突变体
分生组织
木质部
表型
生物
基因
次生细胞壁
细胞生物学
水运
植物
遗传学
水流
环境工程
工程类
作者
H Li,Jun Xie,Yu Gao,Xuemei Wang,Qin Li,Ju Wang,Jeremy A. Roberts,Beijiu Cheng,Xuebin Zhang,Xiaoduo Lu
出处
期刊:Plant Physiology
[Oxford University Press]
日期:2023-07-05
卷期号:193 (3): 1834-1848
标识
DOI:10.1093/plphys/kiad390
摘要
Plant metaxylem vessels provide physical support to promote upright growth and the transport of water and nutrients. A detailed characterization of the molecular network controlling metaxylem development is lacking. However, knowledge of the events that regulate metaxylem development could contribute to the development of germplasm with improved yield. In this paper, we screened an EMS-induced B73 mutant library, which covers 92% of maize (Zea mays) genes, to identify drought-sensitive phenotypes. Three mutants were identified, named iqd27-1, iqd27-2, and iqd27-3, and genetic crosses showed that they were allelic to each other. The causal gene in these 3 mutants encodes the IQ domain-containing protein ZmIQD27. Our study showed that defective metaxylem vessel development likely causes the drought sensitivity and abnormal water transport phenotypes in the iqd27 mutants. ZmIQD27 was expressed in the root meristematic zone where secondary cell wall deposition is initiated, and loss-of-function iqd27 mutants exhibited a microtubular arrangement disorder. We propose that association of functional ZmIQD27 with microtubules is essential for correct targeted deposition of the building blocks for secondary cell wall development in maize.
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