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硼和钙对盐胁迫下豌豆-根瘤菌共生体系中根瘤发育、功能恢复及植株生长的影响

Recovery of development and functionality of nodules and plant growth in salt-stressed Pisum sativum--Rhizobium leguminosarum symbiosis by boron and calcium.

作者信息

Bolaños Luis, El-Hamdaoui Abdelaziz, Bonilla Ildefonso

机构信息

Departamento de Biología, Facultad de Ciencias, Universidad Autónoma de Madrid, 28049-Madrid, Spain.

出版信息

J Plant Physiol. 2003 Dec;160(12):1493-7. doi: 10.1078/0176-1617-01003.

Abstract

Nodules developed in Pisum sativum L. cv. Argona inoculated with Rhizobium leguminosarum bv. viciae 3841 and growing under saline conditions (75 mmol/L NaCl) are non functional and had abnormal structure. The infected cells contained a low amount of endophytic bacteria, compared to treatments without salt. Addition of B (up to 55.8 micromol/L) and Ca2+ (up to 2.72 mmol/L) increased bacterial population of host plant cells in salt-stressed nodules. Furthermore, symbiosomes developed inside the nodules from salt treated plants presented a degraded peribacteroid membrane. This effect was also prevented by combined addition of B and Ca2+. Given the importance of both nutrients in cell wall structure, the pectin fraction was studied by electron microscopy and immunological methods. Salt stress produced cells with walls dramatically altered or even degraded in several zones. Pectin polysaccharides, detected by JIM 5 monoclonal antibody, increased in cells under salinity. These effects resembled typical effects of B-deficiency reactions in cell walls, and the increase of both Ca2+ and especially B also prevented these alterations.

摘要

在接种了豌豆根瘤菌蚕豆生物型3841并在盐胁迫条件(75 mmol/L NaCl)下生长的豌豆(Pisum sativum L. cv. Argona)中形成的根瘤没有功能且结构异常。与无盐处理相比,受感染的细胞中内生细菌数量较少。添加硼(高达55.8微摩尔/升)和钙离子(高达2.72毫摩尔/升)可增加盐胁迫根瘤中宿主植物细胞的细菌数量。此外,盐处理植物根瘤内形成的共生体呈现出类菌体周膜降解的现象。硼和钙的联合添加也可防止这种效应。鉴于这两种营养物质在细胞壁结构中的重要性,通过电子显微镜和免疫学方法对果胶部分进行了研究。盐胁迫导致细胞壁在几个区域发生显著改变甚至降解。用JIM 5单克隆抗体检测到的果胶多糖在盐胁迫下的细胞中增加。这些效应类似于细胞壁中硼缺乏反应的典型效应,而钙离子尤其是硼的增加也可防止这些改变。

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