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整合种子蛋白质组和磷酸化蛋白质组分析揭示鹰嘴豆中营养动态、碳氮分配和氧化信号的相互作用。

Integrated Seed Proteome and Phosphoproteome Analyses Reveal Interplay of Nutrient Dynamics, Carbon-Nitrogen Partitioning, and Oxidative Signaling in Chickpea.

作者信息

Sinha Arunima, Haider Toshiba, Narula Kanika, Ghosh Sudip, Chakraborty Niranjan, Chakraborty Subhra

机构信息

National Institute of Plant Genome Research, Aruna Asaf Ali Marg, New Delhi, 110067, India.

出版信息

Proteomics. 2020 Apr;20(8):e1900267. doi: 10.1002/pmic.201900267. Epub 2020 Apr 6.

Abstract

Nutrient dynamics in storage organs is a complex developmental process that requires coordinated interactions of environmental, biochemical, and genetic factors. Although sink organ developmental events have been identified, understanding of translational and post-translational regulation of reserve synthesis, accumulation, and utilization in legumes is limited. To understand nutrient dynamics during embryonic and cotyledonary photoheterotrophic transition to mature and germinating autotrophic seeds, an integrated proteomics and phosphoproteomics study in six sequential seed developmental stages in chickpea is performed. MS/MS analyses identify 109 unique nutrient-associated proteins (NAPs) involved in metabolism, storage and biogenesis, and protein turnover. Differences and similarities in 60 nutrient-associated phosphoproteins (NAPPs) containing 93 phosphosites are compared with NAPs. Data reveal accumulation of carbon-nitrogen metabolic and photosynthetic proteoforms during seed filling. Furthermore, enrichment of storage proteoforms and protease inhibitors is associated with cell expansion and seed maturation. Finally, combined proteoforms network analysis identifies three significant modules, centered around malate dehydrogenase, HSP70, triose phosphate isomerase, and vicilin. Novel clues suggest that ubiquitin-proteasome pathway regulates nutrient reallocation. Second, increased abundance of NAPs/NAPPs related to oxidative and serine/threonine signaling indicates direct interface between redox sensing and signaling during seed development. Taken together, nutrient signals act as metabolic and differentiation determinant governing storage organ reprogramming.

摘要

贮藏器官中的养分动态是一个复杂的发育过程,需要环境、生化和遗传因素的协同相互作用。尽管已确定了库器官的发育事件,但对豆类中贮藏物合成、积累和利用的翻译及翻译后调控的了解仍然有限。为了了解从胚胎期和子叶光合异养阶段到成熟和萌发自养种子阶段的养分动态,我们对鹰嘴豆种子发育的六个连续阶段进行了蛋白质组学和磷酸化蛋白质组学的综合研究。串联质谱分析鉴定出109种独特的与养分相关的蛋白质(NAPs),它们参与代谢、贮藏和生物合成以及蛋白质周转。将含有93个磷酸化位点的60种与养分相关的磷酸化蛋白质(NAPPs)与NAPs进行差异和相似性比较。数据显示种子充实过程中碳氮代谢和光合蛋白亚型的积累。此外,贮藏蛋白亚型和蛋白酶抑制剂的富集与细胞扩张和种子成熟有关。最后,综合蛋白亚型网络分析确定了三个重要模块,其核心围绕苹果酸脱氢酶、热休克蛋白70、磷酸丙糖异构酶和豌豆球蛋白。新线索表明泛素-蛋白酶体途径调节养分重新分配。其次,与氧化和丝氨酸/苏氨酸信号相关的NAPs/NAPPs丰度增加表明种子发育过程中氧化还原感知与信号传导之间存在直接联系。综上所述,养分信号作为代谢和分化的决定因素,控制着贮藏器官的重编程。

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