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NBS-LRR序列在向日葵(Helianthus annuus L.)和烟草(Nicotiana tabacum L.)中的反义表达:在植物发育和真菌抗性中双重作用的证据

Antisense expression of a NBS-LRR sequence in sunflower (Helianthus annuus L.) and tobacco (Nicotiana tabacum L.): evidence for a dual role in plant development and fungal resistance.

作者信息

Hewezi Tarek, Mouzeyar Saïd, Thion Laurence, Rickauer Martina, Alibert Gilbert, Nicolas Paul, Kallerhoff Jean

机构信息

Laboratoire de Biotechnologies et Amélioration des Plantes (BAP), INP-ENSAT, Pôle de Biotechnologies Végétales, IFR 40, Auzeville, Castanet Tolosan, France.

出版信息

Transgenic Res. 2006 Apr;15(2):165-80. doi: 10.1007/s11248-005-3518-3.

DOI:10.1007/s11248-005-3518-3
PMID:16604458
Abstract

A partial sunflower cDNA clone, PLFOR48, segregating with a resistance marker to Plasmopara halstedii, the causal agent of downy mildew, has been cloned from the mildew resistant sunflower line, RHA 266. PLFOR48 encodes a putative protein with a nucleotide-binding site and a leucine-rich repeat domain, showing significant homology with previously cloned resistance genes belonging to the TIR-NBS-LRR family. Southern blot analysis of non-transgenic sunflower suggests that PLFOR48 is part of a multigenic family. The potential role of PLFOR48 sequence in sunflower resistance to mildew was studied, by assessing loss of function, using expression of the antisense cDNA in RHA 266 sunflower line. Quite unexpectedly, transgenic sunflower lines displayed severe developmental abnormalities, and in particular, on the main meristems of homozygote T2 progeny, thus hampering any further challenge inoculation with Plasmopara halstedii. The presence of homologous sequences to PLFOR48 in Nicotiana tabacum var Samsun NN, as demonstrated by Southern blotting, drove us to consider tobacco as an additional model to investigate the potential role of this sequence in fungal resistance. Expression of the same antisense cDNA in transgenic tobacco lines gave rise to higher degree of susceptibility to Phytophthora parasitica, as well as to severe alterations in seed development. These results suggest that PLFOR48 and homologous sequences could be involved in both regulating developmental pathways and controlling resistance to fungal pathogens.

摘要

从抗霜霉病向日葵品系RHA 266中克隆出一个部分向日葵cDNA克隆PLFOR48,它与霜霉病致病因子哈氏疫霉的抗性标记共分离。PLFOR48编码一种具有核苷酸结合位点和富含亮氨酸重复结构域的假定蛋白,与先前克隆的属于TIR-NBS-LRR家族的抗性基因具有显著同源性。对非转基因向日葵的Southern杂交分析表明,PLFOR48是一个多基因家族的一部分。通过在RHA 266向日葵品系中利用反义cDNA的表达评估功能丧失,研究了PLFOR48序列在向日葵抗霜霉病中的潜在作用。非常出乎意料的是,转基因向日葵品系表现出严重的发育异常,特别是在纯合子T2后代的主要分生组织上,从而妨碍了对哈氏疫霉的任何进一步挑战接种。Southern杂交证明,烟草品种Samsun NN中存在与PLFOR48同源的序列,这促使我们将烟草作为另一个模型来研究该序列在真菌抗性中的潜在作用。在转基因烟草品系中表达相同的反义cDNA导致对寄生疫霉的易感性更高,以及种子发育严重改变。这些结果表明,PLFOR48及其同源序列可能参与调节发育途径和控制对真菌病原体的抗性。

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