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Growth and Physiological Performance of Aerobic and Lowland Rice as Affected by Water Stress at Selected Growth Stages

机译:水分胁迫对有氧和低地水稻生长的影响。

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Aerobic rice technology is still new in Malaysia, and information regarding MARDI Aerob 1 (MA1), the first local aerobic rice variety, is still lacking. Therefore, comparative studies were carried out to determine the physiological performance of aerobic rice variety MA1 and lowland rice variety MR253 under water stress given at the panicle initiation, flowering and ripening stages. This experiment was arranged in a randomized complete block design. Stomatal conductance ( g s ), chlorophyll a fluorescence ( F v / F m ), leaf relative water content (leaf RWC), and soil moisture content (SMC) as well as yield component parameters such as panicle number, grain yield and 100-grain weight were measured. Results revealed that g s and leaf RWC for both varieties decreased with depletion of SMC. The correlation study between the physiological parameters and SMC indicated that F v / F m was not affected by water stress, regardless of varieties. The yield components (panicle number, grain yield and 100-grain weight) for both varieties greatly decreased when water stress was imposed at the panicle initiation stage. This study showed that the panicle initiation period was the most sensitive stage to water stress that contributed to a substantial reduction in yield for both varieties. Under the aerobic condition (control), MR253 produced higher panicle number, 100-grain weight and yield than MA1. Although MR253 is bred for lowland, it is well adapted to aerobic condition.
机译:有氧水稻技术在马来西亚仍然是新事物,仍然缺乏有关当地第一个有氧水稻品种MARDI Aerob 1(MA1)的信息。因此,进行了比较研究,以确定有氧水稻品种MA1和低地水稻品种MR253在穗萌芽,开花和成熟阶段受到的水分胁迫下的生理性能。该实验以随机的完整模块设计进行安排。气孔导度(gs),叶绿素a荧光(F v / F m),叶片相对含水量(叶RWC)和土壤含水量(SMC)以及产量构成参数,例如穗数,籽粒产量和100粒测量体重。结果表明,两个品种的g s和叶片RWC随SMC的消耗而降低。生理参数与SMC的相关性研究表明,无论何种品种,F v / F m均不受水分胁迫的影响。当在穗开始阶段施加水分胁迫时,两个品种的产量组成(穗数,籽粒产量和100粒重)都大大降低。这项研究表明,穗萌芽期是对水分胁迫最敏感的阶段,这导致两个品种的产量大幅下降。在有氧条件下(对照),MR253比MA1产生更高的穗数,100粒重和更高的产量。尽管MR253是为低地而繁殖的,但它非常适合有氧条件。

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