• Title/Summary/Keyword: Cordgrass

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A Research Review for Establishing Effective Management Practices of the Highly Invasive Cordgrass (Spartina spp.) (생태계 교란식물 cordgrass (Spartina spp.)의 효과적인 관리방안 수립을 위한 고찰)

  • Kim, Jin-Seog
    • Weed & Turfgrass Science
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    • v.5 no.3
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    • pp.111-125
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    • 2016
  • Cordgrass (Spartina spp.) is recognized as a highly invasive plant in estuaries throughout the world because of remarkable versatility and resiliency, significant reproduction, strong adaptability, rapid spreading, and vigorous growth. In this review, therefore, to provide insights on the effective management practices, the previous research works were summarized and discussed. Spartina spp. is a perennial halophyte, warm-season (C4) grass that reproduces both sexually through seeds and asexually by rhizomes. Management strategies for cordgrass have included various physical, biological, and chemical controls. Herbicides are usually the most cost-effective means of control. Currently, glyphosate, imazapyr, fluazifop and haloxyfop have been practically used. To improve the control efficacy, a combination of two more than methods (example, mowing-spraying) is needed to be applied consistently every year for at least 3 to 4 years and to be sprayed with enough dry time (>4-6 hr) at an early growth stage (before flowering). Consistently repeated application of same herbicide have to be avoided to prevent an unexpected emergence of herbicide-resistant lines. On the other hand, Spartina spp. have many positive functions for agricultural and eco-engineering purposes. Thus, we have to give more intensive research for effectively managing advantages and disadvantages of Spartina plantations.

Distribution and Botanical Characteristics of Unrecorded Alien Weed Spartina anglica in Korea (미기록 외래잡초 영국갯끈풀의 국내 분포와 식물학적 특성)

  • Kim, Eun-Kyu;Kil, Jihyon;Joo, Young-Kyoo;Jung, Young-Sang
    • Weed & Turfgrass Science
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    • v.4 no.1
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    • pp.65-70
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    • 2015
  • We have found the plants belonging to the genus Spartina which has not yet been reported for the flora of Korea. This has been distributed at Dongmak seashore in Ganghwado since 2012. These were identified as common cordgrass (Spartina anglica C. E. Hubb.) belonging to the family Poaceae, the genus Spartina. It is a perennial halophyte as an alien weed that can grow in the tidal flat, native to southern England. Here, we named it for 'Young-guk-Gaet-ggeun-pool' in Korean refer the origin, reported the distribution, spreading condition, and botanical characteristics of common cordgrass. In China, Spartina anglica was introduced in 1963, it was approved that it had benefit in a bioengineering side firstly. But it was known that as a highly invasive plant to make a monotype meadow of Spartina anglica which has deteriorate the ecological function of saltmarsh. And also it has another problem that is not easy to eradicate. The spreading of Spartina anglica which was appeared in the West coast of Korea may threaten severely to the domestic mudflat and estuary ecosystem. For the maintenance of mudflat ecosystem soundly, continuous monitoring and active eradication plans are required.

A Study on Classification of Halophytes-based Blue Carbon Cover and Estimation of Carbon Respiration Using Satellite Imagery - Targeting the Gwangseok-gil Area in Muan-gun, Jeollanam-do - (위성영상을 이용한 연안지역 염생식물 중심 블루카본 피복 분류 및 탄소호흡량 산정 연구 - 전남 무안군 광석길 일대를 대상으로 -)

  • Park, Jae-Chan;Nam, Jinvo;Kim, Jae-Uk
    • Journal of the Korean Institute of Rural Architecture
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    • v.26 no.3
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    • pp.1-9
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    • 2024
  • This study aims to estimate the cover classification and carbon respiration of halophytes based on the issues of utilising blue carbon in recent context of climate change. To address the aims, the study classified halophytes(Triglochin maritimum L and Phragmites australis), Intertidal(non-vegetated tidal flats) and Supratidal(sandy tidal flats) to measure carbon respiration and classify cover. The results are revealed that first, the carbon respiration in vegetated areas was less than that in non-vegetated areas. Second, the cover classification could be divided into halophyte communities(Triglochin maritimum L, Phragmites australis), Intertidal and Supratidal by NDWI(Moisture Index, Normalized Difference Water Index) Third, the total carbon respiration of blue carbon was calculated to be -0.0121 Ton km2 hr-1 with halophyte communities at -0.0011 Ton km2 hr-1, Intertidal respiration at -0.0113 Ton km2 hr-1 and Supratidal respiration at 0.0003 Ton km2 hr-1. As this challenge is a fundamental study that calculates the quantitative net carbon storage based on the blue carbon-based marine ecosystem, contributing to firstly, measuring the carbon respiration of cordgrass communities, reed communities, and non-vegetated tidal flats, which are potential blue carbon candidates in the study area, to establish representative values for carbon respiration, secondly, verifying the reliability of cover classification of native halophytes extracted through image classification technology, and thirdly, challenging to create a thematic map of carbon respiration, calculating the area and carbon respiration for each classification category.