Studies of photosynthesis rate on the leaf temperature and light intensity in Soybean Cultivars

엽온 및 광강도에 따른 대두품종간의 광합성능력에 관한 연구

  • Published : 1995.08.01

Abstract

This study was conducted to investigate the Net photosynthesis and respiration rates among the varieties of Soybean(Eunha, Pangsa and Paldal that have high yields) at various leaf temperature and light intensity at the stage of $V_5$. The relations between the Net photosynthesis rate and SLW(specific leaf weight) and chlorophyll content were also investigated. 1. Net photosynthesis rates at $25^{\circ}C$ were $21.5mgdm^{-2}h^{-1}$ in cv. Eunha, $20.2mgdm^{-2}h^{-1}$ in cv. Pangsa and $18.5mgdm^{-2}h^{-1}$ in cv. Paldal. 2. Most cultivars of Soybean showed the maximum rates of Net photosynthesis at $25^{\circ}C$, especially in cv. Eunha. Also Net photosynthesis rates differed depending on the leaf shape. Long leaf shape(cv. Eunha) was better than round leaf shape(cv. Paldal) in Net photosynthesis rate. 3. Respiration rates of leaves in Eunha, Pangse and Paldal were $0.56mgdm^{-2}h^{-1}$ at $15^{\circ}C$, $0.79mgdm^{-2}h^{-1}$ at $20^{\circ}C$ $1.15mgdm^{-2}h^{-1}$ at $25^{\circ}C$ and $1.37mgdm^{-2}h^{-1}$ at $30^{\circ}C$. 4. Specific leaf weight were $3.1mg/cm^2$ in Pangsa, $3.5mg/cm^2$ in Eunha and Paldal. No signlficant difference were showed in net photosynthesis rates and specific lear weight. 5. Leaf chlorophyll content were $2.48{\mu}g/gF.W.$ in Eunha, $2.19{\mu}g/gF.W.$ in Pangsa and $1.67{\mu}/g F.W.$ in Paldal. Significant difference were showed in Net photosynthesis rates and Leaf chlorophyll content. 6. The estimated compensation points at which net photosynthesis approached zero were $10{\mu}Em^{-2}s^{-1}$ in Eunha, Pangsa, and Palda at 1$5^{\circ}C$. The compensation point in cv. Eunha at $20^{\circ}C$ was $12P{\mu}Em^{-2}s{-1}$ while $13{\mu}Em^{-2}s{-1}$ in Pangsa and Palda. The compensation point in cv. Paldal at $25^{\circ}C$ was $18{\mu}Em^{-2}s{-1}$ while $16{\mu}Em^{-2}s{-1}$ in Eunha and Pangsa. The compensation point in cv. Palda at $30^{\circ}C$ was $23{\mu}Em^{-2}s{-1}$ Palda while $13{\mu}Em^{-2}s{-1}$ in Eunha and Pangsa.

