Phloem Unloading in Developing Rice Caryopses and its Contribution to Non-Structural Carbohydrate Translocation from Stems and Grain Yield Formation.

Guohui Li, Kehui Cui, Qiuqian Hu, Wencheng Wang, Junfeng Pan, Guo Zhang, Yange Shi, Lixiao Nie, Jianliang Huang, Shaobing Peng
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引用次数: 2

Abstract

Phloem unloading plays an important role in photoassimilate partitioning and grain yield improvements in cereal crops. The phloem unloading strategy and its effects on photoassimilate translocation and yield formation remain unclear in rice. In this study, plasmodesmata were observed at the interface between the sieve elements (SEs) and companion cells (CCs), and between the SE-CC complex and surrounding parenchyma cells (PCs) in phloem of the dorsal vascular bundle in developing caryopses. Carboxyfluorescein (CF) signal was detected in the phloem of caryopses, which showed that CF was unloaded into caryopses. These results indicated that the SE-CC complex was symplasmically connected with adjacent PCs by plasmodesmata. Gene expression for sucrose transporter (SUT) and cell wall invertase (CWI), and OsSUT1 and OsCIN1 proteins were detected in developing caryopses, indicating that rice plants might actively unload sucrose into caryopses by the apoplasmic pathway. Among three rice recombinant inbred lines, R201 exhibited lower plasmodesmal densities at the boundaries between cell types (SE-CC, SE-PC and CC-PC) in developing caryopses than R91 and R156. R201 also had lower expression of SUT and CWI genes and lower protein levels of OsSUT1 and OsCIN1, as well as CWI activity, than R91 and R156. These data agreed with stem non-structural carbohydrate (NSC) translocation and grain yields for the three lines. The nitrogen application rate had no significant effect on plasmodesmal densities at the interfaces between different cells types, and did not affect CF unloading in the phloem of developing caryopses. Low nitrogen treatment enhanced expression levels of OsSUT and OsCIN genes in the three lines. These results suggested that nitrogen application had no substantial effect on symplasmic unloading but affected apoplasmic unloading. Therefore, we concluded that poor symplasmic and apoplasmic unloading in developing caryopses might result in low stem NSC translocation and poor grain yield formation of R201.

水稻颖果发育过程中韧皮部卸载及其对茎非结构性碳水化合物转运和籽粒产量形成的贡献
韧皮部卸荷在粮食作物光同化分配和产量提高中起着重要作用。水稻韧皮部卸载策略及其对光同化转运和产量形成的影响尚不清楚。本研究在颖果发育过程中,在背面维管束韧皮部的筛元(SEs)与伴细胞(CCs)之间以及SE-CC复合物与周围薄壁细胞(PCs)之间观察到胞间连丝。在颖果韧皮部检测到羧基荧光素(Carboxyfluorescein, CF)信号,表明CF被卸载到颖果中。这些结果表明SE-CC配合物通过胞间连丝与邻近的PCs进行了对称连接。蔗糖转运蛋白(SUT)和细胞壁转化酶(CWI)以及OsSUT1和OsCIN1蛋白的基因表达在颖果发育过程中被检测到,这表明水稻可能通过胞浆途径主动将蔗糖转运到颖果中。在3个水稻重组自交系中,R201在颖花发育细胞系(SE-CC、SE-PC和CC-PC)的胞浆间密度低于R91和R156。与R91和R156相比,R201的SUT和CWI基因表达水平较低,OsSUT1和OsCIN1蛋白水平和CWI活性也较低。这些数据与3个品系的茎非结构碳水化合物(NSC)转运和籽粒产量一致。施氮量对不同细胞类型界面的胞浆间密度无显著影响,对颖果发育过程中韧皮部的CF卸载无显著影响。低氮处理提高了3个品系OsSUT和OsCIN基因的表达水平。上述结果表明,施氮对共浆卸载无显著影响,但对胞浆卸载有影响。因此,我们认为,R201在颖果发育过程中较差的同质和外质卸载可能导致茎秆NSC易位低和籽粒产量形成差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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