¹Ù·Î°¡±â ¸Þ´º

¹Ù·Î°¡±â ¸Þ´º º»¹®³»¿ë ¹Ù·Î°¡±â ¸ÞÀθ޴º ¹Ù·Î°¡±â

ÁÖ¿ä¾È³»

HOME »çÀÌÆ®¸Ê

FONT SIZE

ÆùƮũ±â Å°¿ò 100% 110% 120% 130% 140% ÆùƮũ±â ÁÙÀÓ
¸Þ´ºº¸±â
Á¦¸ñ
20201231_¹ÚÂù¿À
ÀÛ¼ºÀÏ
2020-12-31
Á¶È¸¼ö
102


1. Brodribb, T. J., Powers, J., Cochard, H., & Choat, B. (2020). Hanging by a thread? Forests and drought. Science368(6488), 261-266.
 
https://doi.org/10.1126/science.aat7631


2. Aranda, I., Cadahía, E., & de Simón, B. F. (2020). Leaf ecophysiological and metabolic response in Quercus pyrenaica Willd seedlings to moderate drought under enriched CO2 atmosphere. Journal of Plant Physiology244, 153083.

https://doi.org/10.1016/j.jplph.2019.153083

3. Sekhar, K. M., Kota, V. R., Reddy, T. P., Rao, K. V., & Reddy, A. R. (2020). Amelioration of plant responses to drought under elevated CO 2 by rejuvenating photosynthesis and nitrogen use efficiency: implications for future climate-resilient crops. Photosynthesis Research, 1-20.

https://link.springer.com/article/10.1007/s11120-020-00772-5
÷ºÎÆÄÀÏ:
÷ºÎÆÄÀÏÀÌ ¾ø½À´Ï´Ù.
´ÙÀ½±Û
20201231_È«Á¤Çö
/ jhhong
1. Brinkmann, N., Eugster, W., Buchmann, N., & Kahmen, A. (2019). Species‐specific differences in water uptake depth of mature temperate trees vary with water availability in the soil. Plant Biology, 21(1), 71-81. https://doi.org/10.1111/plb.12907 2.Gessler, A., Brandes, E., Buchmann..
ÀÌÀü±Û
20201231_±èÇö¼®_¿ìÁø, ½Ã¿¬
/ ±èÇö¼®
Mature conifers assimilate nitrate as efficiently as ammonium from soils in four forest plantations Yunting Fang First published: 23 November 2020 https://doi.org/10.1111/nph.17110 ½Ã¿¬