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Lsi2:植物硅转运中的一个未知环节。

Lsi2: A black box in plant silicon transport.

作者信息

Coskun Devrim, Deshmukh Rupesh, Shivaraj S M, Isenring Paul, Bélanger Richard R

机构信息

Département de Phytologie, Faculté Des Sciences de L'Agriculture Et de L'Alimentation (FSAA), Université Laval, Québec, Québec Canada.

National Agri-Food Biotechnology Institute (NABI), Mohali, India.

出版信息

Plant Soil. 2021;466(1-2):1-20. doi: 10.1007/s11104-021-05061-1. Epub 2021 Jul 10.

Abstract

BACKGROUND

Silicon (Si) is widely considered a non-essential but beneficial element for higher plants, providing broad protection against various environmental stresses (both biotic and abiotic), particularly in species that can readily absorb the element. Two plasma-membrane proteins are known to coordinate the radial transport of Si (in the form of Si(OH)) from soil to xylem within roots: the influx channel Lsi1 and the efflux transporter Lsi2. From a structural and mechanistic perspective, much more is known about Lsi1 (a member of the NIP-III subgroup of the Major Intrinsic Proteins) compared to Lsi2 (a putative Si(OH)/H antiporter, with some homology to bacterial anion transporters).

SCOPE

Here, we critically review the current state of understanding regarding the physiological role and molecular characteristics of Lsi2. We demonstrate that the structure-function relationship of Lsi2 is largely uncharted and that the standing transport model requires much better supportive evidence. We also provide (to our knowledge) the most current and extensive phylogenetic analysis of Lsi2 from all fully sequenced higher-plant genomes. We end by suggesting research directions and hypotheses to elucidate the properties of Lsi2.

CONCLUSIONS

Given that Lsi2 is proposed to mediate xylem Si loading and thus root-to-shoot translocation and biosilicification, it is imperative that the field of Si transport focus its efforts on a better understanding of this important topic. With this review, we aim to stimulate and advance research in the field of Si transport and thus better exploit Si to improve crop resilience and agricultural output.

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1007/s11104-021-05061-1.

摘要

背景

硅(Si)被广泛认为是高等植物的非必需但有益元素,能为植物提供广泛的保护,抵御各种环境胁迫(包括生物胁迫和非生物胁迫),尤其是在能够轻易吸收该元素的物种中。已知两种质膜蛋白可协调硅(以Si(OH)形式存在)在根内从土壤到木质部的径向运输:内向运输通道Lsi1和外向运输体Lsi2。从结构和机制角度来看,与Lsi2(一种假定的Si(OH)/H反向转运体,与细菌阴离子转运体有一些同源性)相比,人们对Lsi1(主要内在蛋白NIP-III亚组的成员)了解得更多。

范围

在此,我们批判性地回顾了关于Lsi2的生理作用和分子特征的当前理解状态。我们证明Lsi2的结构-功能关系在很大程度上尚未明确,现有的运输模型需要更好的支持证据。我们还提供了(据我们所知)来自所有已完成全基因组测序的高等植物基因组的Lsi2的最新且广泛的系统发育分析。我们最后提出了阐明Lsi2特性的研究方向和假设。

结论

鉴于Lsi2被认为介导木质部硅的装载,从而介导根到地上部的转运和生物硅化作用,硅运输领域必须集中精力更好地理解这一重要课题。通过本综述,我们旨在激发和推进硅运输领域的研究,从而更好地利用硅来提高作物的抗逆性和农业产量。

补充信息

在线版本包含可在10.1007/s11104-021-05061-1获取的补充材料。

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