures.

    结果发现叶绿素平均含量1.2(SPAD),叶绿体也不能正常发育仅有囊泡状结构

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  • This will save energy and absorb CO2 as the bio-LED luminescence will cause the chloroplast to conduct photosynthesis.

    它不仅节能而且可以吸收CO2同时生物led发光导致叶绿体进行光合作用。

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  • The percentage of intact chloroplasts in the chloroplast preparations isolated by this method is usually over 80%.

    使用这种方法获得叶绿体制剂中,完整叶绿体百分数通常超过80%。

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  • The results indicated that albescent seedlings were caused by the variation of base in the sequence of chloroplast DNA.

    说明矮牵牛白化的确可能由于叶绿体DNA水平上碱基变化所引起的。

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  • There were clearly difference of the anatomical structures and the ultrastructural of chloroplast of leaves in different types.

    不同类型苦丁茶叶解剖结构叶绿体超微结构间明显差异

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  • This paper will summarize the Endosymbiontic Hypothesis and the Intercellular origin Hypothesis of chloroplast and mitochondrion.

    本文主要综述线粒体叶绿体内共生假说分化假说。

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  • Chloroplast is an organelle specialized for carrying out photosynthesis in plants and descended from cyanobacteria according to endosymbiosis.

    叶绿体植物进行光合作用细胞器,“内共生学说”认为叶绿体起源于蓝藻类的原核生物。

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  • The rice(Oryza sativa) chloroplast multicistron site integration expression vector will be transformed for expression into the tobacco chloroplast.

    目的尝试水稻质体多顺反子定点整合表达载体转化烟草质体中表达。

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  • The rice(Oryza sativa) chloroplast multicistron site integration expression vector will be transformed for expression into the tobacco chloroplast.

    目的尝试水稻质体多顺反子定点整合表达载体转化烟草质体中表达。

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