Resultados de búsqueda - "Chloroplast"

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  1. Maternal inheritance of chloroplast DNA in interspecific crosses of Bromus por Pillay, M., Armstrong, K.C.

    Publicado 2001
    “…Inheritance of chloroplast DNA (cpDNA) was examined in 41 F1 progeny obtained from the following interspecific Bromus crosses: Bromus arvensis (2n = 14) × B. inermis (2n = 4x = 28); B. arvensis × B. inermis (2n = 8x = 56); B. arvensis × B. erectus (2n = 6x = 42); B. arvensis × B. erectus (2n = 8x = 56); B. arvensis × B. erectus (2n = 10x = 70). …”
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  2. Ploidy determination in Musa germplasm using pollen and chloroplast characteristics por Tenkouano, A., Crouch, J.H., Crouch, H.K., Vuylsteke, D.R.

    Publicado 1998
    “…In the sporophyte, the relative contributions of interploidy and intraploidy differences to genetic variation in the number of chloroplasts in stomatal guard cells were 70.8% and 29.2%, respectively. …”
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  3. Phylogeny of the genus Pistacia as determined from analysis of the chloroplast genome por Parfitt, Dan E., Badenes, María L.

    Publicado 2023
    “…Molecular genetic tools (PCR amplification followed by restriction analysis of a 3.2-kb region of variable chloroplast DNA, and restriction fragment length polymorphism analysis of the Pistacia cpDNA with tobacco chloroplast DNA probes) provided a new set of variables to study the phylogenetic relationships of 10 Pistacia species. …”
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  4. Intraspecific variation within Castor bean (Ricinus communis L.) based on chloroplast genomes por Muraguri, S., Xu, W., Chapman, M., Muchugi, A., Oluwaniyi, A., Oyebanji, O., Liu, A.

    Publicado 2020
    “…The chloroplast genomes where conserved in terms of structure and content, with no significant PSVs detected except for a slight inverted repeat (IR) contraction in one accession. …”
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  5. Overexpression of the chloroplastic 2-oxoglutarate/malate transporter disturbs carbon and nitrogen homeostasis in rice por Zamani-Nour, Shirin, Lin, Hsiang-Chun, Walker, Berkley J., Mettler-Altmann, Tabea, Khoshravesh, Roxana, Karki, Shanta, Bagunu, Efren, Sage, Tammy L., Quick, W. Paul, Weber, Andreas P.M.

    Publicado 2021
    “…The chloroplastic 2-oxaloacetate (OAA)/malate transporter (OMT1 or DiT1) takes part in the malate valve that protects chloroplasts from excessive redox poise through export of malate and import of OAA. …”
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