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小麦(Triticum aestivum L.)热胁迫下淀粉粒发育过程中差异表达的胁迫相关蛋白的鉴定

Characterization of differentially expressed stress-associated proteins in starch granule development under heat stress in wheat (Triticum aestivum L.).

作者信息

Kumar Ranjeet R, Sharma Sushil K, Goswami Suneha, Singh G P, Singh Rajendra, Singh Khushboo, Pathak Himanshu, Rai Raj D

机构信息

Division of Biochemistry, Indian Agricultural Research Institute, New Delhi, 110012, India.

出版信息

Indian J Biochem Biophys. 2013 Apr;50(2):126-38.

Abstract

Abiotic stress causes abrupt increase in the expression of stress-associated proteins, which provide tolerance by modulating the defense mechanism of plants. Small heat shock proteins (sHSPs) and anti-oxidant enzymes are important for environmental stress tolerance of the plants. In this study, two full-length cDNAs encoding small heat shock protein (sHSP) and superoxide dismutase (SOD), designated as TasHSP and SODI were identified and characterized from C-306 (thermotolerant) and PBW343 (thermosusceptible) cultivars of wheat (Triticum aestivum L.). An alpha crystalline domain was observed in TasHSP and manganese/iron binding domain in case of SODI. Quantitative real-time PCR showed very high transcript level of TasHSP and SOD in C-306 compared to PBW343 at different stages of growth and against differential heat stress (HS). Under differential HS at milky-dough stage, the fold change in transcript of both TasHSP and SOD was observed maximum in C-306, compared to PBW343. Protein profiling and isoenzymes analysis showed the expression of several heat-stable proteins and prominent isoenzymes of SOD in C-306, compared to PBW343. Scanning electron microscopy (SEM) of starch granules showed globular, well-shaped and more numbers of endospermic cells in C-306, compared to defragmented, irregular shaped and shrunken granules in case of PBW343 under HS treatment (42 degrees C for 2 h). Diurnal change in soluble starch synthase (SSS) activity showed an increase in the activity during afternoon (35 degrees C), compared to morning (29 degrees C) and evening (32 degrees C) in both the cultivars. Under heat stress (42 degrees C for 2 h), a drastic decrease in the SSS activity was observed, due to the thermal denaturation of the enzyme. Thermotolerance capacity analyzed using cell membrane stability (CMS) showed significantly higher CMS in case of C-306, compared to PBW343 at different stages of growth. Findings suggest that abundance of TasHSP and SODI during milky-dough stage plays a very important role in starch granule biosynthesis. The mechanism may be further exploited to develop tolerant wheat cultivar with high quality seeds.

摘要

非生物胁迫会导致胁迫相关蛋白的表达急剧增加,这些蛋白通过调节植物的防御机制来提供耐受性。小分子热激蛋白(sHSPs)和抗氧化酶对植物的环境胁迫耐受性很重要。在本研究中,从小麦(Triticum aestivum L.)的C-306(耐热)和PBW343(热敏感)品种中鉴定并表征了两个分别编码小分子热激蛋白(sHSP)和超氧化物歧化酶(SOD)的全长cDNA,分别命名为TasHSP和SODI。在TasHSP中观察到一个α晶体结构域,在SODI中观察到锰/铁结合结构域。实时定量PCR显示,在不同生长阶段以及应对不同程度的热胁迫(HS)时,与PBW343相比,C-306中TasHSP和SOD的转录水平非常高。在乳熟期至面团期的不同程度热胁迫下,与PBW343相比,C-306中TasHSP和SOD转录本的倍数变化最大。蛋白质谱分析和同工酶分析表明,与PBW343相比,C-306中有几种热稳定蛋白表达以及SOD的显著同工酶。淀粉颗粒的扫描电子显微镜(SEM)观察显示,与热胁迫处理(42℃处理2小时)下PBW343中碎片化、形状不规则且萎缩的颗粒相比,C-306中的淀粉颗粒呈球形、形状良好且胚乳细胞数量更多。可溶性淀粉合酶(SSS)活性的日变化显示,与两个品种上午(29℃)和晚上(32℃)相比,下午(35℃)的活性增加。在热胁迫(42℃处理2小时)下,由于酶的热变性,观察到SSS活性急剧下降。使用细胞膜稳定性(CMS)分析的耐热能力显示,在不同生长阶段,与PBW343相比,C-306的CMS显著更高。研究结果表明,乳熟期至面团期TasHSP和SODI的丰度在淀粉颗粒生物合成中起着非常重要的作用。该机制可能会被进一步利用来培育具有高质量种子的耐逆小麦品种。

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