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Xylan-Based Nanocompartments Orchestrate Plant Vessel Wall Patterning
Hang Wang, Hanlei Yang, Zhao Wen, Chengxu Gao, Yihong Gao, Yanbao Tian, Zuopeng Xu, Xiangling Liu, Staffan Persson, Baocai Zhang & Yihua Zhou
Nature Plants
Abstract
Nanoclustering of biomacromolecules allows cells to efficiently orchestrate biological processes. The plant cell wall is a highly organized polysaccharide network, but is heterogeneous in chemistry and structure. However, polysaccharide-based nanocompartments remain ill defined. Here, we identify a xylan-rich nanodomain at pit borders of xylem vessels. We show that these nanocompartments maintain distinct wall patterns by anchoring cellulosic nanofibrils at the pit borders, critically supporting vessel robustness, water transport and leaf transpiration. The nanocompartments are produced by the activity of IRREGULAR XYLEM (IRX)10 and its homologs, which we show are de novo xylan synthases. Our study hence outlines a mechanism of how xylans are synthesized, how they assemble into nanocompartments and how the nanocompartments sustain cell wall pit patterning to support efficient water transport throughout the plant body.
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DOI:10.1038/s41477-022-01113-1 |
论文题目: |
Xylan-Based Nanocompartments Orchestrate Plant Vessel Wall Patterning |
英文论文题目: |
Xylan-Based Nanocompartments Orchestrate Plant Vessel Wall Patterning |
第一作者: |
Hang Wang, Hanlei Yang, Zhao Wen, Chengxu Gao, Yihong Gao, Yanbao Tian, Zuopeng Xu, Xiangling Liu, Staffan Persson, Baocai Zhang & Yihua Zhou |
英文第一作者: |
Hang Wang, Hanlei Yang, Zhao Wen, Chengxu Gao, Yihong Gao, Yanbao Tian, Zuopeng Xu, Xiangling Liu, Staffan Persson, Baocai Zhang & Yihua Zhou |
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2022-03-23 |
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Nanoclustering of biomacromolecules allows cells to efficiently orchestrate biological processes. The plant cell wall is a highly organized polysaccharide network, but is heterogeneous in chemistry and structure. However, polysaccharide-based nanocompartments remain ill defined. Here, we identify a xylan-rich nanodomain at pit borders of xylem vessels. We show that these nanocompartments maintain distinct wall patterns by anchoring cellulosic nanofibrils at the pit borders, critically supporting vessel robustness, water transport and leaf transpiration. The nanocompartments are produced by the activity of IRREGULAR XYLEM (IRX)10 and its homologs, which we show are de novo xylan synthases. Our study hence outlines a mechanism of how xylans are synthesized, how they assemble into nanocompartments and how the nanocompartments sustain cell wall pit patterning to support efficient water transport throughout the plant body. |
英文摘要: |
Nanoclustering of biomacromolecules allows cells to efficiently orchestrate biological processes. The plant cell wall is a highly organized polysaccharide network, but is heterogeneous in chemistry and structure. However, polysaccharide-based nanocompartments remain ill defined. Here, we identify a xylan-rich nanodomain at pit borders of xylem vessels. We show that these nanocompartments maintain distinct wall patterns by anchoring cellulosic nanofibrils at the pit borders, critically supporting vessel robustness, water transport and leaf transpiration. The nanocompartments are produced by the activity of IRREGULAR XYLEM (IRX)10 and its homologs, which we show are de novo xylan synthases. Our study hence outlines a mechanism of how xylans are synthesized, how they assemble into nanocompartments and how the nanocompartments sustain cell wall pit patterning to support efficient water transport throughout the plant body. |
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Nature Plants |
英文刊物名称: |
Nature Plants |
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Hang Wang, Hanlei Yang, Zhao Wen, Chengxu Gao, Yihong Gao, Yanbao Tian, Zuopeng Xu, Xiangling Liu, Staffan Persson, Baocai Zhang & Yihua Zhou. Xylan-Based Nanocompartments Orchestrate Plant Vessel Wall Patterning. Nature Plants. DOI:10.1038/s41477-022-01113-1 |
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