椰子胚乳和叶片原生质体的高效分离与转化及其基因功能研究

Qinghui Guo, Yaning Wang, Jixin Zou, Huang Jing, Dongdong Li
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引用次数: 0

摘要

为建立一种快速有效的分离和转化椰子胚乳原生质体的方法,以椰液胚乳和幼叶为起始材料。通过对酶切时间、酶切数量、酶切活性、细胞核形态、倍性、亚细胞定位等因素的比较,发现液体胚乳酶切时间为45 min,叶片酶切时间为2.5 h,原生质体产量和酶切活性最高。此外,胚乳细胞比叶细胞大2 ~ 3倍,表现出三倍体特征。DAPI染色和亚细胞定位显示,椰子液体胚乳原生质体细胞核明显增大,几乎占据了整个细胞。利用peg介导的转化,成功地在椰子叶片和胚乳原生质体中过表达了外源基因NAC96。本研究建立了一种有效的分离和转化椰子原生质体的方法,同时确定了液体胚乳中原生质体的独特特性。这些发现为验证椰子基因功能和探索基因表达调控提供了重要的实验平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient Isolation and Transformation of Protoplasts in Coconut Endosperm and Leaves for Gene Function Studies
To establish a rapid and efficient method for isolating and transforming protoplasts in coconut endosperm, coconut liquid endosperm and young leaves were utilized as starting materials. By comparing factors such as enzyme digestion time, quantity, activity, cell and nucleus morphology, ploidy, and subcellular localization, it was discovered that the optimal conditions for achieving the highest protoplast yield and activity were 45 minutes of enzyme digestion for liquid endosperm and 2.5 hours for leaves. Furthermore, the endosperm cells were found to be 2−3 times larger than leaf cells and exhibited triploid characteristics. Moreover, DAPI staining and subcellular localization revealed the presence of significantly enlarged nuclei in protoplasts from coconut liquid endosperm, occupying nearly the entire cell. Using PEG-mediated transformation, the exogenous gene NAC96 was successfully overexpressed in protoplasts derived from both coconut leaves and endosperm. This study has established an efficient method for isolating and transforming protoplasts in coconut while identifying the distinct characteristics of protoplasts in liquid endosperm. These findings provide a crucial experimental platform for verifying coconut gene function and exploring gene expression regulation.
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