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不同生长阶段和生长环境下水稻水通道蛋白基因敲除系的叶肉导度变异性。

Mesophyll conductance variability of rice aquaporin knockout lines at different growth stages and growing environments.

机构信息

National Key Laboratory of Crop Genetic Improvement, MOA Key Laboratory of Crop Ecophysiology and Farming System in the Middle Reaches of the Yangtze River, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, Hubei, 430070, China.

出版信息

Plant J. 2021 Sep;107(5):1503-1512. doi: 10.1111/tpj.15397. Epub 2021 Aug 2.

DOI:10.1111/tpj.15397
PMID:34181799
Abstract

The plasma membrane subfamily of aquaporins [plasma membrane intrinsic proteins (PIPs)], which facilitates the CO diffusion across membranes, is proposed to play an important role in mesophyll conductance to CO (g ), a major limiting factor of photosynthesis. However, recent studies implied no causal relationship between g and PIPs because they failed to repeat the previous observed differences in g between PIP knockout lines and their wild-type. The contrasting results on the role of PIPs in g were interpreted as the different growth conditions among studies, which has never been tested. Here, we assessed whether the differences in g between wild-type and PIP knockout lines, Ospip1;1, Ospip1;2 and Ospip2;1, varied with growth condition (field versus pot condition) and growth stages in rice. Under field conditions, no differences were observed in plant performance, photosynthetic rate (A) and g between PIP knockout lines and the wild-type. However, in agreement with previous studies, two out of three knockout lines showed significant declines in tiller number, plant height, A and g under pot conditions. Moreover, we found that the differences in A and g between PIP knockout lines and the wild-type varied with the growth stage of the plants. Our results showed that the differences in g between PIP knockout lines and wild-type were depending on the growth environments and stage of the plants, and further efforts are required to reveal the underlying mechanisms.

摘要

水通道蛋白的质膜亚家族[质膜内在蛋白 (PIPs)],促进 CO 跨膜扩散,被认为在 CO 通过叶肉的导度 (g) 中起重要作用,g 是光合作用的主要限制因素。然而,最近的研究表明 g 与 PIPs 之间没有因果关系,因为它们未能重复先前观察到的 PIP 敲除系与其野生型之间 g 的差异。关于 PIPs 在 g 中的作用的相反结果被解释为研究之间不同的生长条件,而这一点从未被测试过。在这里,我们评估了 g 之间的差异野生型和 PIP 敲除系之间,Ospip1;1、Ospip1;2 和 Ospip2;1,是否随生长条件(田间与盆栽条件)和生长阶段在水稻中变化。在田间条件下,在植物性能、光合速率 (A) 和 g 方面,PIP 敲除系与野生型之间没有差异。然而,与先前的研究一致,三个敲除系中的两个在盆栽条件下表现出分蘖数、株高、A 和 g 的显著下降。此外,我们发现 PIP 敲除系与野生型之间的 A 和 g 差异随植物生长阶段而变化。我们的结果表明,PIP 敲除系与野生型之间的 g 差异取决于植物的生长环境和阶段,需要进一步努力揭示潜在的机制。

相似文献

1
Mesophyll conductance variability of rice aquaporin knockout lines at different growth stages and growing environments.不同生长阶段和生长环境下水稻水通道蛋白基因敲除系的叶肉导度变异性。
Plant J. 2021 Sep;107(5):1503-1512. doi: 10.1111/tpj.15397. Epub 2021 Aug 2.
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引用本文的文献

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Amino Acid Substitutions in Loop C of Arabidopsis PIP2 Aquaporins Alters the Permeability of CO.拟南芥PIP2水通道蛋白C环中的氨基酸替换改变了CO的通透性。
Plant Cell Environ. 2025 Sep;48(9):6835-6846. doi: 10.1111/pce.15635. Epub 2025 Jun 3.
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Aquaporins and CO diffusion across biological membrane.水通道蛋白与二氧化碳跨生物膜的扩散
Front Physiol. 2023 Jun 13;14:1205290. doi: 10.3389/fphys.2023.1205290. eCollection 2023.
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Mesophyll conductance response to short-term changes in pCO is related to leaf anatomy and biochemistry in diverse C grasses.叶片肉组织导度对短期 CO2浓度变化的响应与不同 C4 禾本科植物的叶片解剖结构和生物化学特性有关。
New Phytol. 2022 Nov;236(4):1281-1295. doi: 10.1111/nph.18427. Epub 2022 Sep 1.
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Higher CO Assimilation in Selected Rice Recombinant Inbred Lines Is Driven by Higher CO Diffusion and Light Use Efficiency Related to Leaf Anatomy and Mesophyll Cell Density.部分水稻重组自交系中较高的二氧化碳同化作用是由与叶片解剖结构和叶肉细胞密度相关的较高二氧化碳扩散和光能利用效率驱动的。
Front Plant Sci. 2022 Jun 9;13:915050. doi: 10.3389/fpls.2022.915050. eCollection 2022.
6
Mesophyll conductance is unaffected by expression of Arabidopsis PIP1 aquaporins in the plasmalemma of Nicotiana.在烟草的质膜中表达拟南芥 PIP1 水通道蛋白不会影响叶肉细胞导度。
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