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Adaptations that Reduce Water Loss01:57

Adaptations that Reduce Water Loss

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Though evaporation from plant leaves drives transpiration, it also results in loss of water. Because water is critical for photosynthetic reactions and other cellular processes, evolutionary pressures on plants in different environments have driven the acquisition of adaptations that reduce water loss.
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Regulation of Transpiration by Stomata02:04

Regulation of Transpiration by Stomata

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During photosynthesis, plants acquire the necessary carbon dioxide and release the produced oxygen back into the atmosphere. Openings in the epidermis of plant leaves is the site of this exchange of gasses. A single opening is called a stoma—derived from the Greek word for “mouth.” Stomata open and close in response to a variety of environmental cues.
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Cell Signaling in Plants01:25

Cell Signaling in Plants

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Plant cells communicate to coordinate their cycle of growth, flowering and fruiting, and activities in roots, shoots, and leaves in response to the changing environmental conditions. Plant signaling is distinct from animal signaling. Plants primarily utilize enzyme-linked receptors, whereas the largest class of cell-surface receptors in animals are G-protein coupled receptors (GPCRs). Unlike animals, receptor tyrosine kinases are rare in plants. Instead, plants have a diverse class of...
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C4 Pathway and CAM01:27

C4 Pathway and CAM

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Most plants use the C3 pathway for carbon fixation. However, some plants, such as sugar cane, corn, and cacti that grow in hot conditions, use alternative pathways to fix carbon and conserve energy loss due to photorespiration. Photorespiration is the process that occurs when the oxygen concentration is high. Under such conditions, the rubisco enzyme in the Calvin cycle binds O2 instead of CO2, which halts photosynthesis and consumes energy.
C4 Pathway
The C4 pathway is used by plants such as...
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Identification of Novel Regulators of Plant Transpiration by Large-Scale Thermal Imaging Screening in Helianthus Annuus
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アブシシ酸の迅速放出メカニズムである.

Julian I Schroeder1, Eiji Nambara

  • 1Division of Biological Sciences, Cell and Developmental Biology Section, University of California, San Diego, La Jolla, CA 92093, USA. julian@biomail.ucsd.edu <julian@biomail.ucsd.edu>

Cell
|September 23, 2006
PubMed
まとめ

植物はストレス反応のためにホルモンアブシシ酸を使用します. 新しく発見されたβ-グルコシダース酵素は,活性アブシシ酸をグルコース結合型から放出し,ストレス下での植物の生存を向上させます.

科学分野:

  • 植物生物学 植物生物学
  • バイオケミストリー バイオケミストリー
  • 分子生物学は分子生物学である.

背景:

  • アブシシ酸 (ABA) は,干ばつや塩分などの環境ストレスに対する反応を調節する重要な植物ホルモンです.
  • ABAは,ホメオスタシスを維持するために,しばしば不活性な,グルコース結合形態 (ABA-G) に存在します.
  • アクティブなABAを動員することは,適時かつ効果的なストレス適応に不可欠です.

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関連する実験動画

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