外部碳酸酐酶和HCO3-转运蛋白的协同作用支持水陆两栖植物异花水草水下叶片的光合作用。

IF 3.6 2区 生物学 Q1 PLANT SCIENCES
Genki Horiguchi, Ryoma Oyama, Tatsuki Akabane, Nobuhiro Suzuki, Etsuko Katoh, Yusuke Mizokami, Ko Noguchi, Naoki Hirotsu
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引用次数: 0

摘要

背景与目的:HCO3-是水下光合作用的主要碳资源。在这里,我们研究了异叶两栖植物异花水草(Hygrophila difformis)淹没叶片中HCO3-的吸收和膜转运的潜在机制。为了表征这些机制,我们评估了水下光合作用对外部碳酸酐酶(CA)抑制剂和阴离子交换蛋白抑制剂的敏感性,并试图鉴定HCO3利用机制的组成部分。方法:评价外源CA抑制剂和阴离子交换蛋白抑制剂对白花蛇舌草淹没叶片光合O2释放的NaHCO3反应的影响。此外,我们对陆生叶和沉水叶进行了比较转录组学分析。关键结果:外源CA抑制剂和阴离子交换蛋白抑制剂均降低了沉水叶片的光合作用,但未观察到添加效应。在沉水叶片中上调的基因中,有两个◻-CA,Hd◻-CA1和Hd◻-CA2和一◻-碳酸酐酶◻-CA1。根据其推定的氨基酸序列,a-CA被预测定位在质外体区域。重组Hd◻-CA1和Hd◻-CA1的CO2水合活性高于HCO3-脱水活性。结论:我们提出,利用HCO3-在不同花型的淹没叶片中进行光合作用是由外部CA,Hd的合作驱动的◻-CA1和一种未鉴定的HCO3-转运蛋白。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cooperation of an external carbonic anhydrase and HCO3- transporter supports underwater photosynthesis in submerged leaves of the amphibious plant Hygrophila difformis.

Background and aims: HCO3- can be a major carbon resource for photosynthesis in underwater environments. Here we investigate the underlying mechanism of uptake and membrane transport of HCO3- in submerged leaves of Hygrophila difformis, a heterophyllous amphibious plant. To characterize these mechanisms, we evaluated the sensitivity of underwater photosynthesis to an external carbonic anhydrase (CA) inhibitor and an anion exchanger protein inhibitor, and we attempted to identify components of the mechanism of HCO3- utilization.

Methods: We evaluated the effects of the external CA inhibitor and anion exchanger protein inhibitor on the NaHCO3 response of photosynthetic O2 evolution in submerged leaves of H. difformis. Furthermore, we performed a comparative transcriptomic analysis between terrestrial and submerged leaves.

Key results: Photosynthesis in the submerged leaves was decreased by both the external CA inhibitor and anion exchanger protein inhibitor, but no additive effect was observed. Among upregulated genes in submerged leaves, two α-CAs, Hdα-CA1 and Hdα-CA2, and one β-carbonic anhydrase, Hdβ-CA1, were detected. Based on their putative amino acid sequences, the α-CAs are predicted to be localized in the apoplastic region. Recombinant Hdα-CA1 and Hdβ-CA1 showed dominant CO2 hydration activity over HCO3- dehydration activity.

Conclusions: We propose that the use of HCO3- for photosynthesis in submerged leaves of H. difformis is driven by the cooperation between an external CA, Hdα-CA1, and an unidentified HCO3- transporter.

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来源期刊
Annals of botany
Annals of botany 生物-植物科学
CiteScore
7.90
自引率
4.80%
发文量
138
审稿时长
3 months
期刊介绍: Annals of Botany is an international plant science journal publishing novel and rigorous research in all areas of plant science. It is published monthly in both electronic and printed forms with at least two extra issues each year that focus on a particular theme in plant biology. The Journal is managed by the Annals of Botany Company, a not-for-profit educational charity established to promote plant science worldwide. The Journal publishes original research papers, invited and submitted review articles, ''Research in Context'' expanding on original work, ''Botanical Briefings'' as short overviews of important topics, and ''Viewpoints'' giving opinions. All papers in each issue are summarized briefly in Content Snapshots , there are topical news items in the Plant Cuttings section and Book Reviews . A rigorous review process ensures that readers are exposed to genuine and novel advances across a wide spectrum of botanical knowledge. All papers aim to advance knowledge and make a difference to our understanding of plant science.
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