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转录和代谢的改变在可变氮和硫供应下重新平衡小麦籽粒贮藏蛋白的积累。

Transcriptional and metabolic alternations rebalance wheat grain storage protein accumulation under variable nitrogen and sulfur supply.

机构信息

INRA, UMR1095 Genetics, Diversity and Ecophysiology of Cereals, 5 chemin de Beaulieu, Clermont-Ferrand, F-63 039, France.

UMR1095 Genetics, Diversity and Ecophysiology of Cereals, Blaise Pascal University, Aubière, F-63 177, France.

出版信息

Plant J. 2015 Jul;83(2):326-43. doi: 10.1111/tpj.12881. Epub 2015 Jun 8.

Abstract

Wheat (Triticum aestivum L.) grain storage proteins (GSPs) are major determinants of flour end-use value. Biological and molecular mechanisms underlying the developmental and nutritional determination of GSP accumulation in cereals are as yet poorly understood. Here we timed the accumulation of GSPs during wheat grain maturation relative to changes in metabolite and transcript pools in different conditions of nitrogen (N) and sulfur (S) availability. We found that the N/S supply ratio modulated the duration of accumulation of S-rich GSPs and the rate of accumulation of S-poor GSPs. These changes are likely to be the result of distinct relationships between N and S allocation, depending on the S content of the GSP. Most developmental and nutritional modifications in GSP synthesis correlated with the abundance of structural gene transcripts. Changes in the expression of transport and metabolism genes altered the concentrations of several free amino acids under variable conditions of N and S supply, and these amino acids seem to be essential in determining GSP expression. The comprehensive data set generated and analyzed here provides insights that will be useful in adapting fertilizer use to variable N and S supply, or for breeding new cultivars with balanced and robust GSP composition.

摘要

小麦(Triticum aestivum L.)谷物贮藏蛋白(GSPs)是面粉最终用途价值的主要决定因素。谷物中 GSP 积累的发育和营养决定的生物学和分子机制尚未得到很好的理解。在这里,我们在不同氮(N)和硫(S)供应条件下,相对于代谢物和转录物库的变化,定时检测小麦籽粒成熟过程中 GSP 的积累。我们发现 N/S 供应比例调节了富含 S 的 GSP 的积累持续时间和 S 贫 GSP 的积累速率。这些变化可能是由于 GSP 的 S 含量不同,N 和 S 分配之间存在不同的关系。GSP 合成的大多数发育和营养修饰都与结构基因转录物的丰度相关。在 N 和 S 供应的不同条件下,转运和代谢基因表达的变化改变了几种游离氨基酸的浓度,这些氨基酸似乎对决定 GSP 表达至关重要。这里生成和分析的综合数据集提供了有用的见解,将有助于适应可变的 N 和 S 供应来使用肥料,或培育具有平衡和稳健 GSP 组成的新品种。

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