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水稻直立穗3(ep3)突变体光合作用的降低与气孔导度降低和保卫细胞发育减弱有关。

Decreased photosynthesis in the erect panicle 3 (ep3) mutant of rice is associated with reduced stomatal conductance and attenuated guard cell development.

作者信息

Yu Hongyang, Murchie Erik H, González-Carranza Zinnia H, Pyke Kevin A, Roberts Jeremy A

机构信息

Plant and Crop Sciences Division, School of Biosciences, University of Nottingham, Sutton Bonington LE12 5RD, UK UK.

Plant and Crop Sciences Division, School of Biosciences, University of Nottingham, Sutton Bonington LE12 5RD, UK UK

出版信息

J Exp Bot. 2015 Mar;66(5):1543-52. doi: 10.1093/jxb/eru525. Epub 2015 Jan 11.

Abstract

The ERECT PANICLE 3 gene of rice encodes a peptide that exhibits more than 50% sequence identity with the Arabidopsis F-box protein HAWAIIAN SKIRT (HWS). Ectopic expression of the Os02g15950 coding sequence, driven by the HWS (At3g61950) promoter, rescued the hws-1 flower phenotype in Arabidopsis confirming that EP3 is a functional orthologue of HWS. In addition to displaying an erect inflorescence phenotype, loss-of-function mutants of Os02g15950 exhibited a decrease in leaf photosynthetic capacity and stomatal conductance. Analysis of a range of physiological and anatomical features related to leaf photosynthesis revealed no alteration in Rubisco content and no notable changes in mesophyll size or arrangement. However, both ep3 mutant plants and transgenic lines that have a T-DNA insertion within the Os02g15950 (EP3) gene exhibit smaller stomatal guard cells compared with their wild-type controls. This anatomical characteristic may account for the observed decrease in leaf photosynthesis and provides evidence that EP3 plays a role in regulating stomatal guard cell development.

摘要

水稻的直立穗3基因编码一种与拟南芥F-box蛋白夏威夷裙(HWS)具有50%以上序列同一性的肽。由HWS(At3g61950)启动子驱动的Os02g15950编码序列的异位表达挽救了拟南芥中hws-1的花表型,证实EP3是HWS的功能直系同源物。除了表现出直立花序表型外,Os02g15950的功能缺失突变体还表现出叶片光合能力和气孔导度的降低。对一系列与叶片光合作用相关的生理和解剖特征的分析表明,核酮糖-1,5-二磷酸羧化酶含量没有变化,叶肉大小或排列也没有明显变化。然而,与野生型对照相比,ep3突变体植株和在Os02g15950(EP3)基因内有T-DNA插入的转基因系都表现出较小的气孔保卫细胞。这种解剖学特征可能解释了观察到的叶片光合作用下降,并提供了证据表明EP3在调节气孔保卫细胞发育中起作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e0e/4339609/1467372b793b/exbotj_eru525_f0001.jpg

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