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首页> 外文期刊>Plant, Soil and Environment >Nodulation and nitrogen fixation in interspecies grafts of soybean and common bean is controlled by isoflavonoid signal molecules translocated from shoot.
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Nodulation and nitrogen fixation in interspecies grafts of soybean and common bean is controlled by isoflavonoid signal molecules translocated from shoot.

机译:大豆和普通豆种间嫁接中的结瘤和固氮受茎秆异黄酮信号分子的控制。

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摘要

Identification of common signals of nodulation control among legume species will facilitate progress in enhancing symbiotic nitrogen fixation of legumes in sustainable agriculture system. Grafting experiments between soybean and common bean were carried out to evaluate whether a common shoot signals control the expression of hypernodulation among the tow species. Grafting of a hypernodulating soybean mutant NOD1-3 shoots to three cultivars of normally nodulating common bean roots resulted in hypernodulation on roots of three tested cultivars of common bean. The shoot control of hypernodulation may be causally related to differential root isoflavonoid levels, which are also controlled by shoot factors. Isoflavonoid analysis from root extracts of grafted plants showed that NOD1-3 shoots had markedly higher root isoflavonoid concentrations in roots of both NOD1-3 and common bean cv. Adzuki compared with self-grafts of common bean Adzuki. Exogenous application of daidzein, genistein, coumestrol, glycitein and in combination at concentration of 10 micro mol to the nutrient solution significantly increased the nodule numbers of common bean cv. Adzuki. Therefore, the control of hypernodulation expression by isoflavonoid signal molecules translocated from shoot is common among legume species.
机译:识别豆科植物物种中常见的结瘤控制信号将有助于在可持续农业系统中增强豆科植物的共生固氮作用。进行了大豆和普通豆之间的嫁接实验,以评估普通芽信号是否控制丝束中超结瘤的表达。将高结瘤大豆突变体NOD1-3芽嫁接到正常结瘤的普通菜豆根的三个品种上,导致三个受试菜豆品种的根上都出现高结瘤。过度结节的芽控制可能与不同的根异黄酮水平有因果关系,后者也受芽因子控制。从嫁接植物的根提取物中进行的异黄酮分析表明,NOD1-3芽在NOD1-3和普通豆的根中均具有较高的根异黄酮浓度。红小豆与普通豆小红豆的自种相比。在营养液中外用黄豆苷元,染料木黄酮,香豆雌酚,糖精蛋白和10 mol浓度的组合显着增加了普通豆cv的根瘤数。小月因此,豆科植物中常见的是由从芽转移的异类黄酮信号分子控制过度结节表达。

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