Regulation of Photosynthesis and Water Use Efficiency in Relation to Stomatal Frequency and Interveinal Distance in C3- and C4-Grass Species.
スポンサーリンク
概要
- 論文の詳細を見る
The gas exchange rates of C<SUB>3-</SUB> and C<SUB>4-</SUB>grass leaves at low and high vapor pressure difference (VPD) conditions were measured and demonstrated the effects of anatomical and morphological features of the leaves, i.e. stomatal frequency and size and interveinal distance (IVD), on gas exchange characteristics. When the photosynthesis type was ignored, there was a positive correlation between stomatal frequency and stomatal conductance. However, there was less significant correlation between stomatal frequency and transpiration rate when plotted species within the same photosynthetic pathway. There was a negative correlation between stomatal frequency and net photosynthetic rate, suggesting that CO<SUB>2</SUB> diffusion process from ambient to intercellular space was not much affected by the stomatal morphology, instead that a consequence of biochemical differences in photosynthetic characteristics of the mesophyll was more important. An increase in IVD significantly decreased net photosynthetic rate and water use efficiency (WUE) . In addition to the regulation of CO<SUB>2</SUB> concentrating mechanism in Kranz cells of the C<SUB>4</SUB> subtypes, a rapid translocation of photosynthate from bundle sheath cells to the phloem in grasses with C<SUB>4</SUB>-MS type (NADP-ME) may contribute to maintain their high performances in photosynthesis and WUE through shorter IVD.
- 日本生物環境工学会の論文
日本生物環境工学会 | 論文
- 温室における燃焼式蓄熱型二酸化炭素施肥システムの省エネルギー性・環境負荷低減性・経済性評価
- 高濃度培養液を用いる高糖度トマト生産に適した循環キャピラリー栽培システムの開発
- 2種のUV励起光によるラッカセイ生葉のLIFスペクトル変化および蛍光葉内分布
- ナメコ子実体の光形態形成過程における発現遺伝子の解析
- 光の波長と環境温度がナメコの生体電位および形態形成に及ぼす影響