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茄科植物中磷和菌根调节的生理反应以及磷转运蛋白表达模式的保守性与差异性

Conservation and divergence of both phosphate- and mycorrhiza-regulated physiological responses and expression patterns of phosphate transporters in solanaceous species.

作者信息

Chen Aiqun, Hu Jiang, Sun Shubin, Xu Guohua

机构信息

State Key Laboratory of Crop Genetics and Germplasm Enhancement, College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing, 210095, China.

出版信息

New Phytol. 2007;173(4):817-831. doi: 10.1111/j.1469-8137.2006.01962.x.

DOI:10.1111/j.1469-8137.2006.01962.x
PMID:17286830
Abstract

Here, orthologous genes of six phosphate transporter (PiT) genes, which are members of the Pht1 and Pht2 families in tomato and potato, have been cloned from the solanaceous species pepper, eggplant and tobacco. Overall, expressions of these genes in pepper, eggplant and tobacco showed similar patterns to those in tomato and potato: P-starvation enhancement in both leaves and roots for Pht1;1, P-depletion induction exclusively in roots for Pht1;2, mycorrhizal enhancement for Pht1;3, and mycorrhizal induction for both Pht1;4 and Pht1;5. In the roots of nonmycorrhizal eggplant, SmPht1;3, SmPht1;4 and SmPht1;5 were also expressed under extreme P starvation. Mycorrhizal symbiosis under high-P supply conditions reduced plant growth, with concurrent enhancement of Pht1;2 expression in the roots of pepper as well as eggplant. In addition, the mycorrhizal symbiosis down-regulated the expression of Pht2;1 genes greatly in the leaves of pepper and tobacco. The discrepancies between the evolutionary distances of the PiT genes and their expression patterns among the five species suggest greater complexity in function of PiT in plants than previously expected.

摘要

在此,已从茄科植物辣椒、茄子和烟草中克隆出六个磷酸转运蛋白(PiT)基因的直系同源基因,这些基因是番茄和马铃薯中Pht1和Pht2家族的成员。总体而言,这些基因在辣椒、茄子和烟草中的表达模式与在番茄和马铃薯中的相似:Pht1;1在叶片和根系中均受磷饥饿增强;Pht1;2仅在根系中受磷缺乏诱导;Pht1;3受菌根增强;Pht1;4和Pht1;5均受菌根诱导。在非菌根茄子的根系中,SmPht1;3、SmPht1;4和SmPht1;5在极端磷饥饿条件下也有表达。高磷供应条件下的菌根共生降低了植物生长,同时辣椒和茄子根系中Pht1;2的表达增强。此外,菌根共生使辣椒和烟草叶片中Pht2;1基因的表达大幅下调。PiT基因的进化距离与其在这五个物种中的表达模式之间的差异表明,植物中PiT的功能比之前预期的更为复杂。

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