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首页> 外文期刊>Journal of Cereal Science >Expression of 9-kDa non-specific lipid transfer protein genes in developing wheat grain is enhanced by high temperatures but not by post-anthesis fertilizer.
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Expression of 9-kDa non-specific lipid transfer protein genes in developing wheat grain is enhanced by high temperatures but not by post-anthesis fertilizer.

机译:高温可提高发育中的小麦籽粒中9 kDa非特异性脂质转移蛋白基因的表达,但花后施用的肥料则不会。

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A survey of EST databases identified 16 9-kDa non-specific lipid transfer proteins (nsLTPs) expressed in developing grain from the US spring wheat Butte 86. Two of the most abundant sequences encoded nsLTPs similar to proteins identified previously by two-dimensional gel electrophoresis/mass spectrometry (2-DE/MS). Quantitative reverse-transcriptase polymerase chain reaction (qRT-PCR) was used to examine the expression of these nsLTPs in developing grain or endosperm produced under controlled temperature and fertilizer regimens. Under a moderate (24 degrees C/17 degrees C dayight) temperature regimen, transcripts accumulated late in grain development and achieved highest levels as grain reached maximum dry weight. When high temperature regimens (37 degrees C/28 degrees C dayight) were imposed from anthesis or 15 days post-anthesis (DPA) until maturity, maximum transcript levels were as much as 9-fold higher. Post-anthesis fertilizer had relatively small effects on transcript levels. Accumulation profiles for 9-kDa nsLTPs generated by 2-DE were consistent with transcript profiles. The nsLTPs increased 2 to 3.5-fold in amount in endosperm in response to high temperatures but showed little change in response to fertilizer. Flour from grain produced under the high temperature regimens also contained greater amounts of nsLTPs. Increases in the levels of nsLTPs in flour as a result of environmental conditions during grain fill may have important implications for flour quality and allergenic potential. All rights reserved, Elsevier.
机译:EST数据库调查确定了在美国春小麦Butte 86发育中的谷物中表达的16种9-kDa非特异性脂质转移蛋白(nsLTPs)。两个最丰富的序列编码的nsLTPs与以前通过二维凝胶电泳鉴定的蛋白相似/质谱(2-DE / MS)。定量逆转录聚合酶链反应(qRT-PCR)用于检查这些nsLTP在受控温度和施肥条件下生产的发育中的谷物或胚乳中的表达。在中等温度(24摄氏度/ 17摄氏度昼/夜)温度下,转录本在谷物发育后期积累,并在谷物达到最大干重时达到最高水平。当从花期或花后15天(DPA)实施直到成熟的高温方案(37摄氏度/ 28摄氏度,白天/夜晚)时,最大转录水平要高出9倍。花后施用的肥料对笔录水平的影响相对较小。 2-DE产生的9-kDa nsLTP的积累概况与转录本概况一致。响应高温,nsLTPs在胚乳中的含量增加了2到3.5倍,但对肥料的响应几乎没有变化。在高温条件下生产的谷物面粉也含有大量的nsLTP。谷物填充过程中的环境条件导致面粉中nsLTP含量的增加,可能对面粉质量和致敏潜力产生重要影响。保留所有权利,Elsevier。

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