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窄叶卷曲 2 基因调控水稻叶片形态、花粉育性和种子大小。

NARROW AND ROLLED LEAF 2 regulates leaf shape, male fertility, and seed size in rice.

机构信息

National Center for Evaluation of Agricultural Wild Plants (Rice), Beijing Key Laboratory of Crop Genetic Improvement, Laboratory of Crop Heterosis and Utilization, MOE, Department of Plant Genetics and Breeding, China Agricultural University, Beijing 100193, China.

State Key Laboratory of Plant Physiology and Biochemistry, China Agricultural University, Beijing 100193, China.

出版信息

J Integr Plant Biol. 2016 Dec;58(12):983-996. doi: 10.1111/jipb.12503. Epub 2016 Nov 23.

Abstract

Grain yield in rice (Oryza sativa L.) is closely related to leaf and flower development. Coordinative regulation of leaf, pollen, and seed development in rice as a critical biological and agricultural question should be addressed. Here we identified two allelic rice mutants with narrow and semi-rolled leaves, named narrow and rolled leaf 2-1 (nrl2-1) and nrl2-2. Map-based molecular cloning revealed that NRL2 encodes a novel protein with unknown biochemical function. The mutation of NRL2 caused pleiotropic effects, including a reduction in the number of longitudinal veins, defective abaxial sclerenchymatous cell differentiation, abnormal tapetum degeneration and microspore development, and the formation of more slender seeds compared with the wild type (WT). The NRL2 protein interacted with Rolling-leaf (RL14), causing the leaves of the nrl2 mutants to have a higher cellulose content and lower lignin content than the WT, which may have been related to sclerenchymatous cell differentiation and tapetum degeneration. Thus, this gene is an essential developmental regulator controlling fundamental cellular and developmental processes, serving as a potential breeding target for high-yielding rice cultivars.

摘要

水稻的籽粒产量与叶片和花的发育密切相关。作为一个关键的生物学和农业问题,协调调控水稻叶片、花粉和种子的发育应该得到解决。在这里,我们鉴定了两个等位基因水稻突变体,具有狭窄和半卷曲的叶片,分别命名为窄叶 2-1(nrl2-1)和 nrl2-2。基于图谱的分子克隆表明,NRL2 编码一种具有未知生化功能的新型蛋白。NRL2 的突变导致了多种表型效应,包括纵向叶脉数量减少、下表皮厚壁组织细胞分化缺陷、绒毡层异常退化和小孢子发育异常,以及与野生型(WT)相比形成更细长的种子。NRL2 蛋白与 Rolling-leaf(RL14)相互作用,导致 nrl2 突变体的叶片比 WT 具有更高的纤维素含量和更低的木质素含量,这可能与厚壁组织细胞分化和绒毡层退化有关。因此,该基因是一个控制基本细胞和发育过程的必需发育调节剂,可作为高产水稻品种的潜在育种目标。

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