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丛枝菌根定殖和施磷对韭葱植株细胞核倍性的影响。

Effects of arbuscular mycorrhizal colonization and phosphorus application on nuclear ploidy in Allium porrum plants.

作者信息

Fusconi Anna, Lingua Guido, Trotta Antonio, Berta Graziella

机构信息

Dipartimento di Biologia Vegetale, Università di Torino, Viale Mattioli 25, 10125 Torino, Italy.

出版信息

Mycorrhiza. 2005 Jul;15(5):313-21. doi: 10.1007/s00572-004-0338-x. Epub 2004 Nov 24.

Abstract

Arbuscular mycorrhizal (AM) colonization can strongly affect the plant cell nucleus, causing displacement from the periphery to the center of the cell, hypertrophy and polyploidization. The hypertrophy response has been shown in a variety of AM plants whilst polyploidization has been reported only in Lycopersicon esculentum, a multiploid species with a small genome. In order to determine whether polyploidization is a general plant response to AM colonization, analyses were performed on Allium porrum, a plant with a large genome, which is much less subject to polyploidization than L. esculentum. The ploidy status of leaves, complete root systems and four zones of the adventitious roots was investigated in relation to phosphorus content, AM colonization and root differentiation in A. porrum plants grown under two different regimes of phosphate nutrition in order to distinguish direct effects of the fungus from those of improved nutrition. Results showed the presence of two nuclear populations (2C and 4C) in all treatments and samples. Linear regression analyses suggested a general negative correlation between phosphorus content and the proportion of 2C nuclei. The percentage of 2C nuclei (and consequently that of 4C nuclei), was also influenced by AM colonization, differentiation and ageing of the root cells, which resulted in earlier occurrence, in time and space, of polyploid nuclei.

摘要

丛枝菌根(AM)定殖会强烈影响植物细胞核,导致其从细胞周边向细胞中心位移、肥大和多倍体化。肥大反应已在多种AM植物中得到证实,而多倍体化仅在基因组较小的多倍体物种番茄中被报道。为了确定多倍体化是否是植物对AM定殖的普遍反应,对基因组较大且比番茄更不易发生多倍体化的葱进行了分析。研究了在两种不同磷营养条件下生长的葱植株中,叶片、完整根系和不定根四个区域的倍性状态与磷含量、AM定殖和根分化的关系,以区分真菌的直接影响和营养改善的影响。结果表明,在所有处理和样品中均存在两种核群体(2C和4C)。线性回归分析表明磷含量与2C核比例之间普遍呈负相关。2C核的百分比(以及4C核的百分比)也受AM定殖、根细胞分化和衰老的影响,这导致多倍体核在时间和空间上更早出现。

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