Zhang Runqi, Li Cheng, Fu Kaiyong, Li Chao, Li Chunyan
Xinjiang Production and Construction Group, The Key Laboratory of Oasis Eco-Agriculture, College of Agriculture, Shihezi University, Shihezi, China.
Front Plant Sci. 2018 Jan 12;8:2252. doi: 10.3389/fpls.2017.02252. eCollection 2017.
Phosphorus is an essential plant macronutrient which profoundly affects the yield and quality of wheat starch. In this study, scanning electron microscopy showed that P fertilizer amount (0, 46, and 92 kg P ha) had no significant effect on the shape of starch granules in wheat (cv. Xindong 20) grain. However, confocal laser scanning microscopy with 3-(4-carboxybenzoyl) quinoline-2-carboxaldehyde and methanolic merbromin stains indicated that P amount influenced the microstructure of the starch granules. Starch granules from the 46 kg P ha treatment released significantly more reducing sugars than those from the 0 and 92 kg P ha treatments during digestion with alpha-amylase and amyloglucosidase digestion. Phosphorus application (especially the 46 kg P ha treatments) significantly increased the relative expression of genes related to starch synthesis (especially during early to mid-grain filling) and starch degradation (especially during mid- and late grain filling). Phosphorus application also increased the transcript abundance of amylase genes at the periphery of the endosperm. We propose that P application, especially the 46 kg P ha treatment, enhanced channels in wheat starch granules. These channels facilitated the transport of substances required for starch biosynthesis, thus increasing starch accumulation in wheat endosperm. These results provide insight into the potential mechanisms through which P influences the microstructure and biosynthesis of wheat starch.
磷是植物必需的大量营养元素,对小麦淀粉的产量和品质有深远影响。在本研究中,扫描电子显微镜显示,磷肥用量(0、46和92 kg P/ha)对小麦(品种:新冬20)籽粒中淀粉颗粒的形状没有显著影响。然而,用3-(4-羧基苯甲酰基)喹啉-2-甲醛和甲醇汞溴红染色的共聚焦激光扫描显微镜表明,磷用量影响淀粉颗粒的微观结构。在α-淀粉酶和淀粉葡糖苷酶消化过程中,46 kg P/ha处理的淀粉颗粒释放的还原糖显著多于0和92 kg P/ha处理的淀粉颗粒。施磷(尤其是46 kg P/ha处理)显著增加了与淀粉合成相关基因(尤其是在籽粒灌浆早期至中期)和淀粉降解相关基因(尤其是在籽粒灌浆中期和后期)的相对表达。施磷还增加了胚乳外围淀粉酶基因的转录丰度。我们认为,施磷,尤其是46 kg P/ha处理,增强了小麦淀粉颗粒中的通道。这些通道促进了淀粉生物合成所需物质的运输,从而增加了小麦胚乳中的淀粉积累。这些结果为磷影响小麦淀粉微观结构和生物合成的潜在机制提供了见解。