SWEET transporters of Medicago lupulina in the arbuscular-mycorrhizal system in the presence of medium level of available phosphorus.

IF 0.9 Q3 AGRICULTURE, MULTIDISCIPLINARY Vavilovskii Zhurnal Genetiki i Selektsii Pub Date : 2023-06-01 DOI:10.18699/VJGB-23-25
A A Kryukov, A O Gorbunova, T R Kudriashova, O B Ivanchenko, M F Shishova, A P Yurkov
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Abstract

Arbuscular mycorrhiza (AM) fungi receive photosynthetic products and sugars from plants in exchange for contributing to the uptake of minerals, especially phosphorus, from the soil. The identification of genes controlling AM symbiotic efficiency may have practical application in the creation of highly productive plant-microbe systems. The aim of our work was to evaluate the expression levels of SWEET sugar transporter genes, the only family in which sugar transporters specific to AM symbiosis can be detected. We have selected a unique "host plant-AM fungus" model system with high response to mycorrhization under medium phosphorus level. This includes a plant line which is highly responsive to inoculation by AM fungi, an ecologically obligate mycotrophic line MlS-1 from black medick (Medicago lupulina) and the AM fungus Rhizophagus irregularis strain RCAM00320, which has a high efficiency in a number of plant species. Using the selected model system, differences in the expression levels of 11 genes encoding SWEET transporters in the roots of the host plant were evaluated during the development of or in the absence of symbiosis of M. lupulina with R. irregularis at various stages of the host plant development in the presence of medium level of phosphorus available for plant nutrition in the substrate. At most stages of host plant development, mycorrhizal plants had higher expression levels of MlSWEET1b, MlSWEET3c, MlSWEET12 and MlSWEET13 compared to AM-less controls. Also, increased expression relative to control during mycorrhization was observed for MlSWEET11 at 2nd and 3rd leaf development stages, for MlSWEET15c at stemming (stooling) stage, for MlSWEET1a at 2nd leaf development, stemming and lateral branching stages. The MlSWEET1b gene can be confidently considered a good marker with specific expression for effective development of AM symbiosis between M. lupulina and R. irregularis in the presence of medium level of phosphorus available to plants in the substrate.

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在中等水平有效磷存在下,苜蓿丛枝-菌根系统中的SWEET转运体。
丛枝菌根(AM)真菌接受植物的光合产物和糖,以促进从土壤中吸收矿物质,特别是磷。鉴定控制AM共生效率的基因可能在创建高产植物-微生物系统中具有实际应用价值。我们工作的目的是评估SWEET糖转运蛋白基因的表达水平,这是唯一一个可以检测到AM共生特异性糖转运蛋白的家族。我们选择了一个独特的“寄主植物- am真菌”模式系统,在中等磷水平下对菌根化反应高。这包括一个对AM真菌接种有高度反应的植物品系,一个来自黑药(Medicago lupulina)的生态专性真菌品系MlS-1,以及一个在许多植物物种中具有高效率的AM真菌Rhizophagus irregularis菌株RCAM00320。利用所选择的模型系统,在基质中有中等水平的植物营养磷存在的情况下,在宿主植物发育的不同阶段,在狼斑霉与不规则圆霉共生或不共生的情况下,评估了宿主植物根系中编码SWEET转运体的11个基因的表达水平差异。在寄主植物发育的大多数阶段,菌根植物的MlSWEET1b、MlSWEET3c、MlSWEET12和MlSWEET13的表达水平均高于无am对照。此外,与对照相比,在菌根化过程中,MlSWEET11在叶片发育的第2和第3阶段,MlSWEET15c在茎干(粪便)阶段,MlSWEET1a在叶片发育的第2、茎干和侧分枝阶段的表达量均有所增加。MlSWEET1b基因可以被认为是在基质中植物可利用磷水平存在的情况下,狼螺旋体与不规则螺旋体AM共生有效发展的良好标记。
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来源期刊
Vavilovskii Zhurnal Genetiki i Selektsii
Vavilovskii Zhurnal Genetiki i Selektsii AGRICULTURE, MULTIDISCIPLINARY-
CiteScore
1.90
自引率
0.00%
发文量
119
审稿时长
8 weeks
期刊介绍: The "Vavilov Journal of genetics and breeding" publishes original research and review articles in all key areas of modern plant, animal and human genetics, genomics, bioinformatics and biotechnology. One of the main objectives of the journal is integration of theoretical and applied research in the field of genetics. Special attention is paid to the most topical areas in modern genetics dealing with global concerns such as food security and human health.
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