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茄科体细胞杂种中叶绿素a/b结合蛋白的变化。

Alterations in chlorophyll a/b binding proteins in Solanaceae cybrids.

作者信息

Babiychuk E, Schantz R, Cherep N, Weil J H, Gleba Y, Kushnir S

机构信息

Institute of Cell Biology and Genetic Engineering, Kiev, Ukraine.

出版信息

Mol Gen Genet. 1995 Dec 20;249(6):648-54. doi: 10.1007/BF00418034.

Abstract

In this study we have constructed a number of plants (cybrids), in which the nuclear genome of Nicotiana plumbaginifolia is combined with the plastome of Atropa belladonna, or the nuclear genome of N. tabacum with plastomes of Lycium barbarum, Scopolia carniolica, Physochlaine officinalis or Nolana paradoxa. Our biochemical and immunological analyses prove that in these cybrids the biogenesis of the chlorophyll a/b binding proteins (CAB) of the light harvesting complex II (LHCII) is altered. Besides normal sized CAB polypeptides of 27, 25.5 and 25 kDa, which become less abundant, the cybrids analyzed have additional polypeptides of 26, 24.5 and 24 kDa. Direct protein micro-sequencing showed that at least two truncated 26 kDa CAB polypeptides in plant cells containing a nucleus of N. plumbaginifolia and plastids of A. belladonna are encoded by the type 1 Lhcb genes. These polypeptides are 11-12 amino acids shorter at the N-terminus than the expected size. Based on the available data we conclude that the biogenesis of the LHCII in vivo may depend on plastome-encoded factor(s). These results suggest that plastome-encoded factors that cause specific protein degradation and/or abnormal processing might determine compartmental genetic incompatibility in plants.

摘要

在本研究中,我们构建了许多植株(胞质杂种),其中矮牵牛的核基因组与颠茄的质体基因组相结合,或者烟草的核基因组与枸杞、肉色紫堇、药用酸浆或奇异茄的质体基因组相结合。我们的生化和免疫分析证明,在这些胞质杂种中,光捕获复合体II(LHCII)的叶绿素a/b结合蛋白(CAB)的生物合成发生了改变。除了正常大小的27 kDa、25.5 kDa和25 kDa的CAB多肽(其丰度降低)外,所分析的胞质杂种还有26 kDa、24.5 kDa和24 kDa的额外多肽。直接蛋白质微量测序表明,在含有矮牵牛细胞核和颠茄质体的植物细胞中,至少两种截短的26 kDa CAB多肽由1型Lhcb基因编码。这些多肽在N端比预期大小短11 - 12个氨基酸。基于现有数据,我们得出结论,体内LHCII的生物合成可能依赖于质体基因组编码的因子。这些结果表明,导致特定蛋白质降解和/或异常加工的质体基因组编码因子可能决定了植物中的区室遗传不兼容性。

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