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Proteomic changes associated with expression of a gene (ipt) controlling cytokinin synthesis for improving heat tolerance in a perennial grass species

机译:蛋白质组学变化与控制细胞分裂素合成的基因(ipt)的表达有关从而改善多年生草种的耐热性

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摘要

Cytokinins (CKs) are known to regulate leaf senescence and affect heat tolerance, but mechanisms underlying CK regulation of heat tolerance are not well understood. A comprehensive proteomic study was conducted to identify proteins altered by the expression of the adenine isopentenyl transferase (ipt) gene controlling CK synthesis and associated with heat tolerance in transgenic plants for a C3 perennial grass species, Agrostis stolonifera. Transgenic plants with two different inducible promoters (SAG12 and HSP18) and a null transformant (NT) containing the vector without ipt were exposed to 20 °C (control) or 35 °C (heat stress) in growth chambers. Two-dimensional electrophoresis and mass spectrometry analysis were performed to identify protein changes in leaves and roots in response to ipt expression under heat stress. Transformation with ipt resulted in protein changes in leaves and roots involved in multiple functions, particularly in energy metabolism, protein destination and storage, and stress defence. The abundance levels of six leaf proteins (enolase, oxygen-evolving enhancer protein 2, putative oxygen-evolving complex, Rubisco small subunit, Hsp90, and glycolate oxidase) and nine root proteins (Fd-GOGAT, nucleotide-sugar dehydratase, NAD-dependent isocitrate dehydrogenase, ferredoxin-NADP reductase precursor, putative heterogeneous nuclear ribonucleoprotein A2, ascorbate peroxidase, dDTP-glucose 4–6-dehydratases-like protein, and two unknown proteins) were maintained or increased in at least one ipt transgenic line under heat stress. The diversity of proteins altered in transgenic plants in response to heat stress suggests a regulatory role for CKs in various metabolic pathways associated with heat tolerance in C3 perennial grass species.
机译:细胞分裂素(CKs)可以调节叶片衰老并影响耐热性,但是对CK调节耐热性的机制尚不十分了解。进行了全面的蛋白质组学研究,以鉴定控制CK合成的腺嘌呤异戊烯基转移酶(ipt)基因的表达所改变的蛋白,并与转基因植物中C3多年生草种Agrostis stolonifera的耐热性相关。将具有两个不同的诱导型启动子(SAG12和HSP18)和包含无ipt载体的无效转化体(NT)的转基因植物在生长室中暴露于20°C(对照)或35°C(热胁迫)。进行二维电泳和质谱分析以鉴定在热胁迫下响应ipt表达的叶和根中的蛋白质变化。用ipt转化导致叶和根中的蛋白质变化,涉及多种功能,特别是能量代谢,蛋白质转运和储存以及防御压力。六种叶子蛋白(烯醇酶,产氧增强剂2,推定的富氧复合物,Rubisco小亚基,Hsp90和乙醇酸氧化酶)和九种根蛋白(Fd-GOGAT,核苷酸糖脱水酶,NAD依赖性)的丰度水平在热胁迫下,至少一个ipt转基因品系维持或增加了异柠檬酸脱氢酶,铁氧还蛋白-NADP还原酶前体,假定的异质核糖核蛋白A2,抗坏血酸过氧化物酶,dDTP-葡萄糖4-6脱水酶样蛋白和两种未知蛋白)。转基因植物响应热胁迫而改变的蛋白质多样性表明,CKs在与C3多年生草种耐热性相关的各种代谢途径中起调节作用。

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