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赤霉素在番茄丛枝菌根形成过程中的作用:通过对菌根根中其代谢的内源性定量和遗传分析揭示的新见解

Role of gibberellins during arbuscular mycorrhizal formation in tomato: new insights revealed by endogenous quantification and genetic analysis of their metabolism in mycorrhizal roots.

作者信息

Martín-Rodríguez José Ángel, Ocampo Juan Antonio, Molinero-Rosales Nuria, Tarkowská Danuše, Ruíz-Rivero Omar, García-Garrido José Manuel

机构信息

Departamento de Microbiología del suelo y sistemas simbióticos, Estación Experimental del Zaidín (EEZ), CSIC, Granada, 18008, Spain.

出版信息

Physiol Plant. 2015 May;154(1):66-81. doi: 10.1111/ppl.12274. Epub 2014 Oct 21.

Abstract

Gibberellins (GAs) are key regulators of plant growth and development and recent studies suggest also a role during arbuscular mycorrhizal (AM) formation. Here, complementary approaches have been used to obtain a clearer picture that correlates AM fungal development inside roots with GA metabolism. An extensive analysis of genes associated with GA metabolism as well as a quantification of GA content in roots was made. Application of GA3 and its biosynthesis inhibitor prohexadione calcium (PrCa) combined with a GA-constitutive response mutant (procera) were used to determine whether fungal colonization is altered by the level of these hormones or by changes in the GA-signaling pathway. The increased levels of specific GAs from the 13-hydroxylation pathway in mycorrhizal roots correlate closely with the increased expression of genes coding enzymes from the GA biosynthetic trail. The imbalance of GAs in tomato roots caused by exogenous applications of GA3 or PrCa affects arbuscules in both negative and positive ways, respectively. In addition, procera plants were adversely affected by the mycorrhization process. Our findings demonstrate that an imbalance in favor of an increased amount of GAs negatively affects the frequency of mycorrhization and particularly the arbuscular abundance in tomato mycorrhizal roots and the results point out that AM formation is associated with a change in the 13-hydroxylation pathway of GAs.

摘要

赤霉素(GAs)是植物生长发育的关键调节因子,最近的研究表明其在丛枝菌根(AM)形成过程中也发挥作用。在此,我们采用了互补方法,以更清晰地了解根内AM真菌发育与GA代谢之间的关联。我们对与GA代谢相关的基因进行了广泛分析,并对根中的GA含量进行了定量。应用GA3及其生物合成抑制剂丙环唑钙(PrCa),并结合GA组成型反应突变体(procera),以确定真菌定殖是否会因这些激素的水平或GA信号通路的变化而改变。菌根根中13-羟基化途径中特定GA水平的增加与GA生物合成途径中编码酶的基因表达增加密切相关。外源施用GA3或PrCa导致番茄根中GA失衡,分别以负面和正面方式影响丛枝。此外,procera植株受到菌根化过程的不利影响。我们的研究结果表明,GA含量增加导致的失衡对菌根化频率产生负面影响,特别是对番茄菌根根中的丛枝丰度产生负面影响,结果表明AM形成与GA的13-羟基化途径变化有关。

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