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玉米根的生长:参与细胞发育连续阶段的凝集素

Growing Maize Root: Lectins Involved in Consecutive Stages of Cell Development.

作者信息

Aglyamova Aliya, Petrova Natalia, Gorshkov Oleg, Kozlova Liudmila, Gorshkova Tatyana

机构信息

Kazan Institute of Biochemistry and Biophysics, Federal Research Center Kazan Scientific Center of Russian Academy of Sciences, Lobachevsky Str. 2/31, Kazan 420111, Russia.

Institute of Fundamental Medicine and Biology, Kazan Federal University, Kremlevskaya Str. 18, Kazan 420008, Russia.

出版信息

Plants (Basel). 2022 Jul 7;11(14):1799. doi: 10.3390/plants11141799.

Abstract

Proteins that carry specific carbohydrate-binding lectin domains have a great variety and are ubiquitous across the plant kingdom. In turn, the plant cell wall has a complex carbohydrate composition, which is subjected to constant changes in the course of plant development. In this regard, proteins with lectin domains are of great interest in the context of studying their contribution to the tuning and monitoring of the cell wall during its modifications in the course of plant organ development. We performed a genome-wide screening of lectin motifs in the genome and analyzed the transcriptomic data from five zones of primary maize root with cells at different development stages. This allowed us to obtain 306 gene sequences encoding putative lectins and to relate their expressions to the stages of root cell development and peculiarities of cell wall metabolism. Among the lectins whose expression was high and differentially regulated in growing maize root were the members of the EUL, dirigent-jacalin, malectin, malectin-like, GNA and Nictaba families, many of which are predicted as cell wall proteins or lectin receptor-like kinases that have direct access to the cell wall. Thus, a set of molecular players was identified with high potential to play important roles in the early stages of root morphogenesis.

摘要

携带特定碳水化合物结合凝集素结构域的蛋白质种类繁多,在植物界广泛存在。反过来,植物细胞壁具有复杂的碳水化合物组成,在植物发育过程中会不断发生变化。在这方面,具有凝集素结构域的蛋白质在研究其在植物器官发育过程中细胞壁修饰过程中对细胞壁调节和监测的贡献方面具有重要意义。我们对基因组中的凝集素基序进行了全基因组筛选,并分析了来自玉米初生根五个区域、处于不同发育阶段细胞的转录组数据。这使我们获得了306个编码假定凝集素的基因序列,并将它们的表达与根细胞发育阶段以及细胞壁代谢特性联系起来。在生长中的玉米根中表达量高且差异调节的凝集素中,有EUL、 dirigent-jacalin、malectin、malectin-like、GNA和Nictaba家族的成员,其中许多被预测为细胞壁蛋白或凝集素受体样激酶,它们可以直接接触细胞壁。因此,鉴定出了一组在根形态发生早期具有发挥重要作用巨大潜力的分子参与者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87d4/9319948/2d7a9004f971/plants-11-01799-g005.jpg

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