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参与根际压力反应的激素信号的作用诱导了……中的球茎膨大

The Roles of Hormone Signals Involved in Rhizosphere Pressure Response Induce Corm Expansion in .

作者信息

Li Enjiao, Tang Jing, Liu Jiexia, Zhang Zhiping, Hua Bing, Jiang Jiezeng, Miao Minmin

机构信息

College of Horticulture and Landscape Architecture, Yangzhou University, Yangzhou 225009, China.

Joint International Research Laboratory of Agriculture and Agri-Product Safety, Ministry of Education of China, Yangzhou University, Yangzhou 225009, China.

出版信息

Int J Mol Sci. 2023 Aug 2;24(15):12345. doi: 10.3390/ijms241512345.

Abstract

Soil is the base for conventional plant growth. The rhizosphere pressure generated from soil compaction shows a dual effect on plant growth in agricultural production. Compacted soil leads to root growth stagnation and causes bending or thickening, thus affecting the growth of aboveground parts of plants. In arrowhead ( L.), the corms derived from the expanded tips of underground stolons are its storage organ. We found that the formation of corms was significantly delayed under hydroponic conditions without rhizosphere pressure originating from soil/sand. In the initial stage of corm expansion, the anatomic structure of arrowhead corm-forming parts harvested from hydroponics and sand culture was observed, and we found that the corm expansion was derived from cell enlargement and starch accumulation. Comparative transcriptome analysis indicated that the corm expansion was closely related to the change in endogenous hormone levels. Endogenous abscisic acid and salicylic acid concentrations were significantly increased in sand-cultured corms. Higher ethylene and jasmonic acid contents were also detected in all arrowhead samples, demonstrating that these hormones may play potential roles in the rhizosphere pressure response and corm expansion. The expression of genes participating in hormone signaling could explain the rising accumulation of certain hormones. Our current results draw an extensive model to reveal the potential regulation mechanism of arrowhead corm expansion promoted by rhizosphere pressure, which will provide important references for further studying the molecular mechanism of rhizosphere pressure modulating the development of underground storage organs in other plants.

摘要

土壤是传统植物生长的基础。土壤压实产生的根际压力对农业生产中植物的生长具有双重影响。压实的土壤会导致根系生长停滞,并引起根系弯曲或增粗,从而影响植物地上部分的生长。在慈姑中,由地下匍匐茎顶端膨大形成的球茎是其储存器官。我们发现,在没有源自土壤/沙子的根际压力的水培条件下,球茎的形成显著延迟。在球茎膨大的初始阶段,观察了从水培和沙培中收获的慈姑球茎形成部位的解剖结构,我们发现球茎膨大源自细胞增大和淀粉积累。比较转录组分析表明,球茎膨大与内源激素水平的变化密切相关。沙培球茎中内源脱落酸和水杨酸浓度显著增加。在所有慈姑样品中还检测到较高的乙烯和茉莉酸含量,表明这些激素可能在根际压力响应和球茎膨大过程中发挥潜在作用。参与激素信号传导的基因表达可以解释某些激素积累的增加。我们目前的研究结果绘制了一个广泛的模型,以揭示根际压力促进慈姑球茎膨大的潜在调控机制,这将为进一步研究根际压力调节其他植物地下储存器官发育的分子机制提供重要参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6421/10419225/ccb0ca364c12/ijms-24-12345-g001.jpg

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