대두(大豆) 수량(收量)이 우수한 은하(銀河), 방사(放射), 팔달(八達) 재배품종(栽培品種)을 광합성활성폭사선(光合成活性幅射線) ((PAR) 범위(範圍)에서 5본엽기(本葉期)($V_5$)에 엽온(葉溫)을 달리하여 광합성속도(光合成速度)와 호흡속도(呼吸速度)의 변화를 측정하였고, 품종별(品種別) 엽(葉)의 특성인 비엽중(比葉重)(SLW), 엽녹소함양(葉綠素含量)과 광합성(光合成)과의 관계를 조사한 결과(結果)는 다음과 같다. 1. $25^{\circ}C$에서 순광합성속도(純光合成速度)(Net Photosynthesis)는 은하(銀河) $21.5mgdm^{-2}h^{-1}$, 방사(放射) $20.2mgdm^{-2}h^h{-1}$, 팔달(八達) $18.5mgdm^{-2}h^{-1}$이었다. 2. 전품종(全品種) 모두 엽온(葉溫) $25^{\circ}C$에서 광합성속도(光合成速度)가 가장 높았고 은하(銀河) 품종(品種)이 우수(優秀)했으며, 엽형(葉型)은 은하(銀河) (Long) > 방사(放射)(Oval) > 팔달(八達)(Round) 순서였다. 3. 엽(葉)의 호흡연도(呼吸連度)는 은하(銀河), 방사(放射), 팔달(八達)에서 $15^{\circ}$ $0.56mgdm^{-2}h^{-1}$, $20^{\circ}C$ $0.79mgdm^{-2}h^{-1}$, $25^{\circ}$ $1,15mgdm^{-2}h^{-1}$, $30^{\circ}C$ $1.37mgdm^{-2}h^{-1}$였다. 4. 비엽중(比葉重)은 방사(放射)가 $3.1mg/cm^2$이었고, 은하(銀河)와 팔달(八達)은 $3.5mg/cm^2$이었으며 비엽중(比葉重)과 광합성(光合成)과는 유의성(有意性)이 인정되지 않았다. 5. 엽녹소(葉綠素) 함량(含量)은 은하(銀河)가 $2.48{\mu}g/gF.W.$으로 가장 높았고, 방사(放射)가 $2.19{\mu}g/gF.W.$이었고 팔달(八達)이 $1.67{\mu}g/gF.W.$로 가장 낮았으며 엽록소(葉綠素) 함량(含量)과 광합성(光合成)과는 유의성(有意性)이 인정되었다. 6. 광보상점(光補償點)은 $15^{\circ}C$에서는 $10{\mu}Em^{-2}s^{-1}$로 모두 같았으나, $20^{\circ}C$에서 은하(銀河)는 $12{\mu}Em^{-2}s^{-1}$이었고, 방사(放射)와 팔달(八達)은 $13{\mu}Em^{-2}s^{-1}$이었다. $25^{\circ}C$에서는 은하(銀河)와 방사(放射)가 $16{\mu}Em^{-2}s^{-1}$이었지만 팔달은 $18{\mu}$m^{-2}s^{-1}$이었고, $30^{\circ}C$에서는 은하(銀河)와 방사(放射)가 $22{\mu}Em^{-2}s^{-1}$이었지만, 팔달은 $23{\mu}Em^{-2}s^{-1}$이었다.

Keywords

References

  1. Crop Sci. v.9 Varietal effects in soybean photosynthesis and photorespiration Curtis,P.E.;W.L.Ogren;R.Hageman
  2. Crop Sci. v.9 Effect of genotype on the photosynthetic rate of soybean Dreger,R.H.;W.A.Brun;R.L.Copper
  3. Crop Sci. v.11 Stage of development descriptions for soybean, Glycine Max. L. Merrill Fehr,W.R.;C.E.Caviness;D.T.Burmood;J.S.Pennington
  4. 農業及園藝 v.33 no.11 角田 重三郞
  5. Can. J. Bot. v.57 A methods the exctration of chlorophyll from leaf without maceration Hiscox,J.D.;G.F.Israelstam
  6. 農試論文集 v.27 no.2 耐病 多水性 나물콩 新品種 放射콩 洪殷熹;黃永絃;李英豪;文倫浩;成泳秀;權臣韓
  7. 農試論文集 v.29 no.1 콩 短莖密植適應多收性 新品種 八達콩 洪殷熹;黃永絃;李英豪;文倫浩;朴義浩;朴來敬
  8. 韓作誌 v.37 no.4 콩의 收量에 影響을 미치는 氣像要素 評價 金怡勳
  9. Dong-A Encyclopedia v.24 金泫植
  10. 農業氣象學 v.1 김광식
  11. Energy classification for soil water v.116 Raymond W. Miller
  12. 農試論文集 v.30 no.1 小粒 耐病 多收性 나물콩 新品種 銀河콩 申斗澈;朴昶琪;趙銀基;成惠基;張淳德;鄭根植;徐亨洙
  13. Carbon assimilation and metabolism(2nd ed.) Shibles,R.;J.Secor;D.M.Ford;J.R.Wilcox(ed.)
  14. Crop Sci. Sco. Jpn. v.42 Mechanism of varietal differences in photosynthetic rate of soybean leaves Wadanabe, Iwao;Kosei Tabuchi