Leaf Anatomical Modification in Drought of Rice Varieties (Oryza sativa L.)

Anggara Dwi Putra Zagoto, V. Violita
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引用次数: 4

Abstract

Each organ plant has been formed perfectly to support physiological processes in an unfavorable environmental condition. Rice (Oryza sativa L.) be included plants sensitive to drought conditions during a stage of growth and development. This will cause pressure (stress) resulting in a decrease in rate metabolism in leaf cells. Leaf anatomical characteristics are criteria that can be used to identify plants that are tolerant to drought. Anatomical response leaves in drought conditions inform the development of leaf photosynthetic parts carrying out changes in anatomical structure morphology includes changes in cell walls, organ size, changes in direction growth, including dropping leaves and enhancing the life cycle. The research aimed to determine the anatomic response leaves rice varieties (Oryza sativa L.) to drought stress. Five rice varieties used were given drought-stress treatment for 12 days. Identification leaf anatomical structures using microscopic slices of transverse was made according to the paraffin method. Changes in the anatomical structure of leaves of drought-stress have decreased bulliform cells increase in size, the thickness epidermis cells in an effort to retain the water content in cells, and reducing the size and total stomata with purpose process control flow of transpiration and water use efficiency.
水稻品种叶片在干旱条件下的解剖变异
在不利的环境条件下,每个器官植物都完美地形成以支持生理过程。水稻(Oryza sativa L.)是生长发育阶段对干旱条件敏感的植物。这将造成压力(应激),导致叶细胞代谢速率降低。叶片的解剖特征是鉴定耐旱植物的标准。干旱条件下叶片的解剖响应通知了叶片光合部分的发育,其解剖结构形态学的变化包括细胞壁的变化、器官大小的变化、生长方向的变化,包括落叶和生命周期的增强。本研究旨在确定水稻叶片对干旱胁迫的解剖响应。5个水稻品种分别进行12 d的干旱胁迫处理。采用石蜡法对叶片进行横向显微切片解剖结构鉴定。干旱胁迫下叶片解剖结构的变化主要表现为:球状细胞减小,大小增大,表皮细胞增厚,以保持细胞内水分,气孔大小和气孔总数减少,目的是控制蒸腾流量和水分利用效率。
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