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天然 HKT1;1 变体在运输特性上的功能差异影响葡萄砧木根系的茎 Na 排斥。

Functional differences in transport properties of natural HKT1;1 variants influence shoot Na exclusion in grapevine rootstocks.

机构信息

ARC Centre of Excellence in Plant Energy Biology, School of Agriculture, Food and Wine, University of Adelaide, PMB1, Glen Osmond, South Australia, 5064, Australia.

CSIRO Agriculture & Food, Locked Bag 2, Glen Osmond, South Australia, 5064, Australia.

出版信息

New Phytol. 2018 Feb;217(3):1113-1127. doi: 10.1111/nph.14888. Epub 2017 Nov 21.

Abstract

Under salinity, Vitis spp. rootstocks can mediate salt (NaCl) exclusion from grafted V. vinifera scions enabling higher grapevine yields and production of superior wines with lower salt content. Until now, the genetic and mechanistic elements controlling sodium (Na ) exclusion in grapevine were unknown. Using a cross between two Vitis interspecific hybrid rootstocks, we mapped a dominant quantitative trait locus (QTL) associated with leaf Na exclusion (NaE) under salinity stress. The NaE locus encodes six high-affinity potassium transporters (HKT). Transcript profiling and functional characterization in heterologous systems identified VisHKT1;1 as the best candidate gene for controlling leaf Na exclusion. We characterized four proteins encoded by unique VisHKT1;1 alleles from the parents, and revealed that the dominant HKT variants exhibit greater Na conductance with less rectification than the recessive variants. Mutagenesis of VisHKT1;1 and TaHKT1.5-D from bread wheat, demonstrated that charged amino acid residues in the eighth predicted transmembrane domain of HKT proteins reduces inward Na conductance, and causes inward rectification of Na transport. The origin of the recessive VisHKT1;1 alleles was traced to V. champinii and V. rupestris. We propose that the genetic and functional data presented here will assist with breeding Na -tolerant grapevine rootstocks.

摘要

在盐胁迫下,葡萄砧木可以将盐(NaCl)从接穗中排除,从而提高葡萄的产量,并生产出盐含量较低、品质更高的葡萄酒。直到现在,控制葡萄中钠离子(Na )排除的遗传和机制元素还不得而知。我们利用两个葡萄种间杂交砧木的杂交,定位到一个与盐胁迫下叶片钠离子排除(NaE)相关的显性数量性状位点(QTL)。该 NaE 位点编码六个高亲和力钾转运蛋白(HKT)。在异源系统中的转录谱分析和功能表征鉴定出 VisHKT1;1 是控制叶片 Na 排除的最佳候选基因。我们对来自亲本的独特 VisHKT1;1 等位基因编码的四个蛋白进行了表征,并揭示出显性 HKT 变体的 Na 电导更大,整流性更小。对面包小麦中的 TaHKT1.5-D 和 VisHKT1;1 进行突变,证明 HKT 蛋白第八个预测跨膜结构域中的带电氨基酸残基降低了内向 Na 电导,并导致 Na 转运的内向整流。隐性 VisHKT1;1 等位基因的起源可以追溯到 V. champinii 和 V. rupestris。我们提出,这里提出的遗传和功能数据将有助于培育耐 Na 的葡萄砧木。

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