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Response of Summer Maize Photosynthate Accumulation and Distribution to Shading Stress Assessed by Using 13CO2 Stable Isotope Tracer in the Field

机译:利用13CO2稳定同位素示踪剂评价夏玉米光合产物积累与分配对遮荫胁迫的响应。

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摘要

Maize is one of the most important crops globally that provides food, feed, and bioenergy. However, shading stress threatens maize production. In this study, we investigated the effects of shading on photosynthate accumulation and distribution of summer maize in the field. Zhengdan958 (ZD958) and Denghai 605 (DH605) were used as experimental materials in a field experiment running from 2013 to 2015. Shading treatments were applied over different growth stages: from the tassel stage (VT) to physiological maturity (R6) (S1), from the six-leaf stage (V6) to VT (S2), and from emergence stage (VE) to R6 (S3). The effects of shading on plant photosynthesis, photosynthate accumulation and distribution, and yield were evaluated in comparison to ambient sunlight. Shading significantly decreased the leaf area, SPAD value, net photosynthetic rate, dry matter accumulation, and grain yield. During the 3-year experimental period, grain yields of ZD958 and DH605 were reduced by 83.4%, 34.2%, 53.1% and 79.3%, 24.2%, 57.6% as compared to the CK by treatments S3, S2, and S1, respectively. 13CO2 stable isotope tracing revealed that shading differentially affected the photosynthate transfer rate in different stages; photosynthates were transferred from top to bottom plant parts, in the order control > S2 > S1 > S3. We conclude that shading clearly disrupted photosynthate metabolism, and reduced the photosynthate accumulation in the grain, resulting in a yield reduction.
机译:玉米是提供食物,饲料和生物能源的全球最重要的农作物之一。但是,遮荫胁迫威胁着玉米产量。在这项研究中,我们调查了遮光对田间夏玉米光合产物积累和分布的影响。在2013年至2015年进行的田间试验中,使用Zhengdan958(ZD958)和Denghai 605(DH605)作为实验材料。遮荫处理应用于不同的生长阶段:从流苏阶段(VT)到生理成熟期(R6)(S1) ,从六叶期(V6)到VT(S2),从出苗期(VE)到R6(S3)。与环境日照相比,评估了遮光对植物光合作用,光合产物积累和分布以及产量的影响。遮荫显着降低了叶面积,SPAD值,净光合速率,干物质积累和籽粒产量。在3年的试验期内,通过S3,S2和S1处理,与CK相比,ZD958和DH605的谷物产量分别降低了83.4%,34.2%,53.1%和79.3%,24.2%,57.6%。 13 CO2稳定同位素示踪表明,遮光作用在不同阶段对光合产物的传递速率有不同的影响;将光合产物从顶部植物部分转移到底部植物部分,顺序控制为> S2> S1> S3。我们得出的结论是,阴影明显破坏了光合产物的代谢,并减少了光合产物在谷物中的积累,从而导致产量下降。

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