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呼吸爆发氧化酶同源物OsRBOHE对水稻根毛形成、抗旱性和分蘖至关重要。

The Respiratory Burst Oxidase Homologue OsRBOHE is crucial for root hair formation, drought resistance and tillering in rice.

作者信息

Zhao Xing-Yu, Wang Han-Qing, Shi Wen, Zhang Wen-Wen, Zhao Fang-Jie

机构信息

State Key Laboratory of Crop Genetics & Germplasm Enhancement and Utilisation, College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing, China.

出版信息

Plant Cell Environ. 2025 Jan;48(1):65-80. doi: 10.1111/pce.15114. Epub 2024 Sep 6.

Abstract

Respiratory Burst Oxidase Homologues (RBOHs) are involved in plant growth, development, and stress adaptation. How OsRBOHs affect root hair formation and consequently nutrient acquisition and drought resistance in rice is not well understood. We knocked out six OsRBOH genes in rice that were expressed in roots and identified OsRBOHE as the only one affecting root hair formation. OsRBOHE was strongly expressed in the root epidermis, root hairs and tiller buds. OsRBOHE is localised at the plasma membrane. Knockout of OsRBOHE decreased reactive oxygen species generation in the root hairs and tiller buds, downregulated genes involved in cell wall biogenesis, and decreased root hair length and tillering by 90% and 30%, respectively. Knockout of OsRBOHE decreased phosphorus acquisition only in low available P soil under aerobic conditions, but not in high P soil or under flooded conditions when P was likely not limited by diffusion. Knockout of OsRBOHE markedly decreased drought resistance of rice plants through the effect on root hair formation and the associated rhizosheath. Taken together, OsRBOHE is crucial for root hair formation and tillering and consequently on drought resistance in rice. The contribution of root hairs to P acquisition in rice is limited to aerobic soil.

摘要

呼吸爆发氧化酶同源物(RBOHs)参与植物的生长、发育和胁迫适应。目前尚不清楚水稻中的OsRBOHs如何影响根毛形成,进而影响养分获取和抗旱性。我们敲除了水稻中在根中表达的6个OsRBOH基因,并确定OsRBOHE是唯一影响根毛形成的基因。OsRBOHE在根表皮、根毛和分蘖芽中强烈表达。OsRBOHE定位于质膜。敲除OsRBOHE会减少根毛和分蘖芽中活性氧的产生,下调参与细胞壁生物合成的基因,并使根毛长度和分蘖分别减少90%和30%。敲除OsRBOHE仅在好氧条件下低有效磷土壤中降低磷的获取,但在高磷土壤或淹水条件下(此时磷可能不受扩散限制)则不会。敲除OsRBOHE通过影响根毛形成和相关的根际土壤显著降低水稻植株的抗旱性。综上所述,OsRBOHE对水稻根毛形成和分蘖至关重要,进而对水稻抗旱性至关重要。根毛对水稻磷获取的贡献仅限于好氧土壤。

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