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首页> 外文期刊>Journal of Cereal Science >Influence of high temperature during filling period on grain phytic acid and its relation to spikelet sterility and grain weight in non-lethal low phytic acid mutations in rice
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Influence of high temperature during filling period on grain phytic acid and its relation to spikelet sterility and grain weight in non-lethal low phytic acid mutations in rice

机译:水稻灌浆期高温对植酸的影响及其与水稻非致命性低植酸突变中小穗无菌性和粒重的关系

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摘要

Low phytic acid (lpa) crop is considered as an effective strategy to improve crop nutrition. However, the inferior agronomic performance of lpa crops and their environmental growth adaptation have not yet been fully understood. Three rice lpa lines and their corresponding wild-types were used to compare their differences in grain phytic acid (PA) in response to high temperature (HT) and its relation to spikelet sterility and grain weight at a controlled temperature at the filling stage. Results showed that HT caused an increase in grain PA and inorganic phosphate contents, with more substantial increase of PA content for lpa lines compared with corresponding wild-types. This increase in PA content in high temperature-ripened grains was not simply attributed to the reduction in grain weight and relatively enhanced proportion of aleurone-layer fraction to whole grains. Significant increase in PA contents was also detected in milled rice. Moreover, spikelet sterility and grain plumpness of lpa lines were more susceptible to HT stress than those of wild-types. Exogenous PA spraying with an appropriate concentration could increase grain PA content, but it had only a slight contribution to the enhancement of heat-tolerance and injury alleviation for rice exposed to stressful HT
机译:低植酸(lpa)作物被认为是改善作物营养的有效策略。然而,尚未完全了解lpa作物的劣等农艺性能及其对环境生长的适应性。使用三种水稻lpa品系及其相应的野生型,比较了它们在灌浆期对高温(HT)的反应中植酸(PA)的差异及其与小穗不育性和籽粒重量的关系。结果表明,HT引起谷物PA和无机磷酸盐含量的增加,与相应的野生型相比,LPA品系的PA含量增加更多。高温熟化谷物中PA含量的这种增加,不仅仅归因于谷物重量的减少和糊粉层组分相对于全谷物的比例相对增加。在碾米中也检测到PA含量显着增加。此外,与野生型相比,lpa系的小穗不育性和籽粒饱满度更容易受到高温胁迫的影响。适当浓度的外源PA喷施可以增加籽粒中PA的含量,但对提高承受压力HT的水稻的耐热性和减轻伤害仅起到很小的作用

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